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Effect of Strain Rate on Formability in Warm Deep Drawing of High Tensile Strength Steel Sheet

机译:应变率对高拉伸强度钢板温热深拉的成形性的影响

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In tensile test of the high tensile strength steel, tensile strength isdrastically decreased as the temperature is raised. Then, the strain rate sensitivity exponent of high tensile strength steel (SUS631) in this study is high at 800 degrees especially. Also, elongation is increased as the temperature is raised. In deep drawing, the maximum punch load of the high tensile strength steel is examined on difference punch speed at 600 and 800 degrees. On the other hand, finite element (FE) simulation was used for the possibility to evaluate the forming load on difference punch speed in warm deep drawing. In FE simulation, we have considered both the strain hardening exponent and the strain rate sensitivity exponent (m-value) because we cannot neglect m-value 0.184 at 800 degrees. The tendency of the forming load in the experiments agrees the results in FE simulation.
机译:在高拉伸强度钢的拉伸试验中,随着温度升高,抗拉强度降低。然后,本研究中高拉伸强度钢(SUS631)的应变率敏感性指数在800度高800度。而且,随着温度升高而增加,伸长率增加。在深图中,在600和800度的差异冲压速度上检查高抗拉强度钢的最大冲压负荷。另一方面,有限元(FE)模拟用于评估温度深拉的差异冲压速度的形成负荷。在FE模拟中,我们已经考虑了应变强化指数和应变率灵敏度指数(M-VALUE),因为我们不能在800度下忽略0.184。实验中的成型载荷的趋势使得Fe模拟的结果同意。

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