{"id":2662,"date":"2023-05-16T12:07:53","date_gmt":"2023-05-16T10:07:53","guid":{"rendered":"https:\/\/research.dii.unipd.it\/ceramglass\/?page_id=2662"},"modified":"2025-05-05T13:59:15","modified_gmt":"2025-05-05T11:59:15","slug":"publications","status":"publish","type":"page","link":"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/","title":{"rendered":"Publications"},"content":{"rendered":"<div class=\"teachpress_pub_list\"><form name=\"tppublistform\" method=\"get\"><a name=\"tppubs\" id=\"tppubs\"><\/a><div class=\"tp_search_input\"><input name=\"tsr\" id=\"tp_search_input_field\" type=\"search\" placeholder=\"Enter search word\" value=\"\" tabindex=\"1\"\/><\/div><div class=\"teachpress_filter\"><select class=\"block\" title=\"All tags\" name=\"tgid\" id=\"tgid\" tabindex=\"4\">\r\n                   <option value=\"\">All tags<\/option>\r\n                   <option value=\"4\" >Additive Manufacturing<\/option><option value=\"3\" >Biomaterials<\/option><option value=\"2\" >Materials for the environment<\/option><option value=\"1\" >Polymer-derived ceramics<\/option>\r\n                <\/select><select class=\"block\" title=\"All authors\" name=\"auth\" id=\"auth\" tabindex=\"5\">\r\n                   <option value=\"\">All authors<\/option>\r\n                   <option value=\"2708\" >A. Anaby<\/option><option value=\"1770\" >E. Bernardo<\/option><option value=\"2222\" >F. Da Rin Betta<\/option><option value=\"1975\" >S. Bhandari<\/option><option value=\"1779\" >L. Biasetto<\/option><option value=\"2704\" >F. Bonino<\/option><option value=\"2700\" >M. Cavallo<\/option><option value=\"20\" >P. Colombo<\/option><option value=\"2705\" >V. Crocell\u00e0<\/option><option value=\"2011\" >M. D&#039;Agostini<\/option><option value=\"2184\" >V. Diamanti<\/option><option value=\"5\" >H. Elsayed<\/option><option value=\"2707\" >J. Erler<\/option><option value=\"1964\" >A. Ezzine<\/option><option value=\"199\" >G. Franchin<\/option><option value=\"1998\" >V. Gastaldi<\/option><option value=\"329\" >F. Gobbin<\/option><option value=\"331\" >K. Huang<\/option><option value=\"2176\" >L. Lattanzi<\/option><option value=\"364\" >A. De Marzi<\/option><option value=\"2706\" >D. Nissen<\/option><option value=\"2703\" >M. Piumetti<\/option><option value=\"2701\" >N. G. Porcaro<\/option><option value=\"2702\" >A. Rizzetto<\/option><option value=\"22\" >G. Tameni<\/option><option value=\"2628\" >M. J. Zafar<\/option><option value=\"372\" >A. Zanini<\/option>\r\n                <\/select><div class=\"teachpress_search_button\"><input name=\"tps_button\" class=\"tp_search_button\" type=\"submit\" tabindex=\"10\" value=\"Search\"\/><\/div><\/div><\/form><div class=\"tablenav\"><div class=\"tablenav-pages\"><span class=\"displaying-num\">590 entries<\/span> <a class=\"page-numbers button disabled\">&laquo;<\/a> <a class=\"page-numbers button disabled\">&lsaquo;<\/a> 1 of 30 <a href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?limit=2&amp;tgid=&amp;yr=&amp;type=&amp;usr=&amp;auth=&amp;tsr=\" title=\"next page\" class=\"page-numbers button\">&rsaquo;<\/a> <a href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?limit=30&amp;tgid=&amp;yr=&amp;type=&amp;usr=&amp;auth=&amp;tsr=\" title=\"last page\" class=\"page-numbers button\">&raquo;<\/a> <\/div><\/div><div class=\"teachpress_publication_list\"><h3 class=\"tp_h3\" id=\"tp_h3_2026\">2026<\/h3><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">M. D&#039;Agostini; M. Cavallo; N. G. Porcaro; A. Rizzetto; M. Piumetti; P. Colombo; F. Bonino; V. Crocell\u00e0; G. Franchin<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1103','tp_links')\" style=\"cursor:pointer;\">Direct synthesis and Additive Manufacturing of binderless Zeolite A monoliths for efficient CO2 capture<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">Mater. Chem. Front., <\/span><span class=\"tp_pub_additional_year\">2026<\/span>, <span class=\"tp_pub_additional_issn\">ISSN: 2052-1537<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_1103\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1103','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1103\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1103','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><a rel=\"nofollow\" href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?tgid=4\" title=\"Show all publications which have a relationship to this tag\">Additive Manufacturing<\/a>, <a rel=\"nofollow\" href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?tgid=2\" title=\"Show all publications which have a relationship to this tag\">Materials for the environment<\/a><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1103\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{D&#039;Agostini2026,<br \/>\r\ntitle = {Direct synthesis and Additive Manufacturing of binderless Zeolite A monoliths for efficient CO2 capture},<br \/>\r\nauthor = {M. D&#039;Agostini and M. Cavallo and N. G. Porcaro and A. Rizzetto and M. Piumetti and P. Colombo and F. Bonino and V. Crocell\u00e0 and G. Franchin},<br \/>\r\ndoi = {10.1039\/d6qm00244g},<br \/>\r\nissn = {2052-1537},<br \/>\r\nyear  = {2026},<br \/>\r\ndate = {2026-06-23},<br \/>\r\njournal = {Mater. Chem. Front.},<br \/>\r\npublisher = {Royal Society of Chemistry (RSC)},<br \/>\r\nkeywords = {Additive Manufacturing, Materials for the environment},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1103','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1103\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1039\/d6qm00244g\" title=\"Follow DOI:10.1039\/d6qm00244g\" target=\"_blank\">doi:10.1039\/d6qm00244g<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1103','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">K. Huang; G. Franchin; D. Nissen; J. Erler; A. Anaby; P. Colombo<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1102','tp_links')\" style=\"cursor:pointer;\">Volumetric additive manufacturing of transparent silica glass with tunable refractive index and color by xolography<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">Materials Today, <\/span><span class=\"tp_pub_additional_volume\">vol. 98, <\/span><span class=\"tp_pub_additional_year\">2026<\/span>, <span class=\"tp_pub_additional_issn\">ISSN: 1369-7021<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_1102\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1102','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1102\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1102','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><a rel=\"nofollow\" href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?tgid=4\" title=\"Show all publications which have a relationship to this tag\">Additive Manufacturing<\/a>, <a rel=\"nofollow\" href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?tgid=1\" title=\"Show all publications which have a relationship to this tag\">Polymer-derived ceramics<\/a><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1102\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{Huang2026,<br \/>\r\ntitle = {Volumetric additive manufacturing of transparent silica glass with tunable refractive index and color by xolography},<br \/>\r\nauthor = {K. Huang and G. Franchin and D. Nissen and J. Erler and A. Anaby and P. Colombo},<br \/>\r\ndoi = {10.1016\/j.mattod.2026.103435},<br \/>\r\nissn = {1369-7021},<br \/>\r\nyear  = {2026},<br \/>\r\ndate = {2026-06-23},<br \/>\r\njournal = {Materials Today},<br \/>\r\nvolume = {98},<br \/>\r\npublisher = {Elsevier BV},<br \/>\r\nkeywords = {Additive Manufacturing, Polymer-derived ceramics},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1102','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1102\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1016\/j.mattod.2026.103435\" title=\"Follow DOI:10.1016\/j.mattod.2026.103435\" target=\"_blank\">doi:10.1016\/j.mattod.2026.103435<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1102','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><h3 class=\"tp_h3\" id=\"tp_h3_2025\">2025<\/h3><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">S. Candela; J. Ottelin; J. Hongisto; H. Lehtonen; A. De Marzi; A. Campagnolo; C. Scian; R. Dima<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1060','tp_links')\" style=\"cursor:pointer;\">W-Ta alloys processed by laser-based powder bed fusion: How microstructure and properties change with ta concentration<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">International Journal of Refractory Metals and Hard Materials, <\/span><span class=\"tp_pub_additional_pages\">pp. 107324, <\/span><span class=\"tp_pub_additional_year\">2025<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_abstract_link\"><a id=\"tp_abstract_sh_1060\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1060','tp_abstract')\" title=\"Show abstract\" style=\"cursor:pointer;\">Abstract<\/a><\/span> | <span class=\"tp_resource_link\"><a id=\"tp_links_sh_1060\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1060','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1060\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1060','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><a