J. Mater. Sci. Technol. ›› 2023, Vol. 160: 161-180.DOI: 10.1016/j.jmst.2023.03.026
• Review Article • Previous Articles Next Articles
Hairui Xinga,b, Ping Hua,b,*, Chaojun Hea,b, Xiangyang Zhanga,b, Jiayu Hana,b, Fan Yanga,b, Run Baia,c, Wen Zhangc,**, Kuaishe Wanga,b, Alex A. Volinskyd
Received:
2023-01-16
Revised:
2023-03-13
Accepted:
2023-03-27
Published:
2023-10-10
Online:
2023-04-24
Contact:
*School of Metallurgy Engineering, Xi’an University of Architecture and Technology, Xi’an 710055, China. **E-mail addresses: . Hairui Xing, Ping Hu, Chaojun He, Xiangyang Zhang, Jiayu Han, Fan Yang, Run Bai, Wen Zhang, Kuaishe Wang, Alex A. Volinsky. Design of high-performance molybdenum alloys via doping metal oxide and carbide strengthening: A review[J]. J. Mater. Sci. Technol., 2023, 160: 161-180.
[1] S. Majumdar, S. Raveendra, I. Samajdar, P. Bhargava, I.G. Sharma, Acta Mater. 57(2009) 4158-4168. [2] S.J. Wang, H. Wang, K. Du, W. Zhang, M.L. Sui, S.X. Mao, Nat. Commun. 5(2014) 3433. [3] S. Primig, H. Clemens, W. Knabl, A. Lorich, R. Stickler, Int. J. Refract. Met. Hard Mater. 48(2015) 179-186. [4] J.H. Perepezko, Science 326 (2009) 1068-1069. [5] D.M. Dimiduk, J.H. Perepezko, MRS Bull. 28(2003) 639-645. [6] M. Higashi, T. Ozaki, Mater. Des. 191(2020) 108588. [7] Y.H. Yoon, S.Y. Lee, J.G. Gwon, H.J. Cho, Q. Wu, Y.H. Kim, W.H. Lee, Ceram. Int. 44(2018) 16647-16653. [8] ˙ I.A. Kariper, F.M. Tezel, Ceram. Int. 45(2019) 3478-3482. [9] B.V. Cockeram, T.S. Byun, K.J. Leonard, J.L. Hollenbeck, L.L. Snead, J. Nucl. Mater. 440(2013) 382-413. [10] B. Tabernig, N. Reheis, Int. J. Refract. Met. Hard Mater. 28(2010) 728-733. [11] S.T. Mileiko, Ceram. Int. 45(2019) 9439-9443. [12] B. Meng, M.W. Fu, M. Wan, J. Adv. Manuf.Technol. 78(2015) 1005-1014. [13] S.P. Chakraborty, S. Banerjee, I.G. Sharma, A.K. Suri, J. Nucl. Mater. 403(2010) 152-159. [14] X.B. Zhao, Z.H. Ye, Surf. Coat. Technol. 228(2013) S266-S270. [15] H.R. Xing, P. Hu, S.L. Li, Y.G. Zuo, J.Y. Han, X.J. Hua, K.S. Wang, F. Yang, P.F. Feng, T. Chang, J. Mater. Sci.Technol. 62(2021) 180-194. [16] I. Wesemann, A. Hoffmann, T. Mrotzek, U. Martin, Int. J. Refract. Met. Hard Mater. 28(2010) 709-715. [17] S. Primig, H. Leitner, H. Clemens, A. Lorich, W. Knabl, R. Stickler, Int. J. Refract. Met. Hard Mater. 28(2010) 703-708. [18] S. Majumdar, R. Kapoor, S. Raveendra, H. Sinha, I. Samajdar, P. Bhargava, J.K. Chakravartty, I.G. Sharma, A.K. Suri, J. Nucl. Mater. 385(2009) 545-551. [19] B. Dubiel, M. Chmielewski, T. Moskalewicz, A. Gruszczy ´ nski, A. Czyrska-File-monowicz, Mater. Lett. 124(2014) 137-140. [20] C. Pöhl, J. Schatte, H. Leitner, J. Alloy. Compd. 576(2013) 250-256. [21] B.V. Cockeram, R.W. Smith, N. Hashimoto, L.L. Snead, J. Nucl. Mater. 418(2011) 121-136. [22] H.R. Xing, P. Hu, J.Y. Han, S.L. Li, S.W. Ge, X.J. Hua, B.L. Hu, F. Yang, K.S. Wang, P.F. Feng, Int. J. Refract. Met. Hard Mater. 103(2022) 105747. [23] M.K. Miller, E.A. Kenik, M.S. Mousa, K.F. Russell, A.J. Bryhan, Scr. Mater. 46(2002) 299-303. [24] N.P. Daphalapurkar, S. Patil, T. Nguyen, K.E. Prasad, K.T. Ramesh, Mater. Sci. Eng. A 738 (2018) 283-294. [25] N. Tutyshkin, W.H. Müller, R. Wille, M. Zapara, Int. J. Plast. 