Search Results for - Narrowed by: İzmir Institute of Technology. Mechanical Engineering. - Composite materials -- Fatigue. SirsiDynix Enterprise https://catalog.iyte.edu.tr/client/en_US/default/default/qf$003dAUTHOR$002509Author$002509$0025C4$0025B0zmir$002bInstitute$002bof$002bTechnology.$002bMechanical$002bEngineering.$002509$0025C4$0025B0zmir$002bInstitute$002bof$002bTechnology.$002bMechanical$002bEngineering.$0026qf$003dSUBJECT$002509Subject$002509Composite$002bmaterials$002b--$002bFatigue.$002509Composite$002bmaterials$002b--$002bFatigue.$0026ps$003d300$0026isd$003dtrue? 2024-06-20T13:17:50Z Investigation of mechanical properties and fatigue performance of carbon-glass fiber reinforced epxy hybrid composites ent://SD_ILS/0/SD_ILS:2140685 2024-06-20T13:17:50Z 2024-06-20T13:17:50Z by&#160;Sandallı, Hatice, author.<br/><a href="https://hdl.handle.net/11147/9627">Access to Electronic Versiyon.</a><br/>Format:&#160;Manuscript<br/> Optimum design of carbon/epoxy composite laminates for maximum fatigue life using multiaxial prediction models ent://SD_ILS/0/SD_ILS:2023889 2024-06-20T13:17:50Z 2024-06-20T13:17:50Z by&#160;Deveci, Hamza Arda, author<br/><a href="http://hdl.handle.net/11147/6890">Access to Electronic Versiyon.</a><br/>Format:&#160;Manuscript<br/>