{"id":215,"date":"2018-03-23T09:59:38","date_gmt":"2018-03-23T08:59:38","guid":{"rendered":"http:\/\/templategdr.dii.unipd.it\/?page_id=215"},"modified":"2022-01-24T09:59:36","modified_gmt":"2022-01-24T08:59:36","slug":"research-topics","status":"publish","type":"page","link":"https:\/\/research.dii.unipd.it\/costrmac\/research-topics\/","title":{"rendered":"Research Topics"},"content":{"rendered":"<div data-label=\"Mechanical Components\" data-id=\"content--2\" data-export-id=\"content-7\" data-category=\"content\" class=\"content-7 content-section content-section-spacing\" id=\"mechanical-components\"><div class=\"gridContainer\"> <div class=\"row middle-sm\"><div class=\"col-sm-6 space-bottom-xs\" data-type=\"column\"> <h2 class=\"\" style=\"text-align: left\"><span>Fatigue design of mechanical components and structures<\/span><\/h2> <p class=\"\" style=\"text-align: justify\"><span>\u2022 Development of theoretical and experimental methods for the structural integrity assessment of mechanical components in service.<br>\u2022 In-service loads acquisition and fatigue testing on components.<\/span>\r\n<br>\u2022 Advanced methods for fatigue strength assessment based on non-conventional extensions of Fracture Mechanics.<\/p> <\/div> <div class=\"col-sm-6\" data-type=\"column\"> <img decoding=\"async\" class=\"shadow-large\" src=\"https:\/\/research.dii.unipd.it\/costrmac\/wp-content\/uploads\/sites\/20\/2021\/03\/IMG_2437-scaled.jpg\" title=\"IMG_2437\" alt=\"\"><\/div> <\/div><\/div> <\/div><div data-label=\"Welded Structures\" data-id=\"content--6\" data-export-id=\"content-8\" data-category=\"content\" class=\"content-8 content-section content-section-spacing\" id=\"welded-structures\"><div class=\"gridContainer\"> <div class=\"row middle-sm\"><div class=\"col-sm-6 space-bottom-xs space-top-xs\" data-type=\"column\"> <img decoding=\"async\" class=\"shadow-large\" src=\"https:\/\/research.dii.unipd.it\/costrmac\/wp-content\/uploads\/sites\/20\/2021\/03\/IMG_2483-scaled.jpg\" title=\"IMG_2483\" alt=\"\"><\/div> <div class=\"col-sm-6\" data-type=\"column\"><h2 class=\"\">Fatigue design of welded structures&nbsp;<\/h2> <p class=\"\">\u2022 Development of theoretical and experimental methods for the structural integrity assessment of welded joints in service.\r\n<br>\u2022 Static and fatigue testing of welded joints and components.<br>\u2022 Development of dedicated engineering software tools for the structural durability assessment of welded structures.<\/p> <\/div> <\/div><\/div> <\/div><div data-label=\"Materials Characterization\" data-id=\"content--7\" data-export-id=\"content-7\" data-category=\"content\" class=\"content-7 content-section content-section-spacing\" id=\"materials-characterization\"><div class=\"gridContainer\"> <div class=\"row middle-sm\"><div class=\"col-sm-6 space-bottom-xs\" data-type=\"column\"> <h2 class=\"\">Materials characterization for structural integrity<\/h2> <p class=\"\">\u2022 Static and fatigue testing of materials.<br>\u2022 Derivation of strain-life \/ stress-life curves.<br>\u2022 Plain strain fracture toughness.\r\n<br>\u2022 Thermography assessment.<br>\u2022 Crack initiation detection and monitoring of crack propagation.\r\n<br>\u2022 Assessment of fatigue thresholds.<br>\u2022 Derivation of Paris curves.<br>\u2022 R-Curve Fracture Mechanics testing.