J. Mater. Sci. Technol. ›› 2025, Vol. 225: 1-10.DOI: 10.1016/j.jmst.2024.11.021
• Research Article • Next Articles
Xiangyu Yana, Huan Wangb, Shiyi Wena, Jianchuan Wanga,*, Li Zhanga,*, Yong Dua,*
Received:
2024-09-07
Revised:
2024-10-27
Accepted:
2024-11-02
Published:
2025-08-01
Online:
2024-12-15
Contact:
*E-mail addresses: jcw728@126.com (J. Wang), zhangli@csu.edu.cn (L. Zhang), yong-du@csu.edu.cn (Y. Du).
Xiangyu Yan, Huan Wang, Shiyi Wen, Jianchuan Wang, Li Zhang, Yong Du. The true transverse rupture strength calculated based on ab-initio methods for brittle Ti(C,N)-based cermets[J]. J. Mater. Sci. Technol., 2025, 225: 1-10.
[1] Y. Peng, H. Miao, Z. Peng, Int. J. Refract. Met. Hard Mater. 39 (2013) 78-89. [2] A. Aramian, Z. Sadeghian, M. Narimani, N. Razavi, F. Berto, Int. J. Refract. Met. Hard Mater. 115 (2023) 106320. [3] S.-J. Zhou, J.-H. Ouyang, W.-T. Su, X.-R. Kong, C.-G. Xu, Y. Li, Y.-J. Wang, L. Chen, Y. Zhou, J. Alloy. Compd. 996 (2024) 174843. [4] I.Y. Buravlev, O. Shichalin, A. Belov, P. Marmaza, E. Kolodeznikov, M. Dvornik, A. Sakhnevich, A. Buravleva, S. Chuklinov, E. Papynov, Adv. Powder Technol. 35 (2024) 104625. [5] O. Shichalin, A. Belov, I. Buravlev, E. Kolodeznikov, A. Fedorets, A. Lembikov, S. Zolotnikov, V. Maiorov, E. Nozdrachev, A. Ruslan, Constr. Build. Mater. 442 (2024) 137553. [6] O. Shichalin, I.Y. Buravlev, A. Portnyagin, M. Dvornik, E. Mikhailenko, A. Golub, A. Zakharenko, A. Sukhorada, K.Y. Talskikh, A. Buravleva, J. Alloy. Compd. 816 (2020) 152547. [7] L. Zhang, T. Liu, J.-F. Zhu, Q.Ling, Z.-Y. Liu, X.-Q. Zan, Int. J. Refract. Met. Hard Mater. 97 (2021) 105502. [8] L. Tang, J. Xiong, Z. Guo, W. Wan, S. Huang, H. Zhong, W. Zhou, Int. J. Refract. Met. Hard Mater. 45 (2014) 102-108. [9] S. Wang, Y. Zheng, G. Zhang, W. Zhou, W. Ding, X. Xu, X. Lu, Mater. Res. Express 6 (2019) 056557. [10] X. Xu, Y. Zheng, Y. Zhao, X. Lu, Z. Ke, H. Wu, M. Yang, H. Liang, Ceram. Int. 48 (2022) 3826-3832. [11] H. Xiong, S. Chu, P. Lei, Z. Li, K. Zhou, Ceram. Int. 46 (2020) 19904-19911. [12] Y. Huo, X. Zhao, Y. Fang, M. Zhang, J. Mater. Res.Technol. 19 (2022) 4439-4450. [13] Z.-Z. Jin, M.Zha, Z.-Y. Yu, P.-K. Ma, Y.-K. Li, J.-M. Liu, H.-L. Jia, H.-Y. Wang, J. Alloy. Compd. 833 (2020) 155004. [14] S. Thangaraju, M. Heilmaier, B.S. Murty, S.S. Vadlamani, Adv. Eng. Mater. 14 (2012) 892-897. [15] X. Fan, L. Xu, S. Wei, L. Yao, T. Sun, Y. Zhou, K. Pan, F. Xiao, K. Sun, Ceram. Int. 46 (2020) 10400-10408. [16] P. Thirathipviwat, S. Nozawa, M. Furusawa, Y. Onuki, M. Hasegawa, K. Mat-sumoto, S. Sato, Mater. Sci. Eng. A 855 (2022) 143956. [17] J. Bailey, P. Hirsch, Philos. Mag. 5 (1960) 485-497. [18] P.E. Blöchl, Phys. Rev. B 50 (1994) 17953. [19] A. Van de Walle, P. Tiwary, M. De Jong, D. Olmsted, M. Asta, A. Dick, D. Shin, Y. Wang, L.