J. Mater. Sci. Technol. ›› 2024, Vol. 176: 211-223.DOI: 10.1016/j.jmst.2023.07.067
• Research article • Previous Articles Next Articles
L.K. Huanga,b, F. Liub,*, M.X. Huanga,*
Received:
2023-05-16
Revised:
2023-07-23
Accepted:
2023-07-24
Published:
2024-03-20
Online:
2024-03-15
Contact:
*E-mail addresses: liufeng@nwpu.edu.cn (F. Liu), mxhuang@hku.hk (M.X. Huang).
L.K. Huang, F. Liu, M.X. Huang. Accelerating bainite transformation by concurrent pearlite formation in a medium Mn steel: Experiments and modelling[J]. J. Mater. Sci. Technol., 2024, 176: 211-223.
[1] B. Sun, A. Kwiatkowski da Silva, Y. Wu, Y. Ma, H. Chen, C. Scott, D. Ponge, D. Raabe, Int. Mater. Rev. (2023) 1-39. [2] J. Han, S.J. Lee, J.G. Jung, Y.K. Lee, Acta Mater. 78(2014) 369-377. [3] Y. Ma, Mater. Sci. Technol. 33(2017) 1713-1727. [4] E.J. Seo, L. Cho, B.C.De Cooman, Acta Mater. 107(2016) 354-365. [5] S. Ayenampudi, C. Celada-Casero, J. Sietsma, M.J. Santofimia, Materialia 8 (2019) 100492. [6] F.G. Caballero, H.K.D.H. Bhadeshia, K.J.A.Mawella, D.G. Jones, P. Brown, Mater. Sci. Technol. 17(2001) 517-522. [7] F.G. Caballero, H.K.D.H. Bhadeshia, Curr. Opin. Solid St.M. 8(2004) 251-257. [8] B.C.De Cooman, Curr. Opin. Solid State Mater.Sci. 8(2004) 285-303. [9] H.K.D.H. Bhadeshia, Bainite in Steels: Theory and Practice, CRC Press, Florida, 2019. [10] H.I. Aaronson, W.T. Reynolds, G.J. Shiflet, G. Spanos, Metall. Trans. A 21 (1990) 1343-1380. [11] N. Takayama, G. Miyamoto, T. Furuhara, Acta Mater. 60(2012) 2387-2396. [12] F.G. Caballero, M.K. Miller, C. Garcia-Mateo, J. Cornide, M.J. Santofimia, Scr. Mater. 67(2012) 846-849. [13] X. Long, R. Yang, D. Sun, W. Liu, Y. Zhang, F. Zhang, Z. Yang, Y. Li, Mater. Sci. Eng. A 870 (2023) 144821. [14] Y. Sakuma, O. Matsumura, H. Takechi, Metall. Trans. A 22 (1991) 4 89-4 98. [15] S.K. Liu, J. Zhang, Metall. Trans. A 21 (1990) 1517-1525. [16] G. Miyamoto, K. Yokoyama, T. Furuhara, Acta Mater. 177(2019) 187-197. [17] S.J. Lee, J.S. Park, Y.K. Lee, Scr. Mater. 59(2008) 87-90. [18] A. Matsuzaki, H.K.D.H. Bhadeshia, Mater. Sci. Technol. 15(1999) 518-522. [19] J.B. Seol, D. Raabe, P.P. Choi, Y.R. Im, C.G. Park, Acta Mater. 60(2012) 6183-6199. [20] Y. Toji, H. Matsuda, M. Herbig, P.P. Choi, D. Raabe, Acta Mater. 65(2014) 215-228. [21] H.K.D.H. Bhadeshia, D.V. Edmonds, Metall. Trans. A 10 (1979) 895-907. [22] R. Freiwillig, J. Kudrman, P. Chráska, Metall. Trans. A 7 (1976) 1091-1097. [23] C. Garcia-Mateo, F.G. Caballero, H.K.D.H. Bhadeshia, ISIJ Int. 43(2003) 1821-1825. [24] W. Gong, Y. Tomota, Y. Adachi, A. Paradowska, J. Kelleher, S. Zhang, Acta Mater. 