Acta Metallurgica Sinica (English Letters) ›› 2021, Vol. 34 ›› Issue (4): 455-464.DOI: 10.1007/s40195-020-01114-z
Previous Articles Next Articles
					
													Hui Xiao1,2,3, Yu Liu4, Kai Wang2, Zhipeng Wang1,3( ), Te Hu1, Touwen Fan1(
), Te Hu1, Touwen Fan1( ), Li Ma5, Pingying Tang5
), Li Ma5, Pingying Tang5
												  
						
						
						
					
				
Received:2020-03-22
															
							
																	Revised:2020-05-16
															
							
																	Accepted:2020-06-11
															
							
																	Online:2021-04-10
															
							
																	Published:2021-03-30
															
						Contact:
								Zhipeng Wang,Touwen Fan   
													About author:Touwen Fan, fantouwen_1980@163.comHui Xiao, Yu Liu, Kai Wang, Zhipeng Wang, Te Hu, Touwen Fan, Li Ma, Pingying Tang. Effects of Mn Content on Mechanical Properties of FeCoCrNiMnx (0≤x≤0.3) High-Entropy Alloys: A First-Principles Study[J]. Acta Metallurgica Sinica (English Letters), 2021, 34(4): 455-464.
Add to citation manager EndNote|Ris|BibTeX
| a0 (Å) | This work | Theoretical results | Experimental results | 
|---|---|---|---|
| FeCoCrNi | 3.568 | 3.529 [ | 3.575 [ | 
| FeCoCrNiMn | 3.578 | 3.528 [ | 3.597 [ | 
| 3.529 [ | 
Table 1 Comparisons of equilibrium lattice constant a0 with other theoretical and experimental results for FeCoCrNi and FeCoCrNiMn HEAs with FCC crystal structures
| a0 (Å) | This work | Theoretical results | Experimental results | 
|---|---|---|---|
| FeCoCrNi | 3.568 | 3.529 [ | 3.575 [ | 
| FeCoCrNiMn | 3.578 | 3.528 [ | 3.597 [ | 
| 3.529 [ | 
| HEAs | This work | Theoretical results | Experiments | 
|---|---|---|---|
| FeCoCrNi | |||
| C11 | 268.9 | 271.0 [ | |
| C12 | 187.9 | 175.0 [ | |
| C44 | 174.2 | 189.0 [ | |
| B | 215.0 | 207.0 [ | 162.9 [ | 
| G | 97.9 | 110.0 [ | 84.0 [ | 
| E | 255.0 | 280.0 [ | 215.0 [ | 
| FeCoCrNiMn | |||
| C11 | 252.1 | 250.0 [ | 195.9 [ | 
| C12 | 175.2 | 156.0 [ | 117.7 [ | 
| C44 | 169.9 | 180.0 [ | 129.3 [ | 
| B | 200.8 | 188.0 [ | 143.8 [ | 
| G | 94.5 | 106.0 [ | 80.2 [ | 
| E | 245.1 | 267.0 [ | 202.2 [ | 
Table 2 Comparisons of current results with available theoretical and experimental results for FeCoCrNi and FeCoCrNiMn HEAs with FCC crystal structures (unit: GPa)
| HEAs | This work | Theoretical results | Experiments | 
|---|---|---|---|
| FeCoCrNi | |||
| C11 | 268.9 | 271.0 [ | |
| C12 | 187.9 | 175.0 [ | |
| C44 | 174.2 | 189.0 [ | |
| B | 215.0 | 207.0 [ | 162.9 [ | 
| G | 97.9 | 110.0 [ | 84.0 [ | 
| E | 255.0 | 280.0 [ | 215.0 [ | 
| FeCoCrNiMn | |||
| C11 | 252.1 | 250.0 [ | 195.9 [ | 
| C12 | 175.2 | 156.0 [ | 117.7 [ | 
| C44 | 169.9 | 180.0 [ | 129.3 [ | 
| B | 200.8 | 188.0 [ | 143.8 [ | 
| G | 94.5 | 106.0 [ | 80.2 [ | 
| E | 245.1 | 267.0 [ | 202.2 [ | 
 
																													Fig. 5 Variation curves of Zener ratio $A_{{\text{Z}}}$ and anisotropy factor $A_{{\left( {110} \right)\left[ {001} \right]}}$ versus Mn content for FeCoCrNiMnx HEAs with FCC crystal structures
 