<br><br><br><br><\/p> <\/div> <div class=\"col-sm-6\" data-type=\"column\"> <img decoding=\"async\" class=\"shadow-large\" src=\"https:\/\/research.dii.unipd.it\/costrmac\/wp-content\/uploads\/sites\/20\/2021\/03\/IMG_2469-scaled.jpg\" title=\"IMG_2469\" alt=\"\"><\/div> <\/div><\/div> <\/div><div data-label=\"Energy Methods\" data-id=\"content--1\" data-export-id=\"content-8\" data-category=\"content\" class=\"content-8 content-section content-section-spacing\" id=\"energy-methods\"><div class=\"gridContainer\"> <div class=\"row middle-sm\"><div class=\"col-sm-6 space-bottom-xs space-top-xs\" data-type=\"column\"> <img decoding=\"async\" class=\"shadow-large\" src=\"https:\/\/research.dii.unipd.it\/costrmac\/wp-content\/uploads\/sites\/20\/2021\/11\/Cricca_grafico_SITO.jpg\" title=\"Cricca_grafico_SITO\" alt=\"\"><\/div> <div class=\"col-sm-6\" data-type=\"column\"><h2 class=\"\" style=\"text-align: left\"><span>Development of energy-based methods for fatigue lifetime estimation of mechanical components<\/span><\/h2> <p class=\"\" style=\"text-align: justify\">\u2022 Development of theoretical and experimental methods for the evaluation of the heat generated by materials under fatigue loading, in order to assess the structural integrity of components in service.\r\n<br>\u2022 Uni-axial as well as multi-axial characterization of materials in terms of heat-dissipated energy density.<\/p> <\/div> <\/div><\/div> <\/div><div data-label=\"Automotive\" data-id=\"content--3\" data-export-id=\"content-7\" data-category=\"content\" class=\"content-7 content-section content-section-spacing\" id=\"automotive\"><div class=\"gridContainer\"> <div class=\"row middle-sm\"><div class=\"col-sm-6 space-bottom-xs\" data-type=\"column\"> <h2 class=\"\" style=\"text-align: left\"><span>On-road loads acquisition and bench testing of vehicles<\/span><\/h2> <p class=\"\" style=\"text-align: justify\">\u2022 On-road acquisition of structural load spectra.\r\n<br>\u2022 Development of multi-component dynamometric sensors.\r\n<br>\u2022 Development of multi-axial variable amplitude fatigue testing benches.\r\n<br>\u2022 Development of standardized fatigue testing methods.<\/p> <\/div> <div class=\"col-sm-6\" data-type=\"column\"> <img decoding=\"async\" class=\"shadow-large\" src=\"https:\/\/research.dii.unipd.it\/costrmac\/wp-content\/uploads\/sites\/20\/2021\/03\/IMG_2444-scaled.jpg\" title=\"IMG_2444\" alt=\"\"><\/div> <\/div><\/div> <\/div><div data-label=\"Additive\" data-id=\"content--8\" data-export-id=\"content-8\" data-category=\"content\" class=\"content-8 content-section content-section-spacing\" id=\"additive\"><div class=\"gridContainer\"> <div class=\"row middle-sm\"><div class=\"col-sm-6 space-bottom-xs space-top-xs\" data-type=\"column\"> <img decoding=\"async\" class=\"shadow-large\" src=\"https:\/\/research.dii.unipd.it\/costrmac\/wp-content\/uploads\/sites\/20\/2021\/11\/AL2B05.jpg\" title=\"AL2B05\" alt=\"\"><\/div> <div class=\"col-sm-6\" data-type=\"column\"><h2 class=\"\">Structural integrity of additively manufactured metals and polymers<\/h2> <p class=\"\">\u2022 Tensile and fatigue testing on additively manufactured metals and polymers.<br>\r\n\u2022 Development of fracture mechanics approaches to deal with the influence of surfaces roughness and defects on the fatigue strength of additively manufactured  metals.<br>\r\n\u2022 Fatigue-based topology optimisation of components produced by additive manufacturing.<br>\r\n\u2022 Characterisation and modelling of lattice structures under static and cyclic loading conditions.<\/p> <\/div> <\/div><\/div> <\/div><div data-label=\"Sports and Rehabilitation\" data-id=\"content--5\" data-export-id=\"content-7\" data-category=\"content\" class=\"content-7 content-section content-section-spacing\" id=\"sports-and-rehabilitation\"><div class=\"gridContainer\"> <div class=\"row middle-sm\"><div class=\"col-sm-6 space-bottom-xs\" data-type=\"column\"> <h2 class=\"\"><span>Study and development of\r\n<\/span><br><span>bio-mechanical structures for Sports and Rehabilitation<\/span><\/h2> <p class=\"\">\u2022 Functional and structural evaluation of sports equipment.