Acta Metallurgica Sinica (English Letters) ›› 2021, Vol. 34 ›› Issue (11): 1591-1600.DOI: 10.1007/s40195-021-01316-z
Previous Articles Next Articles
Yong Xie1, Zhixin Xia1(), Jixin Hou1(
), Jiachao Xu2, Peng Chen1, Le Wan2
Received:
2021-06-10
Revised:
2021-07-22
Accepted:
2021-08-24
Online:
2021-11-10
Published:
2021-09-12
Contact:
Zhixin Xia,Jixin Hou
About author:
Jixin Hou houjixin@suda.edu.cnYong Xie, Zhixin Xia, Jixin Hou, Jiachao Xu, Peng Chen, Le Wan. Effect of Cu-Rich Phase Precipitation on the Microstructure and Mechanical Properties of CoCrNiCux Medium-Entropy Alloys Prepared via Laser Directed Energy Deposition[J]. Acta Metallurgica Sinica (English Letters), 2021, 34(11): 1591-1600.
Add to citation manager EndNote|Ris|BibTeX
$\delta $ (%) | ${\Delta H}_{\mathrm{mix}} $(kJ/mol) | ${\Delta S}_{\mathrm{mix}} $(K mol) J/ | ${T}_{\mathrm{m}}$ (K) | $\Omega $ | VEC | Phase | |
---|---|---|---|---|---|---|---|
CoCrNiCu0.16 | 1.06 | - 3.03 | 10.22 | 1851 | 6.2 | 8.5 | FCC |
CoCrNiCu0.33 | 1.09 | - 1.32 | 10.89 | 1824 | 15.0 | 8.6 | FCC |
CoCrNiCu0.75 | 1.15 | 1.56 | 11.39 | 1774 | 13.0 | 8.9 | FCC |
CoCrNiCu | 1.19 | 2.75 | 11.52 | 1746 | 7.3 | 9 | FCC |
Table 1 Feasibility analysis of CoCrNiCux
$\delta $ (%) | ${\Delta H}_{\mathrm{mix}} $(kJ/mol) | ${\Delta S}_{\mathrm{mix}} $(K mol) J/ | ${T}_{\mathrm{m}}$ (K) | $\Omega $ | VEC | Phase | |
---|---|---|---|---|---|---|---|
CoCrNiCu0.16 | 1.06 | - 3.03 | 10.22 | 1851 | 6.2 | 8.5 | FCC |
CoCrNiCu0.33 | 1.09 | - 1.32 | 10.89 | 1824 | 15.0 | 8.6 | FCC |
CoCrNiCu0.75 | 1.15 | 1.56 | 11.39 | 1774 | 13.0 | 8.9 | FCC |
CoCrNiCu | 1.19 | 2.75 | 11.52 | 1746 | 7.3 | 9 | FCC |
Fig. 3 SEM images of a CoCrNiCu0.16, b CoCrNiCu0.33, c CoCrNiCu0.75, d CoCrNiCu. Insets: back-scattered electron (BSE) images of CoCrNiCux prior to etched
Fig. 6 Fracture surfaces in the SEM images of a CoCrNiCu0.16, b CoCrNiCu0.33, c CoCrNiCu0.75, d CoCrNiCu, and the EDS of e CoCrNiCu0.16, f CoCrNiCu0.33, g CoCrNiCu0.75, and h CoCrNiCu
Co (%) | Cr (%) | Ni (%) | Cu (%) | |
---|---|---|---|---|
Sample 1 | 6.0 | 34.7 | 7.4 | 51.9 |
Sample 2 | 5.4 | 28.9 | 8.8 | 56.9 |
Sample 3 | 8.4 | 20.1 | 12.4 | 59.1 |
Sample 4 | 14.5 | 9.1 | 15.6 | 60.8 |
Table 2 Content of each element in the second-phase particles
Co (%) | Cr (%) | Ni (%) | Cu (%) | |
---|---|---|---|---|
Sample 1 | 6.0 | 34.7 | 7.4 | 51.9 |
Sample 2 | 5.4 | 28.9 | 8.8 | 56.9 |
Sample 3 | 8.4 | 20.1 | 12.4 | 59.1 |
Sample 4 | 14.5 | 9.1 | 15.6 | 60.8 |
Cu-rich | Matrix | |
---|---|---|
Indentation hardness (HIT, MPa) | 777.9 | 1680.0 |
Indentation modulus of elasticity (EIT, GPa) | 128.3 | 213.6 |
Table 3 Indentation hardness and indentation modulus of elasticity of CoCrNiCu alloy
Cu-rich | Matrix | |
---|---|---|
Indentation hardness (HIT, MPa) | 777.9 | 1680.0 |
Indentation modulus of elasticity (EIT, GPa) | 128.3 | 213.6 |
Fig. 9 Bright-field TEM images for the CoCrNiCu alloys: a Cu-rich region, b matrix phase region, c interface of the Cu-rich and matrix phases. Insets: selected area electron diffraction patterns of FCC1 and FCC2, respectively
