Effect of high temperature thermohydrogen treatment on the microstructure, martensitic transformation, and mechanical and corrosion behaviors of Ti-V-Al lightweight shape memory alloy

Author:

Yi Xiaoyang1ORCID,Liu Wei1,Liu Gaofeng2,Wang Yunfei1,Li Weijian1,Zhang Guohao1,Wu Yanqing1,Zhang Shangzhou1,Wang Haizhen1,Sun Bin3,Gao Weihong3,Meng Xianglong4,Gao Zhiyong4

Affiliation:

1. College of Nuclear Equipment and Nuclear Engineering, Yantai University 1 , Yantai 264005, China

2. Key Laboratory of Bionic Engineering (Ministry of Education), and College of Bionic Science and Engineering, Nanling Campus of Jilin University 2 , Changchun 130025, China

3. College of Materials Science and Chemical engineering, Harbin Engineering University 3 , Harbin 150001, China

4. School of Materials Science and Engineering, Harbin Institute of Technology 4 , Harbin 150001, China

Abstract

In the present study, hydrogenation treatment was adopted to tailor the phase constituents of the Ti-V-Al shape memory alloy, further optimizing its performances. It can be found that hydrogenation treatment induced the transition from the α″ martensite phase to the β parent phase. Moreover, large amounts of hydride precipitates can be observed in the hydrogenation treated Ti-V-Al shape memory alloy with longer time of 5h. Meanwhile, the grain size of the Ti-V-Al shape memory alloy was reduced as a result of hydrogenation treatment. The interstitial atom H serving as a β-stabilizing element led to the reduction of martensitic transformation temperature. In proportion, hydrogenation treatment caused the enhancement of yield strength and decrease of elastic modulus, which promoted its application in biomedical fields. Besides, by optimizing the time of hydrogenation treatment, the hydrogenation treated Ti-V-Al shape memory alloy with 1 h possessed the superior corrosion resistance.

Funder

National Natural Science Foundation of China

Publisher

American Vacuum Society

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