材料科学与技术 ›› 2020, Vol. 48 ›› Issue (0): 146-155.DOI: 10.1016/j.jmst.2020.03.010
收稿日期:2019-11-06
接受日期:2020-01-27
出版日期:2020-07-01
发布日期:2020-07-13
H.F. Zhanga, H.L. Yanb,*(
), H. Yua,c,d, Z.W. Jie, Q.M. Huc,*(
), N. Jiaa,*(
)
Received:2019-11-06
Accepted:2020-01-27
Online:2020-07-01
Published:2020-07-13
Contact:
H.L. Yan,Q.M. Hu,N. Jia
. [J]. 材料科学与技术, 2020, 48(0): 146-155.
H.F. Zhang, H.L. Yan, H. Yu, Z.W. Ji, Q.M. Hu, N. Jia. The effect of Co and Cr substitutions for Ni on mechanical properties and plastic deformation mechanism of FeMnCoCrNi high entropy alloys[J]. J. Mater. Sci. Technol., 2020, 48(0): 146-155.
Fig. 5. Three-dimensional surface plots of the single-crystal Young’s modulus for the (a) Fe20Mn20CoxCr20Ni(40-x) (x = 0, 30) and (b) Fe20Mn20Co20CryNi(40-y) (y = 0, 35) alloys, respectively. The calculated results at both 0 K and 300 K are presented.
Fig. 6. Ideal tensile strength of the Fe20Mn20CoxCr20Ni(40-x) (0≤x≤30) alloys at (a) 0 K and (b) 300 K as a function of the applied strain. The uniaxial tension axis is parallel to the [110] direction.
Fig. 7. Ideal tensile strength of the Fe20Mn20Co20CryNi(40-y) (0≤y≤35) alloys at (a) 0 K and (b) 300 K as a function of the applied strain. The uniaxial tension axis is parallel to the [110] direction.
Fig. 8. The intrinsic stacking fault energy (γisf) and extrinsic stacking fault energy (γesf) of the Fe20Mn20CoxCryNi(60-x-y) (0≤x≤30, 0≤y≤35) alloys as a function of (a) Co and (b) Cr contents. The calculated results at both 0 K and 300 K are presented.
Fig. 9. Effective energy barriers of the Fe20Mn20CoxCr20Ni(40-x) (0≤x≤30) alloys with their corresponding lattice constants at 300 K as a function of θ.
Fig. 10. Effective energy barriers of the Fe20Mn20Co20CryNi(40-y) (0≤y≤35) alloys with their corresponding lattice constants at 300 K as a function of θ.
Fig. 11. Lattice constants and stacking fault energy of the Fe20Mn20CoxCryNi(60-x-y) (0≤x≤30, 0≤y≤35) alloys at 0 K with the variation of (a) Co and (b) Cr contents. Magnetic moments of the alloys at 0 K with the variation of Co and Cr contents are shown in (c) and (d), respectively.
| [1] | B. Cantor, I.T.H. Chang, P. Knight, A.J.B. Vincent, Mater. Sci. Eng. A 375-377 (2004) 213-218. |
| [2] | J.W. Yeh, S.K. Chen, S.J. Lin, J.Y. Gan, T.S. Chin, T.T. Shun, C.H. Tsau, S.Y. Chang, Adv. Eng. Mater. 6 (2004) 299-303. |
| [3] | W.R. Zhang, P.K. Liaw, Y. Zhang, Sci. China Mater. 61 (2018) 2-22. |
| [4] | H.Y. Diao, R. Feng, K.A. Dahmen, P.K. Liaw, Curr. Opin. Solid State Mater. Sci. 21 (2017) 252-266. |
| [5] | Z. Wu, H. Bei, F. Otto, G.M. Pharr, E.P. George, Intermetallics 46 ( 2014) 131-140. |
| [6] | B. Gludovatz, A. Hohenwarter, D. Catoor, E.H. Chang, E.P. George, R.O. Ritchie, Science 345 ( 2014) 1153-1158. |
| [7] | S.H. Jiang, H. Wang, Y. Wu, X.J. Liu, H.H. Chen, M.J. Yao, B. Gault, D. Ponge, D. Raabe, A. Hirata, M.W. Chen, Y.D. Wang, Z.P. Lu, Nature 544 ( 2017) 460-464. |
