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A Viscoplastic Constitutive Model for Cyclic Hardening in the Dynamic Strain Aging Regime

机译:动态应变时效过程中循环硬化的粘塑性本构模型

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Negative strain rate sensitivity in certain temperature regimes is considered to be a manifestation of dynamicstrain aging. Within the framework of unified state variable theory, viscoplastic constitutive equations incor-porating the Mises yield criterion are presented to model negative rate sensitivity of the flow stress and itsgradual variation with cyclic loading. The modeling capabilities are essentially accomplished by introducinga rate sensitivity parameter into the evolution law of the back stress. The influence of the drag stress andthe isotropic stress as well as the rate sensitivity parameter both on the cyclic hardening and the variationof strain rate sensitivity is systemically investigated. Excellent agreement between experimental results reportedin the literature and model simulations is obtained, confirming the efficacy of the proposed constitutive model.
机译:在某些温度范围内,负应变率敏感性被认为是动力应变老化的一种表现。在统一状态变量理论的框架内,提出了包含米塞斯屈服准则的粘塑性本构方程,以模拟流动应力的负速率敏感性及其随循环载荷的逐渐变化。建模能力基本上是通过将速率敏感度参数引入背应力的演化规律来实现的。系统地研究了拖曳应力,各向同性应力以及速率敏感性参数对循环硬化和应变速率敏感性变化的影响。在文献报道的实验结果与模型仿真之间获得了极好的一致性,证实了所提出的本构模型的有效性。

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