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Finite element implementation of viscoelastic and viscoplastic models

机译:粘弹性和粘液模型的有限元实施

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PurposeThe purpose of this study is to present a finite element (FE) implementation of phenomenological three-dimensional viscoelastic and viscoplastic constitutive models for long term behaviour prediction of polymers.Design/methodology/approachThe method is based on the small strain assumption but is extended to large deformation for materials in which the stress-strain relation is nonlinear and the concept of incompressibility is governing. An empirical approach is used for determining material parameters in the constitutive equations, based on measured material properties. The modelling process uses a spring and dash-pot and a power-law approximation function method for viscoelastic and viscoplastic nonlinear behaviour, respectively. The model improvement for long term behaviour prediction is done by modifying the material parameters in such a way that they account for the current test time. The determination of material properties is based on the non-separable type of relations for nonlinear materials in which the material properties change with stress coupled with time.FindingsThe proposed viscoelastic and viscoplastic models are implemented in a user material algorithm of the FE general-purpose program ABAQUS and the validity of the models is assessed by comparisons with experimental observations from tests on high-density polyethylene samples in one-dimensional tensile loading. Comparisons show that the proposed constitutive model can satisfactorily represent the time-dependent mechanical behaviour of polymers even for long term predictions.Originality/valueThe study provides a new approach in long term investigation of material behaviour using FE analysis.
机译:本研究的目的目的是提出有限元(Fe)的现象学三维粘弹性和粘胶组成型模型的长期行为预测.Design/Methodology/ApproCh的方法是基于小的应变假设,但延伸到压力应变关系是非线性的大变形以及不可压缩性的概念是控制的。基于测量的材料特性,使用经验方法来确定本构体方程中的材料参数。模型过程使用弹簧和冲击罐和用于粘弹性和粘塑性非线性行为的动力律近似函数方法。通过修改材料参数来完成长期行为预测的模型改进,以使它们占当前测试时间的方式。材料特性的测定基于非可分离类型的非线性关系,其中非线性材料的关系,其中材料特性随着时间的应力而变化。采用Fe通用程序的用户材料算法实现了所提出的粘弹性和粘液模型ABAQUS和模型的有效性通过比较与一维拉伸载荷中的高密度聚乙烯样品的试验试验的实验观察评估。比较表明,拟议的本构模型可以令人满意地代表聚合物的时间依赖性力学行为,即使是长期预测。valigete研究提供了一种使用Fe分析的材料行为的长期调查新方法。

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