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Implementation of an Associative Flow Rule Including Hydrostatic Stress Effects Into the High Strain Rate Deformation Analysis of Polymer Matrix Composites

机译:聚合物基复合材料高应变率变形分析中包括静水应力效应的缔合流规则的实现

摘要

A previously developed analytical formulation has been modified in order to more accurately account for the effects of hydrostatic stresses on the nonlinear, strain rate dependent deformation of polymer matrix composites. State variable constitutive equations originally developed for metals have been modified in order to model the nonlinear, strain rate dependent deformation of polymeric materials. To account for the effects of hydrostatic stresses, which are significant in polymers, the classical J2 plasticity theory definitions of effective stress and effective inelastic strain, along with the equations used to compute the components of the inelastic strain rate tensor, are appropriately modified. To verify the revised formulation, the shear and tensile deformation of two representative polymers are computed across a wide range of strain rates. Results computed using the developed constitutive equations correlate well with experimental data. The polymer constitutive equations are implemented within a strength of materials based micromechanics method to predict the nonlinear, strain rate dependent deformation of polymer matrix composites. The composite mechanics are verified by analyzing the deformation of a representative polymer matrix composite for several fiber orientation angles across a variety of strain rates. The computed values compare well to experimentally obtained results.
机译:修改了以前开发的分析公式,以便更准确地说明静水压力对聚合物基复合材料非线性,应变速率相关变形的影响。最初为金属开发的状态变量本构方程已被修改,以便对聚合物材料的非线性,应变速率相关的变形进行建模。为了解决在聚合物中非常重要的静水压力的影响,对有效应力和有效非弹性应变的经典J2塑性理论定义以及用于计算非弹性应变率张量分量的方程进行了适当修改。为了验证修改后的配方,在很宽的应变率范围内计算了两种代表性聚合物的剪切变形和拉伸变形。使用开发的本构方程计算的结果与实验数据很好地相关。在基于材料的微力学方法的强度范围内实施聚合物本构方程,以预测聚合物基复合材料的非线性应变速率相关变形。通过分析代表聚合物基质复合材料在各种应变速率下几个纤维取向角的变形,可以验证复合材料的力学性能。计算值与实验获得的结果进行了很好的比较。

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