Metals Advances ›› 2026, Vol. 43: 21-30.DOI: 10.1016/j.metadv.2026.02.011
• Research Article • Previous Articles Next Articles
Jiaqi Wua, Jinhua Daia, Chuan Liub,c,d,*(
), Jiabao Guoa, Songkuan Zhaoa, Fengtian Yua, Yiheng Hana, Wentao Chena, Jinshan Lia,b, Bin Tanga,b,**(
)
Received:2025-07-15
Revised:2025-08-22
Accepted:2025-09-02
Online:2026-05-10
Published:2026-02-12
Contact:
Chuan Liu, Bin Tang
Jiaqi Wu, Jinhua Dai, Chuan Liu, Jiabao Guo, Songkuan Zhao, Fengtian Yu, Yiheng Han, Wentao Chen, Jinshan Li, Bin Tang. Texture evolution, silicide precipitation and strength-ductility synergy in a novel α + β titanium alloy during radial forging[J]. Metals Advances, 2026, 43: 21-30.
Add to citation manager EndNote|Ris|BibTeX
| Ti | Al | V | Mo | Zr | Si | Fe | O |
|---|---|---|---|---|---|---|---|
| Bal. | 5.340 | 7.560 | 0.518 | 0.515 | 0.422 | 0.242 | 0.153 |
Table 1. Actual chemical compositions of TC5751S alloy (wt%).
| Ti | Al | V | Mo | Zr | Si | Fe | O |
|---|---|---|---|---|---|---|---|
| Bal. | 5.340 | 7.560 | 0.518 | 0.515 | 0.422 | 0.242 | 0.153 |
Fig. 1. (a) Diagram of the radial forging process; (b) schematic diagram of forged bars with different radial forging deformation; (c) sampling position diagram; (d) low-magnification SEM image; (e) high-magnification SEM image.
Fig. 3. (a) Average size and volume fraction of silicides; (b) TEM bright field (BF) image of silicide with SAED spot inserted; (c) EDS mapping of silicide in (b); (d-f) silicides of forged TC5751S alloy bar.
Fig. 4. (a, b) Tensile properties of as-forged TC5751S alloy bar with different radial forging deformation; (c) relationship between tensile strength and elogation of representative α + β titanium alloys in the forged state (TC11 [18]; TC4 [19]; Ti6242S [20]; Ti575 [21], [22]; TC21 [23], [24]); (d) statistic results of tensile properties.
Fig. 6. (a-c) Distribution of αp grain orientation spread in forged TC5751S alloy bar; (d) statistics of GOS values; (e-g) grain boundary statistics of forged TC5751S alloy bar; (h) statistics of low-angle grain boundaries (LAGBs) and high-angle grain boundaries (HAGBs).
Fig. 7. Texture evolution of different radial forging deformations: (a–c) IPF figure; (d–f) SF of the basal slip {0001} <$ 11 \overline{2} 0$>; (g–i) SF of the prismatic slip {$ 1 \overline{1} 00$} <$1 \overline{2} 0$>; (j–l) Pole figure.
| [1] | J. Zang, J. Liu, Q. Wang, H. Tan, B. Zhang, X. Dong, Z. Zhao, Acta Metall. Sin. -Engl. Lett. 38 (2025) 107-120. |
| [2] |
J.C. Williams, E.A. Starke, Acta Mater. 51 (2003) 5775-5799.