[1] | I.A. Alhafez, C.J. Ruestes, S.T. Zhao, A.M. Minor, H.M. Urbassek, Mater. Lett. 283, 5 (2021) |
[2] |
J.W. Yeh, JOM 65, 1759 (2013)
DOI URL |
[3] | H.W. Deng, M.M. Wang, Z.M. Xie, T. Zhang, X.P. Wang, Q.F. Fang, Y. Xiong, Mater. Sci. Eng. A Process. 804, 11 (2021) |
[4] |
H. Luo, S.S. Sohn, W.J. Lu, L.L. Li, X.G. Li, C.K. Soundararajan, W. Krieger, Z.M. Li, D. Raabe, Nat. Commun. 11, 1 (2020)
DOI URL |
[5] |
W.R. Jian, Z.C. Xie, S.Z. Xu, Y.Q. Su, X.H. Yao, I.J. Beyerlein, Acta Mater. 199, 352 (2020)
DOI URL |
[6] |
X.H. Du, W.P. Li, H.T. Chang, T. Yang, E.W.J.N.C. Huang, Nat. Commun. 11, 2390 (2020)
DOI PMID |
[7] | H.Y. Liu, C. Gu, K. Zhai, C.D. Wang, Vacuum 184, 5 (2021) |
[8] |
J. Dabrowa, G. Cieslak, M. Stygar, K. Mroczka, K. Berent, T. Kulik, M. Danielewski, Intermetallics 84, 52 (2017)
DOI URL |
[9] |
W.L. Wang, L. Hu, S.B. Luo, L.J. Meng, D.L. Geng, B. Wei, Intermetallics 77, 41 (2016)
DOI URL |
[10] |
C. Li, Y.F. Xue, M.T. Hua, T.Q. Cao, L.L. Ma, L. Wang, Mater. Des. 90, 601 (2016)
DOI URL |
[11] |
P.H. Wu, N. Liu, W. Yang, Z.X. Zhu, Y.P. Lu, X.J. Wang, Mater. Sci. Eng. A-Struct. Mater. Prop. Microstruct. Process. 642, 142 (2015)
DOI URL |
[12] | D.E. Jodi, N. Park, Mater. Lett. 255, 4 (2019) |
[13] |
X. Xian, L.J. Lin, Z.H. Zhong, C. Zhang, C. Chen, K.J. Song, J.G. Cheng, Y.C. Wu, Mater. Sci. Eng. A—Struct. Mater. Prop. Microstruct. Process. 713, 134 (2018)
DOI URL |
[14] | L. Huang, X.J. Wang, X.C. Zhao, C.Z. Wang, Y.S. Yang, Mater. Chem. Phys. 259, 9 (2021) |
[15] |
C.F. Lee, T.T. Shun, Mater. Charact. 114, 179 (2016)
DOI URL |
[16] | Y. Liu, Y. He, S.L. Cai, Mater. Sci. Eng. A—Struct. Mater. Prop. Microstruct. Process. 801, 11 (2021) |
[17] |
J. Chen, P.Y. Niu, Y.Z. Liu, Y.K. Lu, X.H. Wang, Y.L. Peng, J.N. Liu, Mater. Des. 94, 39 (2016)
DOI URL |
[18] |
T.N. Lam, S.Y. Lee, N.T. Tsou, H.S. Chou, B.H. Lai, Y.J. Chang, R. Feng, T. Kawasaki, S. Harjo, P.K. Liaw, A.C. Yeh, M.J. Li, R.F. Cai, S.C. Lo, E.W. Huang, Acta Mater. 201, 412 (2020)
DOI URL |
[19] |
M. Ombrellino, H.C. Wang, H. Yang, M.H. Zhang, J. Vishnub-hakat, A. Frazier, L.A. Scher, S.G. Friedman, K.J. Tracey, Shock 15, 181 (2001)
PMID |
[20] | I. Moravcik, V. Hornik, P. Minarik, L.L. Li, I. Dlouhy, M. Janovska, D. Raabe, Z.M. Li, Mater. Sci. Eng. A—Struct. Mater. Prop. Microstruct. Process. 781, 14 (2020) |
[21] |
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, 299 (2004)
DOI URL |
[22] |
A. Piglione, B. Dovgyy, C. Liu, C.M. Gourlay, P.A. Hooper, M.S. Pham, Mater. Lett. 224, 22 (2018)
DOI URL |
[23] |
G. Bracq, M. Laurent-Brocq, C. Varvenne, L. Perriere, W.A. Cur-tin, J.M. Joubert, I. Guillot, Acta Mater. 177, 266 (2019)
DOI |
[24] |
X. Yang, Y. Zhang, Mater. Chem. Phys. 132, 233 (2012)
DOI URL |
[25] |
Y. Zhang, Y.J. Zhou, J.P. Lin, G.L. Chen, P.K. Liaw, Adv. Eng. Mater. 10, 534 (2008)
DOI URL |
[26] | S. Guo, C. Ng, J. Lu, C.T. Liu, J. Appl. Phys. 109, 5 (2011) |
[27] |
Z.X. Xia, C.Y. Wang, D. Zhao, R. Zhang, P. Cheng, X.D. He, Surf. Coat. Technol. 367, 108 (2019)
DOI URL |
[28] | Z.X. Xia, J.C. Xu, J.J. Shi, T. Shi, C.F. Sun, D. Qiu, Addit. Manuf. 33, 101114 (2020) |
[29] |
