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Analysis of the end-notched flexure test configuration applicability for mechanically coupled fiber reinforced composite laminates

机译:机械耦合纤维增强复合材料层压板的端部弯曲试验配置适用性分析

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摘要

The paper deals with Finite Element Method derivations concerning the mode II critical strain energy release rate (G(IIc)) distribution along delamination front in mechanically coupled laminated composites subjected to the standardized end notched flexure test, described in the ASTM D7905 Standard. Different stacking sequences were studied in order to obtain six possible forms of coupling matrix B. This revealed possible problems in calculation and interpretation of the G(IIc) experimental results, while directly using the standardized data reduction scheme. For each sequence several fiber orientation angles were considered, such that a wide fan of possible tendencies in the behavior of coupled composites could be analyzed. The strongest deviation of the G(II) distributions was observed for the laminated beam models exhibiting simultaneous bending-extension/extension-twisting/shearing-bending coupling, i.e. when the coupling matrix took its Bur form. All simulations were performed in the Abaqus finite element software environment using the virtual crack closure technique. Indications for the experimental tests were formulated in the conclusions section. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文涉及有限元方法的推导,该推导涉及在机械连接的层压复合材料中,沿标准前端切口挠曲测试(沿ASTM D7905标准进行描述)沿脱模前沿的II型临界应变能释放速率(G(IIc))分布。为了获得耦合矩阵B的六种可能形式,研究了不同的堆叠顺序。这揭示了在直接使用标准化数据缩减方案的同时,G(IIc)实验结果的计算和解释中可能存在的问题。对于每个序列,都考虑了几个纤维取向角,以便可以分析耦合复合材料性能中可能存在的广泛趋势。对于展示同时弯曲-延伸/延伸-扭曲/剪切-弯曲耦合的层压梁模型,即当耦合矩阵呈Bur形式时,观察到G(II)分布的最大偏差。所有模拟都是使用虚拟裂纹闭合技术在Abaqus有限元软件环境中执行的。结论部分中规定了实验测试的指示。 (C)2016 Elsevier Ltd.保留所有权利。

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