Perforation Analysis by Punching of Metal Sheets

Ayoub Laoucine, M. Bachene, S. Rechak, G. Lorenzini, N. Kaid, Y. Menni
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Abstract

In this work, a numerical study of the perforation of 6061-T6 aluminum, Titanium Ti6Al4V and stainless steel (Nitronic33) plates by a rigid flat nose punch is carried out. The Johnson-Cook model was used to define the behavior of the material constituting the plate. This homogeneous behavior was coupled with the Johnson-Cook rupture criterion to completely predict the perforation process. Initially, the present results are validated by comparing them with the results reported in the literature, including those obtained from experimental work. Thereafter, several numerical parametric analyses are performed to investigate the behavior of these metal plates depending on the maximum breaking force, the temperature in the perforated plates, the kinetic energy, the clearance on the shape of the sheared edge, and the dimensional accuracy of the plates.
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金属板冲压穿孔分析
本文对6061-T6铝板、Ti6Al4V钛板和Nitronic33不锈钢板进行了刚性扁头冲孔穿孔的数值研究。Johnson-Cook模型用于定义构成板的材料的行为。这种均匀性与Johnson-Cook破裂准则相结合,可以完全预测射孔过程。首先,通过与文献中报告的结果(包括实验结果)进行比较,验证了本文的结果。然后,进行了一些数值参数分析,以研究这些金属板的行为取决于最大断裂力,穿孔板中的温度,动能,剪切边缘形状的间隙以及板的尺寸精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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