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Interfiber/interlaminar failure of composites under multi-axial states of stress

机译:复合材料在多轴应力状态下的纤维间/层间破坏

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摘要

Unidirectional and textile carbon/epoxy composites were characterized under multi-axial states of stress. In-plane and through-thickness tensile, compressive, and shear tests were conducted at various orientations with the principal material axes. The stress-strain behavior, failure modes, and strengths were recorded. Results were compared with three types of failure criteria in three dimensions, limit criteria (maximum stress), fully interactive criteria (Tsai-Hill, Tsai-Wu), and failure mode based and partially interactive criteria (Hashin-Rotem, Sun, NU). The latter, a new interfiber/interlaminar failure theory developed by the authors, was found to be in excellent agreement with experimental results, especially in cases involving interfiber/interlaminar shear and compression. Of special note was the failure mode in transverse compression, where the failure plane was not predictable by conventional composite failure theories. The orientation of the failure plane was more in line with predictions by a Mohr-Coulomb failure model.
机译:在多轴应力状态下表征了单向和纺织碳/环氧复合材料。在主材料轴的各种方向上进行了平面和厚度方向的拉伸,压缩和剪切测试。记录应力-应变行为,破坏模式和强度。在三个维度上将结果与三种类型的失效标准进行了比较:极限标准(最大应力),完全互动的标准(Tsai-Hill,Tsai-Wu)以及基于失效模式和部分互动的标准(Hashin-Rotem,Sun,NU) 。后者是作者开发的一种新的纤维间/层间破坏理论,与实验结果非常吻合,特别是在涉及纤维间/层间剪切和压缩的情况下。特别值得注意的是横向压缩中的破坏模式,其中破坏面是传统复合破坏理论无法预测的。破坏平面的方向更符合Mohr-Coulomb破坏模型的预测。

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