J. Mater. Sci. Technol. ›› 2023, Vol. 140: 176-186.DOI: 10.1016/j.jmst.2022.08.035
• Review Article • Previous Articles Next Articles
Jin-Kui Menga,b, Li Liua,c,*, Jian-Tang Jiangb,c, Guo Huanga, Liang Zhena,b,*
Received:2022-06-16
Revised:2022-07-21
Accepted:2022-08-11
Published:2023-03-20
Online:2023-03-06
Contact:
*School of Materials Science and Engineering, Harbin Institute of Technology (Shenzhen), Shenzhen 518055, China. E-mail addresses: Jin-Kui Meng, Li Liu, Jian-Tang Jiang, Guo Huang, Liang Zhen. Fracture behaviors of commercially pure titanium under biaxial tension: Experiment and modeling[J]. J. Mater. Sci. Technol., 2023, 140: 176-186.
| [1] M. Peters, J. Kumpfert, C.H. Ward, C. Leyens, Adv. Eng. Mater. 5(2003) 419-427. [2] Z.C. Zhu, Z.Y. Chen, R.K. Wang, C.M. Liu, Mater. Sci. Eng. A 839 (2022) 142872. [3] S.W. Choi, J.S. Jeong, J.W. Won, J.K. Hong, Y.S. Choi, J. Mater. Sci.Technol. 66(2021) 193-201. [4] K.S. Prasad, S.K. Panda, S.K. Kar, S.V.S.N. Murty, S.C. Sharma, Mater. Sci. Eng. A 733 (2018) 393-407. [5] S.H. Li, X.F. Chen, Q.S. Kong, Z.Q. Yu, Z.Q. Lin, J. Mater. Process.Technol. 212(2012) 1916-1924. [6] J. Zhao, L.X. Lv, K.H. Wang, G. Liu, J. Mater. Sci.Technol. 38(2020) 125-134. [7] W. Zhang, Z.K. Zhu, C.Y. Zhou, X.H. He, Metals 11 (2021) 155 Basel. [8] N. Srinivasan, R. Velmurugan, R. Kumar, S.K. Singh, B. Pant, Mater. Sci. Eng. A 674 (2016) 540-551. [9] H. Zhang, X.P. Li, T. Gao, H.P. Song, G.Y. Huang, Eng. Fract. Mech. 258(2021) 108127. [10] M.V. Upadhyay, T. Panzner, S. Van Petegem, H. Van Swygenhoven, Exp. Mech. 57(2017) 905-920. [11] T. Hama, A. Kobuki, H. Takuda, Int. J. Plast. 91(2017) 77-108. [12] T. Hama, H. Takuda, Comput. Mater. Sci. 51(2012) 156-164. [13] R.F. Dong, X.Y. Zhang, C.H. Li, Y.H. Zhao, J.Z. Tian, L. Wu, H. Hou, J. Mater. Sci.Technol. 97(2022) 165-168. [14] A. Ghosh, A. Singh, N.P. Gurao, Mater. Charact. 125(2017) 83-93. [15] M.S. Lee, Y.T. Hyun, T.S. Jun, J. Alloy. Compd. 803(2019) 711-720. [16] Z.N. Lei, P.F. Gao, X.X. Wang, M. Zhan, H.W. Li, J. Mater. Sci.Technol. 86(2021) 77-90. [17] N. Park, H. Huh, J.B. Nam, C.G. Jung, Int. J. Automot. Technol. 16(2015) 73-81. [18] B.T. Tang, Q. Wang, N. Guo, X. Li, Q. Wang, A. Ghiotti, S. Bruschi, Z. Luo, Int. J. Solids Struct. 207(2020) 178-195. [19] N. Srinivasan, R. Velmurugan, S.K. Singh, B. Pant, R. Kumar, Mater. Charact. 164(2020) 110349. [20] J.Y. Liu, W.J. Bao, J.Y. Zhao, C.Y. Zhou, Materials 15 (2022) 1926. [21] Y. Cheng, Y. Fu, Y. Xin, G. Chen, P. Wu, X. Huang, Q. Liu, Int. J. Plast. 132(2020) 102754. [22] D.A.A. Escárpita, D. Cárdenas, H. Elizalde, R. Ramirez, O. Probst, N. Hu, Rijeka, 2012. [23] P. Wang, X.J. Pei, P.S. Dong, Y.F. Yu, X.W. Li, Int. J. Fatigue 139 (2020) 105735. [24] P. Dong, J. Hong, D.A. Osage, M. Prager, Weld. Res. Counc. Bull. (474) (2002) 1-44. [25] H.B. Yang, P. Wang, H.L. Qian, S. Niu, P.S. Dong, Int. J. Fatigue 159 (2022) 106827. [26] X.J. Pei, P.S. Dong, S.Z. Xing, Int. J. Fatigue 124 (2019) 4 4 4-460. [27] P. Wang, X.J. Pei, P.S Dong, S.P. Song, Int. J. Fatigue 125 (2019) 11-22. [28] S.Z. Xing, P.S. Dong, P. Wang, Int. J. Fatigue 101 (2017) 448-458. [29] Z. He, K. Zhang, H. Zhu, Y. Lin, M.W. Fu, S. Yuan, Int. J. Plast. 