																													Fig. 6 Variation curves of Poisson's ratios $\sigma_{{\left[ {001} \right]}}$ and $\sigma_{{\left[ {111} \right]}}$ versus Mn content for FeCoCrNiMnx HEAs with FCC crystal structures
 
																													Fig. 8 Variation curves of Vickers hardness $H_{{\text{V}}}$ a and yield strength $\sigma_{{\text{y}}}$ b versus Mn content for FeCoCrNiMnx HEAs with FCC crystal structures
 
																													Fig. 10 Variation curves of energy factor $K_{{{\text{mixed}}}}$ of mixed dislocation a and dislocation width $\zeta$ b versus direction angle $\theta$ ($0 \le \theta \le \pi$) between Burgers vector and dislocation line
| [1] | 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. Res. 6 299 (2004) | 
| [2] | J.Y. He, W.H. Liu, H. Wang, Y. Wu, X.J. Liu, T.G. Nieh, Z.P. Lu, Acta Mater. 62 105 (2014) | 
| [3] | H.W. Yao, J.W. Qiao, M.C. Gao, J.A. Hawk, S.G. Ma, H.F. Zhou, Y. Zhang, Mater. Sci. Eng. A. 674 203 (2016) | 
| [4] | Z.P. Wang, Q.H. Fang, J. Li, B. Liu, Y. Liu, J. Mater. Sci. Technol. 34 349 (2018) | 
| [5] | P.F. Yu, L.J. Zhang, H. Cheng, H. Zhang, M.Z. Ma, Y.C. Li, G. Li, P.K. Liaw, R.P. Liu, Intermetallics 70, 82 (2016) | 
| [6] | Y.J. Zhou, Y. Zhang, Y.L. Wang, G.L. Chen, Y. Zhang, Appl. Phys. Lett. 90, 181904 (2007) | 
| [7] | F. Otto, A. Dlouhý, C. Somsen, H. Bei, G. Eggeler, E.P. George, Acta Mater. 61 5743 (2013) URL PMID | 
| [8] | B. Gludovatz, A. Hohenwarter, D. Catoor, E.H. Chang, E.P. George, R.O. Ritchie, Science 345, 1153 (2014 DOI URL PMID | 
| [9] | Y.Z. Shi, B. Yang, P.K. Liaw, Metals 7, 1 (2017) | 
| [10] | Y.L. Chou, J.W. Yeh, H.C. Shih, Corros. Sci. 52 2571 (2010) | 
| [11] | M.H. Chuang, M.H. Tsai, W.R. Wang, S.J. Lin, J.W. Yeh, Acta Mater. 59 6308 (2011) DOI URL PMID | 
| [12] | Z.M. Li, K.G. Pradeep, Y. Deng, D. Raabe, C.C. Tasan, Nature 534, 227 (2016) URL PMID | 
| [13] | W.R. Wang, W.L. Wang, S.C. Wang, Y.C. Tsai, C.H. Lai, J.W. Yeh, Intermetallics 26, 44 (2012) | 
| [14] | J.B. Seol, J.W. Bae, Z.M. Li, J.C. Han, J.G. Kim, D. Raabe, H.S. Kim, Acta Mater. 151 366 (2018) | 
| [15] | N.D. Stepanov, D.G. Shaysultanov, R.S. Chernichenko, N.Y. Yurchenko, S.V. Zherebtsov, M.A. Tikhonovsky, G.A. Salishchev, J. Alloys Compd. 693 394 (2017) | 
| [16] | Z.W. Wang, I. Baker, Z.H. Cai, S. Chen, J.D. Poplawsky, W. Guo, Acta Mater. 120 228 (2016) | 
| [17] | Y.C. Xie, H. Cheng, Q.H. Tang, W. Chen, W.K. Chen, P.Q. Dai, Intermetallics 93, 228 (2018) | 
| [18] | H. Luo, Z.M. Li, D. Raabe, Sci. Rep. 7 9892 (2017) URL PMID | 
| [19] | Z.F. Lei, X.J. Liu, Y. Wu, H. Wang, S.H. Jiang, S.D. Wang, X.D. Hui, Y.D. Wu, B. Gault, P. Kontis, D. Raabe, L. Gu, Q.H. Zhang, H.W. Chen, H.T. Wang, J.B. Liu, K. An, Q.S. Zeng, T.G. Nieh, Z.P. Lu, Nature 563, 546 (2018) URL PMID | 
| [20] | M.B. Kivy, M.A. Zaeem, Scr. Mater. 139 83 (2017) | 
| [21] | Y.H. Zhang, Y. Zhuang, A. Hu, J.J. Kai, C.T. Liu, Scr. Mater. 130 96 (2017) | 
