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A ductile-brittle fracture model for material ductile damage in plastic deformation based on microvoid growth

机译:基于微孔生长的塑性变形中材料延性破坏的韧性脆性断裂模型

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The fracture of ductile solids has frequently been observed to result from the large growth and coalescence of microscopic voids, a process enhanced by the superposition of hydrostatic tensile stresses on a plastic deformation field. The ductile growth of voids is treated here as a problem in continuum plasticity. In this paper, a ductile-brittle fracture criterion derived from a microvoid mechanical model is proposed for microdamage and fracture of metallic material under large elastic-plastic deformation and has been proved to be effective in the analysis of metal forming process. Using this criterion, the analyses of microdamage and ductile-brittle fracture for tensile specimens in complex stress-states have been carried out. The results from these analyses on damage development and fracture are in good agreement with the experimental ones, and from microview point are reasonable for cracked specimens.
机译:经常观察到易延展性固体的断裂是由微观空隙的大量生长和聚结导致的,该过程是通过在塑性变形场上叠加静液压拉伸应力而增强的。空隙的延展性在这里被视为连续可塑性的问题。本文提出了一种基于微孔力学模型的韧性脆性断裂判据,用于金属材料在较大的弹塑性变形下的微损伤和断裂,并已被证明在分析金属成形过程中是有效的。使用该标准,对复杂应力状态下的拉伸试样进行了微损伤和延性脆性断裂的分析。这些关于损伤发展和断裂的分析结果与实验结果吻合良好,并且从微观角度看,对于破裂的试样是合理的。

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