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Biaxial Yield Surface Investigation of Polymer-Matrix Composites

机译:聚合物基复合材料的双轴屈服面研究

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This article presents a numerical technique for computing the biaxial yield surface of polymer-matrix composites with a given microstructure. Generalized Method of Cells in combination with an Improved Bodner-Partom Viscoplastic model is used to compute the inelastic deformation. The validation of presented model is proved by a fiber Bragg gratings (FBGs) strain test system through uniaxial testing under two different strain rate conditions. On this basis, the manufacturing process thermal residual stress and strain rate effect on the biaxial yield surface of composites are considered. The results show that the effect of thermal residual stress on the biaxial yield response is closely dependent on loading conditions. Moreover, biaxial yield strength tends to increase with the increasing strain rate.
机译:本文提出了一种数值技术,用于计算具有给定微观结构的聚合物基复合材料的双轴屈服面。单元的通用方法与改进的Bodner-Partom粘塑性模型结合使用来计算非弹性变形。光纤布拉格光栅(FBG)应变测试系统通过在两种不同应变率条件下的单轴测试,证明了所提出模型的有效性。在此基础上,考虑了制造过程中复合材料双轴屈服面上的热残余应力和应变率效应。结果表明,残余热应力对双轴屈服响应的影响与载荷条件密切相关。而且,双轴屈服强度倾向于随应变率的增加而增加。

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