DOI URL |
| [3] |
Q. Zhao, Q. Sun, S. Xin, Y. Chen, C. Wu, H. Wang, J. Xu, M. Wan, W. Zeng, Y. Zhao, Mater. Sci. Eng. A 845 (2022) 143260.
DOI URL |
| [4] | Z. Cheng, H. Zhou, Q. Lu, H. Gao, L. Lu, Science 362 (2018) eaau1925. |
| [5] | Z. Li, K.G. Pradeep, Y. Deng, D. Raabe, C.C. Tasan, Nature 534 (2016) 227. |
| [6] | Z. Qiu, C. Shao, S. Han, Y. Lu, Z. Wang, H. Liu, Z. Zhang, Z. Zhang, Acta Metall. Sin.- Engl. Lett. 38 (2025) 1312-1316. |
| [7] | J. Dai, B. Tang, C. Wang, Y. Fan, B. Wei, J. Wu, Y. Wang, X. Chen, X. Zhang, Y. Han, W. Chen, J. Li, P. Zhang, J. Mater. Sci. Technol. 236 (2025) 51-66. |
| [8] |
L. Guo, X. Fan, G. Yu, H. Yang, Chin. J. Aeronaut. 29 (2016) 30-40.
DOI URL |
| [9] | B. Gu, Z. Xiong, P. Yang, X. Gu, M. Yan, A. Sha, J. Mater. Eng. Perform. 34 (2025) 6805-6816. |
| [10] |
P. Lin, A. Feng, S. Yuan, G. Li, J. Shen, Mater. Sci. Eng. A 563 (2013) 16-20.
DOI URL |
| [11] | J. Zou, L. Ma, W. Jia, Q. Le, G. Qin, Y. Yuan, J. Mater. Sci. Technol. 83 (2021) 228-238. |
| [12] | W. Xu, J. Mo, J. Zhang, Y. Lian, P. Ji, J. Mater. Eng. Perform. 30 (2021) 5889-5897. |
| [13] | H. Jiang, Y. Wang, P. Dong, P. Zhang, C. Zhang, C. Zhu, D. Meng, S. Zhao, J. Mater. Res. Technol. 30 (2024) 5258-5265. |
| [14] | L.B. Zuev, G.V. Shlyakhova, S.A. Barannikova, Metals 10 (2020) 1488. |
| [15] |
Q. Lian, C. Zhang, H. Feng, Z. Yang, S. Zhang, J. Han, T. Wang, F. Peng, P. Cao, Trans. Nonferrous Met. Soc. 33 (2023) 2660-2671.
DOI URL |
| [16] |
O.O. Bilous, A.A. Bondar, A.V. Kotko, Yu.M. Podrezov, S.O. Firstov, N. I. Tsyganenko, Powder Metall. Met. Ceram. 58 (2020) 538-549.
DOI |
| [17] | E. Zhao, S. Sun, Y. Zhang, J. Mater. Res. Technol. 14 (2021) 3029-3042. |
| [18] | Q. Li, K. Li, W. Yuan, Materials 18 (2025) 2384. |
| [19] | B. Wang, L. Cheng, D. Li, Materials 14 (2021) 5329. |
| [20] | G. Zheng, X. Mao, L. Li, R. Dang, Vacuum 160 (2019) 81-88. |
| [21] |
J. Dai, B. Tang, Y. Chu, K. Liu, G. Zheng, X. Chen, J. Li, P. Zhang, Mater. Sci. Eng. A 890 (2024) 145900.
DOI URL |
| [22] |
N.L. Church, I.C. James, N. Martin, N.G. Jones, Mater. Sci. Eng. A 890 (2024) 145991.
DOI URL |
| [23] |
Z. Shi, H. Guo, R. Liu, X. Wang, Z. Yao, Nonferrous Met. Soc. China 25 (2015) 72-79.
DOI URL |
| [24] | R. Deng, S. Xue, Q. He, M. Xu, S. He, Z. Li, Y. Zhang, Q. Li, R. Li, J. Mater. Eng. Perform. 34 (2024) 15970-15979. |