| [22] | L. Vitos, Computational quantum mechanics for materials engineers: the EMTO method and applications (Springer, London, 2007) | 
| [23] | P. Soven, Phys. Rev. 156 809 (1967) | 
| [24] | B.L. Gyorffy, Phys. Rev. B 5 2382 (1972) | 
| [25] | L. Vitos, I.A. Abrikosov, B. Johansson, Phys. Rev. Lett. 87 156401 (2001) DOI URL PMID | 
| [26] | X. Sun, H.L. Zhang, L. Song, X.D. Ding, Y.Z. Wang, L. Vitos, Acta Mater. 140 366 (2017) | 
| [27] | H.L. Zhang, X. Sun, S. Lu, Z.H. Dong, X.D. Ding, Y.Z. Wang, L. Vitos, Acta Mater. 155 12 (2018) | 
| [28] | X.Q. Li, J. Alloys Compd. 764 906 (2018) | 
| [29] | S. Huang, W. Li, S. Lu, F.Y. Tian, J. Shen, E. Holmström, L. Vitos, Scr. Mater. 108 44 (2015) DOI URL | 
| [30] | F.Y. Tian, L.K. Varga, N.X. Chen, L. Delczeg, L. Vitos, Phys. Rev. B 87 075144 (2013) | 
| [31] | F.Y. Tian, L. Delczeg, N.X. Chen, L.K. Varga, J. Shen, L. Vitos, Phys. Rev. B 88 085128 (2013) | 
| [32] | S. Huang, W. Li, X.Q. Li, S. Schönecker, L. Bergqvist, E. Holmström, L.K. Varga, L. Vitos, Mater. Des. 103 71 (2016) | 
| [33] | B.L. Gyorffy, A.J. Pindor, J. Staunton, G.M. Stocks, H. Winter, J. Phys. F: Metal Phys. 15 1337 (1985) | 
| [34] | J.P. Perdew, K. Burke, M. Ernzerhof, Phys. Rev. Lett. 77 3865 (1996) DOI URL PMID | 
| [35] | V.L. Moruzzi, J.F. Janak, K. Schwarz, Phys. Rev. B 37 790 (1988) | 
| [36] | L.A. Girifalco, V.G. Weizer, Phys. Rev. 114 687 (1959) DOI URL | 
| [37] | S.F. Liu, Y. Wu, H.T. Wang, J.Y. He, J.B. Liu, C.X. Chen, X.J. Liu, H. Wang, Z.P. Lu, Intermetallics 93, 269 (2018) DOI URL | 
| [38] | X.Q. Li, D.L. Irving, L. Vitos, Sci. Rep. 8 11196 (2018) URL PMID | 
| [39] | A.J. Zaddach, C. Niu, C.C. Koch, D.L. Irving, JOM 65, 1780 (2013) | 
| [40] | F.X. Zhang, S.J. Zhao, K. Jin, H. Bei, D. Popov, C.Y. Park, J.C. Neuefeind, W.J. Weber, Y.W. Zhang, Appl. Phys. Lett. 110 011902 (2017) DOI URL | 
| [41] | A.J. Zhang, J.S. Han, B. Su, P.D. Li, J.H. Meng, Mater. Des. 114 253 (2017) | 
| [42] | C.L. Tracy, S. Park, D.R. Rittman, S.J. Zinkle, H.B. Bei, M. Lang, R.C. Ewing, W.L. Mao, Nat. Commun. 8 15634 (2017) DOI URL PMID | 
| [43] | Z.C. Qiu, C.W. Yao, K. Feng, Z.G. Li, P.K. Chu, Int. J. Lightweight Mater. Manu. 1 33 (2018) | 
| [44] | J.H. Wang, S. Yip, S.R. Phillpot, D. Wolf, Phys. Rev. Lett. 71 4182 (1993) DOI URL PMID | 
| [45] | Z.J. Wu, E.J. Zhao, H.P. Xiang, X.F. Hao, X.J. Liu, J. Meng, Phys. Rev. B 76 054115 (2007) | 
| [46] | F.Y. Tian, L.K. Varga, J. Shen, L. Vitos, Comput. Mater. Sci. 111 350 (2016) | 
| [47] | Z. Wu, H. Bei, G.M. Pharr, E.P. George, Acta Mater. 81 428 (2014) DOI URL | 
| [48] | K. Tanaka, T. Teramoto, R. Ito, MRS Adv. 2 1429 (2017) DOI URL PMID | 
| [49] | T. Teramoto, K. Yamada, R. Ito, K. Tanaka, J. Alloys Compd. 777 1313 (2019) | 
| [50] | N.L. Okamoto, S. Fujimoto, Y. Kambara, M. Kawamura, Z.M.T. Chen, H. Matsunoshita, K. Tanaka, H. Inui, E.P. George, Sci. Rep. 6 35863 (2016) DOI URL PMID | 