rel=\"nofollow\" href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?tgid=4\" title=\"Show all publications which have a relationship to this tag\">Additive Manufacturing<\/a><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1060\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{nokey,<br \/>\r\ntitle = {W-Ta alloys processed by laser-based powder bed fusion: How microstructure and properties change with ta concentration},<br \/>\r\nauthor = {S. Candela and J. Ottelin and J. Hongisto and H. Lehtonen and A. De Marzi and A. Campagnolo and C. Scian and R. Dima},<br \/>\r\ndoi = {10.1016\/j.ijrmhm.2025.107324},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-07-10},<br \/>\r\nurldate = {2025-07-10},<br \/>\r\njournal = {International Journal of Refractory Metals and Hard Materials},<br \/>\r\npages = {107324},<br \/>\r\nabstract = {In this paper, a study of 4 tungsten\u2011tantalum binary alloys processed by Laser-Based Powder Bed Fusion (PBF-LB) is presented. The evolution of the microstructure and the properties of the material in dependence on the tenor of tantalum inside the alloy was investigated, selecting 0\u202fwt%, 2.5\u202fwt%, 7.5\u202fwt%, and 15\u202fwt% as the Ta concentrations. The optimal process window for each examined alloy was investigated. The introduction of tantalum in the alloy was effective in mitigating the cracks in the tungsten matrix. However, the energy provided to the material in the additive manufacturing process was also determinant for achieving an almost crack-free and low-porosity material. Moreover, the range of concentrations of Ta considered in this work allowed the authors to see that the properties of the binary alloys examined don&#039;t lead to a continuous improvement with the addition of Ta, but start decreasing for Ta contents higher than 7.5\u202fwt%. The minimum porosity volume fraction achieved in this study was 0.7\u202f% for the W-7.5\u202fwt%Ta blend. The same alloy showed the highest hardness among the other materials investigated, reaching hardness values above 480\u202fHV0.5, approximately 30\u202f% higher than what was obtained for pure tungsten, and with a 50\u202f% increase in the ultimate compressive strength compared to the unalloyed material. XRD analyses confirmed that the tantalum particles solubilize completely inside the tungsten matrix, assuring a good homogeneity of the composition and the absence of segregations and secondary phases inside the additively manufactured parts.},<br \/>\r\nkeywords = {Additive Manufacturing},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1060','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_abstract\" id=\"tp_abstract_1060\" style=\"display:none;\"><div class=\"tp_abstract_entry\">In this paper, a study of 4 tungsten\u2011tantalum binary alloys processed by Laser-Based Powder Bed Fusion (PBF-LB) is presented. The evolution of the microstructure and the properties of the material in dependence on the tenor of tantalum inside the alloy was investigated, selecting 0\u202fwt%, 2.5\u202fwt%, 7.5\u202fwt%, and 15\u202fwt% as the Ta concentrations. The optimal process window for each examined alloy was investigated. The introduction of tantalum in the alloy was effective in mitigating the cracks in the tungsten matrix. However, the energy provided to the material in the additive manufacturing process was also determinant for achieving an almost crack-free and low-porosity material. Moreover, the range of concentrations of Ta considered in this work allowed the authors to see that the properties of the binary alloys examined don&#039;t lead to a continuous improvement with the addition of Ta, but start decreasing for Ta contents higher than 7.5\u202fwt%. The minimum porosity volume fraction achieved in this study was 0.7\u202f% for the W-7.5\u202fwt%Ta blend. The same alloy showed the highest hardness among the other materials investigated, reaching hardness values above 480\u202fHV0.5, approximately 30\u202f% higher than what was obtained for pure tungsten, and with a 50\u202f% increase in the ultimate compressive strength compared to the unalloyed material. XRD analyses confirmed that the tantalum particles solubilize completely inside the tungsten matrix, assuring a good homogeneity of the composition and the absence of segregations and secondary phases inside the additively manufactured parts.<\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1060','tp_abstract')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1060\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1016\/j.ijrmhm.2025.107324\" title=\"Follow DOI:10.1016\/j.ijrmhm.2025.107324\" target=\"_blank\">doi:10.1016\/j.ijrmhm.2025.107324<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1060','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">A. Zanini; G. Bombardelli; G. Giometti; A. De Marzi; J. Erler; D. Nissen; G. Franchin; P. Colombo<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1059','tp_links')\" style=\"cursor:pointer;\">Additive Manufacturing of Multicomponent Glasses with Enhanced Optical Properties via Sol-Gel<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">Additive Manufacturing, <\/span><span class=\"tp_pub_additional_year\">2025<\/span>, <span class=\"tp_pub_additional_issn\">ISSN: 2214-8604<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_1059\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1059','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1059\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1059','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><a rel=\"nofollow\" href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?tgid=4\" title=\"Show all publications which have a relationship to this tag\">Additive Manufacturing<\/a><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1059\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{Zanini2025,<br \/>\r\ntitle = {Additive Manufacturing of Multicomponent Glasses with Enhanced Optical Properties via Sol-Gel},<br \/>\r\nauthor = {A. Zanini and G. Bombardelli and G. Giometti and A. De Marzi and J. Erler and D. Nissen and G. Franchin and P. Colombo},<br \/>\r\ndoi = {10.1016\/j.addma.2025.104864},<br \/>\r\nissn = {2214-8604},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-06-00},<br \/>\r\nurldate = {2025-06-00},<br \/>\r\njournal = {Additive Manufacturing},<br \/>\r\npublisher = {Elsevier BV},<br \/>\r\nkeywords = {Additive Manufacturing},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1059','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1059\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1016\/j.addma.2025.104864\" title=\"Follow DOI:10.1016\/j.addma.2025.104864\" target=\"_blank\">doi:10.1016\/j.addma.2025.104864<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1059','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">A. De Marzi; F. Da Rin Betta; G. Franchin; R. M. Seabright; C. J. Footer; P. Colombo<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1055','tp_links')\" style=\"cursor:pointer;\">Fabrication of continuous fiber reinforced ceramic matrix mini\u2010composites via direct ink writing<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">J Am Ceram Soc., <\/span><span class=\"tp_pub_additional_year\">2025<\/span>, <span class=\"tp_pub_additional_issn\">ISSN: 1551-2916<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_abstract_link\"><a id=\"tp_abstract_sh_1055\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1055','tp_abstract')\" title=\"Show abstract\" style=\"cursor:pointer;\">Abstract<\/a><\/span> | <span class=\"tp_resource_link\"><a id=\"tp_links_sh_1055\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1055','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1055\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1055','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><a rel=\"nofollow\" href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?tgid=4\" title=\"Show all publications which have a relationship to this tag\">Additive Manufacturing<\/a><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1055\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{DeMarzi2025,<br \/>\r\ntitle = {Fabrication of continuous fiber reinforced ceramic matrix mini\u2010composites via direct ink writing},<br \/>\r\nauthor = {A. De Marzi and F. Da Rin Betta and G. Franchin and R. M. Seabright and C. J. Footer and P. Colombo},<br \/>\r\ndoi = {10.1111\/jace.20696},<br \/>\r\nissn = {1551-2916},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-05-26},<br \/>\r\nurldate = {2025-05-26},<br \/>\r\njournal = {J Am Ceram Soc.