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首页> 外文期刊>Metals and Materials International >Evaluation of Hot Deformation and Dynamic Recrystallization Behaviors of Advanced Reduced-Activated Alloy (ARAA)
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Evaluation of Hot Deformation and Dynamic Recrystallization Behaviors of Advanced Reduced-Activated Alloy (ARAA)

机译:高级减效合金(ARAA)热变形及动态再结晶行为的评价

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The hot deformation behavior of advanced reduced-activation alloy (ARAA) was investigated using hot torsion tests. The flow stress decreased as deformation temperature increased and as strain rate decreased. The flow behavior demonstrated the typical dynamic recrystallization (DRX). Based on the constitutive analysis of peak stress, the activation energy for hot deformation was found to be 330.3 kJ mol(-1). Peak stress was analyzed as a function of the Zener-Hollomon parameter, and calculated and experimental values were in good agreement. A DRX kinetic model for ARAA was derived with deformation conditions based on the Avrami-type model. It was confirmed that the volume fraction of dynamically recrystallized grains increased as deformation temperature increased and as strain rate decreased. The necklace structure and grain boundary bulging were observed in the deformed microstructure of ARAA. The suggested DRX mechanism for ARAA during hot working is discontinuous DRX.
机译:使用热扭转试验研究了先进的减效合金(ARAA)的热变形行为。 变形温度增加并且随着应变速率降低的变形压力降低。 流动行为证明了典型的动态再结晶(DRX)。 基于峰值应力的本构分析,发现热变形的活化能量为330.3kJ摩尔(-1)。 作为ZENER-HOLLOMON参数的函数分析峰值应力,计算和实验值很好。 基于Avrami型模型的变形条件,衍生ARAA的DRX动力学模型。 证实,随着变形温度的增加,动态再结晶的晶粒的体积分数增加,随着应变速率降低。 在ARAA的变形微观结构中观察着项链结构和晶界凸缘。 在热工作期间ARAA的建议DRX机制是不连续的DRX。

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