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Nanoindentation and microstructure of Friction Stir Processed Die Cast Mg-Al-Zn alloy

机译:搅拌摩擦压铸镁铝锌合金的纳米压痕和组织

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摘要

A high pressure die cast (HPDC) magnesium alloy was friction stir processed (FSP) at high rotation rates with different advancing speeds. The friction stir process induced the disappearance of porosity, typical of the HPDC process, and formation of very fine grain boundary phases. Nanoindentation was used to mechanically characterize the different welded zones of interest, the thermomechanical heat affected zone (TMAZ), the stirred zone (SZ), in the advancing and the retreating side, at different sheet section depths. Aging at high temperature showed precipitates uniformly distributed inside the magnesium grains, due to the increased level of Al taken into solid solution.
机译:高压压铸(HPDC)镁合金在高转速下以不同的前进速度进行了摩擦搅拌处理(FSP)。搅拌摩擦过程引起了HPDC过程中典型的孔隙度的消失,并形成了非常细的晶界相。纳米压痕被用来机械地表征在不同的板截面深度处的前进侧和后退侧中的不同的感兴趣的焊接区域,热机械热影响区域(TMAZ),搅拌区域(SZ)。高温时效表明,由于固溶铝的含量增加,析出物均匀地分布在镁晶粒内。

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