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Microstructure and Tensile Properties of Friction Stir Processed Mg–Sn–Zn Alloy

机译:搅拌摩擦加工的Mg-Sn-Zn合金的显微组织和拉伸性能

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摘要

In this study, as-cast Mg–6Sn–2Zn (wt.%) alloy was subjected to friction stir processing (FSP) and the microstructure and tensile properties of FSP Mg–6Sn–2Zn samples were investigated. It was found that, in the stir zone (SZ) of FSP Mg–6Sn–2Zn samples, α-Mg grains were significantly refined via dynamic recrystallization (DRX) and the Mg2Sn phase was broken and partially dissolved. The microstructure in SZ was nonuniform and DRXed grains in the SZ-up regions were coarser than those in the SZ-down regions. Coarse broken Mg2Sn particles were observed in the SZ-up regions, while only fine Mg2Sn particles were observed in the SZ-down regions. Strong {0001} basal texture developed in the SZ regions of Mg–6Sn–2Zn samples after FSP. The increase of travel speed had little effect on the texture of different SZ regions. The ductility of FSP Mg–6Sn–2Zn samples was obviously improved, while the improvement in strength was negligible when compared to the as-cast sample. The tensile properties of FSP Mg–6Sn–2Zn samples were influenced by grain refinement, texture modification, and the breaking up and dissolution of the Mg2Sn phase.
机译:在这项研究中,对铸态的Mg-6Sn-2Zn(wt。%)合金进行了摩擦搅拌处理(FSP),并研究了FSP Mg-6Sn-2Zn样品的组织和拉伸性能。结果发现,在FSP Mg-6Sn-2Zn样品的搅拌区(SZ),α-Mg晶粒通过动态重结晶(DRX)得到了显着细化,并且Mg2Sn相被破坏并部分溶解。 SZ的微观结构不均匀,SZ向上区域中的DRXed晶粒比SZ向下区域中的粗糙。在SZ向上区域中观察到粗碎的Mg2Sn颗粒,而在SZ向下区域中仅观察到细的Mg2Sn颗粒。 FSP后,Mg-6Sn-2Zn样品的SZ区形成了较强的{0001}基础纹理。行驶速度的提高对不同深圳地区的质地影响不大。与铸态样品相比,FSP Mg-6Sn-2Zn样品的延展性明显提高,而强度的提高可忽略不计。 FSP Mg-6Sn-2Zn样品的拉伸性能受晶粒细化,织构改性以及Mg2Sn相的分解和溶解影响。

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