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Modeling Deformation Flow Curves and Dynamic Recrystallization of BA-160 Steel During Hot Compression

机译:热压缩期间Ba-160钢的建模变形流动曲线和动态再结晶

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The hot deformation behavior of a high strength low carbon steel was investigated using hot compression test at the temperature range of 850-1100 A degrees C and under strain rates varying from 0.001 to 1 s(-1). It was found that the flow curves of the steel were typical of dynamic recrystallization at the temperature of 950 A degrees C and above; at tested strain rates lower than 1 s(-1). A very good correlation between the flow stress and Zener-Hollomon parameter was obtained using a hyperbolic sine function. The activation energy of deformation was found to be around 390 kJ mol(-1). The kinetics of dynamic recrystallization of the steel was studied by comparing it with a hypothetical dynamic recovery curve, and the dynamically fraction recrystallized was modeled by the Kolmogorov-Johnson-Mehl-Avrami relation. The Avrami exponent was approximately constant around 1.8, which suggested that the type of nucleation was one of site saturation on grain boundaries and edges.
机译:在850-1100℃的温度范围内的热压缩试验和在0.001至1s(-1)的应变率下,使用热压缩试验研究了高强度低碳钢的热变形行为。 结果发现,钢的流动曲线在950℃和以上的温度下典型的动态重结晶; 在低于1 s(-1)的测试率速率下。 使用双曲线正弦功能获得流量应力和ZENER-HOLLOMON参数之间的非常好的相关性。 发现变形的激活能量约为390kJ摩尔(-1)。 通过将其与假设的动态恢复曲线进行比较,研究了钢的动态再结晶动力学,并通过Kolmogorov-Johnson-Mehl-Avrami关系进行了模型的动态分数。 Avrami指数左右约为1.8,这表明成核的类型是晶界和边缘的网站饱和度之一。

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