-Q. Chen, Z.-K. Liu, Calphad 42 (2013) 13-18. [20] W. Humphrey, A. Dalke, K. Schulten, J. Mol. Graphics 14 (1996) 33-38. [21] T.D. Kühne, M. Iannuzzi, M. Del Ben, V.V. Rybkin, P. Seewald, F. Stein, T. Laino, R.Z. Khaliullin, O. Schütt, F. Schiffmann, J. Chem. Phys. 152 (2020) 194103. [22] The PLUMED consortium, Nat. Methods 16 (2019) 670-673. [23] J.P. Perdew, K. Burke, M. Ernzerhof, Phys. Rev. Lett. 77 (1996) 3865. [24] A. Laio, M. Parrinello, Proc. Nat. Acad. Sci. 99 (2002) 12562-12566. [25] H. Wang, L. Zhang, J. Han, E. Weinan, Comput. Phys. Commun. 228 (2018) 178-184. [26] A.P. Thompson, H.M. Aktulga, R. Berger, D.S. Bolintineanu, W.M. Brown, P.S. Crozier, P.J.In’t Veld, A.Kohlmeyer, S.G. Moore, T.D. Nguyen, Comput. Phys. Commun. 271 (2022) 108171. [27] X. Zhang, N. Liu, C. Rong, Mater. Charact. 59 (2008) 1690-1696. [28] X. Zhao, M. Zhang, D. Zuo, Y. Fang, Q. Zhang, Z. Zhu, G. Liu, F. Xu, Mater. Today Commun. 25 (2020) 101661. [29] G. Zhang, Y. Zheng, J. Zhang, Z. Ke, W. Zhou, W. Xiong, Int. J. Refract. Met. Hard Mater. 85 (2019) 105060. [30] C. Park, S. Nam, S. Kang, J. Alloy. Compd. 657 (2016) 671-677. [31] J. Lv, Y. Du, M. Lou, K. Xu, K. Chang, Int. J. Refract. Met. Hard Mater. 108 (2022) 105931. [32] Z. Yang, Y. Zheng, X. Xu, G. Zhang, Z. Ke, H. Wu, C. Xue, Vacuum 184 (2021) 109912. [33] W. Wan, J. Wang, M. Liang, K. Fan, Z. Wang, Y. Li, Ceram. Int. 48 (2022) 32399-32408. [34] Z. Wang, W. Wan, J. Wang, K. Fan, Y. Li, J. Xiong, H. Du, Ceram. Int. 47 (2021) 26678-26691. [35] H. Xiong, Y. Wu, X. Gan, Z. Li, K. Zhou, Ceram. Int. 44 (2018) 19113-19122. [36] D. Strzeciwilk, Z. Wokulski, P. Tkacz, Cryst. Res. Technol. 38 (2003) 283-287. [37] G. Zhang, Y. Zheng, J. Zhang, Z. Ke, X. Xu, H. Wu, X. Lu, Ceram. Int. 46 (2020) 9698-9705. [38] W. Zhou, Y. Zheng, Y. Zhao, G. Zhang, J. Zhang, Int. J. Refract. Met. Hard Mater. 74 (2018) 70-77. [39] D. Dong, W. Yang, H. Xiong, L. Zhang, K. Shi, J. Liao, Ceram. Int. 46 (2020) 6300-6310. [40] D. Dong, W. Yang, X. Xiang, B. Huang, H. Xiong, L. Zhang, K. Shi, Ceram. Int. 47 (2021) 8020-8029. [41] N. Lin, L. Zhao, J. Zou, C. Ma, Z. Wang, Y. He, Ceram. Int. 45 (2019) 2692-2700. [42] T.Z. Khan, T. Kirk, G. Vazquez, P. Singh, A. Smirnov, D.D. Johnson, K. Youssef, R. Arróyave, Acta Mater. 224 (2022) 117472. [43] Y. Ye, B. Ouyang, C. Liu, G. Duscher, T. Nieh, Acta Mater. 199 (2020) 413-424. [44] D. Sangiovanni, Acta Mater. 151 (2018) 11-20. [45] R. Zhang, S. Sheng, S. Veprek, Scr. Mater. 68 (2013) 913-916. [46] F. Nabarro, Proc. Phys. Soc. 59 (1947) 256. [47] Y. Kamimura, K. Edagawa, A. Iskandarov, M. Osawa, Y. Umeno, S. Takeuchi, Acta Mater. 