152(2022) 103259. [30] S. Zhang, L. Leotoing, D. Guines, S. Thuillier, S.L. Zang, Int. J. Mech. Sci. 85(2014) 142-151. [31] S. Shahid, Blekinge Institute of Technol-ogy, 2020. [32] H. Levanger, Simulating ductile fracture in steel using the finite element method: comparison of two models for describing local instability due to duc-tile fracture, 2012. [33] F. Neukamm, M. Feucht, A. Haufe, K. Roll, in: In: Proceedings of the Numisheet Conference, Interlaken, 2008. [34] Y. Zhong, F.X. Yin, K. Nagai, J. Mater. Res. 23(2008) 2954-2966. [35] I. Lonardelli, N. Gey, H.R. Wenk, M. Humbert, S.C. Vogel, L. Lutterotti, Acta Mater. 55(2007) 5718-5727. [36] H. Liu, S.Y. Deng, S.F. Chen, H.W. Song, S.H. Zhang, B. Wang, J. Mater. Sci.Tech-nol. 119(2022) 111-122. [37] B. Barkia, V. Doquet, J.P. Couzinie, I. Guillot, E. Heripre, Mater. Sci. Eng. A 636 (2015) 91-102. [38] Y.X. Li, P.F. Gao, J.Y. Yu, S. Jin, S.Q. Chen, M. Zhan, J. Mater. Sci.Technol. 98(2022) 72-86. [39] Y.J. Fu, Y. Cheng, Y. Cui, Y.C. Xin, Y.Y. Zeng, X. Liu, G. Chen, J. Mater. Sci.Technol. 126(2022) 237-251. [40] G. Chen, T.S. Chu, Y. Cui, Y.T. Wu, X. Liu, Q. Lin, Int. J. Fatigue 158 (2022) 106735. [41] J. Xu, B. Jiang, Y.H. Kang, J. Zhao, W.W. Zhang, K.H. Zheng, F.S. Pan, J. Mater. Sci.Technol. 113(2022) 48-60. [42] M.A. Cuddihy, A. Stapleton, S. Williams, F.P.E. Dunne, Int. J. Fatigue 97 (2017) 177-189. [43] L. Wang, Y. Yang, P. Eisenlohr, T.R. Bieler, M.A. Crimp, D.E. Mason, Metall. Mater. Trans. A 41 (2009) 421-430. [44] S.X. Huang, Q.Y. Zhao, Y.Q. Zhao, C. Lin, C. Wu, W.J. Jia, C.L. Mao, V. Ji, J. Mater. Sci.Technol. 79(2021) 147-164. [45] Q. Zhou, R. Liu, Q. Zhou, P.W. Chen, L. Zhu, Mater. Sci. Eng. A 820 (2021) 141559. |
| [1] | Yu Pan, Jinshan Zhang, Jianzhuo Sun, Yanjun Liu, Ce Zhang, Rui Li, Fan Kuang, Xinxin Wu, Xin Lu. Enhanced strength and ductility in a powder metallurgy Ti material by the oxygen scavenger of CaB6 [J]. J. Mater. Sci. Technol., 2023, 137(0): 132-142. |
| [2] | Zhenzhu Wang, Feng Yang, Jiangfeng Ni, Liang Li. Simultaneously tailoring material structure and surface for robust sodium storage: A case study of TiO2 [J]. J. Mater. Sci. Technol., 2023, 136(0): 91-96. |
| [3] | Zhongze Yang, Wenchen Xu, Weiqing Zhang, Yu Chen, Debin Shan. Effect of power spinning and heat treatment on microstructure evolution and mechanical properties of duplex low-cost titanium alloy [J]. J. Mater. Sci. Technol., 2023, 136(0): 121-139. |
| [4] | Aihua Yu, Ce Zhang, Wei Xu, Yun Zhang, Shiwei Tian, Bowen Liu, Jiazhen Zhang, Anrui He, Bo Su, Xin Lu. Additive manufacturing of multi-morphology graded titanium scaffolds for bone implant applications [J]. J. Mater. Sci. Technol., 2023, 139(0): 47-58. |
| [5] | Huan Liu, Hai Wang, Ling Ren, Dong Qiu, Ke Yang. Antibacterial copper-bearing titanium alloy prepared by laser powder bed fusion for superior mechanical performance [J]. J. Mater. Sci. Technol., 2023, 132(0): 100-109. |
