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Study of the Strain Rate Effect on Cold-reduced Carbon Steel and Aluminium Alloy with Numerical Simulations

机译:数值模拟研究冷轧碳钢和铝合金的应变速率效应

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In this paper, the effect of strain rate has been considered in the simulation of forming process with a simple form combined into the material law. Quite a few researchers have proposed various hardening laws and strain rate functions to describe the material tensile curve. In this study, the strain rate model Cowper-Symonds is used with anisotropic elasto-plastic material law in the simulation process. The strain path evolution of certain elements, when the strain rate is considered and not, is compared. Two sheet materials, Cold-reduced Carbon Steel (SPCC) JIS G3141 and Aluminum alloy 6112 are used in this study. Two yield criteria, Hill 48 and Hill 90, are applied respectively to improve the accuracy of simulation result. They show different performance when strain rate effect is considered. Strain path of the elements in the fracture risk area of SPCC (JIS G3141) varies much when the strain rate material law is used. There is only little difference of the strain distribution of Al 6112 when the strain rate effect is included and excluded in the material law. The simulation results of material SPCC under two conditions indicate that the strain rate should be considered if the material is the rate-sensitive material, which provides more accurate simulation results.
机译:本文在模拟成形过程中考虑了应变速率的影响,将简单的形式组合到材料定律中。不少研究人员提出了各种硬化规律和应变率函数来描述材料的拉伸曲线。在本研究中,在模拟过程中将应变速率模型Cowper-Symonds与各向异性的弹塑性材料定律结合使用。当不考虑应变率时,比较某些元素的应变路径演变。本研究使用两种板材,即冷轧碳钢JIS G3141和铝合金6112。分别采用Hill 48和Hill 90这两个屈服准则来提高模拟结果的准确性。当考虑应变率效应时,它们表现出不同的性能。当使用应变率材料定律时,SPCC(JIS G3141)的断裂危险区域中元素的应变路径变化很大。在材料定律中包括和不包括应变速率效应时,Al 6112的应变分布几乎没有差异。材料SPCC在两种条件下的仿真结果表明,如果材料是对速率敏感的材料,则应考虑应变率,这将提供更准确的仿真结果。

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