Prediction of Mechanical Behaviour of Low Carbon Steel at High Strain Rate Using Thermal Activation Theory and Static Data

K. Ogawa, Hidetoshi Kobayashi, F. Sugiyama, K. Horikawa
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引用次数: 12

Abstract

Thermal activation theory is well-known to be a useful theory to explain the mechanical behaviour of various metals in the wide range of temperature and strain-rate. In this study, a number of trials to obtain the lower yield stress or flow stress at high strain rates from quasi-static data were carried out using the data shown in the report titled “The final report of research group on high-speed deformation of steels for automotive use”. A relation between the thermal component of stress and the strain rate obtained from experiments for α Fe and the temperature-strain rate parameter were used with thermal activation theory. The predictions were successfully performed and they showed that the stress-strain behaviour at high strain rates can be evaluated from quasi-static data with good accuracy.
利用热活化理论和静态数据预测低碳钢在高应变率下的力学行为
众所周知,热活化理论是一种有用的理论,可以解释各种金属在很宽的温度和应变速率范围内的力学行为。在本研究中,使用题为“汽车用钢高速变形研究小组最终报告”的报告中的数据,从准静态数据中获得了在高应变率下较低的屈服应力或流动应力。利用热激活理论,建立了α Fe的应力热分量与应变速率的关系,并给出了温度-应变速率参数。结果表明,高应变率下的应力-应变行为可以从准静态数据中准确地进行评估。
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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