},<br \/>\r\npublisher = {Wiley},<br \/>\r\nabstract = {&lt;jats:title&gt;Abstract&lt;\/jats:title&gt;&lt;jats:p&gt;Ceramic materials are valued for their exceptional heat and corrosion resistance, yet their inherent brittleness limits their use in applications requiring high strength\u2010to\u2010weight ratios, fatigue resistance, and durability under harsh conditions, such as those in the aerospace and automotive industries. The development of ceramic matrix composites (CMCs), incorporating continuous reinforcements, has enhanced the mechanical performance of ceramics, offering superior toughness compared to randomly oriented composites. Traditional fabrication methods for composites, such as polymer infiltration and pyrolysis (PIP) and chemical vapor infiltration (CVI), are effective but constrained by shaping complexities. Direct ink writing (DIW) has emerged as a fabrication approach for CMCs fabrication, enabling custom geometries and tailored reinforcement architectures. Extrusion\u2010based processes naturally align fibers, optimizing their orientation and enhancing composite properties. This study focuses on the fabrication of silicon oxycarbide matrix reinforced with continuous carbon fibers using two DIW approaches. Comparative analysis highlighted the benefits and limitations of each method, with post\u2010processing via PIP addressing crack formation and improving densification. Mechanical properties were evaluated at different fabrication stages, revealing key relationships between processing techniques and final composite performance.&lt;\/jats:p&gt;},<br \/>\r\nkeywords = {Additive Manufacturing},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1055','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_abstract\" id=\"tp_abstract_1055\" style=\"display:none;\"><div class=\"tp_abstract_entry\">&lt;jats:title&gt;Abstract&lt;\/jats:title&gt;&lt;jats:p&gt;Ceramic materials are valued for their exceptional heat and corrosion resistance, yet their inherent brittleness limits their use in applications requiring high strength\u2010to\u2010weight ratios, fatigue resistance, and durability under harsh conditions, such as those in the aerospace and automotive industries. The development of ceramic matrix composites (CMCs), incorporating continuous reinforcements, has enhanced the mechanical performance of ceramics, offering superior toughness compared to randomly oriented composites. Traditional fabrication methods for composites, such as polymer infiltration and pyrolysis (PIP) and chemical vapor infiltration (CVI), are effective but constrained by shaping complexities. Direct ink writing (DIW) has emerged as a fabrication approach for CMCs fabrication, enabling custom geometries and tailored reinforcement architectures. Extrusion\u2010based processes naturally align fibers, optimizing their orientation and enhancing composite properties. This study focuses on the fabrication of silicon oxycarbide matrix reinforced with continuous carbon fibers using two DIW approaches. Comparative analysis highlighted the benefits and limitations of each method, with post\u2010processing via PIP addressing crack formation and improving densification. Mechanical properties were evaluated at different fabrication stages, revealing key relationships between processing techniques and final composite performance.&lt;\/jats:p&gt;<\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1055','tp_abstract')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1055\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1111\/jace.20696\" title=\"Follow DOI:10.1111\/jace.20696\" target=\"_blank\">doi:10.1111\/jace.20696<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1055','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">C. Gravino; N. Gargiulo; A. Peluso; P. Aprea; M. D&#039;Agostini; G. Franchin; P. Colombo; D. Caputo<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1056','tp_links')\" style=\"cursor:pointer;\">Equilibrium adsorption behaviour of a 3D-printed zeolite\u2013geopolymer composite with high faujasitic content<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">Mater. Adv., <\/span><span class=\"tp_pub_additional_volume\">vol. 6, <\/span><span class=\"tp_pub_additional_number\">no. 8, <\/span><span class=\"tp_pub_additional_pages\">pp. 2579\u20132587, <\/span><span class=\"tp_pub_additional_year\">2025<\/span>, <span class=\"tp_pub_additional_issn\">ISSN: 2633-5409<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_abstract_link\"><a id=\"tp_abstract_sh_1056\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1056','tp_abstract')\" title=\"Show abstract\" style=\"cursor:pointer;\">Abstract<\/a><\/span> | <span class=\"tp_resource_link\"><a id=\"tp_links_sh_1056\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1056','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1056\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1056','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><a rel=\"nofollow\" href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?tgid=4\" title=\"Show all publications which have a relationship to this tag\">Additive Manufacturing<\/a>, <a rel=\"nofollow\" href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?tgid=2\" title=\"Show all publications which have a relationship to this tag\">Materials for the environment<\/a><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1056\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{Gravino2025,<br \/>\r\ntitle = {Equilibrium adsorption behaviour of a 3D-printed zeolite\u2013geopolymer composite with high faujasitic content},<br \/>\r\nauthor = {C. Gravino and N. Gargiulo and A. Peluso and P. Aprea and M. D&#039;Agostini and G. Franchin and P. Colombo and D. Caputo},<br \/>\r\ndoi = {10.1039\/d4ma01074d},<br \/>\r\nissn = {2633-5409},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-04-14},<br \/>\r\nurldate = {2025-04-14},<br \/>\r\njournal = {Mater. Adv.},<br \/>\r\nvolume = {6},<br \/>\r\nnumber = {8},<br \/>\r\npages = {2579--2587},<br \/>\r\npublisher = {Royal Society of Chemistry (RSC)},<br \/>\r\nabstract = {&lt;jats:p&gt;A potential CO&lt;jats:sub&gt;2&lt;\/jats:sub&gt; and water vapour adsorbent made of a NaX zeolite\/Na-activated geopolymer composite material was fabricated as 3D-printed monoliths by means of Direct Ink Writing.&lt;\/jats:p&gt;},<br \/>\r\nkeywords = {Additive Manufacturing, Materials for the environment},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1056','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_abstract\" id=\"tp_abstract_1056\" style=\"display:none;\"><div class=\"tp_abstract_entry\">&lt;jats:p&gt;A potential CO&lt;jats:sub&gt;2&lt;\/jats:sub&gt; and water vapour adsorbent made of a NaX zeolite\/Na-activated geopolymer composite material was fabricated as 3D-printed monoliths by means of Direct Ink Writing.&lt;\/jats:p&gt;<\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1056','tp_abstract')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1056\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1039\/d4ma01074d\" title=\"Follow DOI:10.1039\/d4ma01074d\" target=\"_blank\">doi:10.1039\/d4ma01074d<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1056','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">Luca Pezzato; Lorena Kostelac; Lavinia Tonelli; H. Elsayed; Daniel Kaj\u00e1nek; E. Bernardo; Carla Martini; Manuele Dabal\u00e0; Katya Brunelli<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1095','tp_links')\" style=\"cursor:pointer;\">Effect of Different Types of Glass Powders on the Corrosion and Wear Resistance of Peo Coatings Produced on 6061 Aluminum Alloy<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_volume\">vol. 31, <\/span><span class=\"tp_pub_additional_number\">no. 3, <\/span><span class=\"tp_pub_additional_pages\">pp. 636 \u2013 653, <\/span><span class=\"tp_pub_additional_year\">2025<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_1095\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1095','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1095\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1095','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1095\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{Pezzato2025636,<br \/>\r\ntitle = {Effect of Different Types of Glass Powders on the Corrosion and Wear Resistance of Peo Coatings Produced on 6061 Aluminum Alloy},<br \/>\r\nauthor = {Luca Pezzato and Lorena Kostelac and Lavinia Tonelli and H. Elsayed and Daniel Kaj\u00e1nek and E. Bernardo and Carla Martini and Manuele Dabal\u00e0 and Katya Brunelli},<br \/>\r\nurl = {https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-85201818433&doi=10.1007%2fs12540-024-01786-7&partnerID=40&md5=0e6283bb5a04c16030f006fa037f4077},<br \/>\r\ndoi = {10.1007\/s12540-024-01786-7},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-01-01},<br \/>\r\nurldate = {2025-01-01},<br \/>\r\nvolume = {31},<br \/>\r\nnumber = {3},<br \/>\r\npages = {636 \u2013 653},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1095','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1095\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-85201818433&amp;doi=10.1007%2fs12540-024-01786-7&amp;partnerID=40&amp;md5=0e6283bb5a04c16030f006fa037f4077\" title=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-85201818433&amp;doi=10.1007%[...]\" target=\"_blank\">https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-85201818433&amp;doi=10.1007%[...]