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On probabilistic aspects in the dynamic degradation of ductile materials

机译:关于延性材料动态降解的概率问题

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Dynamic loadings produce high stress waves leading to the spallation of ductile materials such as aluminum, copper, magnesium or tantalum. The main mechanism used herein to explain the change of the number of cavities with the stress rate is nucleation inhibition, as induced by the growth of already nucleated cavities. The dependence of the spall strength and critical time with the loading rate is investigated in the framework of a probabilistic model. The present approach, which explains previous experimental findings on the strain-rate dependence of the spall strength, is applied to analyze experimental data on tantalum.
机译:动态载荷会产生高应力波,从而导致易延展材料(例如铝,铜,镁或钽)散裂。本文用来解释腔数随应力变化的主要机理是成核抑制,这是由于已经成核的腔的生长所致。在概率模型的框架内研究了剥落强度和临界时间与加载速率之间的关系。本方法解释了先前对剥落强度的应变率依赖性的实验结果,可用于分析钽的实验数据。

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