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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 >Semi-solid microstructure evolution during reheating of aluminum A356 alloy deformed severely by ECAP
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Semi-solid microstructure evolution during reheating of aluminum A356 alloy deformed severely by ECAP

机译:ECAP严重变形的铝A356合金再加热过程中的半固态组织演变

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Semi-solid metal forming is a new developing technology that has some advantages in relation to other forming and casting technologies like high pressure die casting. This process contains three main steps: feedstock manufacturing, reheating and forming. Producing feedstocks with non-dendritic and spherical microstructure is one of the considerable factors in semi-solid forming. Feedstock manufacturing can be carried out with casting methods and solid-state methods. In solid-state processes like SIMA, remelting stage and related contamination is eliminated which is especially useful for active metals. In this research, Al (A356) has been used and in order to induce strains, equal channel angular pressing (ECAP) has been utilized. ECAP is one of the most effective and practical sever plastic deformation (SPD) methods to induce a great strain. In this study specimens were ECAPed for one to four passes to examine the effect of strain on the morphology and shape factor of reheated alloy. Conclusions indicate that with increase of strain, sphericity of particles increases, their size will decrease and sphericity takes place in less reheating time.
机译:半固态金属成型是一项新兴的技术,与高压压铸等其他成型和铸造技术相比,具有一些优势。该过程包含三个主要步骤:原料制造,再加热和成型。生产具有非树枝状和球形微观结构的原料是半固态成型中的重要因素之一。原料的制造可以通过铸造法和固态法进行。在SIMA等固态工艺中,消除了重熔阶段和相关污染,这对于活性金属尤其有用。在这项研究中,使用了Al(A356),并且为了诱发应变,使用了等通道角挤压(ECAP)。 ECAP是诱发大应变的最有效,最实用的重塑变形(SPD)方法之一。在这项研究中,将样品进行ECAP 1-4次,以检查应变对再加热合金的形态和形状因子的影响。结论表明,随着应变的增加,颗粒的球形度增加,其尺寸将减小,并且球形度在更少的再加热时间内发生。

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