<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1007\/s12540-024-01786-7\" title=\"Follow DOI:10.1007\/s12540-024-01786-7\" target=\"_blank\">doi:10.1007\/s12540-024-01786-7<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1095','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">Mokhtar Mahmoud; H. Elsayed; Jozef Kraxner; Martin Mich\u00e1lek; Be\u00e1ta Pecu\u0161ov\u00e1; Montaha Anjass; Nikhil Arya; E. Bernardo; Du\u0161an Galusek<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1092','tp_links')\" style=\"cursor:pointer;\">Additive manufacturing of scaffolds from porous glass microspheres via masked stereolithography: Printing challenges and sustainable applications<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_volume\">vol. 45, <\/span><span class=\"tp_pub_additional_number\">no. 16, <\/span><span class=\"tp_pub_additional_year\">2025<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_1092\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1092','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1092\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1092','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1092\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{Mahmoud2025,<br \/>\r\ntitle = {Additive manufacturing of scaffolds from porous glass microspheres via masked stereolithography: Printing challenges and sustainable applications},<br \/>\r\nauthor = {Mokhtar Mahmoud and H. Elsayed and Jozef Kraxner and Martin Mich\u00e1lek and Be\u00e1ta Pecu\u0161ov\u00e1 and Montaha Anjass and Nikhil Arya and E. Bernardo and Du\u0161an Galusek},<br \/>\r\nurl = {https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105010023419&doi=10.1016%2fj.jeurceramsoc.2025.117651&partnerID=40&md5=9934fef58c5c274a4a22473e66ef4df9},<br \/>\r\ndoi = {10.1016\/j.jeurceramsoc.2025.117651},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-01-01},<br \/>\r\nurldate = {2025-01-01},<br \/>\r\nvolume = {45},<br \/>\r\nnumber = {16},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1092','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1092\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105010023419&amp;doi=10.1016%2fj.jeurceramsoc.2025.117651&amp;partnerID=40&amp;md5=9934fef58c5c274a4a22473e66ef4df9\" title=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105010023419&amp;doi=10.1016[...]\" target=\"_blank\">https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105010023419&amp;doi=10.1016[...]<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1016\/j.jeurceramsoc.2025.117651\" title=\"Follow DOI:10.1016\/j.jeurceramsoc.2025.117651\" target=\"_blank\">doi:10.1016\/j.jeurceramsoc.2025.117651<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1092','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">Abel W. Ourgessa; Ahmed Gamal Abd-Elsatar; Mokhtar Mahmoud; H. Elsayed; Jozef Kraxner; Dusan Galusek; E. Bernardo<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1088','tp_links')\" style=\"cursor:pointer;\">Direct ink writing of lightweight 3D structures from alkali-activated waste fiberglass and glass microsphere fillers<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_volume\">vol. 23, <\/span><span class=\"tp_pub_additional_year\">2025<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_1088\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1088','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1088\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1088','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1088\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{Ourgessa2025,<br \/>\r\ntitle = {Direct ink writing of lightweight 3D structures from alkali-activated waste fiberglass and glass microsphere fillers},<br \/>\r\nauthor = {Abel W. Ourgessa and Ahmed Gamal Abd-Elsatar and Mokhtar Mahmoud and H. Elsayed and Jozef Kraxner and Dusan Galusek and E. Bernardo},<br \/>\r\nurl = {https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105010890163&doi=10.1016%2fj.oceram.2025.100825&partnerID=40&md5=c7833a1d037a62c175dfbb7b97279d69},<br \/>\r\ndoi = {10.1016\/j.oceram.2025.100825},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-01-01},<br \/>\r\nurldate = {2025-01-01},<br \/>\r\nvolume = {23},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1088','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1088\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105010890163&amp;doi=10.1016%2fj.oceram.2025.100825&amp;partnerID=40&amp;md5=c7833a1d037a62c175dfbb7b97279d69\" title=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105010890163&amp;doi=10.1016[...]\" target=\"_blank\">https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105010890163&amp;doi=10.1016[...]<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1016\/j.oceram.2025.100825\" title=\"Follow DOI:10.1016\/j.oceram.2025.100825\" target=\"_blank\">doi:10.1016\/j.oceram.2025.100825<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1088','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">Ahmed Gamal Abd-Elsatar; H. Elsayed; Onat Basak; Kamalan Mosas; Aleksandra Nowicka; Hana Ka\u0148kov\u00e1; Akansha Mehta; Jozef Rahel; Jozef Kraxner; Du\u0161an Galusek; E. Bernardo<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1087','tp_links')\" style=\"cursor:pointer;\">Greener, safer, and stronger: plasma ion-exchanged pharmaceutical glass vials for precision drug delivery dosing<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_volume\">vol. 27, <\/span><span class=\"tp_pub_additional_year\">2025<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_1087\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1087','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1087\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1087','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1087\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{GamalAbd-Elsatar2025,<br \/>\r\ntitle = {Greener, safer, and stronger: plasma ion-exchanged pharmaceutical glass vials for precision drug delivery dosing},<br \/>\r\nauthor = {Ahmed Gamal Abd-Elsatar and H. Elsayed and Onat Basak and Kamalan Mosas and Aleksandra Nowicka and Hana Ka\u0148kov\u00e1 and Akansha Mehta and Jozef Rahel and Jozef Kraxner and Du\u0161an Galusek and E. Bernardo},<br \/>\r\nurl = {https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105004014563&doi=10.1016%2fj.apsadv.2025.100760&partnerID=40&md5=1eb1fbc387609004ea78a5ad04f3ca88},<br \/>\r\ndoi = {10.1016\/j.apsadv.2025.100760},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-01-01},<br \/>\r\nurldate = {2025-01-01},<br \/>\r\nvolume = {27},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1087','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1087\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105004014563&amp;doi=10.1016%2fj.apsadv.2025.100760&amp;partnerID=40&amp;md5=1eb1fbc387609004ea78a5ad04f3ca88\" title=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105004014563&amp;doi=10.1016[...]\" target=\"_blank\">https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105004014563&amp;doi=10.1016[...]<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1016\/j.apsadv.2025.100760\" title=\"Follow DOI:10.1016\/j.apsadv.2025.100760\" target=\"_blank\">doi:10.1016\/j.apsadv.2025.100760<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1087','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">Elena Colusso; H. Elsayed; Paulina O\u017c\u00f3g; Jozef Kraxner; Dusan Galusek; E. Bernardo<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1073','tp_links')\" style=\"cursor:pointer;\">Functionalization of LCD glass for the manufacturing of advanced 3D-printed translucent photocatalytic scaffolds<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_volume\">vol. 21, <\/span><span class=\"tp_pub_additional_year\">2025<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_1073\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1073','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1073\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1073','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1073\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{Colusso2025,<br \/>\r\ntitle = {Functionalization of LCD glass for the manufacturing of advanced 3D-printed translucent photocatalytic scaffolds},<br \/>\r\nauthor = {Elena Colusso and H. Elsayed and Paulina O\u017c\u00f3g and Jozef Kraxner and Dusan Galusek and E. Bernardo},<br \/>\r\nurl = {https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-85212863800&doi=10.1016%2fj.oceram.2024.100731&partnerID=40&md5=8494fac4ad1a24c0f2dcf33448a09c19},<br \/>\r\ndoi = {10.1016\/j.oceram.2024.100731},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-01-01},<br \/>\r\nurldate = {2025-01-01},<br \/>\r\nvolume = {21},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1073','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1073\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-85212863800&amp;doi=10.1016%2fj.oceram.2024.100731&amp;partnerID=40&amp;md5=8494fac4ad1a24c0f2dcf33448a09c19\" title=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-85212863800&amp;doi=10.1016%[...]\" target=\"_blank\">https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-85212863800&amp;doi=10.1016%[...]