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Dynamic Mechanical Characteristics and Constitutive Modeling of Rail Steel over a Wide Range of Temperatures and Strain Rates

机译:广泛温度和应变率的轨钢动态力学特性及本构型建模

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摘要

Rail steel plays an indispensable role in the safety and stability of the railway system. Therefore, a suitable constitutive model is quite significant to understand the mechanical behavior of this material. Here, the compressive mechanical behavior of heat-treated U71Mn rail steel over a wide range of strain rates (0.001 s−1–10000 s−1) and temperatures (20°C–800°C) was systematically investigated via uniaxial quasistatic and dynamic tests. The split Hopkinson pressure bar (SHPB) apparatus was utilized to perform dynamic mechanical tests. The effects of temperature, strain, and strain rate on the dynamic compressive characteristics of U71Mn were discussed, respectively. The results indicate that the flow response of U71Mn is both temperature-sensitive and strain rate-sensitive. However, the influence of temperature on the flow response is more remarkable than that of strain rate. On the basis of the experimental data, the original and modified Johnson-Cook (JC) models of the studied material were established, respectively. Using correlation coefficient and average absolute relative error parameters, it is revealed that better agreement between the experimental and predicted stress is reached by the modified JC model, which demonstrates that the modified one can characterize the mechanical behavior of the studied material preferably.
机译:铁路钢在铁路系统的安全性和稳定性中起着不可或缺的作用。因此,合适的本构模型对于理解这种材料的力学行为非常重要。这里,通过单轴Quasistatic和动态系统地研究了在宽范围的应变率(0.001S-1-10000S-1)和温度(20℃-800℃)上进行热处理的U71Mn轨钢的压缩力学行为测试。分裂霍普金森压力棒(SHPB)装置用于进行动态机械测试。讨论了温度,应变和应变率对U71MN的动态压缩特性的影响。结果表明,U71MN的流量响应均为温度敏感和应变率敏感。然而,温度对流动反应的影响比应变率更显着。在实验数据的基础上,分别建立了研究的原始和改装的Johnson-Cook(JC)模型。使用相关系数和平均绝对相对误差参数,揭示了改进的JC模型达到了实验和预测应力之间的更好的一致性,这表明改进的jc型号可以表征所研究的材料的力学行为。

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