The mechanism of enhancing room temperature ductility of TC4 alloys via high strain rate multidirectional forging processing

被引:0
|
作者
Fu, Jialong [1 ]
Yan, Hongge [1 ]
Chen, Jiahua [1 ]
Luo, Heng [1 ]
Xia, Weijun [1 ]
Su, Bin [1 ]
Yu, Yangbo [1 ]
Song, Min [2 ]
机构
[1] Hunan Univ, Sch Mat & Engn, Changsha 410082, Peoples R China
[2] Cent South Univ, State Key Lab Powder Met, Changsha 410083, Peoples R China
基金
中国国家自然科学基金;
关键词
Multi-directional forging; High ductility; Equiaxial alpha; TC4; alloy; Geometrically necessary dislocation; Dynamic recrystallisation; BETA-TITANIUM ALLOYS; DYNAMIC RECRYSTALLIZATION; DEFORMATION MECHANISMS; MICROSTRUCTURE EVOLUTION; TI-6AL-4V ALLOY; HOT; BEHAVIOR; PHASE; TI-5AL-5MO-5V-1CR-1FE; ALPHA;
D O I
10.1016/j.jallcom.2025.179111
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
It is important to enhance the room temperature ductility of titanium alloy for its application in complex structural parts. In this study, high strain rate multi-direction forging (MDF) technique is used to refine the grain size of TC4 alloy, and both the evolution regularity and the formation mechanism of the microstructure are elucidated. Dynamic recrystallization (DRX) is enhanced by high strain rate deformation, and thus the fine uniform equiaxed alpha phase is obtained. After 2 passes of MDF at 880 degrees C with the strain rate of 13 s(-1), the mean grain size of alpha phase is refined to 3.2 mu m, and the samples exhibit a high ductility of up to 25.9 % with the yield strength and the ultimate tensile strength of 944 MPa and 1060 MPa, respectively. The ductility enhancement mechanism is due to the refined equiaxial alpha phase, which increases the strain hardening rate of the alloy by the high density of geometrically necessary dislocation (GND) and the activated <c+a> slip system, and thus the crack initiation is inhibited.
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页数:13
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