<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1016\/j.oceram.2024.100731\" title=\"Follow DOI:10.1016\/j.oceram.2024.100731\" target=\"_blank\">doi:10.1016\/j.oceram.2024.100731<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1073','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">J. Adrien; H. Elsayed; F. Gobbin; A. Italiano; E. Maire; P. Colombo<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1071','tp_links')\" style=\"cursor:pointer;\">X-ray computed tomography investigation on the geopolymer matrix formation during the binder jetting additive manufacturing process<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_volume\">vol. 109, <\/span><span class=\"tp_pub_additional_year\">2025<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_1071\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1071','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1071\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1071','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1071\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{Adrien2025,<br \/>\r\ntitle = {X-ray computed tomography investigation on the geopolymer matrix formation during the binder jetting additive manufacturing process},<br \/>\r\nauthor = {J. Adrien and H. Elsayed and F. Gobbin and A. Italiano and E. Maire and P. Colombo},<br \/>\r\nurl = {https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105008533693&doi=10.1016%2fj.addma.2025.104852&partnerID=40&md5=707058ce0d1533ed2df797a473a11567},<br \/>\r\ndoi = {10.1016\/j.addma.2025.104852},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-01-01},<br \/>\r\nvolume = {109},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1071','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1071\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105008533693&amp;doi=10.1016%2fj.addma.2025.104852&amp;partnerID=40&amp;md5=707058ce0d1533ed2df797a473a11567\" title=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105008533693&amp;doi=10.1016[...]\" target=\"_blank\">https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105008533693&amp;doi=10.1016[...]<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1016\/j.addma.2025.104852\" title=\"Follow DOI:10.1016\/j.addma.2025.104852\" target=\"_blank\">doi:10.1016\/j.addma.2025.104852<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1071','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">H. Elsayed; Sara Micheli; Franco Matias Stabile; Altan Alpay Altun; Martin Schwentenwein; Elisa Cimetta; E. Bernardo<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1069','tp_links')\" style=\"cursor:pointer;\">Advanced vat photopolymerization of polymer-derived 70S30C glass-carbon nano-composites: Topological control and biological validation<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_volume\">vol. 45, <\/span><span class=\"tp_pub_additional_number\">no. 11, <\/span><span class=\"tp_pub_additional_year\">2025<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_1069\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1069','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1069\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1069','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1069\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{Elsayed2025,<br \/>\r\ntitle = {Advanced vat photopolymerization of polymer-derived 70S30C glass-carbon nano-composites: Topological control and biological validation},<br \/>\r\nauthor = {H. Elsayed and Sara Micheli and Franco Matias Stabile and Altan Alpay Altun and Martin Schwentenwein and Elisa Cimetta and E. Bernardo},<br \/>\r\nurl = {https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105000651134&doi=10.1016%2fj.jeurceramsoc.2025.117384&partnerID=40&md5=845e9a3bf4b6a9903efb368d0b535e00},<br \/>\r\ndoi = {10.1016\/j.jeurceramsoc.2025.117384},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-01-01},<br \/>\r\nurldate = {2025-01-01},<br \/>\r\nvolume = {45},<br \/>\r\nnumber = {11},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1069','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1069\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105000651134&amp;doi=10.1016%2fj.jeurceramsoc.2025.117384&amp;partnerID=40&amp;md5=845e9a3bf4b6a9903efb368d0b535e00\" title=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105000651134&amp;doi=10.1016[...]\" target=\"_blank\">https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105000651134&amp;doi=10.1016[...]<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1016\/j.jeurceramsoc.2025.117384\" title=\"Follow DOI:10.1016\/j.jeurceramsoc.2025.117384\" target=\"_blank\">doi:10.1016\/j.jeurceramsoc.2025.117384<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1069','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">V. Diamanti; H. Elsayed; Tobias Fey; E. Bernardo<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1066','tp_links')\" style=\"cursor:pointer;\">Effect of MgO and Al2O3 precursors on 3D-printed cordierite lattice structures by a novel emulsion-based PDC route<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_volume\">vol. 108, <\/span><span class=\"tp_pub_additional_number\">no. 12, <\/span><span class=\"tp_pub_additional_year\">2025<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_1066\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1066','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1066\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1066','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1066\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{Diamanti2025,<br \/>\r\ntitle = {Effect of MgO and Al2O3 precursors on 3D-printed cordierite lattice structures by a novel emulsion-based PDC route},<br \/>\r\nauthor = {V. Diamanti and H. Elsayed and Tobias Fey and E. Bernardo},<br \/>\r\nurl = {https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105008684839&doi=10.1111%2fjace.70037&partnerID=40&md5=1e4af458f86010cf642911b4066088d6},<br \/>\r\ndoi = {10.1111\/jace.70037},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-01-01},<br \/>\r\nurldate = {2025-01-01},<br \/>\r\nvolume = {108},<br \/>\r\nnumber = {12},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1066','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1066\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105008684839&amp;doi=10.1111%2fjace.70037&amp;partnerID=40&amp;md5=1e4af458f86010cf642911b4066088d6\" title=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105008684839&amp;doi=10.1111[...]\" target=\"_blank\">https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105008684839&amp;doi=10.1111[...]<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1111\/jace.70037\" title=\"Follow DOI:10.1111\/jace.70037\" target=\"_blank\">doi:10.1111\/jace.70037<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1066','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">Mattia Maltauro; Luca Grigolato; H. Elsayed; Pierandrea Dal Fabbro; Roberto Meneghello; Gianmaria Concheri; Gianpaolo Savio<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1063','tp_links')\" style=\"cursor:pointer;\">A Methodological Approach for the Evaluation of Deformations in Additively Manufactured Lattice Structures<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_pages\">pp. 225 \u2013 234, <\/span><span class=\"tp_pub_additional_year\">2025<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_1063\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1063','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1063\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1063','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1063\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{Maltauro2025225,<br \/>\r\ntitle = {A Methodological Approach for the Evaluation of Deformations in Additively Manufactured Lattice Structures},<br \/>\r\nauthor = {Mattia Maltauro and Luca Grigolato and H. Elsayed and Pierandrea Dal Fabbro and Roberto Meneghello and Gianmaria Concheri and Gianpaolo Savio},<br \/>\r\nurl = {https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-85219211106&doi=10.1007%2f978-3-031-76594-0_26&partnerID=40&md5=9d7c7ace321f4ba807c73b990fcd90f3},<br \/>\r\ndoi = {10.1007\/978-3-031-76594-0_26},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-01-01},<br \/>\r\nurldate = {2025-01-01},<br \/>\r\npages = {225 \u2013 234},<br \/>\r\nkeywords = {},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1063','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1063\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-85219211106&amp;doi=10.1007%2f978-3-031-76594-0_26&amp;partnerID=40&amp;md5=9d7c7ace321f4ba807c73b990fcd90f3\" title=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-85219211106&amp;doi=10.1007%[...]\" target=\"_blank\">https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-85219211106&amp;doi=10.1007%[...]