首页> 外文期刊>Journal of testing and evaluation >Interlaminar Shear and Electrical Resistance Responses of Woven-Carbon-Fiber-Reinforced-Polymer Composite Laminates at Cryogenic Temperatures From Cyclic Short Beam Shear Tests
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Interlaminar Shear and Electrical Resistance Responses of Woven-Carbon-Fiber-Reinforced-Polymer Composite Laminates at Cryogenic Temperatures From Cyclic Short Beam Shear Tests

机译:循环短梁剪切试验在低温下编织碳纤维增强聚合物复合层压板的层间剪切和电阻响应

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This paper studies the interlaminar shear and electrical resistance responses of woven-carbon-fiber-reinforced-polymer (CFRP) composite laminates subjected to fatigue loading at cryogenic temperatures. Fatigue tests were conducted on the composite specimens at room temperature and liquid-hydrogen temperature (20 K) using the short beam shear method, and measurements of the specimen electrical resistance were made during the tests. Also, the tested specimens were examined by microscopy to observe the damage and the failure mode. In addition, a finite-element analysis was performed to examine the stress distributions in the short beam shear specimens. The dependence of the interlaminar shear fatigue performance of the woven-CFRP laminates on the temperature was discussed, and the applicability of the electrical resistance method for assessing the fatigue failure was demonstrated.
机译:本文研究了碳纤维增强聚合物(CFRP)复合层压板在低温下承受疲劳载荷时的层间剪切和电阻响应。使用短梁剪切法在室温和液氢温度(20 K)下对复合材料样品进行疲劳测试,并在测试过程中对样品电阻进行测量。另外,通过显微镜检查测试样品以观察损坏和破坏模式。此外,进行了有限元分析以检查短梁剪切试样中的应力分布。讨论了碳纤维复合材料层压板的层间剪切疲劳性能对温度的依赖性,并证明了电阻法评估疲劳破坏的适用性。

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