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Prediction and analysis of ductile fracture in sheet metal forming - Part I: A modified Ayada criterion

机译:钣金成形中韧性断裂的预测和分析-第一部分:经修改的Ayada准则

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摘要

A modified ductile fracture criterion is proposed based on the traditional Ayada criterion and coded into the finite element simulation platform of VUMAT/ABAQUS for prediction and analysis of ductile fracture in metal plastic strain processes. In this modified ductile fracture criterion, stress triaxiality is taken into account, and more importantly, the exponential effect of the equivalent plastic strain on the damage behavior, which is generally ignored in other ductile fracture criteria, is also considered. The material related constants in the modified ductile fracture criterion are determined by tensile tests together with finite element simulations. The applicability and reliability of the ductile fracture criterion in ductile fracture prediction in two types of classic stress states, viz. shear stress, tensile stress in sheet metal forming, are investigated based on the deformation behavior and fracture occurrence in two case studies with two typical types of materials, i.e. Al 6061 and T 10A. The materials have a wide range of plasticity. The simulation and experimental results verify the applicability and reliability of the developed ductile fracture criterion in prediction of the ductile fracture with and without necking in different stress states of plastic strain.
机译:提出了一种基于传统Ayada准则的延性断裂准则,并将其编码到VUMAT / ABAQUS有限元仿真平台中,以预测和分析金属塑性应变过程中的延性断裂。在此修改后的延性断裂准则中,考虑了应力三轴性,更重要的是,还考虑了等效塑性应变对破坏行为的指数效应,而在其他延性断裂准则中通常忽略了这种效应。通过拉伸试验和有限元模拟确定修正延性断裂准则中与材料有关的常数。韧性断裂准则在两种经典应力状态下的韧性断裂预测中的适用性和可靠性。在两个案例研究中,基于两种典型类型的材料(Al 6061和T 10A),根据变形行为和断裂发生情况,研究了钣金成形过程中的剪切应力,拉伸应力。这些材料具有广泛的可塑性。仿真和实验结果验证了所发展的韧性断裂判据在塑性应变不同应力状态下有或没有颈缩的韧性断裂预测中的适用性和可靠性。

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