61(2013) 4142-4154. [25] R.H. Larn, J.R. Yang, Mater. Sci. Eng. A 278 (20 0 0) 278-291. [26] H.K.D.H. Bhadeshia, S.A. David, J.M. Vitek, R.W. Reed, Mater. Sci. Technol. 7(1991) 686-698. [27] J.B. Nelson, D.P. Riley, Proc. Phys. Soc. 57(1945) 160-177. [28] M. Wang, M.X. Huang, Acta Mater. 188(2020) 551-559. [29] A. Navarro-López, J. Hidalgo, J. Sietsma, M.J. Santofimia, Mater. Chracter. 128(2017) 248-256. [30] K. Thompson, D. Lawrence, D.J. Larson, J.D. Olson, T.F. Kelly, B. Gorman, Ultra-microscopy 107 (2007) 131-139. [31] M.C. Jo, J.H. Choi, H. Lee, A. Zargaran, J.H. Ryu, S.S. Sohn, N.J. Kim, S. Lee, Mater. Sci. Eng. A (2019) 16-27 740-741. [32] P.E.J. Rivera-Díaz-Del-Castillo, S. Van Der Zwaag, J. Sietsma, Metall. Mater. Trans. A 35 (2004) 425-433. [33] K. Zhu, H. Chen, J.P. Masse, O. Bouaziz, G. Gachet, Acta Mater. 61(2013) 6025-6036. [34] A.M. Ravi, A. Kumar, M. Herbig, J. Sietsma, M.J. Santofimia, Acta Mater. 188(2020) 424-434. [35] A.M. Ravi, A. Navarro-López, J. Sietsma, M.J. Santofimia, Acta Mater. 188(2020) 394-405. [36] I. Pushkareva, J. Macchi, B. Shalchi-Amirkhiz, F. Fazeli, G. Geandier, F. Danoix, J.D.C.Teixeira, S.Y.P.Allain, C. Scott, Scr. Mater. 224(2023) 115140. [37] Y. Xia, G. Miyamoto, Z. Yang, C. Zhang, T. Furuhara, Acta Mater. 91(2015) 10-18. [38] O. Dmitrieva, P. Choi, S.S.A. Gerstl, D. Ponge, D. Raabe, Ultramicroscopy 111 (2011) 623-627. [39] Y. Toji, H. Matsuda, D. Raabe, Acta Mater. 116(2016) 250-262. [40] W. Gong, Y. Tomota, S. Harjo, Y.H. Su, K. Aizawa, Acta Mater. 85(2015) 243-249. [41] G. Xu, F. Liu, L. Wang, H. Hu, Scr. Mater. 68(2013) 833-836. [42] F. Hu, P.D. Hodgson, K.M. Wu, Mater. Lett. 122(2014) 240-243. [43] A. Eres-Castellanos, F.G. Caballero, C. Garcia-Mateo, Acta Mater. 189(2020) 60-72. [44] G. Ghosh, G.B. Olson, Acta Mater. 50(2002) 2655-2675. [45] C. Ghosh, V.V. Basabe, J.J. Jonas, Y.M. Kim, I.H. Jung, S. Yue, Acta Mater. 61(2013) 2348-2362. [46] H.D. Wu, G. Miyamoto, Z.G. Yang, C. Zhang, H. Chen, T. Furuhara, Acta Mater. 133(2017) 1-9. [47] J.W. Christian, Pergamon, 2002. [48] G. Love, Acta Metall. 12(1964) 731-737. [49] M. Umemoto, H. Ohtsuka, I. Tamura, Trans. Iron Steel Inst. Jpn. 23(1983) 775-784. [50] Z. Cai, X. Mao, S. Bao, G. Zhao, Y. Xu, Metals (Basel) 9(2019) 268-282. [51] J.W. Cahn, W.G. Hagel, Acta Metall. 11(1963) 561-574. [52] S.A. Hackney, G.J. Shiflet, Acta Metall. 35(1987) 1007-1017. [53] C.R. Hutchinson, R.E. Hackenberg, G.J. Shiflet, Acta Mater. 52(2004) 3565-3585. [54] M.M. Aranda, R. Rementeria, J. Poplawsky, E. Urones-Garrote, C. Capdevila, Scr. Mater. 104(2015) 67-70. [55] A.M. Ravi, J. Sietsma, M.J. Santofimia, Scr. Mater. 