| [6] | Zhaoxin Du, Qiwei He, Ruirun Chen, Fei Liu, Jingyong Zhang, Fei Yang, Xueping Zhao, Xiaoming Cui, Jun Cheng. Rolling reduction -dependent deformation mechanisms and tensile properties in a β titanium alloy [J]. J. Mater. Sci. Technol., 2022, 104(0): 183-193. |
| [7] | Gwanghyo Choi, Won Seok Choi, Yoon Sun Lee, Dahye Kim, Ji Hyun Sung, Seungjun An, Chang-Seok Oh, Amine Hattal, Madjid Djemai, Brigitte Bacroix, Guy Dirras, Pyuck-Pa Choi. Decomposition behavior of yttria-stabilized zirconia and its effect on directed energy deposited Ti-based composite material [J]. J. Mater. Sci. Technol., 2022, 112(0): 138-150. |
| [8] | Wenwei Gao, Hai Wang, Konrad Koenigsmann, Shuyuan Zhang, Ling Ren, Ke Yang. Fabrication of ultrafine-grained Ti-15Zr-xCu alloys through martensite decompositions under thermomechanical coupling conditions [J]. J. Mater. Sci. Technol., 2022, 127(0): 19-28. |
| [9] | Yang Liu, Samuel C.V. Lim, Chen Ding, Aijun Huang, Matthew Weyland. Unravelling the competitive effect of microstructural features on the fracture toughness and tensile properties of near beta titanium alloys [J]. J. Mater. Sci. Technol., 2022, 97(0): 101-112. |
| [10] | Ruifeng Dong, Xiaoyang Zhang, Chenhui Li, Yuhong Zhao, Jinzhong Tian, Li Wu, Hua Hou. Correlation between the mechanical properties and the 〈110〉 texture in a hot-rolled near β titanium alloy [J]. J. Mater. Sci. Technol., 2022, 97(0): 165-168. |
| [11] | Yonghua Sun, Yuyu Zhao, He Zhang, Youjie Rong, Runhua Yao, Yi Zhang, Xiaohong Yao, Ruiqiang Hang. Corrosion behavior, antibacterial ability, and osteogenic activity of Zn-incorporated Ni-Ti-O nanopore layers on NiTi alloy [J]. J. Mater. Sci. Technol., 2022, 97(0): 69-78. |
| [12] | Min Cheng, Zhengguan Lu, Jie Wu, Ruipeng Guo, Junwei Qiao, Lei Xu, Rui Yang. Effect of thermal induced porosity on high-cycle fatigue and very high-cycle fatigue behaviors of hot-isostatic-pressed Ti-6Al-4V powder components [J]. J. Mater. Sci. Technol., 2022, 98(0): 177-185. |
| [13] | Qimin Shi, Shoufeng Yang, Yi Sun, Yifei Gu, Ben Mercelis, Shengping Zhong, Bart Van Meerbeek, Constantinus Politis. In-situ formation of Ti-Mo biomaterials by selective laser melting of Ti/Mo and Ti/Mo2C powder mixtures: A comparative study on microstructure, mechanical and wear performance, and thermal mechanisms [J]. J. Mater. Sci. Technol., 2022, 115(0): 81-96. |
| [14] | Juan Li, Yaqun Xu, Wenlong Xiao, Chaoli Ma, Xu Huang. Development of Ti-Al-Ta-Nb-(Re) near-α high temperature titanium alloy: Microstructure, thermal stability and mechanical properties [J]. J. Mater. Sci. Technol., 2022, 109(0): 1-11. |
| [15] | Jing Wu, Meng Li, Chuanchuan Lin, Pengfei Gao, Rui Zhang, Xuan Li, Jixi Zhang, Kaiyong Cai. Moderated crevice corrosion susceptibility of Ti6Al4V implant material due to albumin-corrosion interaction [J]. J. Mater. Sci. Technol., 2022, 109(0): 209-220. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
WeChat