| [25] |
Z. Liu, P. Li, L. Xiong, T. Liu, L. He, Mater. Sci. Eng. A 680 (2017) 259-269.
DOI URL |
| [26] |
X. Fan, H. Yang, P. Gao, J. Mater. Sci. 46 (2011) 6018-6028.
DOI URL |
| [27] |
R. Zhao, Z. Zhang, H. Chen, J. Han, Z. Ren, C. Zhang, J. Hou, H. Zhang, T. Wang, Mater. Sci. Eng. A 933 (2025) 148260.
DOI URL |
| [28] | Y. Chen, K. Nie, K. Deng, Z. Liu, Q. Shi, Acta Metall. Sin. -Engl. Lett. 37 (2024) 425-437. |
| [29] | Z. Lei, P. Gao, X. Wang, M. Zhan, H. Li, J. Mater. Sci. Technol. 86 (2021) 77-90. |
| [30] |
C. He, Z. Zhang, B. Wang, H. Zhang, Z. Ren, C. Zhang, J. Hou, T. Wang, J. Alloys Compd. 1024 (2025) 180198.
DOI URL |
| [31] |
W. Liu, J. Huang, J. Liu, X. Wu, K. Zhang, A. Huang, Int. J. Fatigue 148 (2021) 106203.
DOI URL |
| [32] |
B. Wang, W. Zeng, Z. Zhao, R. Jia, J. Xu, Q. Wang, Int. J. Plast. 177 (2024) 103986.
DOI URL |
| [33] | J. Meng, X. Chen, J. Jiang, L. Liu, Metals 13 (2022) 89. |
| [34] | N. Mollaei, S.M. Fatemi, M.R. Aboutalebi, S.H. Razavi, W. Bednarczyk, Acta Metall. Sin. -Engl. Lett. 38 (2025) 507-525. |
| [35] |
B. Wang, W. Zeng, Z. Zhao, R. Jia, J. Xu, Q. Wang, J. Alloys Compd. 923 (2022) 166464.
DOI URL |
| [36] |
B. Wang, W. Zeng, Z. Zhao, R. Jia, J. Xu, Q. Wang, Mater. Sci. Eng. A 881 (2023) 145419.
DOI URL |
| [37] | K. Yue, J. Liu, H. Zhang, H. Yu, Y. Song, Q. Hu, Q. Wang, R. Yang, J. Mater. Sci. Technol. 36 (2020) 91-96. |
| [38] |
S. Sun, E. Zhao, C. Hu, Y. An, W. Chen, J. Alloys Compd. 867 (2021) 159051.
DOI URL |
| [39] |
Q. Lian, C. Zhang, H. Feng, S. Zhang, F. Peng, P. Cao, Mater. Sci. Eng. A 880 (2023) 145356.
DOI URL |
| [40] | S. Ge, S. Lin, H. Fu, L. Zhang, T. Geng, Z. Zhu, Z. Li, H. Li, A. Wang, H. Zhang, H. Zhang, Acta Metall. Sin. -Engl. Lett. 35 (2022) 1617-1630. |
