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FE macro/micro analysis of thermal residual stresses and failure behaviour under transverse tensile load of VE/CF - fibre bundle composites

机译:VE / CF-纤维束复合材料横向拉伸载荷下的热残余应力和破坏行为的有限元宏观/微观分析。

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摘要

This paper presents a finite element analysis of a transverse fibre bundle test (TFT) using carbon fibres embedded in a vinylester urethane hybrid matrix. The evolution of thermal residual stresses, due to the cooling phase of the curing process of the model-composite and the subsequent mechanical load transverse to the fibre direction, has been investigated. The applied displacement coupling technique allowed to transfer the boundary conditions from a global model (macro model) via an intermediate model to a micro model. As a result it could be shown that the larger fraction of the total stress build up until failure occurred was due to the implicated thermal residual stresses. The micro model offered more accurate and detailed results with regard to the stress distributions on critical locations such as the fibre/matrix interface region. Generally, the results of the global model were in good agreement with the experimental data obtained. Further, the parabolic failure criterion based on experimental data of the pure matrix was used to predict time and place of failure initiation.
机译:本文介绍了使用嵌入乙烯基酯-氨基甲酸酯杂化基质中的碳纤维对横向纤维束测试(TFT)进行的有限元分析。已经研究了由于模型复合材料固化过程的冷却阶段以及随后横向于纤维方向的机械负荷而引起的热残余应力的演变。所应用的位移耦合技术允许将边界条件从整体模型(宏观模型)通过中间模型转移到微观模型。结果表明,直到发生故障之前,总应力累积的较大部分是由于所涉及的热残余应力。对于在关键位置(例如光纤/矩阵界面区域)上的应力分布,该微观模型提供了更准确和详细的结果。通常,全局模型的结果与获得的实验数据非常吻合。此外,基于纯矩阵的实验数据的抛物线破坏准则被用来预测破坏开始的时间和地点。

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