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Quantitative description of the flow-stress dependence of aluminum alloys at the stage of steady flow upon hot deformation on the Zener-Hollomon parameter

机译:ZENER-HOLLOMON参数在热变形时铝合金在稳定流动阶段流动应力依赖性的定量描述

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摘要

The deformation behavior of a 1981 aluminum alloy has been studied using a complex for simulating thermomechanical processes in the temperature range of 200-400A degrees C at a deformation rate in the range of 0.001-10 s(-1). The models of the relationships between the flow stress, temperature, and deformation rate have been constructed using a power-law dependence, exponential dependence, and hyperbolic-sine function on the Zener-Hollomon parameter (Z). In the calculations according to the power-law and exponential equations, discrepancies between the calculated and experimental values of the Zener-Hollomon parameter have been revealed at low and high values. These discrepancies are caused by the fact that the experimentally obtained dependences of the flow stress on the Z parameter over the entire range of its change with a single magnitude of the effective activation energy of the plastic deformation consist of two linear parts that correspond to the hot and warm deformation and have different magnitudes of the effective activation energy of plastic deformation with a lower value of the activation energy for hot deformation.
机译:已经使用复合物研究了1981铝合金的变形行为,用于在0.001-10s(-1)的变形速率下模拟200-400A℃的温度范围内的热机械过程。使用ZENER-HOLLOMON参数(Z)上的动力依赖性,指数依赖性和双曲线函数构建了流量应力,温度和变形率之间的关系的模型。在根据权力法和指数方程的计算中,在低价和高值下揭示了ZENER-HOLLOMON参数的计算和实验值之间的差异。这些差异是由实验上获得的流量对Z参数的依赖性在其整个变化范围内的Z参数的依赖性引起的,其具有塑性变形的有效激活能量的单个大小包括两个对应于热的线性部件温暖变形,具有不同的塑性变形的有效激活能量,具有较低的激活能量,用于热变形。

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