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Plastic Constitutive Model and Analysis of Flow Stress of 40Cr Quenched and Tempered Steel

机译:40Cr调质钢的塑性本构模型及流变应力分析

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To solve the problem of the accuracy of the numerical simulations of cold rolling, the thermomechanical responses of 40Cr under uniaxial compression loading are presented. The strain rates include quasistatic (0.004?s?1) at temperature of 293?K and dynamic loading regime (632?s?1~5160?s?1) at temperature regime (293?K~673?K). Significant strain rate and temperature sensitivity are measured. Based on these observations, the Johnson-Cook phenomenological constitutive model is proposed to predict the mechanical behavior of the 40Cr over wide ranges of strain rate and temperature. The solution process of the equation parameters is given. Correlations with this Johnson-Cook model are shown very close to the observed responses. Important material parameters are provided to the application of numerical analysis in project.
机译:为了解决冷轧数值模拟精度问题,提出了40Cr在单轴压缩载荷下的热力学响应。应变速率包括在293?K温度下的准静态(0.004?s?1)和在温度范围(293?K〜673?K)下的动态载荷状态(632?s?1〜5160?s?1)。测量了显着的应变速率和温度敏感性。基于这些观察,提出了Johnson-Cook现象学本构模型,以预测40Cr在较宽的应变速率和温度范围内的力学行为。给出了方程参数的求解过程。该Johnson-Cook模型的相关性非常接近观察到的响应。重要的材料参数为数值分析在工程中的应用提供了依据。

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