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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Dynamic recrystallization behavior and hot workability of AZ41M magnesium alloy during hot deformation
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Dynamic recrystallization behavior and hot workability of AZ41M magnesium alloy during hot deformation

机译:热变形过程中AZ41M镁合金的动态再结晶行为和热加工性

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摘要

The dynamic recrystallization (DRX) behavior and hot workability of AZ41M magnesium alloy were studied via isothermal compression experiments. The tests were performed at 300-450 degrees C with strain rate of 0.005-1 s(-1) on a Gleeble-1500D thermal-mechanical simulation machine. According to the experimental results, the flow stress curves show a quintessential single-peak dynamic recrystallization behavior. The characteristic points of the flow stress curves including the critical strain of DRX initiation (epsilon(c)) and the strain for maximum softening rate (epsilon*) were determined by employing the method of strain hardening rate analysis. Then the DRX kinetic model of AZ41M magnesium alloy was established by Avrami equation to characterize the evolution of DRX volume fraction. Furthermore, the processing maps at different strains were developed and analyzed based on dynamic material model (DMM). According to the processing maps, the flow instability regions and stability regions were identified. And the optimum domain for hot working of AZ41M magnesium alloy is the temperature range of 390-450 degrees C and strain rate range of 0.005-0.015 s(-1). (C) 2016 Elsevier B.V. All rights reserved.
机译:通过等温压缩实验研究了AZ41M镁合金的动态再结晶行为和热加工性能。测试是在Gleeble-1500D热力机械仿真机上在300-450摄氏度,应变率为0.005-1 s(-1)的条件下进行的。根据实验结果,流动应力曲线显示出典型的单峰动态再结晶行为。采用应变硬化率分析方法,确定了包括DRX引发的临界应变(epsilon(c))和最大软化速率的应变(eps *)在内的流动应力曲线的特征点。通过Avrami方程建立了AZ41M镁合金的DRX动力学模型,以表征DRX体积分数的演变。此外,基于动态材料模型(DMM),开发并分析了不同菌株的加工图。根据处理图,确定流动不稳定区域和稳定区域。 AZ41M镁合金热加工的最佳范围是390-450摄氏度的温度范围和0.005-0.015 s(-1)的应变速率范围。 (C)2016 Elsevier B.V.保留所有权利。

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