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首页> 外文期刊>Journal of Materials Science >Microstructural evolution and its effect on Hall-Petch relationship in friction stir welding of thixomolded Mg alloy AZ91D
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Microstructural evolution and its effect on Hall-Petch relationship in friction stir welding of thixomolded Mg alloy AZ91D

机译:触变镁合金AZ91D搅拌摩擦焊的组织演变及其对Hall-Petch关系的影响

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Microstructural evolution of a thixomolded magnesium (Mg) alloy AZ91D during friction stir welding was investigated. Friction stir welding resulted in a homogeneous microstructure consisting of fine recrystallised alpha-Mg grains in the thixomolded material. The microstructural homogenisation and refinement was attributed to dynamic recrystallisation accompanied by the dissolution of the eutectic structure during the welding. The grain refinement in the stir zone was effective in increasing the hardness, as predicted by the Hall-Petch equation. The effect of grain size on hardness was smaller than that in conventional and rapidly solidified AZ91. This phenomenon may be explained as being due to the microstructure of the stir zone which consisted of fine equiaxed grains with a high density of dislocations. (C) 2003 Kluwer Academic Publishers. [References: 32]
机译:研究了搅拌摩擦焊接过程中触变镁(Mg)合金AZ91D的组织演变。搅拌摩擦焊接产生了均匀的微观结构,该微观结构由触变性成型材料中的细微重结晶的α-Mg晶粒组成。微观结构的均质化和细化归因于动态再结晶,伴随着焊接过程中共晶组织的溶解。如Hall-Petch方程所预测的,在搅拌区进行晶粒细化可以有效地提高硬度。晶粒尺寸对硬度的影响小于常规的快速凝固的AZ91。可以将这种现象解释为是由于搅拌区的微观结构,其由具有高位错密度的细等轴晶粒组成。 (C)2003 Kluwer学术出版社。 [参考:32]

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