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Three-dimensional, finite deformation, viscoplastic constitutive models for polymeric materials

机译:聚合物材料的三维有限变形粘塑性本构模型

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摘要

A general methodology for developing three-dimensional. finite deformation, viscoplastic constitutive models for polymeric materials is presented. The development begins with the presentation of a one-dimensional spring and dashpot construction which exhibits behavior typical of polymeric materials, namely strain-rate dependence, stress relaxation, and creep. The one-dimensional construction serves as a starting point for the development of a three-dimensional, finite deformation, viscoplastic constitutive model which also exhibits typical polymeric behavior. Furthermore, the three-dimensional constitutive model may be easily generalized to incorporate an arbitrary number of inelastic processes, representing (inelastic) microstructural deformation mechanisms operating on different time scales. Strain-rate dependence, stress relaxation, and creep phenomena are discussed in detail for a simple version of the constitutive model. Test data for a particular polymer is used to validate the simple model. It is concluded that the methodology provides a flexible approach to modeling polymeric materials over a wide range of loading conditions.
机译:开发三维的通用方法。有限变形,提出了高分子材料的粘塑性本构模型。该开发从呈现一维弹簧和阻尼器结构开始,该结构表现出聚合物材料的典型行为,即应变率依赖性,应力松弛和蠕变。一维结构是建立三维有限变形粘塑性本构模型的起点,该模型也表现出典型的聚合物行为。此外,三维本构模型可以很容易地概括为包含任意数量的非弹性过程,代表了在不同时间尺度上运行的(非弹性)微结构变形机制。对于本构模型的简单版本,详细讨论了应变率相关性,应力松弛和蠕变现象。特定聚合物的测试数据用于验证简单模型。结论是,该方法提供了一种灵活的方法,可以在各种加载条件下对聚合物材料进行建模。

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