148 (2018) 355-362. [48] L. Patriarca, A. Ojha, H. Sehitoglu, Y. Chumlyakov, Scr. Mater. 112 (2016) 54-57. [49] Y. Guo, S. Zhang, I.J. Beyerlein, D. Legut, S.-L. Shang, Z.Liu, R. Zhang, Acta Mater. 181 (2019) 423-438. [50] B. Joos, M. Duesbery, Phys. Rev. Lett. 78 (1997) 266. [51] S.K. Yadav, R. Ramprasad, A. Misra, X.Y. Liu, Acta Mater. 74 (2014) 268-277. [52] W. Cai, V.V. Bulatov, J. Chang, J. Li, S. Yip, Phys. Rev. Lett. 86 (2001) 5727. [53] L. Romaner, C. Ambrosch-Draxl, R. Pippan, Phys. Rev. Lett. 104 (2010) 195503. [54] E.A. Stach, T. Freeman, A.M. Minor, D.K. Owen, J. Cumings, M.A. Wall, T. Chraska, R. Hull, J. Morris Jr, A. Zettl, Microsc. Microanal. 7 (2001) 507-517. [55] N. Li, A. Misra, S. Shao, J. Wang, Nano Lett. 15 (2015) 4434-4439. [56] Z. Wen, Y. Hu, W. Chen, Q. Zhang, L. Zhang, Y. Du, J. Alloy. Compd. 896 (2022) 163061. [57] R.W. Armstrong, Acta Mech. 225 (2014) 1013-1028. [58] G. Chin, W. Mammel, Metall. Mater. Trans. B 5 (1974) 325-329. [59] T.H. Courtney, Mechanical Behavior of Materials, Waveland Press, 2005. [60] H. Kurishita, K. Nakajima, H. Yoshinaga, T. Mater, Sci. Eng. 54 (1982) 177-190. [61] P.-L. Sun, Y. Zhao, J. Cooley, M. Kassner, Z. Horita, T. Langdon, E. Lavernia, Y. Zhu, Mater. Sci. Eng. A 525 (2009) 83-86. [62] P. Thirathipviwat, G. Song, J. Jayaraj, J. Bednarcik, H. Wendrock, T. Gem-ming, J.Freudenberger, K. Nielsch, J. Han, J. Alloy. Compd. 790 (2019) 266-273. |
[1] | Yuan Yuan, Yong Han, Kai Xu, Sisi Tang, Yaohua Zhang, Yaozha Lv, Yihan Yang, Xue Jiang, Keke Chang. Revealing the solidification microstructure evolution and strengthening mechanisms of additive-manufactured W-FeCrCoNi alloy: Experiment and simulation [J]. J. Mater. Sci. Technol., 2025, 204(0): 302-313. |
[2] | Wonjong Jeong, Taegyu Lee, Seong-June Youn, Minseok Lee, Taeyeong Kong, Ho Jin Ryu. Effect of decomposed TiCp on the mechanical properties of laser powder directed energy depositioned Inconel 718 [J]. J. Mater. Sci. Technol., 2025, 224(0): 66-79. |
[3] | Maoyin Li, Stevan Cokic, Bart Van Meerbeek, Jef Vleugels, Fei Zhang. Novel zirconia ceramics for dental implant materials [J]. J. Mater. Sci. Technol., 2025, 210(0): 97-108. |
[4] | Zijia Liao, Hesamoddin Rabiee, Lei Ge, Xiaogang Li, Zhaozhong Yang, Qi Xue, Chao Shen, Hao Wang. Revealling pore microstructure impacts on the compressive strength of porous proppant based on finite and discrete element method [J]. J. Mater. Sci. Technol., 2025, 211(0): 72-81. |
[5] | Nan Jiang, Hong Bian, Xiaoguo Song, Hyeonseok Kwon, Xin Xi, Danyang Lin, Bo Chen, Weimin Long, Hyoung Seop Kim, Lianhui Jia. Higher entropy-induced strengthening in mechanical property of Cantor alloys/Zr-3 joints by laser in-situ eutectic high-entropy transformation [J]. J. Mater. Sci. Technol., 2025, 211(0): 110-122. |
