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激光粉末床熔融AlSi10Mg合金时效引起的微观结构演变及硬化现象

Microstructural evolution and hardening phenomenon caused by aging of AlSi10Mg alloy by laser powder bed fusion.

作者信息

Maeshima Takashi, Oh-Ishi Keiichiro, Kadoura Hiroaki

机构信息

Toyota Central R&D Labs., Inc., 41-1, Yokomichi, Nagakute, Aichi, 480-1192, Japan.

出版信息

Heliyon. 2024 Mar 12;10(6):e28006. doi: 10.1016/j.heliyon.2024.e28006. eCollection 2024 Mar 30.

Abstract

Microstructures and age-hardening phenomena of directly aged (artificial aged) AlSi10Mg alloys fabricated by laser powder bed fusion (LPBF) were characterized using scanning transmission electron microscopy, atom probe tomography, and Vickers hardness testing. The microstructure derived from overlapping melt pools has a full cellular structure consisting of eutectic Si walls surrounding α-Al cells. In the initial stage of aging, solute clusters with density on the order of 10/m were formed in α-Al cells. By prolonging the aging time further, fine Si particles of about 50 nm in diameter precipitated. Before Si precipitation, the hardness of the aged sample was clearly greater than that of the as-built state. With further aging time, the hardness increased further because of the Si precipitation. Cluster analysis revealed that the number density and the size of clusters increased from as-built state by aging, whereas the types of the solute clusters remained almost unchanged by aging. The results indicate that the nanoscale clusters within the α-Al cells, which increase via aging, produce age-hardening effect.

摘要

采用扫描透射电子显微镜、原子探针断层扫描和维氏硬度测试对激光粉末床熔融(LPBF)制备的直接时效(人工时效)AlSi10Mg合金的微观结构和时效硬化现象进行了表征。由重叠熔池形成的微观结构具有完整的胞状组织,由围绕α-Al胞的共晶硅壁组成。在时效初期,α-Al胞中形成了密度约为10/m的溶质团簇。通过进一步延长时效时间,直径约50nm的细小硅颗粒析出。在硅析出之前,时效样品的硬度明显高于铸态。随着时效时间的进一步延长,由于硅的析出,硬度进一步增加。聚类分析表明,时效后团簇的数量密度和尺寸较铸态有所增加,而溶质团簇的类型几乎保持不变。结果表明,α-Al胞内通过时效增加的纳米级团簇产生了时效硬化效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11b9/10955321/f4aff4172e91/gr1.jpg

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