59(2014) 133-151. [26] B.H. Duan, Z. Zhang, D.Z. Wang, T. Zhou, Trans. Nonferr. Metal. Soc. 29(2019) 1705-1713. [27] C.B. Danisman, B. Yavas, O. Yucel, F. Sahin, G. Goller, J. Alloy. Compd. 685(2016) 860-868. [28] X.J. Yu, K.S. Kumar, Mater. Sci. Eng. A 676 (2016) 312-323. [29] Y. Wang, J.C. Gao, G.M. Chen, W.Q. Li, Y.G. Zhou, W. Zhang, Int. J. Refract. Met. Hard Mater. 26(2008) 9-13. [30] S.P. Chakraborty, S. Banerjee, I.G. Sharma, B. Paul, A.K. Suri, J. Alloy. Compd. 477(2009) 256-261. [31] G. Leichtfried, J.H. Schneibel, M. Heilmaier, Metall. Mater. Trans. A 37 (2006) 2955-2961. [32] H. Sıralı, D. ¸ Si m ¸ se k, D.Özyürek, Met. Mater. Int. 27(2021) 4110-4119. [33] M. Aziz, D.C. Hudson, S. Russo, Appl. Phys. Lett. 104(2014) 233102. [34] C.P. Cui, Y.M. Gao, S.Z. Wei, G.S. Zhang, Y.C. Zhou, K.M. Pan, X.W. Zhu, S.L. Guo, High Temp. Mater. Process. 36(2017) 167-173. [35] P. Hu, Y.G. Zuo, S.L. Li, H.R. Xing, J.Y. Han, S.W. Ge, X.J. Hua, K.S. Wang, W. Zhang, J.B. Fu, J. Alloy. Compd. 870(2021) 159429. [36] M.S.El Genk, J.M. Tournier, J. Nucl. Mater. 340(2005) 93-112. [37] E. Ahmadi, M. Malekzadeh, S.K. Sadrnezhaad, Int. J. Refract. Met. Hard Mater. 29(2011) 141-145. [38] B.V. Cockeram, Mater. Sci. Eng. A 418 (2006) 120-136. [39] C. Chen, S. Wang, Y.L. Jia, M.P. Wang, Z. Li, Z.X. Wang, J. Alloy. Compd. 589(2014) 531-538. [40] S.W. Jin, L.Z. Mei, Y.M. Shu, Y.Z. Tie, J. Alloy. Compd. 419(2006) 172-175. [41] L. Zhang, M. Zhang, Z. Zhu, M. Gao, J. Gao, Z. Guo, J. Alloy. Compd. 918(2022) 165571. [42] L.A. Dı ´ az, A. F. Valdés, C. Dı ´ az, A.M. Espino, R. Torrecillas, J. Eur. Ceram. Soc. 23(2003) 2829-2834. [43] M. Nawa, T. Sekino, K. Niihara, J. Mater. Sci. 29(1994) 3185-3192. [44] K.Q. Liu, W. Pan, Z.K. Fan, H.J. Zhang, R.J. Shi, S.J. Yin, Y.P. Ren, Rare Metal. Mater. Eng. 36(2007) 238-240. [45] Z.N. Xu, L.J. Xu, N. Xiong, Y. Yao, X.Q. Li, S.Z. Wei, Int. J. Refract. Met. Hard Mater. 109(2022) 105983. [46] H. Kurishita, M. Asayama, O. Tokunaga, H. Yoshinaga, Mater. Trans., JIM 30 (1989) 1009-1015. [47] J. Fan, Z. Qian, H. Cheng, J. Tian, C. Cheng, Rare Met. Mater. Eng. 42(2013) 853-856. [48] D. Lang, C. Pöhl, D. Holec, J. Schatte, E. Povoden Karadeniz, W. Knabl, H. Clemens, S. Primig, J. Alloy. Compd. 654(2016) 445-454. [49] L. Wang, G. Liu, J. Sun, Mater. Res. Express. 4(2017) 116515. [50] L.R. Dong, J.H. Li, J.S. Wang, C.H. Wang, J. Zhang, L.Y. Xiao, K.J. Luo, Powder Technol. 346(2019) 78-84. [51] X. Chen, B. Li, T. Wang, R. Li, J. Wang, S. Ren, G.J. Zhang, Vacuum 152 (2018) 70-77. [52] G.J. Zhang, Y.J. Sun, C. Zuo, J.F. Wei, J. Sun, Mater. Sci. Eng. A 4 83-4 84 (2008) 350-352. [53] Z. Dong, N. Liu, W.Q. Hu, X.W. Kong, Z.Q. Ma, Y.C. Liu, Mater. Des. 181(2019) 108080. [54] X. Lan, Z.B. Li, H. Zhang, G.H. Zhang, Int. J. Refract. Met. Hard Mater. 110(2023) 106014. [55] G.J. Zhang, G. Liu, Y.J. Sun, F. Jiang, L. Wang, R.H. Wang, J. Sun, Int. J. Refract. Met. Hard Mater. 27(2009) 173-176. [56] G.J. Zhang, Q. Dang, H. Kou, R.H. Wang, G. Liu, J. Sun, J. Alloy. Compd. 577 (2013) S4 93-S4 98. [57] A.J. Mueller, R. Bianco, R.W. Buckman, Int. J. Refract. Met. Hard Mater. 18(20 0 0) 205-211. [58] Y. Wang, D.Z. Wang, H.Y. Liu, W. Zhu, X.Q. Zan, Mater. Sci. Eng. A 558 (2012) 497-501. [59] W.H. Li, G.J. Zhang, S.X. Wang, B. Li, J. Sun, J. Alloy. Compd. 