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A statistical model of microvoids' evolution in rate sensitive ductile materials-solution for high stress triaxiality cases

机译:速率敏感性延性材料中微孔演化的统计模型-高应力三轴性情况下的溶液

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Statistical behavior of the microvoids' evolution process in ductile materials is investigated in this article with the emphasis on the discussion about the effect of strain rate-sensitivity of the matrix material. The viscoplastic constitutiverelation of the matrix material is assumed to have the overstress form proposed by Perzyna. In the case of high stress triaxiality, the nucleation rate and the growth rate of microvoids are discussed. Then, based on the balance law of microvoids' numberdensity, differential equations governing the evolution of microvoids are obtained and solved with the help of the two kinetic equations describing the nucleation rate and the void growth rate. Thus, the size distribution functions of microvoids are found from the theoretical analysis, and the effect of strain rate-sensitivity of the matrix on the evolution of microvoids is examined. The present theoretical prediction provides a reasonable explanation of the experimental phenomena observed by previousresearchers.
机译:本文研究了延性材料中微孔演化过程的统计行为,重点是讨论了基体材料的应变速率-敏感性的影响。假定基质材料的粘塑性本构关系具有Perzyna提出的过应力形式。在高应力三轴性的情况下,讨论了微孔的成核速率和生长速率。然后,根据微孔数密度的平衡定律,借助两个描述成核速率和孔隙生长速率的动力学方程,获得并控制了微孔的演化的微分方程。因此,通过理论分析发现了微孔的尺寸分布函数,并研究了基体的应变速率敏感性对微孔演化的影响。目前的理论预测为以前的研究人员观察到的实验现象提供了合理的解释。

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