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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Numerical simulation of incremental sheet forming based on GTN damage model
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Numerical simulation of incremental sheet forming based on GTN damage model

机译:基于GTN损伤模型的增量板成形数值模拟。

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摘要

An attempt was made to analyze the damage evolution and ductile fracture of incremental forming at the microscopic level. Firstly, an extended Gurson-Tvergaard-Needleman (GTN) model integrating with Hill'48 anisotropic yield criterion was established and numerically implemented by User-defined Material Subroutine (VUMAT) in the commercial finite element software ABAQUS. Then, the VUMAT program was verified via a single element test, and its damage parameters were determined through the combination of the simulation and the experiment of a tensile test. Afterwards, based on the extended GTN model, a finite element model of incremental forming was established and experimentally verified. And the influence of different values of two damage parameters, the volume fraction of void nucleating particles f (N) and the mean plastic strain value when voids nucleate epsilon (N), on the damage evolution of incremental forming was explored. It shows that there is almost no connection between the microscopic equivalent strain and the values of f (N) and epsilon (N). However, the maximum value of void volume fraction will increase significantly with the increase of f (N) or with the decrease of epsilon (N). Finally, void volume fraction was proved to be an effective index to predict crack occurrence of incremental forming.
机译:试图在微观水平上分析渐进成形的损伤演化和延性断裂。首先,建立了结合Hill'48各向异性屈服准则的扩展Gurson-Tvergaard-Needleman(GTN)模型,并通过用户定义的材料子例程(VUMAT)在商业有限元软件ABAQUS中进行了数值实现。然后,通过单元素测试验证了VUMAT程序,并通过模拟和拉伸测试的实验相结合来确定其损伤参数。然后,基于扩展的GTN模型,建立了渐进成形的有限元模型并进行了实验验证。并探讨了两个损伤参数的不同值,即空核颗粒的体积分数f(N)和空核ε(N)时平均塑性应变值对渐进成形损伤演化的影响。它表明微观等效应变与f(N)和ε(N)的值之间几乎没有联系。然而,空隙率的最大值将随着f(N)的增加或ε(N)的减少而显着增加。最后,空体积分数被证明是预测增量成形裂纹发生的有效指标。

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