Effect of stress-induced martensites and reverse-induced dislocations on α phase precipitation behavior in a metastable β-Ti alloy

被引:0
作者
Tang, Luyao [1 ]
Gao, Puyi [1 ]
Fan, Jiangkun [1 ,2 ,3 ]
Zhang, Wenyuan [1 ]
Zhao, Ding [1 ]
Ma, Yinfan [1 ]
Fan, Panpan [1 ]
Zhang, Zhixin [2 ]
Li, Jinshan [1 ,2 ,3 ]
机构
[1] State Key Laboratory of Solidification Processing, Northwestern Polytechnical University, Xi'an
[2] Chongqing Innovation Center, Northwestern Polytechnical University, Chongqing
[3] National & Local Joint Engineering Research Center for Precision Thermoforming Technology of Advanced Metal Materials, Xi'an
来源
Journal of Materials Science and Technology | 2025年 / 234卷
基金
中国国家自然科学基金;
关键词
Isothermal annealing; Martensite reversion; Stress-induced martensite; Titanium alloy; α phase precipitation;
D O I
10.1016/j.jmst.2025.01.049
中图分类号
学科分类号
摘要
Achieving precise control over α phase precipitation is crucial for obtaining ultra-high strength in metastable β-Ti alloys. However, a comprehensive understanding of how deformation products and their reversion counterparts influence α phase precipitation behavior in these exceptional alloys remains elusive. This study explores the influence of stress-induced martensite (SIM) and its reversion-induced dislocations on the α phase precipitation behavior in a metastable β-Ti alloy. After loading and reloading, SIM laths formed, and some SIM laths subsequently reversed into the β phase, introducing band-like regions with dense and parallel arranged <110> dislocations in the β phase matrix. Such dislocations resulted in a band-like area decorated with short rod-like α phase precipitates during isothermal annealing. Meanwhile, the remaining stress-induced martensite decomposed directly into α phase, forming a long α phase with a morphology similar to the original martensite. Additionally, both sides of the original SIM laths reversed during isothermal annealing, forming {332}<113>β twins at the α/β phase interface. This divided the α phase formed in SIM laths from the α phase formed directly in the β matrix. © 2025
引用
收藏
页码:71 / 81
页数:10
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