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Viscoplastic Constitutive Equation of High-Density Polyethylene

机译:高密度聚乙烯的粘板构成方程

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A viscoplastic constitutive equation based on the kinematic hardening creep theory of Malinin-Khadjinsky and the nonlinear kinematic hardening rule of Armstrong-Frederick is formulated to describe the inelastic behavior of high-density polyethylene under various loading. The gentle progress of back stress by the introduction of loading surface in the viscoplastic strain space and smaller material constant under unloading can be expressed. Material constants are identified by various stress-strain curves under compression at constant strain rate and creep curves under compression at constant stress. The viscoplastic model can describe stress-strain curve under compression with change in strain rate and shear stress-strain curve including unloading. The model can qualitatively describe stress-strain curves under compression with changed strain rate including unloading, but it is quantitatively insufficient.
机译:基于Malinin-Khadjinsky的运动型硬化蠕变理论的粘胶塑形本构式和Armstrong-Frederick的非线性运动硬化规则,描述了在各种载荷下的高密度聚乙烯的非弹性行为。通过引入粘塑应变空间中的装载表面和卸载下较小的材料常数的缓和进展可以表达。通过在恒定应变速率的压缩下通过各种应力 - 应变曲线识别材料常数,并在恒定应力下压缩下的蠕变曲线。粘胶塑料模型可以在压缩下描述压缩压力 - 应变曲线,其应变率和剪切应变曲线包括卸载。该模型可以在压缩下定性地描述压缩压力 - 应变曲线,改变包括卸载的应变率,但是定量不足。

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