185(2020) 7-11. [56] M. Umemoto, T. Furuhara, I. Tamura, Acta Metall. 34(1986) 2235-2245. [57] A.M. Ravi, J. Sietsma, M.J. Santofimia, Acta Mater. 105(2016) 155-164. [58] J.W. Cahn, Acta Metall. 4(1956) 449-459. [59] R.T. van Tol, L.Zhao, J. Sietsma, Acta Mater. 64(2014) 33-40. [60] C. Capdevila, F.G. Caballero, C. García de Andrés, Acta Mater. 50(2002) 4629-4641. [61] S.M.C. Van Bohemen, Metall. Mater. Trans. A 41 (2010) 285-296. [62] S.M.C.Van Bohemen, J.Sietsma, Int. J. Mater. Res. 99(2008) 739-747. [63] Y. Zhang, Y. He, Y. Zhang, S. Song, F. Liu, Scr. Mater. 227(2023) 115311. [64] K. Wang, S.L. Shang, Y. Wang, Z.K. Liu, F. Liu, Acta Mater. 147(2018) 261-276. [65] H.R. Peng, B.S. Liu, F. Liu, J. Mater. Sci.Technol. 43(2020) 21-31. [66] L.K. Huang, W. Lin, Y. Zhang, D. Feng, Y.J. Li, X. Chen, K. Niu, F. Liu, Acta Mater. 201(2020) 167-181. [67] L. Guo, H.K.D.H. Bhadeshia, H. Roelofs, M.I. Lembke, Mater. Sci. Technol. 33(2017) 2147-2156. [68] R. Ranjan, S.B. Singh, Acta Mater. 202(2021) 302-316. [69] G. Miyamoto, A. Goto, N. Takayama, T. Furuhara, Scr. Mater. 154(2018) 168-171. [70] M.M. Aranda, R. Rementeria, C. Capdevila, R.E. Hackenberg, Metall. Mater. Trans. A 47 (2016) 649-660. |
[1] | Huabei Peng, Liqiu Yong, Gaixia Wang, Jiazhen Yan, Bing Xu, Yuhua Wen. Abnormal grain growth induced by δ → γ phase transformation in Fe-based shape memory alloys [J]. J. Mater. Sci. Technol., 2024, 172(0): 196-201. |
[2] | Pengcheng Zhang, Cheng Zhang, Jie Pan, Di Ouyang, Lin Liu. Toughening additive manufactured Zr-based bulk metallic glass composites by martensite phase transformation [J]. J. Mater. Sci. Technol., 2024, 170(0): 95-102. |
[3] | Fuqiang Zhang, Xianfei Ding, Leming Xu, Xin Feng, Hai Nan, Jianping He, Yongfeng Liang, Junpin Lin. Microstructure evolution and phase transformation of the mushy zone in a quenched β-solidifying TiAl alloy [J]. J. Mater. Sci. Technol., 2024, 169(0): 28-41. |
[4] | Y.B. Zhang, S.J. Song, F. Liu. Thermo-kinetic characteristics on stabilizing hetero-phase interface of metal matrix composites by crystal plasticity finite element method [J]. J. Mater. Sci. Technol., 2024, 169(0): 53-67. |
[5] | Qi Cai, Qilin Yu, Xinyao Li, Yao Lu, Yanmo Li, Ganggang Cui. In situ investigation on densification mechanism of Ti-20Al-19Nb (at.%) alloy by TiH2-assisted pressureless sintering [J]. J. Mater. Sci. Technol., 2023, 165(0): 170-186. |
[6] | Bo Sun, Jinyong Mo, Qianqian Wang, Yongxiong Chen, Zhibin Zhang, Baolong Shen, Xiubing Liang. Outstanding specific yield strength of a refractory high-entropy composite at an ultrahigh temperature of 2273 K [J]. J. Mater. Sci. Technol., 2023, 166(0): 145-154. |
