材料科学
延展性(地球科学)
钛合金
亚稳态
合金
钛
压力(语言学)
晶体孪晶
复合材料
相(物质)
低温
冶金
相界
微观结构
化学
蠕动
有机化学
语言学
哲学
作者
Yongkang Li,Zhibin Liao,Weidong Zhang,Zhenggang Wu,Canxu Zhou
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2020-10-23
卷期号:13 (21): 4732-4732
被引量:4
摘要
A β titanium alloy is an excellent candidate for cryogenic applications. In this study, the deformation behavior of Ti-36Nb-2Ta-3Zr-0.35O with cold swaging was investigated at cryogenic temperatures to verify its practical application value. The microstructure after tensile tests was observed by transmission electron microscope in order to reveal the cryogenic deformation mechanism. The results show that the mechanical properties of this alloy have a strong temperature dependence: an increase in strength with a non-monotonic trend (first increase and then decrease) in elongation is found when the temperature decreases from 297 K to 77 K. At 200 K, a strength-ductility synergy is obtained and is mainly due to the occurrence of {211} <11> mechanical twinning accompanied with the ω plate located at the twin boundaries, which is the first time it is detected in titanium alloy at a cryogenic temperature. However, at 77 K, martensitic transformation (β phase to α phase) is induced by the tensile deformation, leading to the increase of strength with a massive sacrifice of elongation. These findings provide insights for understanding the deformation mechanisms and optimizing the mechanical properties of titanium alloys at a cryogenic temperature.
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