642(2015) 34-39. [60] W.H. Li, T.T. Ai, H.F. Dong, G.J. Zhang, Materials (Basel) 12(2019) 1-13. [61] F.A. Mirza, K. Wang, S.D. Bhole, J. Friedman, D.L. Chen, D.R. Ni, B.L. Xiao, Z.Y. Ma, Mater. Sci. Eng. A 661 (2016) 115-125. [62] T.L. Sun, L.J. Xu, S.Z. Wei, F.N. Xiao, Z. Li, X.M. Fan, Y.C. Zhou, Int. J. Refract. Met. Hard Mater. 86(2020) 105085. [63] X.Q. Yang, H. Tan, N. Lin, Z.X. Li, Y.H. He, Int. J. Refract. Met. Hard Mater. 51(2015) 301-308. [64] W.Q. Hu, L. Wang, Z.Q. Ma, L.M. Yu, Y.C. Liu, Mater. Sci. Eng. A 818 (2021) 141448. [65] L. Wang, J. Sun, G. Liu, Y.J. Sun, G.J. Zhang, Int. J. Refract. Met. Hard Mater. 29(2011) 522-527. [66] B.V. Cockeram, Metall. Mater. Trans. A 40 (2009) 2843-2860. [67] J.S. Wang, W. Liu, Z.Y. Ren, F. Yang, Y.M. Wang, Y.h. Du, M.L. Zhou, Curr. Appl. Phys. 11(2011) 667-672. [68] G. Liu, G.J. Zhang, F. Jiang, X.D. Ding, Y.J. Sun, J. Sun, E. Ma, Nat. Materr. 12(2013) 344-350. [69] S. Vervynckt, K. Verbeken, P. Thibaux, Y. Houbaert, Mater. Sci. Eng. A 528 (2011) 5519-5528. [70] S. Christian, D.K. Reza, S. Ingo, Acta Mater. 106(2016) 59-65. [71] W.Q. Hu, Z. Dong, L.M. Yu, Z.Q. Ma, Y.C. Liu, J. Mater. Sci.Technol. 36(2020) 84-90. [72] D.J. Jiang, Z. Dong, Z.F. Du, Q. Zhao, H. Wang, Z.Q. Ma, Mater. Sci. Eng. A 831 (2022) 142344. [73] G. Gottstein, L.S. Shvindlerman, Acta Mater. 41(1993) 3267-3275. [74] S.K. Makineni, A.R. Kini, E.A. Jägle, H. Springer, D. Raabe, B. Gault, Acta Mater. 151(2018) 31-40. [75] B.L. Hu, K.S. Wang, P. Hu, S.L. Li, J. Deng, Y.G. Zuo, H.R. Xing, P.F. Feng, V. Paley, A. A. Volinsky, Mater. Sci. Eng. A 759 (2019) 167-171. [76] R. Li, X. Chen, B. Li, J. Wang, T. Wang, F.X. Yan, G.J. Zhang, Int. J. Refract. Met. Hard Mater. 94(2021) 105374. [77] C. Chen, W. Tan, M.P. Wang, Z. Li, Q. Lei, F.Z. Xia, Mater. Sci. Eng. A 527 (2010) 600-605. [78] P.M. Cheng, S.L. Li, G.J. Zhang, J.Y. Zhang, G. Liu, J.Z. Sun, Mater. Sci. Eng. A 619 (2014) 345-353. [79] B.V. Cockeram, Mater. Sci. Eng. A 528 (2010) 288-308. [80] P.Q. Chen, Y.X. Tai, J.G. Cheng, Powder Metall. Technol. 39(2021) 203-208. [81] L.B. Chen, R. Wei, K. Tang, G.J. Zhang, F. Jiang, J. Sun, Mater. Trans. 59(2018) 764-770. [82] K.S. Wang, J.F. Tan, P. Hu, Z.T. Yu, F. Yang, B.L. Hu, R. Song, H.C. He, A. A. Volin-sky, Mater. Sci. Eng. A 636 (2015) 415-420. [83] G.J. Zhang, Y. Zha, B. Li, W. He, J. Sun, Int. J. Refract. Met. Hard Mater. 41(2013) 585-589. [84] H.A. Zhang, D.Z. Wang, S.P. Chen, X.Y. Liu, Mater. Sci. Eng. A 345 (2003) 118-121. [85] B.L. Hu, J.Y. Han, S.W. Ge, X.J. Hua, S.L. Li, H.R. Xing, K.S. Wang, P. Hu, J.B. Fu, W. Zhang, A. A. Volinsky, E.S. Marchenko, Mater. Sci. Eng. A 831 (2022) 142271. [86] X.H. Lin, B. Li, L.P. Li, J. Liang, X.Q. Gao, X. Zhang, Rare Metal. 38(2019) 848-854. [87] W.H. Li, G.J. Zhang, T.T. Ai, B. Li, R. Li, Mater. Res. Express. 6(2019) 096593. [88] W.D.C. Materials Science and Engineering, 1966. [89] J.X. Zhang, L. Lu, M.L. Zhou, Y.C. Hu, T.Y. Zuo, Int. J. Refract. Met. Hard. Mater. 17(1999) 405-409. [90] R. Li, B. Li, X. Chen, J. Wang, F.X. Yan, T. Wang, S. Ren, G.J. Zhang, Mater. Sci. Eng. A 772 (2020) 138684. [91] W.J. Choi, S.Y. Lee, C.W. Park, J.H. Park, J.M. Byun, Y.D. Kim, Int. J. Refract. Met. Hard Mater. 