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A COMPARISON OF DIFFERENT MATERIAL MODELS FOR THERMOPLASTICS

机译:热塑性塑料不同材料模型的比较

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The mechanical behavior of thermoplastics in monotonic loading is characterized by an initial linear elastic response, followed by distributed yielding, large-scale plastic flow, and gradual strain stiffening until failure is initiated. In this study we have experimentally and theoretically studied the deformation behavior of ultra high molecular weight polyethylene (UHMWPE). The goal of the study was to compare the predictive capabilities of a new constitutive theory for thermoplastics with predictions from traditional models such as J_2-plasticity and linear viscoelasticity. The results from the study indicate that the new constitutive model outperforms the traditional and commonly used models, demonstrating that with an appropriate choice of material model it is possible to perform accurate finite element simulations of thermoplastic components.
机译:热塑性塑料在单调加载中的机械行为的特征在于初始的线性弹性响应,然后是分布的屈服,大规模的塑性流动以及逐渐的应变硬化,直到引发破坏为止。在这项研究中,我们通过实验和理论研究了超高分子量聚乙烯(UHMWPE)的变形行为。该研究的目的是将新的热塑性塑料本构理论的预测能力与传统模型(例如J_2-塑性和线性粘弹性)的预测进行比较。研究结果表明,新的本构模型优于传统模型和常用模型,这表明通过适当选择材料模型,可以对热塑性部件进行精确的有限元模拟。

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