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Prediction of Composite Laminate Strength Properties Using a Refined Zigzag Plate Element

机译:精细的曲折板单元预测复合材料层合板强度特性

摘要

This study presents an approach that uses the refined zigzag element, RZE(exp2,2) in conjunction with progressive failure criteria to predict the ultimate strength of composite laminates based on only ply-level strength properties. The methodology involves four major steps: (1) Determination of accurate stress and strain fields under complex loading conditions using RZE(exp2,2)-based finite element analysis, (2) Determination of failure locations and failure modes using the commonly accepted Hashin's failure criteria, (3) Recursive degradation of the material stiffness, and (4) Non-linear incremental finite element analysis to obtain stress redistribution until global failure. The validity of this approach is established by considering the published test data and predictions for (1) strength of laminates under various off-axis loading, (2) strength of laminates with a hole under compression, and (3) strength of laminates with a hole under tension.
机译:这项研究提出了一种方法,该方法使用改进的之字形元素RZE(exp2,2)结合渐进式破坏准则,仅基于层级强度特性来预测复合材料层压板的极限强度。该方法包括四个主要步骤:(1)使用基于RZE(exp2,2)的有限元分析确定复杂载荷条件下的精确应力场和应变场;(2)使用公认的Hashin失效确定失效位置和失效模式准则,(3)材料刚度的递归降级,以及(4)非线性增量有限元分析以获得应力重新分布,直到整体破坏。通过考虑已发布的测试数据和以下方面的预测来确定该方法的有效性:(1)层压材料在各种离轴载荷下的强度;(2)压缩时有孔的层压材料的强度;以及(3)层压材料具有一定强度的层压板的强度孔受拉。

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