80(2019) 238-242. [92] I. Rosales, J.H. Schneibel, Intermetallics 8 (20 0 0) 885-889. [93] A.F. Bower, M. Ortiz, J. Mech. Phys.Solids. 39(1991) 815-858. [94] P. Ramasundaram, R. Bowman, W. Soboyejo, Mater. Sci. Eng. A 248 (1998) 132-146. [95] H. Choe, J.H. Schneibel, R.O. Ritchie, Metall. Mater. Trans. A 34 (2003) 225-239. [96] R. Li, X. Chen, B. Li, J. Wang, T. Wang, F. Yan, G. Zhang, Int. J. Refract. Met. Hard Mater. 94(2021) 105374. [97] P.M. Cheng, Z.J. Zhang, G.J. Zhang, J.Y. Zhang, K. Wu, G. Liu, W. Fu, J. Sun, Mater. Sci. Eng. A 707 (2017) 295-305. [98] F. Ellyin, Crack Growth and Life Prediction, 1997, p. 415. [99] P. Hu, F. Yang, J. Deng, T. Chang, B.L. Hu, J.F. Tan, K.S. Wang, W.C. Cao, P.F. Feng, H.L. Yu, J. Alloy. Compd. 711(2017) 64-70. [100] P. Hu, Y.H. Zhou, T. Chang, Z.T. Yu, K.S. Wang, F. Yang, B.L. Hu, W.C. Cao, H.L. Yu, Mater. Sci. Eng. A 687 (2017) 276-280. [101] J.L. Ma, W.H. Li, G.X. Wang, Y.Q. Li, H.B. Guo, Z.L. Zhao, W. Li, J. Mater. Eng.Perform. 26(2017) 4 847-4 854. [102] L.J. Xu, S.Z. Wei, Q. Liu, G.S. Zhang, J.W. Li, Tribol. Trans. 56(2013) 833-840. [103] R. Li, X. Chen, J. Wang, B. Li, F. Yan, G. Zhang, Int. J. Refract. Met. Hard Mater. 112(2023) 106167. [104] P.M. Cheng, G.J. Zhang, J.Y. Zhang, G. Liu, J. Sun, Mater. Sci. Eng. A 640 (2015) 320-329. [105] S.E. Urreta, F. Louchet, A. Ghilarducci, Mater. Sci. Eng. A 302 (2001) 300-307. [106] G. Liu, J. Sun, C.W. Nan, K.H. Chen, Acta Mater. 53(2005) 3459-3468. [107] P.M. Cheng, C. Yang, P. Zhang, J.Y. Zhang, H. Wang, J. Kuang, G. Liu, J. Sun, J. Mater. Sci.Technol. 130(2022) 53-63. [108] E. Arzt, D.S. Wilkinson, Acta Metall. 34(1986) 1893-1898. [109] R. Arrabal, A. Pardo, M.C. Merino, M. Mohedano, P. Casajús, K. Paucar, G. Gar-cés, Corros.Sci. 55(2012) 301-312. [110] X.X. Wang, Y.M. Gao, K. Li, J.B. Yan, Y.F. Li, J.B. Feng, Corros. Sci. 69(2013) 369-375. [111] W. Cairang, T.S. Li, D.Z. Xue, H.J. Yang, P.M. Cheng, C. Chen, Y.J. Sun, Y. Zeng, X.D. Ding, J. Sun, Corros. Sci. 186(2021) 109469. [112] B.A. Pint, Oxid. Met. 45(1996) 1-37. [113] R.J. Christensen, V.K. Tolpygo, D.R. Clarke, Acta Mater. 45(1997) 1761-1766. [114] S. Majumdar, S. Burk, D. Schliephake, M. Krüger, H.J. Christ, M. Heilmaier, Oxid. Met. 80(2013) 219-230. [115] G.J. Zhang, H. Kou, Q. Dang, G. Liu, J. Sun, Int. J. Refract. Met. Hard Mater. 30(2012) 6-11. [116] Z. Dong, W.Q. Hu, Z.Q. Ma, C. Li, Y.C. Liu, Mater. Chem. Front. 3(2019) 1952-1972. [117] W.Q. Hu, Q.S. Ma, Z.Q. Ma, Y. Huang, Z.M. Wang, Y.C. Liu, Tungsten 1 (2019) 220-228. [118] J.S. Wang, W. Liu, H.Y. Li, F. Gao, Z.Y. Ren, M.L. Zhou, Trans. Nonferrous Met. Soc. China 20 (2010) 233-237. [119] W.Q. Hu, Z. Dong, Z.Q. Ma, Y.C. Liu, J. Alloy. Compd. 821(2020) 153461. [120] E. Bermejo, T. Dantas, C. Lacour, M. Quarton, Mater. Res. Bull. 30(1995) 645-652. [121] Z. Dong, N. Liu, Z.Q. Ma, C.X. Liu, Q.Y. Guo, Y. Yamauchi, H.R. Alamri, Z.A. Alothman, M. Shahriar, A. Hossain, Y.C. Liu, Int. J. Refract. Met. Hard Mater. 69(2017) 266-272. [122] M. Xia, Q.Z. Yan, L. Xu, H.Y. Guo, L.X. Zhu, C.C. Ge, J. Nucl. Mater. 434(2013) 85-89. [123] T. Ryu, K.S. Hwang, Y.J. Choi, H.Y. Sohn, Int. J. Refract. Met. Hard Mater. 27(2009) 701-704. [124] W.Q. Hu, Z. Dong, Z.Q. Ma, Y.C. Liu, Inorg. Chem. Front. 