| [41] |
W. Huo, C. Lei, Y. Du, G. Chang, M. Zhu, B. Chen, Y. Zhang, Compos. B Eng. 240 (2022) 109991.
DOI URL |
| [42] |
Y. Su, G. Hao, H. Fan, Y. Zhai, F. Kong, X. Wang, Y. Chen, J. Alloys Compd. 852 (2021) 156867.
DOI URL |
| [43] |
P. Sun, B. Su, C. Tan, B. Tang, J. Li, R. Yuan, J. Alloys Compd. 1010 (2025) 178148.
DOI URL |
| [44] | S. Tang, L. Li, J. Su, Y. Yuan, Y. Han, J. Fan, J. Mater. Sci. Technol. 220 (2025) 150-163. |
| [1] | Leping Wang, Zhiwei Wang, Peng Xue, Hao Zhang, Zhen Zhang, Fengchao Liu, Lihui Wu, Dingrui Ni, Bolv Xiao, Zongyi Ma. Enhanced strength-ductility-toughness synergy of friction stir-welded ultrahigh-strength medium-Mn steel joints via post-weld annealing [J]. Metals Advances, 2026, 43(5): 44-56. |
| [2] | Huan Liu, Yinyuan Chen, Lifeng Ye, Xiaoyu Qin, Chao Sun, Zhangwei Yang, Yuna Wu, Jia Ju, Wenkai Wang. Achieving high strength and excellent ductility in a Zn-3Cu-1Mg alloy through minor Nd addition and multi-pass ECAP [J]. Metals Advances, 2026, 42(4): 23-33. |
| [3] | Jing-Xiang Zhao, Kun-Kun Deng, Yi-Jia Li, Cui-Ju Wang, Kai-Bo Nie, Zhong-Sen Huang, Yi-Ming Zhu. Microstructure and mechanical properties of shear spun Mg-5Zn-1Gd-1Y-1Mn alloy [J]. Metals Advances, 2026, 42(4): 92-106. |
| [4] | Yuhua Li, Qiming Bai, Shuailong Dong, Hongming Zhang, Qian Zhang, Qingyu Li, Chengliang Yang. Research progress of high-porosity biomedical porous titanium alloys [J]. Metals Advances, 2026, 41(3): 16-28. |
| [5] | Yuhua Li, Shuailong Dong, Qiming Bai, Hongming Zhang, Qian Zhang, Qingyu Li. New developments of biomedical porous titanium alloys prepared by spark plasma sintering [J]. Metals Advances, 2026, 41(3): 72-84. |
| [6] | Shang Zhao, Zhaolin Wang, Mingliang Wang, Zeyu Ding, Yiping Lu. A critical review of advances and application prospects of soft magnetic high entropy alloys [J]. Metals Advances, 2026, 40(2): 1-7. |
| [7] | Wei-Peng Chen, Jia-Qi Pei, Hua Hou, Yu-Hong Zhao. Phase-field simulation of α-Mg dendrite growth in magnesium alloys: A review [J]. Metals Advances, 2026, 40(2): 48-61. |
| [8] | Peng Han, Wen Wang, Jun Cai, Jia Lin, Hubin Yang, Qianzhi Ma, Feng Gao, Ke Qiao, Fengming Qiang, Kuaishe Wang. Excellent superplasticity for lamellar microstructure in nugget of a double-sided friction stir welded Ti-4.5Al-3V-2Mo-2Fe alloy joint [J]. Metals Advances, 2026, 40(2): 110-123. |
| [9] | Lei Qin, Shengfeng Zhou, Jianbo Jin, Huan Yang, Kunmao Li, Cheng Deng, Yujie Yuan, Seyed Reza Elmi Hosseini, Lai-Chang Zhang. Effect of molybdenum content on the microstructure and tribological properties of Ti-Nb-Cu alloys produced by LPBF additive manufacturing [J]. Metals Advances, 2026, 39(1): 13-25. |
| [10] | X.L. Wang, J.Y. Li, Q.S. Mei. Recent progress in Zn matrix composites for biomedical applications [J]. Metals Advances, 2026, 39(1): 26-37. |
| [11] | Zhizhi Wang, Pei Liu, Jingyi Guo, Yiwen Yan, Aiqin Wang, Jingpei Xie. Excellent mechanical properties and biocompatibility of Ti-15Mo alloy via interstitial nitrogen atoms [J]. Metals Advances, 2026, 39(1): 38-46. |
| [12] | Kunmao Li, Shengfeng Zhou, Jing Liu, Feng Yang, Chengliang Yang. A review on the biomedical Ti-Cu alloys: Design, preparation, microstructure and properties [J]. Metals Advances, 2026, 39(1): 47-67. |
| [13] | Author links open overlay panelXiaodong Yang, Chang Liu, Lechun Xie. Surface engineering of medical titanium alloy: A review [J]. Metals Advances, 2026, 39(1): 95-116. |
| [14] | B. M. Shi, Y. T. Pang, B. H. Shan, B. B. Wang, Y. Liu, P. Xue, J. F. Zhang, Y. N. Zan, Q. Z. Wang, B. L. Xiao, Z. Y. Ma. Microstructure Evolution and Fracture Behavior of (B4C+Al2O3)/Al Friction Stir Welded Joints [J]. Acta Metallurgica Sinica (English Letters), 2025, 38(9): 1513-1526. |
| [15] | H. Q. Dai, N. Li, L. H. Wu, J. Wang, P. Xue, F. C. Liu, D. R. Ni, B. L. Xiao, Z. Y. Ma. Low-Temperature Superplastic Deformation Behavior of Bimodal Microstructure of Friction Stir Processed Ti-6Al-4V Alloy [J]. Acta Metallurgica Sinica (English Letters), 2025, 38(9): 1559-1569. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
WeChat