| [51] | A. Haglund, M. Koehler, D. Catoor, E.P. George, V. Keppens, Intermetallics 58, 62 (2015) | 
| [52] | S.F. Pugh, Philos. Mag. 45 823 (1954) | 
| [53] | Y. Cao, J.C. Zhu, Z.S. Nong, X.W. Yang, Y. Liu, Z.H. Lai, Comp. Mater. Sci. 77 208 (2013) DOI URL | 
| [54] | D. Iotova, N. Kioussis, S.P. Lim, Phys. Rev. B 54 14413 (1996) | 
| [55] | A. Gali, E.P. George, Intermetallics 39, 74 (2013) | 
| [56] | M. Mattesini, R. Ahuja, B. Johansson, Phys. Rev. B 68 184108 (2003) | 
| [57] | H.Z. Fu, D.H. Li, F. Peng, T. Gao, X.L. Cheng, Comp. Mater. Sci. 44 774 (2008) | 
| [58] | K. Lau, A.K. Mccurdy, Phys. Rev. B 58 8980 (1998) | 
| [59] | H.Z. Fu, X.F. Li, W.F. Liu, Y.M. Ma, T. Gao, X.H. Hong, Intermetallics 19, 1959 (2011) DOI URL | 
| [60] | R.P. Ingel, D.L. Iii, J. Am. Ceram. Soc. 71 265 (1988) DOI URL | 
| [61] | C. Zener, Elasticity and Anelasticity of Metals (University of Chicago Press, Chicago, 1948) | 
| [62] | H.Z. Fu, W.M. Peng, T. Gao, Mater. Chem. Phys. 115 789 (2009) | 
| [63] | D.G. Pettifor, Mater. Sci. Technol 8 345 (1992) | 
| [64] | R.A. Johnson, Phys. Rev. B 37 3924 (1988) | 
| [65] | J.S. Tse, J. Superhard Mater. 32 177 (2010) | 
| [66] | F.M. Gao, J.L. He, E.D. Wu, S.M. Liu, D.L. Yu, D.C. Li, S.Y. Zhang, Y.J. Tian, Phys. Rev. Lett. 91 015502 (2003) DOI URL PMID | 
| [67] | A. Šimůnek, J. Vackář, Phys. Rev. Lett. 96 085501 (2006) DOI URL PMID | 
| [68] | K.Y. Li, X.T. Wang, F.F. Zhang, D.F. Xue, Phys. Rev. Lett. 100 235504 (2008) URL PMID | 
| [69] | M.M. Smedskjaer, J.C. Mauro, Y.Z. Yue, Phys. Rev. Lett. 105 115503 (2010) URL PMID | 
| [70] | X.Q. Chen, H.Y. Niu, D.Z. Li, Y.Y. Li, Intermetallics 19, 1275 (2011) | 
| [71] | A.J.E. Foreman, Acta Metall. 3 322 (1955) DOI URL | 
| [72] | M.M. Savin, V.M. Chernov, A.M. Strokova, Phys. Status Solidi. A 35 747 (1976) | 
| [73] | C.N. Reid, Acta Metall. 14 13 (1966) DOI URL | 
| [1] | Ibrahim Ondicho, Bernard Alunda, Fredrick Madaraka, Melody Chepkoech. Effect of Bimodal Grain Size Distribution on the Strain Hardening Behavior of a Medium-Entropy Alloy [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(4): 465-475. | 
| [2] | Jinsen Tian, Jiang Ma, Ming Yan, Zhuo Chen, Jun Shen, Jing Wu. Orientation Dependence of the Micro-Pillar Compression Strength in an Electron Beam Melted Ti-6Al-4V Alloy [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(4): 476-484. | 
| [3] | Hua-Zhen Jiang, Zheng-Yang Li, Tao Feng, Peng-Yue Wu, Qi-Sheng Chen, Yun-Long Feng, Long-Fei Chen, Jing-Yu Hou, He-Jian Xu. Effect of Process Parameters on Defects, Melt Pool Shape, Microstructure, and Tensile Behavior of 316L Stainless Steel Produced by Selective Laser Melting [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(4): 495-510. | 
| [4] | L. B. Tong, J. H. Chu, D. N. Zou, Q. Sun, S. Kamado, H. G. Brokmeier, M. Y. Zheng. Simultaneously Enhanced Mechanical Properties and Damping Capacities of ZK60 Mg Alloys Processed by Multi-Directional Forging [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(2): 265-277. | 