| [8] |
M. Koyama, Z. Zhang, M.M. Wang, D. Ponge, D. Raabe, K. Tsuzaki, H. Noguchi, C.C. Tasan, Science 355 ( 2017) 1055-1057.
URL PMID |
| [9] | N. Tian, S. Tian, H. Yan, D. Shu, S. Zhang, G. Zhao, Mater. Sci. Eng. A 744 ( 2019) 154-162. |
| [10] | Z.M. Li, Acta Mater. 164 (2019) 400-412. |
| [11] | S.J. Sun, Y.Z. Tian, X.H. An, H.R. Lin, J.W. Wang, Z.F. Zhang, Mater. Today Nano 4 ( 2018) 46-53. |
| [12] | J. Li, B. Gao, Y. Wang, X. Chen, Y. Xin, S. Tang, B. Liu, Y. Liu, M. Song, J. Alloys. Compd. 792 (2019) 170-179. |
| [13] | N. Gao, D.H. Lu, Y.Y. Zhao, X.W. Liu, G.H. Liu, Y. Wu, G. Liu, Z.T. Fan, Z.P. Lu, E.P. George, J. Alloys. Compd. 792 (2019) 1028-1035. |
| [14] | B. Mahato, S.K. Shee, T. Sahu, S.G. Chowdhury, P. Sahu, D.A. Porter, L.P. Karjalainen, Acta Mater. 86 (2015) 69-79. |
| [15] | L.M. Guerrero, P. La Roca, F. Malamud, A. Baruj, M. Sadek, J. Alloys. Compd. 797 (2019) 237-245. |
| [16] |
Z.M. Li, K.G. Pradeep, Y. Deng, D. Raabe, C.C. Tasan, Nature 534 ( 2016) 227-230.
URL PMID |
| [17] | Z.M. Li, F. Körmann, B. Grabowski, J. Neugebauer, D. Raabe, Acta Mater. 136 (2017) 262-270. |
| [18] | Z.M. Li, C.C. Tasan, K.G. Pradeep, D. Raabe, Acta Mater. 131 (2017) 323-335. |
| [19] | C.C. Tasan, M. Diehl, D. Yan, M. Bechtold, F. Roters, L. Schemmann, C. Zheng, N. Peranio, D. Ponge, M. Koyama, K. Tsuzaki, D. Raabe, Annu. Rev. Mater. Res. 45 (2015) 391-431. |
| [20] |
D. Raabe, Z.M. Li, D. Ponge, MRS Bull. 44 (2019) 266-272.
DOI URL |
| [21] |
C. Herrera, D. Ponge, D. Raabe, Acta Mater. 59 (2011) 4653-4664.
DOI URL |
| [22] | S. Huang, W. Li, E. Holmström, S.K. Kwon, O. Eriksson, L. Vitos, Mater. Res. Lett. 7 (2019) 439-445. |
| [23] |
D.X. Wei, X.Q. Li, J. Jiang, W. Heng, Y. Koizumi, W. Choi, B.J. Lee, H.S. Kim, H. Kato, A. Chiba, Scr. Mater. 165 (2019) 39-43.
DOI URL |
| [24] | S.F. Liu, Y. Wu, H.T. Wang, W.T. Lin, Y.Y. Shang, J.B. Liu, K. An, X.J. Liu, H. Wang, Z.P. Lu, J. Alloys. Compd. 792 (2019) 444-455. |
| [25] | P. Hohenberg, W. Kohn, Phys. Rev. 136 (1964) B864. |
| [26] | L. Vitos, London, 2007, pp. 13-93. |
| [27] |
P. Soven, Phys. Rev. 156 (1967) 809-813.
DOI URL |
| [28] | B.L. Gyorffy, Phys. Rev. B 5 ( 1972) 2382-2384. |
| [29] |
D.C. Ma, B. Grabowski, F. Körmann, J. Neugebauer, D. Raabe, Acta Mater. 100 (2015) 90-97.
DOI URL |
| [30] | F.Y. Tian, L.K. Varga, J. Shen, L. Vitos, Comput. Mater. Sci. 111 (2016) 350-358. |
| [31] | S. Huang, W. Li, S. Lu, F. Tian, J. Shen, E. Holmstr, L. Vitos, Scr. Mater. 108 (2015) 44-47. |
| [32] |
J.P. Perdew, K. Burke, M. Ernzerhof, Phys. Rev. Lett. 77 (1996) 3865-3868.
