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Effect of Mn on Microstructure and Properties of Mg-Y-Cu Alloy |
ZHANG Shuaijie, WU Qian, CHEN Zhitang, ZHENG Binsong, ZHANG Lei( ), XU Pian |
School of Aeronautical Manufacture Engineering, Nanchang Hangkong University, Nanchang 330063, China |
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Cite this article:
ZHANG Shuaijie, WU Qian, CHEN Zhitang, ZHENG Binsong, ZHANG Lei, XU Pian. Effect of Mn on Microstructure and Properties of Mg-Y-Cu Alloy. Chinese Journal of Materials Research, 2023, 37(5): 362-370.
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Abstract The effect of Mn on the solidification microstructure, tensile properties and corrosion behavior of Mg95.5Y3Cu1.5 alloy was investigated. The results show that with the increase of Mn content, the primary α-Mg phase in the alloy is gradually refined, and it also changes from dendritic to equiaxed dendritic morphology, while the morphology and volume fraction of LPSO phase do not change significantly. The addition of Mn improves the tensile properties of the alloy. When the Mn content is 0.9% (atom fraction) the yield strength, ultimate tensile strength and elongation are increased by 20.7%, 17.6% and 41.0% respectively compared with the alloy without Mn addition. In addition, the corrosion performance of the alloy is also improved. With the increase of Mn content, the volume of hydrogen evolution rate, mass loss rate and corrosion current density of the alloys gradually decrease, and the corrosion potential of the alloys, meanwhile, gradually moves towards positive direction.
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Received: 12 November 2021
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Fund: National Natural Science Foundation of China(51401102) |
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