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Critical Rolling Process Parameters for Dynamic Recrystallization Behavior of AZ31 Magnesium Alloy Sheets

机译:AZ31镁合金薄板动态再结晶行为的关键轧制工艺参数

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摘要

In this work, the influence of various rolling temperatures and thickness reductions on the dynamic recrystallization (DRX) behavior of AZ31 magnesium alloy sheets was investigated. Meanwhile, the texture variation controlled by DRX behavior was analyzed. Results suggested that, with the help of DRX behavior, reasonable matching of rolling temperature and thickness reduction could effectively refine the grain size and improve the microstructure homogeneity. Using the grain refinement and microstructure homogeneity as the reference, the critical rolling process parameters were 400 °C—30%, 300 °C—30%, and 250 °C—40% in the present work. In terms of basal texture variation, the occurrence of twins produced the largest maximum texture intensity. However, for the sheets with DRX behavior, the maximum texture intensity decreased sharply, but would steadily increase with the growth of DRXed grain. Additionally, for DRXed grains, the <11-20>//RD (RD: rolling direction) grains would gradually annex the <10-10>//RD grains with the growth of DRXed grains, which finally made their texture component become the dominant texture state. However, when the deformation continued, the <10-10> in DRXed grains would rotate toward the RD again. Weighted by the fracture elongation of AZ31 magnesium alloy sheet, the critical thickness reductions were 30–40% under the rolling temperature of 400 °C.
机译:在这项工作中,研究了各种轧制温度和厚度减小对AZ31镁合金板材动态再结晶(DRX)行为的影响。同时,分析了由DRX行为控制的纹理变化。结果表明,借助DRX性能,轧制温度和减薄厚度的合理匹配可以有效地细化晶粒尺寸并改善组织均匀性。以晶粒细化和组织均匀性为参考,目前的关键轧制工艺参数为400°C–30%,300°C–30%和250°C–40%。就基础纹理变化而言,双胞胎的出现产生了最大的最大纹理强度。然而,对于具有DRX行为的片材,最大纹理强度急剧下降,但随着DRXed晶粒的增长而稳定增加。另外,对于DRXRX晶粒,随着DRXRX晶粒的生长,<11-20> // RD(RD:轧制方向)晶粒将逐渐并入<10-10> // RD晶粒,最终使它们的织构成分成为主导纹理状态。但是,当变形继续进行时,DRXd晶粒中的<10-10>将再次向RD旋转。通过AZ31镁合金薄板的断裂伸长加权,在400°C的轧制温度下,临界厚度减小量为30–40%。

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