<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1007\/978-3-031-76594-0_26\" title=\"Follow DOI:10.1007\/978-3-031-76594-0_26\" target=\"_blank\">doi:10.1007\/978-3-031-76594-0_26<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1063','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">W. Wang; X. Gao; X. Chen; A. De Marzi; K. Huang; R. He; P. Colombo<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1054','tp_links')\" style=\"cursor:pointer;\">Zhaozhou Bridge inspired embedded material extrusion 3D printing of Csf\/SiC ceramic matrix composites<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">Journal of the American Ceramic Society, <\/span><span class=\"tp_pub_additional_year\">2025<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_abstract_link\"><a id=\"tp_abstract_sh_1054\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1054','tp_abstract')\" title=\"Show abstract\" style=\"cursor:pointer;\">Abstract<\/a><\/span> | <span class=\"tp_resource_link\"><a id=\"tp_links_sh_1054\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1054','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1054\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1054','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><a rel=\"nofollow\" href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?tgid=4\" title=\"Show all publications which have a relationship to this tag\">Additive Manufacturing<\/a><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1054\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{Wang2025,<br \/>\r\ntitle = {Zhaozhou Bridge inspired embedded material extrusion 3D printing of Csf\/SiC ceramic matrix composites},<br \/>\r\nauthor = {W. Wang and X. Gao and X. Chen and A. De Marzi and K. Huang and R. He and P. Colombo},<br \/>\r\nurl = {https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105004352294&doi=10.1111%2fjace.20644&partnerID=40&md5=1118badf05310dcb65bf4ad0c3f26423},<br \/>\r\ndoi = {10.1111\/jace.20644},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-01-01},<br \/>\r\nurldate = {2025-01-01},<br \/>\r\njournal = {Journal of the American Ceramic Society},<br \/>\r\nabstract = {Material extrusion (MEX) 3D printing, while effective for many applications, faces challenges in fabricating arch shapes and suspended structures. This study advances MEX technology by drawing inspiration from ancient bridge construction techniques like the Zhaozhou Bridge, using an innovative embedded material extrusion (EMEX) method that eliminates the need for additional support structures in fabricating complex short carbon fiber reinforced SiC ceramic matrix composites (Csf\/SiC CMCs). Utilizing solid powders as a supporting medium, EMEX enables the creation of intricate arch shapes and suspension structures, overcoming limitations associated with conventional MEX. The impact of supporting media (SiC powders and sugar) on the microstructure and mechanical properties of the composites was demonstrated. Residual SiC powders caused uneven material distribution, while residual sugar led to cracking. The presence of residual powders also influenced the shrinkage behavior and bending strength of the Csf\/SiC CMCs, with a notable decrease observed when transitioning from air to SiC powders and then to sugar as the printing environment. The successful fabrication of Csf\/SiC CMCs with complex geometries using EMEX indicates its potential as a promising supportless strategy for producing sophisticated CMC structures.},<br \/>\r\nkeywords = {Additive Manufacturing},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1054','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_abstract\" id=\"tp_abstract_1054\" style=\"display:none;\"><div class=\"tp_abstract_entry\">Material extrusion (MEX) 3D printing, while effective for many applications, faces challenges in fabricating arch shapes and suspended structures. This study advances MEX technology by drawing inspiration from ancient bridge construction techniques like the Zhaozhou Bridge, using an innovative embedded material extrusion (EMEX) method that eliminates the need for additional support structures in fabricating complex short carbon fiber reinforced SiC ceramic matrix composites (Csf\/SiC CMCs). Utilizing solid powders as a supporting medium, EMEX enables the creation of intricate arch shapes and suspension structures, overcoming limitations associated with conventional MEX. The impact of supporting media (SiC powders and sugar) on the microstructure and mechanical properties of the composites was demonstrated. Residual SiC powders caused uneven material distribution, while residual sugar led to cracking. The presence of residual powders also influenced the shrinkage behavior and bending strength of the Csf\/SiC CMCs, with a notable decrease observed when transitioning from air to SiC powders and then to sugar as the printing environment. The successful fabrication of Csf\/SiC CMCs with complex geometries using EMEX indicates its potential as a promising supportless strategy for producing sophisticated CMC structures.<\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1054','tp_abstract')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1054\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105004352294&amp;doi=10.1111%2fjace.20644&amp;partnerID=40&amp;md5=1118badf05310dcb65bf4ad0c3f26423\" title=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105004352294&amp;doi=10.1111[...]\" target=\"_blank\">https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-105004352294&amp;doi=10.1111[...]<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1111\/jace.20644\" title=\"Follow DOI:10.1111\/jace.20644\" target=\"_blank\">doi:10.1111\/jace.20644<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1054','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">G. Tameni; D. Lago; H. Ka\u0148kov\u00e1; L. Bu\u0148ov\u00e1; J. Kraxner; D. Galusek; D. M. Dawson; S. E. Ashbrook; E. Bernardo<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1053','tp_links')\" style=\"cursor:pointer;\">Alkaline attack of boro-alumino-silicate glass: New insights of the molecular mechanism of cold consolidation and new applications<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">Open Ceramics, <\/span><span class=\"tp_pub_additional_volume\">vol. 21, <\/span><span class=\"tp_pub_additional_year\">2025<\/span><span class=\"tp_pub_additional_note\">, (Cited by: 0; All Open Access, Gold Open Access)<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_resource_link\"><a id=\"tp_links_sh_1053\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1053','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1053\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1053','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><a rel=\"nofollow\" href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?tgid=2\" title=\"Show all publications which have a relationship to this tag\">Materials for the environment<\/a><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1053\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{Tameni2025,<br \/>\r\ntitle = {Alkaline attack of boro-alumino-silicate glass: New insights of the molecular mechanism of cold consolidation and new applications},<br \/>\r\nauthor = {G. Tameni and D. Lago and H. Ka\u0148kov\u00e1 and L. Bu\u0148ov\u00e1 and J. Kraxner and D. Galusek and D. M. Dawson and S. E. Ashbrook and E. Bernardo},<br \/>\r\nurl = {https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-85213004207&doi=10.1016%2fj.oceram.2024.100726&partnerID=40&md5=00a43152438bfcaacfcd8003f6f709c4},<br \/>\r\ndoi = {10.1016\/j.oceram.2024.100726},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-01-01},<br \/>\r\nurldate = {2025-01-01},<br \/>\r\njournal = {Open Ceramics},<br \/>\r\nvolume = {21},<br \/>\r\nnote = {Cited by: 0; All Open Access, Gold Open Access},<br \/>\r\nkeywords = {Materials for the environment},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1053','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1053\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-85213004207&amp;doi=10.1016%2fj.oceram.2024.100726&amp;partnerID=40&amp;md5=00a43152438bfcaacfcd8003f6f709c4\" title=\"https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-85213004207&amp;doi=10.1016%[...]\" target=\"_blank\">https:\/\/www.scopus.com\/inward\/record.uri?eid=2-s2.0-85213004207&amp;doi=10.1016%[...]<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/10.1016\/j.oceram.2024.100726\" title=\"Follow DOI:10.1016\/j.oceram.2024.100726\" target=\"_blank\">doi:10.1016\/j.oceram.2024.100726<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1053','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">V. Diamanti; H. Elsayed; E. Bernardo<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1049','tp_links')\" style=\"cursor:pointer;\">3D-printed porous mullite lattice structures by hybrid direct ink writing of silicone suspension-emulsions<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">Journal of the American Ceramic Society, <\/span><span class=\"tp_pub_additional_volume\">vol. 108, <\/span><span class=\"tp_pub_additional_number\">no. 4, <\/span><span class=\"tp_pub_additional_pages\">pp. e20290, <\/span><span class=\"tp_pub_additional_year\">2025<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_abstract_link\"><a id=\"tp_abstract_sh_1049\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1049','tp_abstract')\" title=\"Show abstract\" style=\"cursor:pointer;\">Abstract<\/a><\/span> | <span class=\"tp_resource_link\"><a id=\"tp_links_sh_1049\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1049','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1049\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1049','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><a rel=\"nofollow\" href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?tgid=4\" title=\"Show