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Dynamic recrystallization and texture evolution of Mg-6.8Y-2.5Zn-0.3Zr alloy during hot rolling

机译:热轧过程中Mg-6.8Y-2.5Zn-0.3Zr合金的动态再结晶和纹理演化

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The dynamic recrystallization and changes in the preferred orientation of crystallites during hot rolling at 500°C have been studied on a cast Mg-6.8Y-2.5Zn-0.3Zr (wt. %) alloy (WZ73) containing long-period stacking ordered (LPSO) phases. The recrystallization began predominantly within twins and also occurred near the LPSO phases. The twinned regions have a much higher stored strain energy compared to the matrix, and are therefore favorable nucleation sites for dynamic recrystallization. Besides, the bits of the LPSO phase located at the grain boundaries of the magnesium matrix grains act as nucleation sites for dynamic recrystallization. With increasing strain from 36% to 74%, the average volume fraction of recrystallized grains increased from 3.5% to 48.8%. The intensive recrystallization process resulted in basal texture weakening. Thus, the resulting microstructure is a mixture of randomly oriented, dynamically recrystallized and coarse, highly oriented non-recrystallized grains.
机译:在500℃下,在铸造Mg-6.8Y-2.5ZN-0.3ZR(WT.%)合金(WZ73)上进行了长期堆叠( LPSO)阶段。 重结晶主要在双胞胎内开始,并且在LPSO阶段附近也发生。 与基质相比,孪晶区域具有更高的储存应变能,因此是有利于动态再结晶的核心位点。 此外,位于镁基质晶粒的晶界处的LPSO相的比特作为动态再结晶的成核位点。 随着36%升至74%的余量,重结晶晶粒的平均体积分数从3.5%增加到48.8%。 密集的再结晶过程导致基础纹理弱化。 因此,所得的微观结构是随机取向,动态再结晶和粗,高度取向的非再结晶颗粒的混合物。

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