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Experimental study on effects of asymmetrical stacking sequence on carbon fiber/epoxy filament wound specimens in DCB, ENF, and MMB tests

机译:非对称堆叠序列对DCB,ENF和MMB检验中碳纤维/环氧树丝伤害标本的影响的实验研究

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摘要

This study focused on the delamination fracture behavior of asymmetrical stacking sequences of CFRP laminates subjected to different loading directions in double cantilever beam (DCB), end-notched flexure (ENF), and mixed-mode bending (MMB) tests. CFRP laminates with three different stacking sequences mimicking the winding angles of filament wound structures were considered. As the stacking sequences were asymmetrical, flipped and non-flipped specimens were tested to examine the effects on different test loading conditions. According to the results, each stacking sequence provided a different load?displacement response and fracture toughness. The flipped and non-flipped specimens did not appear to affect the fracture toughness in the DCB test. However, significant effects were observed in the ENF and MMB tests. Observations at the edges of the specimens indicated the dependency of the delamination behavior on the specimen stacking sequence. The delamination surfaces were further analyzed using a scanning electron microscope (SEM). SEM images revealed several delamination mechanisms that contributed to the load?displacement response and fracture toughness of the laminates.
机译:该研究专注于在双悬臂梁(DCB),端口弯曲(ENF)中经受不同负载方向的CFRP层压板的不对称堆叠序列的分层断裂行为,以及混合模式弯曲(MMB)测试。考虑了CFRP层压材料,其具有三种不同的堆叠序列模仿长丝伤口结构的缠绕角度。由于堆叠序列是不对称的,测试翻转和非翻转标本以检查对不同测试负载条件的影响。根据结果​​,每个堆叠序列提供不同的载荷响应和断裂韧性。翻转和非翻转标本似乎没有影响DCB测试中的断裂韧性。然而,在ENF和MMB测试中观察到显着效果。标本边缘的观察表明分层行为对样本堆叠序列的依赖性。使用扫描电子显微镜(SEM)进一步分析分层表面。 SEM图像揭示了几种有助于载荷的分层机制?层压材料的位移响应和断裂韧性。

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