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Effect of Chip Size on Semi-Solid Microstructure of AZ91D Magnesium Alloy Prepared by CRP Process

机译:CRP工艺制备的切屑尺寸对AZ91D镁合金半固态组织的影响

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In this paper, chip recycled pressing process (CRP for short), a new method for recycling magnesium alloy chips, was put forward to prepare semi-solid billet. AZ91D magnesium alloy chips of different sizes were respectively recycled to prepare semi-solid billet by CRP process. Effect of chip size on compactness, microstructure and oxidation of CRP billet were investigated. And then CRP billets were heated to semi-solid state and its semi-solid microstructures were studied. The results showed that with the increase of chip thickness, grain refinement effect weakened, deformation uniformity aggravated and oxygen content of CRP billet decreased. Under the same CRP process conditions, the relative densities of four kind of CRP billet were 98.27%, 98.13%, 98.05% and 97.92%, respectively. Meanwhile, there was no significant difference in compactness and microstructure between them. Normally, oxygen content was not more than 1.8% and uniformly dispersed in CRP billet. Hence, the influence of size and deformation inhomogeneity of chips on compactness and microstructure of CRP billet were eliminated via CRP process. In CRP billet, microstructure and strain were uniform and this inherited during semi-solid isothermal treatment.
机译:提出了一种切屑回收压制工艺(简称CRP),一种回收镁合金切屑的新方法,用于制备半固态坯料。将不同尺寸的AZ91D镁合金切屑分别循环利用CRP工艺制备半固态坯料。研究了切屑尺寸对CRP钢坯致密性,微观结构和氧化的影响。然后将CRP钢坯加热到半固态,并研究其半固态组织。结果表明,随着切屑厚度的增加,晶粒细化效果减弱,变形均匀性增强,CRP钢坯含氧量降低。在相同的CRP工艺条件下,四种CRP钢坯的相对密度分别为98.27%,98.13%,98.05%和97.92%。同时,它们之间的致密性和微观结构没有显着差异。通常,氧含量不超过1.8%,并且均匀地分散在CRP钢坯中。因此,通过CRP工艺消除了切屑的尺寸和变形不均匀性对CRP坯料的致密性和微观结构的影响。在CRP钢坯中,微观结构和应变是均匀的,并且在半固态等温处理过程中是遗传的。

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