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Hot deformation behavior and flow stress model of F40MnV steel

机译:F40MnV钢的热变形行为和流变应力模型

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Single hit compression tests were performed at 1 223-1 473 K and strain rate of 0.1-10 s~(-1) to study hot deformation behavior and flow stress model of F40MnV steel. The dependence of the peak stress, initial stress, saturation stress, steady state stress and peak stain on Zener-Hollomon parameter were obtained. The mathematical models of dynamic recrystallization fraction and grain size were also obtained. Based on the tested data, the flow stress model of F40MnV steel was established in dynamic recovery region and dynamic recrystallization region, respectively. The results show that the activation energy for dynamic recrystallization is 278.6 kJ/mol by regression analysis. The flow stress model of F40MnV steel is proved to approximate the tested data and suitable for numerical simulation of hot forging.
机译:对F40MnV钢的热变形行为和流变应力模型进行了研究,以1223-1473 K和0.1-10 s〜(-1)的应变速率进行单冲击压缩试验。获得了峰值应力,初始应力,饱和应力,稳态应力​​和峰值污点对Zener-Hollomon参数的依赖性。还获得了动态再结晶分数和晶粒尺寸的数学模型。根据试验数据,分别建立了F40MnV钢的动态恢复区和动态再结晶区的流变应力模型。结果显示,通过回归分析,动态重结晶的活化能为278.6 kJ / mol。事实证明,F40MnV钢的流变应力模型近似于试验数据,适用于热锻件的数值模拟。

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