\r\n<br>\u2022 Functional and structural evaluation of safety and protection systems.\r\n<br>\u2022 Functionality, integrity and usability characterization of&nbsp;auxiliary equipment for people and athletes&nbsp;with disabilities.\r\n<br>\u2022 Development of detection methods using wearable sensors.\r\n<br>\u2022 Development of sensored components for the dynamic characterization of wearable protection equipment.\r\n<br>\u2022 Development of active hand and foot&nbsp;prostheses. Study of&nbsp;exoskeletons for rehabilitation and&nbsp;deambulation.<\/p> <\/div> <div class=\"col-sm-6\" data-type=\"column\"> <img decoding=\"async\" class=\"shadow-large\" src=\"https:\/\/research.dii.unipd.it\/costrmac\/wp-content\/uploads\/sites\/20\/2021\/03\/IMG_2514-scaled.jpg\" title=\"IMG_2514\" alt=\"\"><\/div> <\/div><\/div> <\/div><div data-label=\"Polymer Components\" data-id=\"content--4\" data-export-id=\"content-8\" data-category=\"content\" class=\"content-8 content-section content-section-spacing\" id=\"polymer-components\"><div class=\"gridContainer\"> <div class=\"row middle-sm\"><div class=\"col-sm-6 space-bottom-xs space-top-xs\" data-type=\"column\"> <img decoding=\"async\" class=\"shadow-large\" src=\"https:\/\/research.dii.unipd.it\/costrmac\/wp-content\/uploads\/sites\/20\/2021\/11\/Polymer.jpg\" title=\"Polymer\" alt=\"\"><\/div> <div class=\"col-sm-6\" data-type=\"column\"><h2 class=\"\"><span>Development of methods for the static and fatigue strength assessment of polymer components<\/span><\/h2> <p class=\"\">\u2022 Development of theoretical and experimental methods for the&nbsp;structural integrity assessment of polymer components in service.<br>\u2022 Materials characterization.<\/p> <\/div> <\/div><\/div> <\/div>","protected":false},"excerpt":{"rendered":"<p>Fatigue design of mechanical components and structures \u2022 Development of theoretical and experimental methods for the structural integrity assessment of mechanical components in service.\u2022 In-service loads acquisition and fatigue testing on components. \u2022 Advanced methods for fatigue strength assessment based on non-conventional extensions of Fracture Mechanics. Fatigue design of welded structures&nbsp; \u2022 Development of theoretical&hellip; <br \/> <a class=\"read-more\" href=\"https:\/\/research.dii.unipd.it\/costrmac\/research-topics\/\">Leggi tutto<\/a><\/p>\n","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"pro\/page-templates\/full-width-page.php","meta":{"footnotes":""},"folder":[],"class_list":["post-215","page","type-page","status-publish","hentry"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.7 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Research Topics - COSTRMAC Research Group<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/research.dii.unipd.it\/costrmac\/research-topics\/\" \/>\n<meta property=\"og:locale\" content=\"it_IT\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Research Topics - COSTRMAC Research Group\" \/>\n<meta property=\"og:description\" content=\"Fatigue design of mechanical components and structures \u2022 Development of theoretical and experimental methods for the structural integrity assessment of mechanical components in service.\u2022 In-service loads acquisition and fatigue testing on components. \u2022 Advanced methods for fatigue strength assessment based on non-conventional extensions of Fracture Mechanics. 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