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Semi-solid billets of AZ91D magnesium alloy prepared by forward extrusion/Equal-Channel Angular Pressing

机译:AZ91D镁合金的半固体坯料通过正向挤出/相等通道角压制

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Stress-induced melt activation (SIMA) has a certain advantage during the preparation of semi-solid billet of Mg alloy. However, Equal-Channel Angular Pressing (ECAP) only can produce small billet by several channels to achieve large equivalent strain. To conquer this problem, the forward extrusion/(ECAP) method, a new process for preparing semi-solid Mg alloy was proposed. And the feasibility of forward extrusion/ECAP was analyzed. This new method simplified the processing procedure for providing commercial semisolid billets of Mg alloy. The experimental dies and experimental procedure were designed. The effect of extrusion ratio and equivalent strain on the microstructure of semisolid Mg alloy was investigated. It was found that when the extrusion ratio was larger than 10, the semisolid microstructure is refined, with increasing extrusion ratio, the microstructure is refined further.
机译:在制备半固体坯料的Mg合金中,应激诱导的熔体活化(Sima)具有一定的优势。然而,等通道角压(ECAP)只能通过多个通道产生小型坯料以实现大的等效应变。为了征服这个问题,提出了前挤出/(ECAP)方法,制备半固体Mg合金的新方法。分析了向前挤出/ ECAP的可行性。这种新方法简化了提供商业半固体坯料的处理程序。设计了实验模具和实验程序。研究了挤出比对半固体Mg合金微观结构对挤出比和等同菌株的影响。结果发现,当挤出比大于10时,半固体微观结构随着挤出率的增加,微观结构进一步精制。

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