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On the formation of large grain structure after friction stir processing of ultrafine-grained aluminium alloy

机译:浅谈超细晶粒铝合金摩擦搅拌加工后形成的大晶粒结构

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A tendency for formation of large grain structure after friction stir processing (FSP) of ultrafine-grained aluminium produced by severe plastic deformation was thoroughly discussed. To do so, microstructural assessments using electron backscattered diffraction (EBSD) analysis at various regions, including ahead of and beneath the FSP tool were carried out. It was found that ultrafine-grained microstructure of the base metal played an important role in dynamic recrystallisation (DRX) occurring in the stir zone. There are some enlarged grains just ahead of the FSP tool prior to being stirred by it. Partial static recrystallisation followed by grain growth as well as strain-induced grain boundary migration was responsible for the formation of such grains. The large grains could postpone grain subdivision process through continuous and geometrical DRX mechanisms. Moreover, the remained part of the stored strain provided driving force for grain growth after grain subdivision in the stir zone.
机译:深入探讨了剧烈塑性变形产生的超细晶粒铝在搅拌摩擦加工(FSP)后形成大晶粒结构的趋势。为此,使用电子背散射衍射 (EBSD) 分析在各个区域(包括 FSP 工具的前面和下方)进行了微观结构评估。结果表明,贱金属的超细晶粒微观结构在搅拌区动态再结晶(DRX)中起着重要作用。在被FSP工具搅拌之前,FSP工具前面有一些放大的颗粒。部分静态重结晶随后的晶粒生长以及应变诱导的晶界迁移是此类晶粒形成的原因。大晶粒可以通过连续和几何DRX机制推迟晶粒细分过程。此外,在搅拌区,储存菌株的残余部分为籽粒细分后的籽粒生长提供了驱动力。

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