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A Constitutive Model to Predict the Elevate Temperature Flow Stress of 9Cr-1Mo Steel

机译:预测9Cr-1Mo钢高温流动应力的本构模型。

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Hot deformation behavior of 9Cr-1Mo ferritic steel has been studied in a wide range of temperatures (900-1200°C) and strain rates (0.01-10s-1). Using the true stress-strain data obtained from isothermal hot compression tests, a constitutive modeling has been developed. The flow stress increased with decrease of deformation temperature and increase of strain rate, which can be represented by the Zener-Hollomon parameter in an exponential equation. The contour map for flow stress at the strain of 0.8 was developed which can describe the distribution of flow stress explicitly. The influence of strain was incorporated in the developed constitutive modeling by considering effects of strain on material constants. The flow stress predicted by the constitutive model shows a satisfactory agreement with the experimental value through whole tested deformation conditions except a slight deviation for predicting the stress deformed at 900°C and 0.01s-1 and the average relative error is 5.54%.
机译:9Cr-1Mo铁素体钢的热变形行为已经在很宽的温度(900-1200°C)和应变速率(0.01-10s-1)范围内进行了研究。利用从等温热压缩试验获得的真实应力-应变数据,本构模型已经开发出来。流动应力随着变形温度的降低和应变速率的增加而增加,这可以由指数方程中的Zener-Hollomon参数表示。建立了应变为0.8时流动应力的等高线图,它可以清晰地描述流动应力的分布。通过考虑应变对材料常数的影响,将应变的影响纳入已开发的本构模型中。通过本构模型预测的流动应力在整个测试变形条件下与实验值显示出令人满意的一致性,除了用于预测在900°C和0.01s-1时变形的应力略有偏差外,平均相对误差为5.54%。

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