放电等离子烧结
材料科学
合金
高熵合金
球磨机
烧结
冶金
微观结构
作者
Minsu Kim,Ashutosh Sharma,Myoung Jin Chae,Hansung Lee,Byungmin Ahn
标识
DOI:10.24425/amm.2021.136365
摘要
Microstructural Evolution of alcufeMnti-0.75siHigH Entropy alloy procEssEd by MEcHanical alloying and spark plasMa sintEring in this work, we have designed a new high entropy alloy containing lightweight elements, e.g., Al, Fe, Mn, Ti, Cu, si by high energy ball milling and spark plasma sintering.The composition of si was kept at 0.75 at% in this study.The results showed that the produced AlCuFeMnTisi 0.75 high entropy alloy was BCC structured.The evolution of BCC1 and BCC2 phases was observed with increasing the milling time up to 60 h.The spark plasma sintering treatment of milled compacts from 650-950°C showed the phase separation of BCC into BCC1 and BCC2.The density and strength of these developed high entropy alloys (95-98%, and 1000 hV) improved with milling time and were maximum at 850°C sintering temperature.The current work demonstrated desirable possibilities of Al-si based high entropy alloys for substitution of traditional cast components at intermediate temperature applications.
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