[7] | Qinglong Liu, Junyu Tian, Wenting Wei. A model for converting thermal analysis to volume fraction of high carbon bearing steels during low-temperature tempering [J]. J. Mater. Sci. Technol., 2023, 136(0): 212-222. |
[8] | Xuancheng Wang, Yuxiao Jia, Xuezhang Xiao, Panpan Zhou, Jiapeng Bi, Jiacheng Qi, Ling Lv, Fen Xu, Lixian Sun, Lixin Chen. Robust architecture of 2D nano Mg-based borohydride on graphene with superior reversible hydrogen storage performance [J]. J. Mater. Sci. Technol., 2023, 146(0): 121-130. |
[9] | Kaveh Edalati, Etsuo Akiba, Walter J. Botta, Yuri Estrin, Ricardo Floriano, Daniel Fruchart, Thierry Grosdidier, Zenji Horita, Jacques Huot, Hai-Wen Li, Huai-Jun Lin, Ádám Révész, Michael J. Zehetbauer. Impact of severe plastic deformation on kinetics and thermodynamics of hydrogen storage in magnesium and its alloys [J]. J. Mater. Sci. Technol., 2023, 146(0): 221-239. |
[10] | Zhuo Liu, Wei Cheng, Dekui Mu, Qiaoli Lin, Xipeng Xu, Han Huang. Growth mechanisms of interfacial carbides in solid-state reaction between single-crystal diamond and chromium [J]. J. Mater. Sci. Technol., 2023, 144(0): 138-149. |
[11] | Xuelian Zhang, Xin Zhang, Lingchao Zhang, Zhenguo Huang, Fang Fang, Yaxiong Yang, Mingxia Gao, Hongge Pan, Yongfeng Liu. Remarkable low-temperature hydrogen cycling kinetics of Mg enabled by VHx nanoparticles [J]. J. Mater. Sci. Technol., 2023, 144(0): 168-177. |
[12] | R.T. da Silva, J.M. Morbec, G. Rahman, H.B. de Carvalho. A comprehensive study on the processing of Co:ZnO nanostructured ceramics: Defect chemistry engineering and grain growth kinetics [J]. J. Mater. Sci. Technol., 2023, 138(0): 221-232. |
[13] | Zheng Huang, Wei Wang, Mingyin Kou, Haiping Lei, Yiwa Luo, Shuqiang Jiao. Single-atom electrocatalyst and gel polymer electrolyte boost the energy density and life of aluminum-sulfur batteries [J]. J. Mater. Sci. Technol., 2023, 152(0): 86-93. |
[14] | Xuzhou Gao, Wei Jiang, Yiping Lu, Zhigang Ding, Jizi Liu, Wei Liu, Gang Sha, Tongming Wang, Tingju Li, Isaac T.H. Chang, Yonghao Zhao. Excellent strength-ductility combination of Cr26Mn20Fe20Co20Ni14 high-entropy alloy at cryogenic temperatures [J]. J. Mater. Sci. Technol., 2023, 154(0): 166-177. |
[15] | Yuxiao Jia, Xuancheng Wang, Leijie Hu, Xuezhang Xiao, Shuoqing Zhang, Jiahuan He, Jiacheng Qi, Ling Lv, Fen Xu, Lixian Sun, Lixin Chen. Carbon composite support improving catalytic effect of NbC nanoparticles on the low-temperature hydrogen storage performance of MgH2 [J]. J. Mater. Sci. Technol., 2023, 150(0): 65-74. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||