DOI URL PMID |
| [33] | J. Staunton, B.L. Gyorffy, A.J. Pindor, G.M. Stocks, H. Winter, J. Magn, Magn. Reson. Mater. Phys. Biol. Med. 45 (1984) 15-22. |
| [34] | H. Zhang, B. Johansson, L. Vitos, Phys. Rev. B 84 ( 2011), 140411. |
| [35] | D. Musica, T. Takahashi, L. Vitos, C. Asker, Igor A. Abrikosov, J.M. Schneider, Appl. Phys. Lett. 91 (2007), 191904. |
| [36] | H. Pitkänen, M. Alatalo, A. PuITSo, M. Ropo, K. Kokko, M.P.J. Punkkinen, P. Olsson, B. Johansson, S. Hertzman, L. Vitos, Phys. Rev. B 79 ( 2009), 024108. |
| [37] | G. Grimvall, Amsterdam, 1999, pp. 324-326. |
| [38] | H.L. Zhang, X. Sun, S. Lu, Z.H. Dong, X.D. Ding, Y.Z. Wang, Acta Mater. 155 (2018) 12-22. |
| [39] |
X.Q. Li, D.L. Irving, L. Vitos, Sci. Rep. 8 (2018) 11196.
DOI URL PMID |
| [40] | G.A. Alers, J.R. Neighbours, J. Appl. Phys. 28 (1957), 1514-1514. |
| [41] | S. Huang, X.Q. Li, H. Huang, E. Holmstrom, L. Vitos, Mater. Chem. Phys. 210 (2018) 37-42. |
| [42] |
D.G. Pettifor, Mater. Sci. Technol. 8 (1992) 345-349.
DOI URL |
| [43] | S.F. Pugh, Philos. Mag. 45 (1954) 823-843. |
| [44] |
V. Tvergaard, J.W. Hutchinson, J. Am. Ceram. Soc. 71 (1988) 157-166.
DOI URL |
| [45] | D.X. Wei, X.Q. Li, S. Schönecker, J. Jiang, W.M. Choi, B.J. Lee, H.S. Kim, A. Chiba, H. Kato, Acta Mater. 181 (2019) 318-330. |
| [46] | X.Q. Li, S. Schönecker, W. Li, L.K. Varga, D.L. Irving, L. Vitos, Phys. Rev. B 97 ( 2018), 094102. |
| [47] |
S. Huang, H. Huang, W. Li, D. Kim, S. Lu, X.Q. Li, E. Holmström, S.S. Kwon, L. Vitos, Nat. Commun. 9 (2018) 2381.
DOI URL PMID |
| [48] |
M. Joa, Y.M. Koo, B.J. Lee, B. Johanssonc, L. Vitos, S.K. Kwona, Proc. Natl. Acad. Sci. 111 (2014) 6560-6565.
DOI URL PMID |
| [49] | W.J. Lu, H.L. Chritsian, G. Dehm, D. Raabe, Z.M. Li, Adv. Mater. ( 2018), 1804727. |
| [50] | P. Chowdhury, D. Canadinc, H. Sehitoglu, Mater. Sci. Eng. R 122 ( 2017) 1-28. |
| [51] | Z.F. He, N. Jia, D. Ma, H.L. Yan, Z.M. Li, D. Raabe, Mater. Sci. Eng. A 759 ( 2019) 437-447. |
| [52] | S.F. Lu, Y. Wu, H.T. Wang, J.Y. He, J.B. Liu, C.X. Chen, X.J. Liu, H. Wang, Z.P. Lu, Intermetallics 93 ( 2018) 269-273. |
| [53] | Y. Ikeda, F. Körmann, I. Tanaka, J. Neugebauer, Entropy 20 ( 2018) 655. |
| [54] |
M.M. Wang, Z.M. Li, D. Raabe, Acta Mater. 147 (2018) 236-246.
DOI URL |
| [55] |
L. Vitos, J.O. Nilsson, B. Johansson, Acta Mater. 54 (2006) 3821-3826.
DOI URL |
| [56] | L. Vitos, P.A. Korzhavyi, J.O. Nilsson, B. Johansson, Phys. Scr. 77 (2008), 065703. |
| [57] | L.Y. Tian, R. Lizarraga, H. Larsson, E. Holmstrom, L. Vitos, Acta Mater. 136 (2017) 215-223. |
| [58] | A. Kundu, S. Ghosh, S. Ghosh, Phys. Rev. B 1708 (2017) 05146. |
| [59] | A. Chakrabarti, M. Siewert, T. Roy, K. Mondal, A. Banerjee, M.E. Gruner, P. Entel, Phy. Rev. B 88 ( 2013), 174116. |
| [60] | C.M. Li, H.B. Luo, Q.M. Hu, R. Yang, B. Johansson, L. Vitos, Phys. Rev. B 84 ( 2011), 024206. |
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