V形弯曲深拉优质钢回弹预测

P. Mulidrán, E. Spišák, M. Tomáš, Vladimír Rohaľ, F. Stachowicz
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引用次数: 2

摘要

在板料成形过程中,材料(本例深拉优质钢DC06)表现出回弹效应,回弹效应受卸荷后材料应变恢复的支配。在这篇贡献中,进行了弯曲过程的数值模拟,并与实验数据进行了比较。回弹与许多参数有关,如成形条件、刀具几何形状和材料性能,如板材厚度、屈服应力、加工硬化、应变率灵敏度和弹性模量。在这项工作中,评估了所用材料参数的影响。研究了厚度为0.85 mm的DC06钢v形钣金件的回弹效果。弯曲角度设置为90°。数值模拟采用Hill48和Barlat屈服准则,结合Ludwik和Swift的硬化模型。将数值模拟得到的数据与实验测试结果进行了比较和评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Springback Prediction of Deep - Drawing Quality Steel used in V - Bending Process
In the sheet metal forming processes, the material, and in this case deep drawing quality steel DC06 exhibits springback effect, which is governed by strain recovery of material after the load removal. In this contribution, numerical simulation of a bending process was performed and compared with experimental data. The springback is related to many parameters like forming conditions, tool geometry and material properties such as sheet thickness, yield stress, work hardening, strain rate sensitivity and elasticity modulus. In this work, the influence of used material parameters is evaluated. The springback effect of V-shaped sheet metal part made of DC06 steel, with a thickness of 0.85 mm was investigated. Bending angle was set to 90°. In the numerical simulation, Hill48 and Barlat yield criterions were used in combination with Ludwik's and Swift's hardening models. Achieved data from the numerical simulations were compared and evaluated with experimental test results.
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