7(2020) 659-666. [125] B.H. He, H.L. Yang, J.M. Ruang, Mater. Sci. Eng. Powder Metall. 17(2012) 234-239. [126] C.X. Liu, K.S. Wang, P.F. Feng, G. An, Q.L. Yang, H. Zhao, Rare Metal. 33(2014) 58-64. [127] G.K. Behera, A. Patra, J. Mater. Eng.Perform. 30(2021) 6049-6049. [128] L. Zhang, S. Ukai, T. Hoshino, S. Hayashi, X.H. Qu, Acta Mater. 57(2009) 3671-3682. [129] W.Q. Hu, Z. Dong, H. Wang, T. Ahamad, Z.Q. Ma, Int. J. Refract. Met. Hard Mater. 95(2021) 105453. [130] W.Q. Hu, T. Sun, C.X. Liu, L.M. Yu, T. Ahamad, Z.Q. Ma, J. Mater. Sci.Technol. 88(2021) 36-44. [131] L.Y. Yao, Y.M. Gao, Y.J. Huang, Y.F. Li, X.Y. Huang, P. Xiao, Int. J. Refract. Met. Hard Mater. 98(2021) 105558. [132] B.L. Bramfitt, Mater. Trans. 1(1970) 1987-1995. [133] R. Ohser Wiedemann, U. Martin, H.J. Seifert, A. Müller, Int. J. Refract. Met. Hard Mater. 28(2010) 550-557. [134] G. Lee, C. Manière, J. McKittrick, R. Doerner, D. Nishijima, A. Gattuso, T. Abrams, D. Thomas, C. Back, E.A. Olevsky, J. Nucl. Materr. 516(2019) 354-359. [135] Z.Y. Hu, Z.H. Zhang, X.W. Cheng, F.C. Wang, Y.F. Zhang, S.L. Li, Mater. Des. 191(2020) 108662. [136] L.Y. Yao, Y.J. Huang, Y.M. Gao, Y.F. Li, X.Y. Huang, Y.R. Wang, Q.K. Liu, C.M. Zhou, Int. J. Refract. Met. Hard Mater. 107(2022) 105881. [137] J. Schmelzer, S.K. Rittinghaus, M.B. Wilms, O. Michael, M. Krüger, Int. J. Re-fract.Met. Hard Mater. 101(2021) 105623. [138] L.J. Xu, N. Li, W.L. Song, T.L. Sun, Y.C. Zhou, S.Z. Wei, H.H. Shen, J. Alloy. Compd. 897(2022) 163110. [139] A. Lasalmonie, J.L. Strudel, J. Mater. Sci. 21(1986) 1837-1852. [140] G.K. Behera, A. Patra, J. Mater. Eng.Perform. 30(2021) 6039-6048. [141] Z.P. Guo, L. Wang, C. Wang, Q.L. Li, Coatings 10 (2020) 833. [142] J.h. Yan, X.F. Zhang, Y. Wang, J.W. Qiu, C.F. Song, J. Mater. Eng. Perform. 32(2023) 3274-3283. [143] Z.Z. Wu, N. Zhao, Y. Lu, H.L. Liu, B.H. Duan, X.L. Liu, D.Z. Wang, Trans. Nonfer-rous Met. Soc. China 32 (2022) 1926-1934. [144] X.H. Zhang, C.G. Lin, S. Cui, Z.D. Li, Rare Metals 33 (2013) 191-195. [145] M. Alizadeh, M.M. Aliabadi, J. Alloy. Compd. 509(2011) 4 978-4 986. [146] J.L. Liu, C. Suryanarayana, D. Ghosh, G. Subhash, L.N. An, J. Alloy. Compd. 563(2013) 165-170. [147] G.R. Li, H.M. Wang, X.T. Yuan, Y.T. Zhao, Mater. Lett. 99(2013) 50-53. [148] M.S. Motta, P.K. Jena, E.A. Brocchi, I.G. Solórzano, Mater. Sci. Eng. C 15 (2001) 175-177. [149] S. Wei, L. Xu, G. Zhang, J. Li, B. Dai, Appl. Mech. Mater. 120(2011) 467. [150] L. Xu, S. Wei, G. Zhang, J. Li, X. Ma, B. Dai, Adv. Mater. Res.150-151(2010) 1077-1081. [151] L.J. Xu, S.Z. Wei, D.D. Zhang, Y. Li, G.S. Zhang, J.W. Li, Int. J. Refract. Met. Hard Mater. 41(2013) 4 83-4 88. [152] Y.C. Zhou, Y.M. Gao, S.Z. Wei, Y.J. Hu, Rare Metal. 37(2018) 1046-1054. [153] L.J. Xu, S.Z. Wei, J.W. Li, G.S. Zhang, B.Z. Dai, Int. J. Refract. Met. Hard Mater. 30(2012) 208-212. [154] Y.C. Zhou, Y.M. Gao, S.Z. Wei, K.M. Pan, Y.J. Hu, Int. J. Refract. Met. Hard Mater. 54(2016) 186-195. [155] B. Chen, Z.B. Li, G.H. Zhang, K.C. Chou, JOM 73 (2021) 3451-3459. [156] G.D. Sun, G.H. Zhang, K.C. Chou, J. Mater. Res.Technol. 