HUANG Yuan-sheng,WEN Li-zhe.Effect of Annealing on the Microstructure and Property of Al3CoCrCu1/2FeMoNiTi High-entropy Alloy Laser Coating[J],45(7):162-166
Effect of Annealing on the Microstructure and Property of Al3CoCrCu1/2FeMoNiTi High-entropy Alloy Laser Coating
Received:March 30, 2016  Revised:July 20, 2016
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DOI:10.16490/j.cnki.issn.1001-3660.2016.07.027
KeyWord:high-entropy alloy  annealing  laser cladding  age hardening  hardness  solid solution strengthening  dislocation
     
AuthorInstitution
HUANG Yuan-sheng Material Technology Department, Jiangmen Polytechnic, Jiangmen , China
WEN Li-zhe Material Technology Department, Jiangmen Polytechnic, Jiangmen , China
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Abstract:
      Objective To investigate the annealing age hardening of Al3CoCrCu1/2FeMoNiTi high-entropy alloy coating and strengthening mechanism. Methods Al3CoCrCu1/2FeMoNiTi high-entropy alloy coating was deposited on 40Cr steel with laser cladding equipment, and then was annealed. X-ray diffractometer, scanning electron microscope and microhardness tester were employed to analyze microstructure and hardness. Results The original coating was of BCC single-phase structure. After annealing at 300 ℃ and 500 ℃, the coating was still of BCC structure. The coating annealed at 700 ℃ precipitated NiTi intermetallic compound phase. When the annealing temperature was 900 ℃, the coating was composed of FCC phase and NiTi. The coating SEM morphology that was annealed at 0~700 ℃ was granular. After annealing at 900 ℃, the morphology was like lath. The coating annealed at 300 ℃ had a lower hardness than that of non-annealed. The hardness increased when the annealing temperature was more than 300 ℃. It reached the highest about 924HV at 700 ℃. It then became lower at 900 ℃. NiTi phase precipitating improved the alloy hardness. Solid solution strengthening of high-entropy alloys could be explained by dislocation strengthening mechanism. Conclusion Al3CoCrCu1/2FeMoNiTi high-entropy alloy coating obviously shows age hardening effect. The alloy coating has the best hardness after annealing at 700 ℃.
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