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A strain energy based failure criterion for nonlinear analysis of composite laminates subjected to triaxial loading

机译:基于应变能的三轴载荷复合材料非线性分析的破坏准则

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摘要

A new strain energy based failure model is developed for fibrous composite laminates under multi-axial loadings, taking into account the effect of hydrostatic stress. A failure mode dependent exponential stiffness reduction model is used to predict material response beyond the initial failure. Predicted mechanical responses and failure envelopes are presented for the 12 benchmark test cases of Part A of the Second World Wide Failure Exercise. The cases cover a wide variety of isotropic, unidirectional and multidirectional laminates under combined in-plane, out-of-plane and triaxial loadings. Both stress-strain curves and the complete failure envelopes were successfully predicted. In some instances, the failure envelopes were open. The predictions together with suitable adjustment of certain parameters are compared with test data in Part B of the Second World Wide Failure Exercise, to be published in Journal of Composite Materials.
机译:考虑到静水应力的影响,针对多轴载荷下的纤维复合材料层压板,开发了一种基于应变能的新破坏模型。取决于失效模式的指数刚度减小模型用于预测超出初始失效的材料响应。给出了第二次世界范围失效练习A部分的12个基准测试用例的预测机械响应和失效范围。箱体在面内,面外和三轴载荷的共同作用下覆盖了各种各样的各向同性,单向和多向层压板。成功地预测了应力-应变曲线和完整的破坏包络线。在某些情况下,故障包封是打开的。这些预测以及某些参数的适当调整与第二次世界范围失效试验B部分的试验数据进行了比较,该试验将在《复合材料杂志》上发表。

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