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Ductile fracture modeling of initiation and propagation in sheet-metal blanking processes

机译:钣金下料过程中起始和扩展的延性断裂建模

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摘要

A new ductile fracture initiation criterion and the implement model for simulating automatic crack propagation in sheet-metal blanking processes are presented. Several ductile fracture criteria in shearing mode and their relative accuracy for predicting and quantifying fracture initiation sites in conjunction with experiments and finite element method (FEM) are investigated. The modified model of crack initiation is made to access to the experiments. From the moment of crack initiation to the complete rupture of the sheet, the 2D remeshing procedure in DEFORM combined to deletion-and-replacement method with the maximum circumferential stress criterion is used to predict the direction of crack advancement and updating the explicit geometric description of evolving cracks. Some process parameters, such as clearance between punch and die, influence on the results of sheared and fractured surface shape and size are also studied. The possibility of realizing prediction of many factors that influence shearing quality is indicated.
机译:提出了一种新的延性断裂起爆判据和模拟钣金落料过程中裂纹自动扩展的实现模型。结合实验和有限元方法(FEM),研究了几种剪切模式下的韧性断裂准则及其在预测和量化断裂起始部位方面的相对精度。使修改后的裂纹萌生模型可以访问实验。从裂纹产生的时刻到板材完全断裂,DEFORM中的2D重塑过程与最大周向应力准则的缺失和置换方法相结合,可用来预测裂纹的发展方向并更新其明显的几何描述。不断发展的裂缝。还研究了一些工艺参数,例如冲头和模具之间的间隙,这些参数对剪切和断裂的表面形状和尺寸结果的影响。指出了实现预测影响剪切质量的许多因素的可能性。

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