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A comparative study on Johnson Cook, modified Zerilli–Armstrong and Arrhenius-type constitutive models to predict elevated temperature flow behaviour in modified 9Cr–1Mo steel

机译:约翰逊·库克,改进的Zerilli-Armstrong和Arrhenius型本构模型预测9Cr-1Mo改性钢高温流动行为的比较研究

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摘要

In this paper, a comparative study has been made on the capability of Johnson Cook (JC), modified Zerilli– Armstrong (ZA), and strain-compensated Arrhenius-type constitutive models for representing the elevated temperature flow behaviour of modified 9Cr–1Mo steel. The experimental stress–strain data from isothermal hot compression tests over a wide range of temperatures (1123–1373 K), strains (0.1–0.5) and strain rates (0.001–1 s1) were employed to evaluate the material constants of these constitutive models. Suitability of these models were evaluated by comparing the correlation coefficient and absolute average error of prediction, ability to describe the deformation behaviour, number of material constants involved, and the computational time required to evaluate these constants. It is observed that the JC model is inadequate to provide good description of flow behaviour of modified 9Cr–1Mo steel in the above hot working domain. Predictions of the other two models are in good agreement with the experimental data. However, strain-compensated Arrhenius-type equation could track the deformation behaviour more accurately though it requires more number of material constants and more computational time to evaluate these constants than the modified-ZA model.
机译:在本文中,对Johnson Cook(JC),改进的Zerilli-Armstrong(ZA)和应变补偿的Arrhenius型本构模型代表改进的9Cr-1Mo钢高温流动行为的能力进行了比较研究。 。来自等温热压缩试验的实验应力-应变数据在很宽的温度范围(1123–1373 K),应变(0.1–0.5)和应变速率(0.001–1 s1)下用于评估这些本构模型的材料常数。通过比较相关系数和预测的绝对平均误差,描述变形行为的能力,涉及的材料常数的数量以及评估这些常数所需的计算时间,可以评估这些模型的适用性。可以看出,JC模型不足以很好地描述上述热加工领域中9Cr-1Mo改性钢的流动行为。其他两个模型的预测与实验数据非常吻合。但是,与修正的ZA模型相比,应变补偿的Arrhenius型方程虽然需要更多的材料常数和更多的计算时间来评估这些常数,但可以更精确地跟踪变形行为。

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