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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Microstructural study of cold forged and annealed Mg alloys
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Microstructural study of cold forged and annealed Mg alloys

机译:冷锻和退火镁合金的显微组织研究

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摘要

Cold forging deformations (3 and 8%) were carried out on extruded AZ31 and AZ61 Mg alloys, and subsequent annealing is performed at 573 K for different durations. The microstructure evolution is investigated and further analysed. The results show that the thick lenticular twinning is mainly formed at initial deformation stage and subsequently transforms into narrow band twinning. Compared to AZ31, AZ61 produces broader twins with lower volume fraction in response to 3% cold forging due to Al-Mn phase hindering the twinning activity and plastic deformation. Twin boundary plays an important role in refining grains as it provides the nucleation sites of static recrystallisation. Moreover, as for AZ61, the starting and ending times of static recrystallisation are much later than those of AZ31.
机译:对挤压的AZ31和AZ61 Mg合金进行冷锻变形(分别为3%和8%),随后在573 K下进行不同时间的退火。研究并进一步分析了微观结构的演变。结果表明,厚的双晶孪晶主要形成在初始变形阶段,随后转变为窄带孪晶。与AZ31相比,AZ61产生的宽孪晶具有更低的体积分数,这是由于Al-Mn相阻碍了孪晶活性和塑性变形而对3%的冷锻造成的。双晶边界在细化晶粒中起着重要作用,因为它提供了静态再结晶的成核位置。而且,对于AZ61,静态再结晶的开始和结束时间比AZ31要晚得多。

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