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首页> 外文期刊>Journal of Composite Materials >Maturity of 3D failure criteria for fibre-reinforced composites: Comparison between theories and experiments: Part B of WWFE-II
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Maturity of 3D failure criteria for fibre-reinforced composites: Comparison between theories and experiments: Part B of WWFE-II

机译:纤维增强复合材料的3D失效标准成熟度:理论与实验之间的比较:WWFE-II的B部分

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This article draws to a conclusion the results from the co-ordinated study known as the Second World-Wide Failure Exercise (WWFE-II). It contains an objective assessment of the performance of 12 leading failure criteria for predicting the response of fibre-reinforced polymer composites when subjected to 3D states of stress. Twelve challenging test problems (Test Cases) were defined by the organisers of WWFE-II, encompassing a range of materials (polymer, glass/epoxy, carbon/epoxy), lay-ups (unidirectional, angle ply, cross ply and quasi-isotropic laminates) and various 3D stress states (various triaxial strength envelopes, through-thickness and shear loading, and stress-strain curves). A systematic comparison has then been conducted between 'blind' predictions (i.e. without access to the experimental results beforehand) made for each Test Case by the originators of each theory and previously obtained experimental results for each Test Case. In-depth quantitative and qualitative ranking procedures have been employed to identify the strengths and weaknesses of each theory, and the overall effectiveness of each theory as a potential design tool. The theories are grouped according to their degree of maturity and ability to predict accurately the 3D behaviour of composites. The results from this study provide unique information to the community, the intent being that it will form a guide for the selection of the most appropriate failure theory for use in a given design situation.
机译:本文得出结论,该协调研究结果被称为第二次世界范围内的失败演习(WWFE-II)。它包含对12种主要失效标准的性能的客观评估,以预测3D应力状态下纤维增强的聚合物复合材料的响应。 WWFE-II的组织者定义了十二个具有挑战性的测试问题(测试用例),涵盖了各种材料(聚合物,玻璃/环氧树脂,碳/环氧树脂),叠层(单向,角层,交叉层和准各向同性)层压板)和各种3D应力状态(各种三轴强度包络线,厚度和剪切载荷以及应力应变曲线)。然后,对由每个理论的发起者对每个测试用例做出的“盲目”预测(即,事先没有获得实验结果)之间进行了系统的比较,并预先获得了每个测试用例的实验结果。已采用深入的定量和定性排名程序来确定每种理论的优点和缺点,以及每种理论作为潜在设计工具的总体有效性。这些理论根据其成熟度和准确预测复合材料3D行为的能力进行分组。这项研究的结果为社区提供了独特的信息,其目的是为指导在特定设计情况下选择最合适的失效理论提供指导。

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