all publications which have a relationship to this tag\">Additive Manufacturing<\/a><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1049\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{https:\/\/doi.org\/10.1111\/jace.20290,<br \/>\r\ntitle = {3D-printed porous mullite lattice structures by hybrid direct ink writing of silicone suspension-emulsions},<br \/>\r\nauthor = {V. Diamanti and H. Elsayed and E. Bernardo},<br \/>\r\nurl = {https:\/\/ceramics.onlinelibrary.wiley.com\/doi\/abs\/10.1111\/jace.20290},<br \/>\r\ndoi = {https:\/\/doi.org\/10.1111\/jace.20290},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-01-01},<br \/>\r\nurldate = {2025-01-01},<br \/>\r\njournal = {Journal of the American Ceramic Society},<br \/>\r\nvolume = {108},<br \/>\r\nnumber = {4},<br \/>\r\npages = {e20290},<br \/>\r\nabstract = {Abstract Silicones added with nano-sized alumina particles are already known as starting materials for phase pure mullite ceramics, synthesized at quite low temperatures. The present paper deals with a fundamental upgrade, based on a novel suspension-emulsion concept, for the easy fabrication of highly porous lattice structures. An aqueous suspension of \u03b3-Al2O3 nanoparticles in water was first distributed as emulsion within an \u201coily phase,\u201d consisting of a silicone\/acrylates blend, with the help of a surfactant. The mixture was later employed to fabricate highly porous structures (\u223c80% open porosity), by direct ink writing, that is, an extrusion-based 3D printing technology requiring specific rheological behavior of the feedstock ink. Finally, the structures were rapidly stabilized through a photo-polymerization step (configuring a form of \u201chybrid\u201d direct ink writing). The presence of water also allowed the application of a freeze-curing procedure, for a second series of samples. The abundant water vapor release from the starting mixtures, upon firing (up to 1300\u00b0C), led to structures with enhanced pore interconnectivity. The freeze-curing protocol proved beneficial to the homogeneity of pore distribution and to the achievement of high strength-to-density ratios.},<br \/>\r\nkeywords = {Additive Manufacturing},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1049','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_abstract\" id=\"tp_abstract_1049\" style=\"display:none;\"><div class=\"tp_abstract_entry\">Abstract Silicones added with nano-sized alumina particles are already known as starting materials for phase pure mullite ceramics, synthesized at quite low temperatures. The present paper deals with a fundamental upgrade, based on a novel suspension-emulsion concept, for the easy fabrication of highly porous lattice structures. An aqueous suspension of \u03b3-Al2O3 nanoparticles in water was first distributed as emulsion within an \u201coily phase,\u201d consisting of a silicone\/acrylates blend, with the help of a surfactant. The mixture was later employed to fabricate highly porous structures (\u223c80% open porosity), by direct ink writing, that is, an extrusion-based 3D printing technology requiring specific rheological behavior of the feedstock ink. Finally, the structures were rapidly stabilized through a photo-polymerization step (configuring a form of \u201chybrid\u201d direct ink writing). The presence of water also allowed the application of a freeze-curing procedure, for a second series of samples. The abundant water vapor release from the starting mixtures, upon firing (up to 1300\u00b0C), led to structures with enhanced pore interconnectivity. The freeze-curing protocol proved beneficial to the homogeneity of pore distribution and to the achievement of high strength-to-density ratios.<\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1049','tp_abstract')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1049\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/ceramics.onlinelibrary.wiley.com\/doi\/abs\/10.1111\/jace.20290\" title=\"https:\/\/ceramics.onlinelibrary.wiley.com\/doi\/abs\/10.1111\/jace.20290\" target=\"_blank\">https:\/\/ceramics.onlinelibrary.wiley.com\/doi\/abs\/10.1111\/jace.20290<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/https:\/\/doi.org\/10.1111\/jace.20290\" title=\"Follow DOI:https:\/\/doi.org\/10.1111\/jace.20290\" target=\"_blank\">doi:https:\/\/doi.org\/10.1111\/jace.20290<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1049','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">L. Lattanzi; A. Conte; A. Sin; J. M. Garcia; C. A. Randall; P. Colombo<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1047','tp_links')\" style=\"cursor:pointer;\">Cold sintering of geopolymer powders<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">Journal of the American Ceramic Society, <\/span><span class=\"tp_pub_additional_volume\">vol. 108, <\/span><span class=\"tp_pub_additional_number\">no. 4, <\/span><span class=\"tp_pub_additional_pages\">pp. e20331, <\/span><span class=\"tp_pub_additional_year\">2025<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_abstract_link\"><a id=\"tp_abstract_sh_1047\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1047','tp_abstract')\" title=\"Show abstract\" style=\"cursor:pointer;\">Abstract<\/a><\/span> | <span class=\"tp_resource_link\"><a id=\"tp_links_sh_1047\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1047','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1047\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1047','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><a rel=\"nofollow\" href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?tgid=2\" title=\"Show all publications which have a relationship to this tag\">Materials for the environment<\/a><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1047\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{https:\/\/doi.org\/10.1111\/jace.20331,<br \/>\r\ntitle = {Cold sintering of geopolymer powders},<br \/>\r\nauthor = {L. Lattanzi and A. Conte and A. Sin and J. M. Garcia and C. A. Randall and P. Colombo},<br \/>\r\nurl = {https:\/\/ceramics.onlinelibrary.wiley.com\/doi\/abs\/10.1111\/jace.20331},<br \/>\r\ndoi = {https:\/\/doi.org\/10.1111\/jace.20331},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-01-01},<br \/>\r\nurldate = {2025-01-01},<br \/>\r\njournal = {Journal of the American Ceramic Society},<br \/>\r\nvolume = {108},<br \/>\r\nnumber = {4},<br \/>\r\npages = {e20331},<br \/>\r\nabstract = {Abstract Geopolymers (GP) represent a promising class of inorganic materials with diverse applications due to their properties, including high temperature resistance and strong interfacial bonding ability. They are produced through alkali activation of aluminosilicate sources, such as metakaolin or fly ashes. Despite their attractive characteristics, conventional casting methods for GP production often result in prolonged curing times and inferior mechanical properties to OPC or other benchmark materials. In this study, we investigated the feasibility of rapidly densifying GP matrices using cold sintering technology (CSP), a novel approach previously employed in ceramic systems. Through CSP, it was possible to obtain a dense body starting from GP sodium-based powder with optimal moisture content (10% wt.) under mild isostatic pressure (70 MPa) and moderate temperature (150\u00b0C) conditions, with a short duration process (10 min). The resulting products exhibited chemical stability (high resistance to boiling test), high density (&gt; 90% theoretical density) and good mechanical properties (flexural strength equal to 30 MPa and compressive strength over 200 MPa) without requiring additional thermal treatments. SEM, EDS and NMR studies indicated that the predominant densification mechanism was likely to be homogeneous dissolutions and precipitation of the material, consistent with pressure solution creep. Dilatometric tests were performed to track the densification process in real-time and to determine the activation energy, which revealed an exceptionally low value for the system (21.7 kJ\/mol). Our results demonstrate the potential of CSP as a rapid and efficient method for producing high-quality GP-based components, paving the way for their broader application in various fields.