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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Relevance of Incorporating Cavity Shape Change in Modelling the Ductile Failure of Metals
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Relevance of Incorporating Cavity Shape Change in Modelling the Ductile Failure of Metals

机译:在模拟金属延性失效中纳入腔体形状变化的相关性

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摘要

The purpose of this paper is to assess the relevance of considering the cavities shape change in the context of physically based modelling of the ductile rupture in metals. Two thermomechanical models have been used in this study the GTN model, developed by Gurson, Tvergaard, and Needleman for spherical cavities keeping their shape unchanged during loading, and the GLD model, proposed by Gologanu, Leblond, and Devaux for ellipsoidal cavities that can change their shape. The GTN and GLD models have been extended to take into account material thermal heating due to plastic dissipation. These two constitutive laws have been implemented into the commercial finite element code Abaqus/Explicit in order to simulate the necking of a round bar and the failure of a sheet deep drawing. The results showed the importance of incorporating the shape effects of the cavities for a correct description of the material failure.
机译:本文的目的是评估在基于物理的金属延性破裂建模的背景下考虑型腔形状变化的相关性。这项研究中使用了两个热力学模型:Gurson,Tvergaard和Needleman开发的GTN模型用于在加载过程中保持其形状不变的球形空腔,而Gologanu,Leblond和Devaux提出的GLD模型用于可以改变的椭圆形空腔他们的形状。 GTN和GLD模型已经扩展,以考虑到由于塑料耗散而引起的材料热加热。这两个本构定律已在商业有限元代码Abaqus / Explicit中实现,以便模拟圆棒的颈缩和板材深冲的破坏。结果表明,为了正确描述材料破坏,必须合并腔的形状效应。

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