材料科学
合金
降水
微观结构
极限抗拉强度
相(物质)
融合
产量(工程)
冶金
铝
粒度
哲学
气象学
有机化学
化学
物理
语言学
作者
Yang Qi,Hu Zhang,Wenqi Zhang,Zhiheng Hu,Haihong Zhu
标识
DOI:10.1016/j.matchar.2022.112505
摘要
Developing effective heat treatments to enhance the property of LPBF-produced aluminum alloys has received strong attention in recent years. In this paper, we present a systematic study on the effect of heat treatment on the LPBF-fabricated Al-Cu-Li-Sc-Zr alloy. The heat treatment temperatures were designed according to the phase transformation and precipitation kinetic analyses. Based on precipitation kinetic analysis, the heat treatment durations of LPBF-fabricated Al-Cu-Li-Sc-Zr alloy were designed shorter than those of conventional manufacturing. Aging at 170 °C caused a small amount of T1 phases to precipitate, and thus slightly increased the yield strength (YS) of the samples. Aging at 300 °C caused plenty of Al3(Sc, Zr) phases to precipitate, and thus significantly raised the YS of the samples. Solid solution treatment at 520 °C caused grain coarsening and coarse AlCuSc phases precipitated, and thus decreased the tensile properties. The solid solution treatment is not suitable for LPBF-fabricated Al-Cu-Li-Sc-Zr alloy. This study provides a systematic understanding of post heat treatment on microstructure and mechanical properties of LPBF-fabricated Al-Cu-Li-Sc-Zr alloy, contributing to heat-treatable AlLi alloys design for LPBF.
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