A. Takeuchi, A. Inoue, Mater. Trans. 46, 2817 (2005)
DOI URL |
[30] |
D. Qiu, W.Z. Zhang, Acta Mater. 56, 1897 (2008)
DOI URL |
[31] |
Y.X. Liang, X.F. Yang, K.S. Ming, S.H. Xiang, Q. Liu, Sci. China-Technol. Sci. 64, 407 (2021)
DOI URL |
[1] | Mehran Dadkhah, Mohammad Hossein Mosallanejad, Luca Iuliano, Abdollah Saboori. A Comprehensive Overview on the Latest Progress in the Additive Manufacturing of Metal Matrix Composites: Potential, Challenges, and Feasible Solutions [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(9): 1173-1200. |
[2] | Guoliang Ma, Yong Zhao, Hongzhi Cui, Xiaojie Song, Mingliang Wang, Kwangmin Lee, Xiaohua Gao, Qiang Song, Canming Wang. Addition Al and/or Ti Induced Modifications of Microstructures, Mechanical Properties, and Corrosion Properties in CoCrFeNi High-Entropy Alloy Coatings [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(8): 1087-1102. |
[3] | Jiafen Song, Zishu Chai, Jian Zheng, Qingfeng Wu, Feng He, Zenan Yang, Junjie Li, Jincheng Wang, Haiou Yang, Zhijun Wang. Design Fe-based Eutectic Medium-Entropy Alloys Fe2NiCrNbx [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(8): 1103-1108. |
[4] | Y. D. Liu, J. H. Liu, W. S. Gu, H. L. Li, W. H. Li, Z. L. Pei, J. Gong, C. Sun. Oxidation, Mechanical and Tribological Behaviors of the Ni/cBN Abrasive Coating-Coated Titanium Alloys [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(7): 1007-1020. |
[5] | B. Mehdi, R. Badji, V. Ji, B. Alili, D. Bradai, W. Bedjaoui, F. Deschaux-Beaume, F. Brisset. Unveiling the Residual Stresses, Local Micromechanical Properties and Crystallographic Texture in a Ti-6Al-4V Weld Joint [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(7): 997-1006. |
[6] | Dong Wu, Shitong Wei, Shanping Lu. A Study of Microstructure and Mechanical Properties for the Autogenous Single-Pass Butt Weldment of a Ferritic/Martensitic Steel Using Gas Tungsten Arc Welding [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(5): 628-638. |
[7] | Hui 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. |
[8] | 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. |
[9] | 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. |
[10] | 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. |
[11] | 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. |
[12] | 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. |
[13] | Xiaomeng Qin, Chan Hung Shek. Heterogeneous Structure Design to Strengthen Carbon-Containing CoCrFeNi High Entropy Alloy [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(11): 1503-1510. |
[14] | Man Zhu, Chi Zhang, Kun Li, Yongqin Liu, Mao Zhang, Lijuan Yao, Zengyun Jian. A Novel CoFe2NiMn0.3AlCux High-Entropy Alloy with Excellent Magnetic Properties and Good Mechanical Properties [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(11): 1557-1564. |
[15] | Guonan Ma, Dong Wang, Bolv Xiao, Zongyi Ma. Effect of Particle Size on Mechanical Properties and Fracture Behaviors of Age-Hardening SiC/Al-Zn-Mg-Cu Composites [J]. Acta Metallurgica Sinica (English Letters), 2021, 34(10): 1447-1459. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||