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Constitutive analysis to predict high-temperature flow stress in modified 9Cr-1Mo(P91) steel

机译:预测9Cr-1Mo(P91)改性钢高温流动应力的本构分析

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摘要

Constitutive analysis for hot working of modified 9Cr-1Mo (P91) ferritic steel was carried out employing experimental stress-strain data from isothermal hot compression tests, in a wide range of temperatures (1123-1373 K), strains (0.1-0.5) and strain rates (10~(-3)-10~2 s~(-1)). The effects of temperature and strain rate on deformation behaviour were represented by Zener-Hollomon parameter in an exponent-type equation. The influence of strain was incorporated in the constitutive equation by considering the effect of strain on different material constants. Activation energy was found to vary with strain in the range 369-391 kJ mol~(-1). The developed constitutive equation (considering the compensation of strain) could predict flow stress of modified 9Cr-1Mo steel over the specified hot working domain with very good correlation and generalization.
机译:利用来自等温热压缩试验的实验应力-应变数据,在宽温度范围(1123-1373 K),应变(0.1-0.5)和应变率(10〜(-3)-10〜2 s〜(-1))。温度和应变速率对变形行为的影响由Zener-Hollomon参数在指数型方程中表示。通过考虑应变对不同材料常数的影响,将应变的影响纳入本构方程。发现活化能随应变在369-391 kJ mol〜(-1)范围内变化。建立的本构方程(考虑应变补偿)可以预测改性9Cr-1Mo钢在规定的热加工区域内的流变应力,具有很好的相关性和推广性。

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