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Finite element simulation of polymer behaviour using a three-dimensional, finite deformation constitutive model

机译:使用三维有限变形本构模型的聚合物行为有限元模拟

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摘要

This paper presents a phenomenological three-dimensional viscoelastic-plastic constitutive model for polymers. The model is based on the assumption that stress can be decomposed into two parts, namely viscoelastic and elastic-plastic. The proposed rate-dependent nonlinear model is then implemented in a finite element program. The validity of the code is assessed by the data from experiments on a specific polymer. The data from three types of tests, namely uniaxial compression, creep, and relaxation, are used to evaluate the validity of the model. Comparisons show that the proposed constitutive model could satisfactorily represent the time-dependent mechanical behaviour of polymers. The model is then used to study the effect of friction in the compression test and the behaviour of polymers under cyclic loading.
机译:本文提出了一种聚合物的现象学三维粘弹塑性本构模型。该模型基于以下假设:应力可以分解为两个部分,即粘弹性和弹塑性。然后在有限元程序中实现所提出的与速率相关的非线性模型。代码的有效性由特定聚合物上的实验数据评估。来自三类测试的数据,即单轴压缩,蠕变和松弛,用于评估模型的有效性。比较表明,所提出的本构模型可以令人满意地表示聚合物随时间的力学行为。然后,该模型用于研究摩擦在压缩测试中的作用以及聚合物在循环载荷下的行为。

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