},<br \/>\r\nkeywords = {Materials for the environment},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1047','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_abstract\" id=\"tp_abstract_1047\" style=\"display:none;\"><div class=\"tp_abstract_entry\">Abstract Geopolymers (GP) represent a promising class of inorganic materials with diverse applications due to their properties, including high temperature resistance and strong interfacial bonding ability. They are produced through alkali activation of aluminosilicate sources, such as metakaolin or fly ashes. Despite their attractive characteristics, conventional casting methods for GP production often result in prolonged curing times and inferior mechanical properties to OPC or other benchmark materials. In this study, we investigated the feasibility of rapidly densifying GP matrices using cold sintering technology (CSP), a novel approach previously employed in ceramic systems. Through CSP, it was possible to obtain a dense body starting from GP sodium-based powder with optimal moisture content (10% wt.) under mild isostatic pressure (70 MPa) and moderate temperature (150\u00b0C) conditions, with a short duration process (10 min). The resulting products exhibited chemical stability (high resistance to boiling test), high density (&gt; 90% theoretical density) and good mechanical properties (flexural strength equal to 30 MPa and compressive strength over 200 MPa) without requiring additional thermal treatments. SEM, EDS and NMR studies indicated that the predominant densification mechanism was likely to be homogeneous dissolutions and precipitation of the material, consistent with pressure solution creep. Dilatometric tests were performed to track the densification process in real-time and to determine the activation energy, which revealed an exceptionally low value for the system (21.7 kJ\/mol). Our results demonstrate the potential of CSP as a rapid and efficient method for producing high-quality GP-based components, paving the way for their broader application in various fields.<\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1047','tp_abstract')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1047\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/ceramics.onlinelibrary.wiley.com\/doi\/abs\/10.1111\/jace.20331\" title=\"https:\/\/ceramics.onlinelibrary.wiley.com\/doi\/abs\/10.1111\/jace.20331\" target=\"_blank\">https:\/\/ceramics.onlinelibrary.wiley.com\/doi\/abs\/10.1111\/jace.20331<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/https:\/\/doi.org\/10.1111\/jace.20331\" title=\"Follow DOI:https:\/\/doi.org\/10.1111\/jace.20331\" target=\"_blank\">doi:https:\/\/doi.org\/10.1111\/jace.20331<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1047','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><div class=\"tp_publication tp_publication_article\"><div class=\"tp_pub_info\"><p class=\"tp_pub_author\">S. Bhandari; T. Heim; E. De Bona; V. M. Sglavo; W. Rheinheimer; M. Biesuz; G. Franchin<\/p><p class=\"tp_pub_title\"><a class=\"tp_title_link\" onclick=\"teachpress_pub_showhide('1046','tp_links')\" style=\"cursor:pointer;\">Rapid processing of Al2O3 ceramics by fused filament fabrication and ultrafast high-temperature debinding and sintering<\/a> <span class=\"tp_pub_type tp_  article\">Journal Article<\/span> <\/p><p class=\"tp_pub_additional\"><span class=\"tp_pub_additional_in\">In: <\/span><span class=\"tp_pub_additional_journal\">Journal of Alloys and Compounds, <\/span><span class=\"tp_pub_additional_pages\">pp. 178812, <\/span><span class=\"tp_pub_additional_year\">2025<\/span>, <span class=\"tp_pub_additional_issn\">ISSN: 0925-8388<\/span>.<\/p><p class=\"tp_pub_menu\"><span class=\"tp_abstract_link\"><a id=\"tp_abstract_sh_1046\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1046','tp_abstract')\" title=\"Show abstract\" style=\"cursor:pointer;\">Abstract<\/a><\/span> | <span class=\"tp_resource_link\"><a id=\"tp_links_sh_1046\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1046','tp_links')\" title=\"Show links and resources\" style=\"cursor:pointer;\">Links<\/a><\/span> | <span class=\"tp_bibtex_link\"><a id=\"tp_bibtex_sh_1046\" class=\"tp_show\" onclick=\"teachpress_pub_showhide('1046','tp_bibtex')\" title=\"Show BibTeX entry\" style=\"cursor:pointer;\">BibTeX<\/a><\/span> | <span class=\"tp_pub_tags_label\">Tags: <\/span><a rel=\"nofollow\" href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?tgid=4\" title=\"Show all publications which have a relationship to this tag\">Additive Manufacturing<\/a><\/p><div class=\"tp_bibtex\" id=\"tp_bibtex_1046\" style=\"display:none;\"><div class=\"tp_bibtex_entry\"><pre>@article{BHANDARI2025178812,<br \/>\r\ntitle = {Rapid processing of Al2O3 ceramics by fused filament fabrication and ultrafast high-temperature debinding and sintering},<br \/>\r\nauthor = {S. Bhandari and T. Heim and E. De Bona and V. M. Sglavo and W. Rheinheimer and M. Biesuz and G. Franchin},<br \/>\r\nurl = {https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0925838825003706},<br \/>\r\ndoi = {https:\/\/doi.org\/10.1016\/j.jallcom.2025.178812},<br \/>\r\nissn = {0925-8388},<br \/>\r\nyear  = {2025},<br \/>\r\ndate = {2025-01-01},<br \/>\r\nurldate = {2025-01-01},<br \/>\r\njournal = {Journal of Alloys and Compounds},<br \/>\r\npages = {178812},<br \/>\r\nabstract = {Fused filament fabrication (FFF) is widely used for ceramic prototyping due to its compatibility with low-cost, custom-made printers designed for polymers. However, the bottleneck of the whole process lies in the slow thermal debinding and sintering that are usually employed to obtain dense and defect-free ceramics. In this study, a filament with ~79wt.% alumina powder in a thermoplastic binder was used to print gyroid structures with nozzle diameters of 0.4, 0.6, and 0.8mm. The components were at first partially solvent-debinded (acetone) and thereafter thermally debinded and consolidated in a single step (60s) by ultra-fast high-temperature sintering. Samples printed with a 0.4mm nozzle diameter resisted the ultra-rapid heating (UHS) and cooling rates (~103K\/min), whereas some defects appear when considering larger nozzle size. On the other hand, all samples either cracked or shattered into pieces when fast-fired in air, highlighting the relevance of the thermal debinding atmosphere. Moreover, the densification upon UHS was largely improved compared to conventional sintering while retaining a finer grain size. This work provides a guideline for the rapid debinding and firing of fused filament fabricated ceramics and could be easily extended to other ceramic systems.},<br \/>\r\nkeywords = {Additive Manufacturing},<br \/>\r\npubstate = {published},<br \/>\r\ntppubtype = {article}<br \/>\r\n}<br \/>\r\n<\/pre><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1046','tp_bibtex')\">Close<\/a><\/p><\/div><div class=\"tp_abstract\" id=\"tp_abstract_1046\" style=\"display:none;\"><div class=\"tp_abstract_entry\">Fused filament fabrication (FFF) is widely used for ceramic prototyping due to its compatibility with low-cost, custom-made printers designed for polymers. However, the bottleneck of the whole process lies in the slow thermal debinding and sintering that are usually employed to obtain dense and defect-free ceramics. In this study, a filament with ~79wt.% alumina powder in a thermoplastic binder was used to print gyroid structures with nozzle diameters of 0.4, 0.6, and 0.8mm. The components were at first partially solvent-debinded (acetone) and thereafter thermally debinded and consolidated in a single step (60s) by ultra-fast high-temperature sintering. Samples printed with a 0.4mm nozzle diameter resisted the ultra-rapid heating (UHS) and cooling rates (~103K\/min), whereas some defects appear when considering larger nozzle size. On the other hand, all samples either cracked or shattered into pieces when fast-fired in air, highlighting the relevance of the thermal debinding atmosphere. Moreover, the densification upon UHS was largely improved compared to conventional sintering while retaining a finer grain size. This work provides a guideline for the rapid debinding and firing of fused filament fabricated ceramics and could be easily extended to other ceramic systems.<\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1046','tp_abstract')\">Close<\/a><\/p><\/div><div class=\"tp_links\" id=\"tp_links_1046\" style=\"display:none;\"><div class=\"tp_links_entry\"><ul class=\"tp_pub_list\"><li><i class=\"fas fa-globe\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0925838825003706\" title=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0925838825003706\" target=\"_blank\">https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0925838825003706<\/a><\/li><li><i class=\"ai ai-doi\"><\/i><a class=\"tp_pub_list\" href=\"https:\/\/dx.doi.org\/https:\/\/doi.org\/10.1016\/j.jallcom.2025.178812\" title=\"Follow DOI:https:\/\/doi.org\/10.1016\/j.jallcom.2025.178812\" target=\"_blank\">doi:https:\/\/doi.org\/10.1016\/j.jallcom.2025.178812<\/a><\/li><\/ul><\/div><p class=\"tp_close_menu\"><a class=\"tp_close\" onclick=\"teachpress_pub_showhide('1046','tp_links')\">Close<\/a><\/p><\/div><\/div><\/div><\/div><div class=\"tablenav\"><div class=\"tablenav-pages\"><span class=\"displaying-num\">590 entries<\/span> <a class=\"page-numbers button disabled\">&laquo;<\/a> <a class=\"page-numbers button disabled\">&lsaquo;<\/a> 1 of 30 <a href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?limit=2&amp;tgid=&amp;yr=&amp;type=&amp;usr=&amp;auth=&amp;tsr=\" title=\"next page\" class=\"page-numbers button\">&rsaquo;<\/a> <a href=\"https:\/\/research.dii.unipd.it\/ceramglass\/publications\/?limit=30&amp;tgid=&amp;yr=&amp;type=&amp;usr=&amp;auth=&amp;tsr=\" title=\"last page\" class=\"page-numbers button\">&raquo;<\/a> <\/div><\/div><\/div>\n","protected":false},"excerpt":{"rendered":"","protected":false},"author":4,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"folder":[],"class_list":["post-2662","page","type-page","status-publish","hentry"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v28.3 - 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