8(2019) 5753-5762. [157] A.M. Tahir, R. Janisch, A. Hartmaier, Modell. Simul. Mater. Sci. Eng. 21(2013) 075005. [158] X.M. Fan, L.J. Xu, S.Z. Wei, L.Y. Yao, T.L. Sun, Y.C. Zhou, K.M. Pan, F.N. Xiao, K. Sun, Ceram. Int. 46(2020) 10400-10408. [159] G.J. Zhang, Y.J. Sun, R.M. Niu, J.Z. Sun, J.F. Wei, B.H. Zhao, L.X. Yang, Adv. Eng. Mater. 6(2004) 943-948. [160] P.M. Cheng, S.L. Li, G.J. Zhang, J.Y. Zhang, G. Liu, J. Sun, Mater. Sci. Eng. A 619 (2014) 345-353. [161] G. Hinrichsen, Mater. Sci. Technol. (1994). [162] T.L. Sun, L.J. Xu, S.Z. Wei, K.M. Pan, W.H. Li, Y.C. Zhou, Z.M. Huang, Trans. Nonferrous Met. Soc. China 30 (2020) 3307-3321. [163] Y.C. Zhou, S.Z. Wei, L.J. Xu, X.Q. Li, J. Alloy. Compd. 769(2018) 340-346. [164] Y.C. Zhou, Y.M. Gao, S.Z. Wei, Y.J. Hu, Microsc. Microanal. 22(2016) 122-130. [165] B. Meng, M. Wan, X.D. Wu, Y.K. Zhou, C. Chang, Int. J. Refract. Met. Hard Mater. 45(2014) 41-47. [166] A. Chaudhuri, A. N. Behera, A. Sarkar, R. Kapoor, R.K. Ray, S. Suwas, Acta Mater. 164(2019) 153-164. [167] L.Y. Yao, Y.M. Gao, L.J. Xu, Met. Mater. Int. 27(2020) 5335-5345. [168] C.J. Wang, L.Q. Zhang, S.Z. Wei, K.M. Pan, X.C. Wu, Q.K. Li, Mater. Sci. Eng. A 744 (2018) 79-85. [169] Y.C. Zhou, S.Z. Wei, L.M. Wang, L.J. Xu, X.Q. Li, K.M. Pan, J. Alloy. Compd. 823(2020) 153748. [170] A. Chaudhuri, A. Sarkar, S. Suwas, Int. J. Refract. Met. Hard Mater. 73(2018) 168-182. [171] C.P. Cui, X.W. Zhu, Adv. Process. Metall. 73(2021) 1646-1651. [172] J.A.M. Van Liempt, Nature 115 (1925) 194-194. [173] Y. Kim, K.H. Lee, E.P. Kim, D.I. Cheong, S.H. Hong, Int. J. Refract. Met. Hard Mater. 27(2009) 842-846. [174] Z. Dong, Z.Q. Ma, Y.C. Liu, Acta Mater. 220(2021) 117309. [175] C.P. Cui, Y.M. Gao, S.Z. Wei, G.S. Zhang, Y.C. Zhou, X.W. Zhu, S.L. Guo, Appl. Phys. A 122 (2016) 214. [176] O. Lenchuk, J. Rohrer, K. Albe, Acta Mater. 135(2017) 150-157. [177] C.P. Cui, Y.M. Gao, S.Z. Wei, G.S. Zhang, X.W. Zhu, S.L. Guo, High Temp. Mater. Process. 36(2017) 163-166. [178] C.P. Cui, X.W. Zhu, Q. Li, M. Zhang, G.P. Zhu, High Temp. Mater. Process. 39(2020) 595-598. [179] R. Li, B. Li, T. Wang, S. Ren, X. Chen, J. Wang, G. Zhang, J. Alloy. Compd. 743(2018) 716-727. [180] Z. Dong, S.H. Chen, S.C. Liu, Z.Q. Ma, L.M. Yu, J. Alloy. Compd. 903(2022) 163982. [181] C.P. Cui, X.W. Zhu, S.L. Liu, Q. Li, M. Zhang, G.P. Zhu, S.Z. Wei, J. Alloy. Compd. 768(2018) 81-87. [182] L.J. Xu, T.L. Sun, Y.C. Zhou, F.N. Xiao, M.J. Zhang, S.Z. Wei, J. Alloy. Compd. 860(2021) 158289. [183] M.L. Xiao, F.G. Li, H.F. Xie, Y.F. Wang, Mater. Des. 34(2012) 112-119. [184] C.P. Cui, Y.M. Gao, S.Z. Wei, G.S. Zhang, Y.C. Zhou, X.W. Zhu, J. Alloy. Compd. 716(2017) 321-329. [185] E.Z. Silva, H. Kestler, H.R.Z.Sandim, Int. J. Refract. Met. Hard Mater. 73(2018) 74-78. [186] L.Y. Yao, S.Z. Wei, Y.C. Zhou, L.J. Xu, C. Chen, T.L. Sun, P.P. Shi, Int. J. Refract. Met. Hard Mater. 75(2018) 202-210. [187] C.P. Cui, X.W. Zhu, S.L. Liu, Q. Li, J. Alloy. Compd. 752(2018) 308-316. [188] C.P. Cui, X.W. Zhu, Q. Li, M. Zhang, G.P. Zhu, S.L. Liu, J. Alloy. Compd. 829(2020) 154630. [189] H.J. Shi, C. Korn, G. Pluvinage, Mater. Sci. Eng. A 247 (1998) 180-186. [190] H.J. Shi, L.S. Niu, C. Korn, G. Pluvinage, J. Nucl. Mater. 278(20 0 0) 328-333. [191] W.L. Song, L.J. Xu, N. Li, Y.C. Zhou, T.L. Sun, Z. Li, H.H. Shen, S.Z. Wei, J. Alloy. Compd. 