材料科学
微观结构
合金
铝
极限抗拉强度
冶金
粒度
铝合金
晶界
6063铝合金
降水
6111铝合金
复合材料
物理
气象学
作者
Bingchen Li,Xi Chen,Meng Jiang,Shengchong Ma,Zhiyuan Wang,Zhenglong Lei,Yanbin Chen
标识
DOI:10.1080/13621718.2023.2182485
摘要
In this work, TiC nanoparticles (TiCps) reinforced 7075 aluminium alloy was fabricated via an oscillating laser-arc hybrid additive manufacturing process. To show the beneficial effect of TiCps addition on microstructure and mechanical properties, a conventional 7075 aluminium alloy was also manufactured for comparison. Upon the addition of TiCps, remarkable grain refinement was achieved with a decrease in average grain size from 111.8 to 12.5 µm, and grain boundary segregation was alleviated. It was also found that many secondary phases precipitated at the grain interior in the deposit with TiCps. Owing to the refined microstructure and favourable precipitation, as-deposited 7075 aluminium alloy with TiCps showed enhanced tensile properties of ultimate tensile strengths of 346 and 355 MPa along scanning and build directions.
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