Abnormal twin-twin interaction by {1122} twinning in [0001]-oriented micropillar of pure titanium at cryogenic temperature

被引:0
|
作者
Lee, Min-Su [1 ]
della Ventura, Nicolo Maria [3 ,4 ]
Sharma, Amit [2 ]
Tian, Chunhua [2 ]
Maeder, Xavier [2 ]
Jun, Tea-Sung [1 ]
机构
[1] Incheon Natl Univ, Dept Mech Engn, Incheon 22012, South Korea
[2] Incheon Natl Univ, Res Inst Engn & Technol, Incheon 22012, South Korea
[3] EMPA Swiss Fed Labs Mat Sci & Technol, Lab Mech Mat & Nanostruct, Feuerwerkerstr 39, CH-3602 Thun, Switzerland
[4] Univ Calif Santa Barbara, Dept Mat, Santa Barbara, CA 93106 USA
基金
新加坡国家研究基金会;
关键词
Titanium; Twinning; Cryogenic temperature; Micropillar; Transmission Kikuchi diffraction; 11(2)OVER-BAR2 TWIN; DEFORMATION-BEHAVIOR; ALLOY; MICROSTRUCTURE; NUCLEATION; BOUNDARIES; MECHANISMS;
D O I
10.1016/j.scriptamat.2024.116402
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Uniaxial compression tests were performed on [0001]-oriented micropillars of pure titanium at cryogenic temperature (T = 205 K). The interaction between {1122} twin variants activated in the micropillar was investigated by transmission Kikuchi diffraction (TKD) in scanning electron microscope (SEM) and precession electron diffraction (PED) in transmission electron microscope (TEM). Critical resolved shear stress (CRSS) for {1122} twinning was estimated to be 471 +/- 40 MPa. The sudden stress-drops were induced by twinning, and the subsequent stress-strain response was dependent on the twin-twin interaction. The interaction between nano-size twins resulted in the formation of abnormal twin-twin boundaries (TTBs), thereby suppressed the twin growth and reduced the twinning-induced stress-drop. The complicated twin structures led to the strain-hardening after the stress-drop.
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页数:6
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