867(2021) 159118. [192] Z.N. Xu, L.J. Xu, W.L. Song, Y.C. Zhao, Y.C. Zhou, W. Liu, L. Yang, S.Z. Wei, Vac-uum 203 (2022) 111170. [193] L.L. Yang, Q.F. Zhang, Z.Y. He, X.G. Li, Int. J. Refract. Met. Hard Mater. 67(2017) 56-67. [194] X.Y. Ding, L.M. Luo, H.Y. Chen, G.N. Luo, X.Y. Zhu, X. Zan, J.G. Cheng, Y.C. Wu, Fusion Eng. Des. 92(2015) 29-34. [195] L.M. Luo, X.Y. Tan, H.Y. Chen, G.N. Luo, X.Y. Zhu, J.G. Cheng, Y.C. Wu, Powder Technol. 273(2015) 8-12. [196] W.Q. Hu, X.W. Kong, Z.F. Du, A. Khan, Z.Q. Ma, J. Alloy. Compd. 859(2021) 157774. [197] W.Q. Hu, Z.F. Du, Z.Z. Dong, L.M. Yu, T. Ahamad, Z.Q. Ma, Scr. Mater. 198(2021) 113831. [198] R. Ohser Wiedemann, C. Weck, U. Martin, A. Müller, H.J. Seifert, Int. J. Refract. Met. Hard Mater. 32(2012) 1-6. [199] C. Tuzemen, B. Yavas, I. Akin, O. Yucel, F. Sahin, G. Goller, J. Alloy. Compd. 781(2019) 433-439. [200] W.W. Zhou, X.H. Sun, K. Kikuchi, N. Nomura, K. Yoshimi, A. Kawasaki, Mater. Des. 146(2018) 116-124. [201] S. Miyamoto, K. Yoshimi, S.H. Ha, T. Kaneko, J. Nakamura, T. Sato, K. Maruyama, R. Tu, T. Goto, Metall. Mater. Trans. A 45 (2014) 1112-1123. [202] S.Y. Kamata, D. Kanekon, Y. Lu, N. Sekido, K. Maruyama, G. Eggeler, K. Yoshimi, Sci. Rep. 8(2018) 10487. [203] M.Le Flem, A. Allemand, S. Urvoy, D. Cédat, C. Rey, J. Nucl. Mater. 380(2008) 85-92. [204] Y. Hiraoka, Int. J. Refract. Met. Hard Mater. 21(2003) 265-270. [205] K. Yoshimi, J. Nakamura, D. Kanekon, S. Yamamoto, K. Maruyama, H. Katsui, T. Goto, JOM 66 (2014) 1930-1938. [206] P.N. Browning, J. Fignar, A. Kulkarni, J. Singh, Int. J. Refract. Met. Hard Mater. 62(2017) 78-84. [207] J. Zhao, L.C. Liu, H.R. Gong, X. Gong, Surf. Coat. Technol. 382(2020) 125158. [208] T. Takida, M. Mabuchi, M. Nakamura, T. Igarashi, Y. Doi, N. Takekazu, Mater. Sci. Eng. A 276 (20 0 0) 269-272. [209] B.L. Hu, K.S. Wang, P. Hu, Y.T. Su, S.L. Li, H.R. Xing, J.Y. Han, S.W. Ge, X.J. Hua, J.B. Fu, T. Chang, Int. J. Refract. Met. Hard Mater. 92(2020) 105336. [210] K. Jing, R. Liu, Z.M. Xie, J.G. Ke, X.P. Wang, Q.F. Fang, C.S. Liu, H. Wang, G. Li, X.B. Wu, Acta Mater. 227(2022) 117725. [211] K. Jing, X. Cheng, R. Liu, X.F. Xie, Z.M. Xie, X.B. Wu, H. Wang, G. Li, Q.F. Fang, C.S. Liu, X.P. Wang, Mater. Sci. Eng. A 854 (2022) 143803. [212] H.Si Abdelkader, H.I. Faraoun, C. Esling, J. Appl. Phys. 110(2011) 044901. [213] J. Becker, D. Breuer, I. Bogomol, M. Krüger, Crystals 12 (2022) 1534. [214] S. Nakayama, N. Sekido, S. Uemura, S. Tsurekawa, K. Yoshimi, Mater. Trans. 59(2018) 518-527. [215] J.N. Gan, Q.M. Gong, Y.Q. Jiang, H. Chen, Y.L. Huang, K. Du, Y.Y. Li, M. Zhao, F. Lin, D.M. Zhuang, J. Alloy. Compd. 796(2019) 167-175. [216] Y. Katoh, G. Vasudevamurthy, T. Nozawa, L.L. Snead, J. Nucl. Mater. 441(2013) 718-742. |
[1] | Fengchao Liu, Pingsha Dong, Abdul Sayeed Khan, Yuning Zhang, Randy Cheng, Alan Taub, Zongyi Ma. 3D printing of fine-grained aluminum alloys through extrusion-based additive manufacturing: Microstructure and property characterization [J]. J. Mater. Sci. Technol., 2023, 139(0): 126-136. |
[2] | Baiyan Sui, Hua Lu, Xin Liu, Jiao Sun. High-purity Mg and Mg-1Ca alloys: Comparative assessment of the merits regarding degradation, osteogenesis, and biosafety for orthopedic applications [J]. J. Mater. Sci. Technol., 2023, 140(0): 58-66. |