| [5] | Chun-Hua Ma, Fu-Sheng Pan, Ding-Fei Zhang, Ai-Tao Tang, Zhi-Wen Lu. Effects of Sb Addition on Microstructural Evolution and Mechanical Properties of Mg-9Al-5Sn Alloy [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(2): 278-288. | 
| [6] | Hua-Ping Tang, Qu-Dong Wang, Colin Luo, Chuan Lei, Tian-Wen Liu, Zhong-Yang Li, Kui Wang, Hai-Yan Jiang, Wen-Jiang Ding. Effects of Solution Treatment on the Microstructure, Tensile Properties, and Impact Toughness of an Al-5.0Mg-3.0Zn-1.0Cu Cast Alloy [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(1): 98-110. | 
| [7] | Lin-Yue Jia, Wen-Bo Du, Jin-Long Fu, Zhao-Hui Wang, Ke Liu, Shu-Bo Li, Xian Du. Obtaining Ultra-High Strength and Ductility in a Mg-Gd-Er-Zn-Zr Alloy via Extrusion, Pre-deformation and Two-Stage Aging [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(1): 39-44. | 
| [8] | Xi Zhao, Fa-Fa Yan, Zhi-Min Zhang, Peng-Cheng Gao, Shu-Chang Li. Influence of Heat Treatment on Precipitation Behavior and Mechanical Properties of Extruded AZ80 Magnesium Alloy [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(1): 54-64. | 
| [9] | Chao-Yue Zhao, Xian-Hua Chen, Peng Peng, Teng Tu, Andrej Atrens, Fu-Sheng Pan. Microstructures and Mechanical Properties of Mg-xAl-1Sn-0.3Mn (x = 1, 3, 5) Alloy Sheets [J]. Acta Metallurgica Sinica (English Letters), 2020, 33(9): 1217-1225. | 
| [10] | Tianbo Zhao, Yutaka S. Sato, Hiroyuki Kokawa, Kazuhiro Ito. Predicting Tensile Properties of Friction-Stir-Welded 6063 Aluminum with Experimentally Measured Welding Heat Input [J]. Acta Metallurgica Sinica (English Letters), 2020, 33(9): 1235-1242. | 
| [11] | Shikai Wu, Wei Gao, Tao Lu, Ye Pan. Co-Free High-Entropy Alloys Powders Immobilized by Electrospray and Microfluidics for Decolorization of Azo Dye [J]. Acta Metallurgica Sinica (English Letters), 2020, 33(8): 1103-1110. | 
| [12] | Jia-Qi Zhao, Hua Tian, Zhong Wang, Xue-Jiao Wang, Jun-Wei Qiao. FCC-to-HCP Phase Transformation in CoCrNix Medium-Entropy Alloys [J]. Acta Metallurgica Sinica (English Letters), 2020, 33(8): 1151-1158. | 
| [13] | Rui-Xuan Li, Jun-Wei Qiao, Peter K. Liaw, Yong Zhang. Preternatural Hexagonal High-Entropy Alloys: A Review [J]. Acta Metallurgica Sinica (English Letters), 2020, 33(8): 1033-1045. | 
| [14] | Yongfei Juan, Jiao Zhang, Yongbing Dai, Qing Dong, Yanfeng Han. Designing Rules of Laser-Clad High-Entropy Alloy Coatings with Simple Solid Solution Phases [J]. Acta Metallurgica Sinica (English Letters), 2020, 33(8): 1064-1076. | 
| [15] | Qiuxin Nie, Hui Liang, Dongxu Qiao, Zhaoxin Qi, Zhiqiang Cao. Microstructures and Mechanical Properties of Multi-component AlxCrFe2Ni2Mo0.2 High-Entropy Alloys [J]. Acta Metallurgica Sinica (English Letters), 2020, 33(8): 1135-1144. | 
| Viewed | ||||||
| Full text |  | |||||
| Abstract |  | |||||
 WeChat
			   WeChat
			