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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 >Effect of predeformation on the globular grains in AZ91D alloy during strain induced melt activation (SIMA) process
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Effect of predeformation on the globular grains in AZ91D alloy during strain induced melt activation (SIMA) process

机译:应变诱导熔体活化(SIMA)过程中预形变对AZ91D合金球状晶粒的影响

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摘要

The effect of predeformation on the alpha-Mg grains in the AZ91D alloys was investigated in different stages during the semisolid processing. The result showed that, with the increase of compressive ratio, the alpha-Mg dendrites in the as-cast microstructures gradually oriented themselves in the direction that was vertical to the compressive direction, and exhibited an obvious directional character. During the sequent heat treatment at 310 deg C for 20 min, the recrystallization was induced in the deformed alloys by the increasingly accumulated systemic strain energy. The metallographical observation showed that the average size of recrystal alpha-Mg grains gradually reduced with the increase of compressive ratio. The reason might be that the nucleation to growth ratio of the renascent recrystal alpha-Mg grains gradually increased in the recrystallization process. Due to the recrystallization mechanism, the predeformation made the alpha-Mg grains particularly rounder and finer after the semisolid isothermal heat treatment at 560 deg C for 20 min. The average diameter of the globular alpha-Mg grains in the semisolid microstructures also reduced with the increase of compressive ratio and this descending trend was almost similar to that in the recrystal microstructures, which further demonstrated that the recrystallization had an inevitable role on the evolution process of globular grains during SIMA process. While the compressive ratio surpassed 20 percent, the above descending trend was not so evident as that below 20 percent. In addition, the effect of predeformation on the tensile strength and elongation of the semisolid AZ91D alloys was also discussed in the present paper.
机译:在半固态加工的不同阶段研究了预变形对AZ91D合金中α-Mg晶粒的影响。结果表明,随着压缩比的增加,铸态组织中的α-Mg枝晶逐渐向垂直于压缩方向的方向取向,并表现出明显的方向性。在随后的310℃热处理20分钟的过程中,由于累积的系统应变能越来越大,在变形合金中引起了再结晶。金相观察结果表明,随着压缩比的增加,重结晶α-Mg晶粒的平均尺寸逐渐减小。原因可能是在重结晶过程中,新生的重结晶α-Mg晶粒的成核生长率逐渐增加。由于重结晶机理,在560℃下进行20分钟的半固态等温热处理后,预变形使α-Mg晶粒特别致密和细化。半固体微结构中的球状α-Mg晶粒的平均直径也随着压缩比的增加而减小,并且这种下降趋势几乎与重结晶组织中的相似,这进一步表明了重结晶在演化过程中具有不可避免的作用。 SIMA过程中球状颗粒的数量。当压缩比超过20%时,上述下降趋势并不象低于20%那样明显。此外,还讨论了预变形对半固态AZ91D合金的拉伸强度和伸长率的影响。

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