[3] | SeungHyeok Chung, Ji Ho Shin, Ho Jin Ryu. Effects of dispersoid preforming via multistep sintering of oxide dispersion-strengthened CoCrFeMnNi high-entropy alloy [J]. J. Mater. Sci. Technol., 2023, 140(0): 187-200. |
[4] | Hui Wang, Zhuoming Xie, Xiang Cheng, Ke Jing, Linchao Zhang, Junfeng Yang, Rui Liu, Le Han, Lei Cao, Xianping Wang, Qianfeng Fang, Changsong Liu, Xuebang Wu. Microstructural evolution and thermal fatigue damage mechanism of second-phase dispersion strengthened tungsten composites under repetitive thermal loads [J]. J. Mater. Sci. Technol., 2023, 140(0): 221-232. |
[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] | Xin Zhang, Xin Li, Lei Liu, Bo Li, Xiaodong Hou, Deng Pan, Lina Gao, Shufeng Li. Interface regulation strategy of Al-CNTs composite induced by Al-Si eutectic reaction and its strengthening mechanism [J]. J. Mater. Sci. Technol., 2023, 151(0): 1-9. |
[7] | Lei Gu, Rui Hou, Yi Liu, Guang Chen, Jihua Liu, Gong Zheng, Ruisheng Zhang, Yonghao Zhao. Strengthening and toughening bulk Ni2CoFeV0.5 medium-entropy alloy via thermo-mechanical treatment [J]. J. Mater. Sci. Technol., 2023, 151(0): 19-29. |
[8] | Jian Guo, Ji Zhang, Jing Wang, Shan-Tao Zhang. Distinct microstructure and property evolution of 0.76(Bi0.5Na0.5)TiO3-0.24SrTiO3 ferroelectric ceramics synthesized with different TiO2 reactants [J]. J. Mater. Sci. Technol., 2023, 151(0): 73-79. |
[9] | Yumin Wang, Bin Yang, Shuangming Li, Xin Cao, Zhongli Liu, Hui Xing. Seaweed pattern formation in the non-axially directional solidification of 2D-like and 3D Al-3 wt.% Mg single crystal [J]. J. Mater. Sci. Technol., 2023, 147(0): 1-5. |
[10] | Xin Bao, Shuaihang Hou, Zhixin Wu, Xiaodong Wang, Li Yin, Yijie Liu, Huolun He, Sichen Duan, Baolin Wang, Jun Mao, Feng Cao, Qian Zhang. Mechanical properties of thermoelectric generators [J]. J. Mater. Sci. Technol., 2023, 148(0): 64-74. |
[11] | Dina Bayoumy, Wenhao Kan, Xinhua Wu, Yuman Zhu, Aijun Huang. The latest development of Sc-strengthened aluminum alloys by laser powder bed fusion [J]. J. Mater. Sci. Technol., 2023, 149(0): 1-17. |
[12] | Xinpeng Guo, Huijun Li, Peng Xue, Zengxi Pan, Rongzheng Xu, Dingrui Ni, Zongyi Ma. Microstructure and mechanical properties of 600 MPa grade ultra-high strength aluminum alloy fabricated by wire-arc additive manufacturing [J]. J. Mater. Sci. Technol., 2023, 149(0): 56-66. |
[13] | Yuefei Jia, Chang Ren, Shiwei Wu, Yongkun Mu, Long Xu, Yandong Jia, Wentao Yan, Jun Yi, Gang Wang. Multistage strain-hardening behavior of ultrastrong and ductile lightweight refractory complex-concentrated alloys [J]. J. Mater. Sci. Technol., 2023, 149(0): 73-87. |
[14] | H. Wang, D.T. Zhang, C. Qiu, W.W. Zhang, D.L. Chen. Achieving superior strength-ductility synergy in a heterostructured magnesium alloy via low-temperature extrusion and low-temperature annealing [J]. J. Mater. Sci. Technol., 2023, 163(0): 32-44. |
[15] | Chenying Shi, Muzhi Ma, Biaobiao Yang, Yuling Liu, Yushen Huang, Yong Du. Effect of Ti additions on microstructure and mechanical properties of Cu-Cr-Zr alloy [J]. J. Mater. Sci. Technol., 2023, 163(0): 69-80. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||