[6] | Yuxiang Chen, Mingyang Li, Ningyu Li, Yijie Wang, Kang Liu, Yongqin Chang. Microstructure and mechanical properties of TiNbV0.5Ta0.5Crx (x=0, 0.1, 0.2, 0.5) refractory high-entropy alloys [J]. J. Mater. Sci. Technol., 2025, 211(0): 254-266. |
[7] | Xiuwen Ren, Zhongjin Wang, Ruidong An. A promising approach to enhance fatigue life of TC11 titanium alloy: Low dislocation density and surface grain refinement induced by electropulsing [J]. J. Mater. Sci. Technol., 2025, 204(0): 60-70. |
[8] | Yuexing Liang, Guoai Li, Li Liu, Hao Jiang, Xiaoya Wang, Jian Cao, Jiantang Jiang, Wenzhu Shao, Liang Zhen. Influence of Cu and Ti microalloying on the multiscale microstructure evolution and mechanical properties of 7xxx alloys [J]. J. Mater. Sci. Technol., 2025, 223(0): 235-251. |
[9] | Kang Tu, Bo Li, Zonglin Li,Kaisheng Ming, Shijian Zheng. Dual heterogeneous structure enabled ultrahigh strength and ductility across a broad temperature range in CrCoNi-based medium-entropy alloy [J]. J. Mater. Sci. Technol., 2025, 207(0): 46-59. |
[10] | Keer Li, Wei Chen, Jinyu Zhang, Shewei Xin, Jun Sun. Making titanium alloys ultrahigh strength and toughness synergy through deformation kinks-mediated hierarchical α-precipitation [J]. J. Mater. Sci. Technol., 2025, 207(0): 142-159. |
[11] | Ning Lv, Lingyu Zhao, Hong Yan, Boyu Liu, Rongshi Chen, Zhiwei Shan. Anomalous ductility-strength synergy occurred after cold rolling in a high Gd content Mg alloy [J]. J. Mater. Sci. Technol., 2025, 207(0): 177-190. |
[12] | Jianqiang Wang, Bin Xu, Mingyue Sun, Xiang Liu, Dianzhong Li. Hot compression bonding of a 9Cr oxide dispersion strengthened alloy and a 9Cr reduced-activation ferritic/martensitic alloy [J]. J. Mater. Sci. Technol., 2025, 207(0): 225-237. |
[13] | Guoxin Lu, Qiang Wang, Bonnie Attard, Huhu Su, Shijian Zheng. Evidence of microstructural evolution linked to non-monotonic distribution of micromechanical properties induced by shot peening [J]. J. Mater. Sci. Technol., 2025, 207(0): 238-245. |
[14] | A.X. Li, K.W. Kang, J.S. Zhang, M.K. Xu, D. Huang, S.K. Liu, Y.T. Jiang, G. Li. Pursuing ultrahigh strength-ductility CoCrNi-based medium-entropy alloy by low-temperature pre-aging [J]. J. Mater. Sci. Technol., 2025, 220(0): 115-128. |
[15] | Ning Lu, Yong Li, Haidong Sun, Yang Liu, Peng Wang, Changji Li, Pinwen Zhu, Dongli Yu, Hongwang Zhang. Single parameter controlling the substructure and the hardening by martensitic transformation [J]. J. Mater. Sci. Technol., 2025, 220(0): 164-179. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||