首页> 外文OA文献 >Precipitate stability and recrystallisation in the weld nuggets of friction stir welded Al-Mg-Si and Al-Mg-Sc alloys.
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Precipitate stability and recrystallisation in the weld nuggets of friction stir welded Al-Mg-Si and Al-Mg-Sc alloys.

机译:搅拌摩擦焊接的Al-Mg-Si和Al-Mg-Sc合金的焊接熔核中的沉淀稳定性和再结晶。

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摘要

Two different precipitate hardening aluminium alloys processed by friction stir welding were investigated. The microstructure and the hardness of the as delivered materials were compared to that of the weld nugget. Transmission electron microscopy observations combined with three-dimensional atom probe analyses clearly show that β'' precipitates dissolved in the nugget of the Al-Mg-Si giving rise to some supersaturated solid solution. It is shown that the dramatic softening of the weld could be partly recovered by post-welding ageing treatments. In the Al-Mg-Sc alloy, Al3Sc precipitate size and density are unchanged in the nugget comparing to the base metal. These precipitates strongly reduce the boundary mobility of recrystallised grains, leading to a grain size in the nugget much smaller than in the Al-Mg-Si alloy. Both coherent and incoherent precipitates were detected. This feature may indicate that a combination of continuous and discontinuous recrystallisation occurred in the weld nugget.
机译:研究了两种不同的摩擦搅拌焊接沉淀硬化铝合金。将所交付材料的显微组织和硬度与焊核的显微组织和硬度进行了比较。透射电子显微镜观察结合三维原子探针分析清楚地表明,β''沉淀物溶解在Al-Mg-Si的核中,产生了一些过饱和固溶体。结果表明,焊接后的时效处理可以部分恢复焊缝的剧烈软化。与基础金属相比,在Al-Mg-Sc合金中,熔核中的Al3Sc沉淀物尺寸和密度没有变化。这些沉淀物极大地降低了再结晶晶粒的边界迁移率,导致熔核中的晶粒尺寸比Al-Mg-Si合金小得多。检测到相干和不相干的沉淀物。该特征可能表明在焊接熔核中发生了连续和不连续再结晶的组合。

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