Acta Metallurgica Sinica (English Letters) ›› 2023, Vol. 36 ›› Issue (10): 1630-1648.DOI: 10.1007/s40195-023-01582-z
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Tong Bu1, Ruijie Jia1, Tao Ying2, Andrej Atrens3, Pengbo Chen4, Dajiang Zheng1, Fuyong Cao1()
Received:
2023-03-01
Revised:
2023-04-14
Accepted:
2023-05-12
Online:
2023-10-10
Published:
2023-07-21
Contact:
Fuyong Cao, Tong Bu, Ruijie Jia, Tao Ying, Andrej Atrens, Pengbo Chen, Dajiang Zheng, Fuyong Cao. A Green Conversion Coating on a Magnesium Alloy for Corrosion Protection[J]. Acta Metallurgica Sinica (English Letters), 2023, 36(10): 1630-1648.
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Sample | Mg | O | C | Mn |
---|---|---|---|---|
Untreated | 99 | - | - | 1 |
AP treated | 93 | 4 | 3 | - |
AP + H treated | 46 | 49 | 5 | - |
Table 1 Element concentration analysis of Mg1Mn alloy (wt%)
Sample | Mg | O | C | Mn |
---|---|---|---|---|
Untreated | 99 | - | - | 1 |
AP treated | 93 | 4 | 3 | - |
AP + H treated | 46 | 49 | 5 | - |
Fig. 9 Equivalent circuits used for EIS data fitting: a for EIS data with two capacitance arcs, b for EIS data with two capacitance arcs and an inductance arc
Fig. 10 Nyquist plots and the Rf of Mg1Mn specimens at the OCP in 3.5 wt% NaCl solution for 7 days at 25 ± 1 °C: a untreated Mg1Mn specimen, b AP treated specimen, c AP + H treated specimen, and d the film resistance, Rf, of the specimens versus immersion time
Sample | Time | Rs (Ω cm2) | CPEf | Rf (Ω cm2) | CPEdl | Rct (Ω cm2) | RL (Ω cm2) | L (H cm−2) | Rp (Ω cm2) | ||
---|---|---|---|---|---|---|---|---|---|---|---|
Yf (Ω−1 cm−2 sn) | n | Ydl (Ω−1 cm−2 sn) | n | ||||||||
Untreated | 1 h | 19 | 1.25 × 10-5 | 0.92 | 1493 | 1.55 × 10-3 | 0.84 | 5989 | 2060 | ||
6 h | 18 | 1.13 × 10-5 | 0.93 | 2526 | 8.85 × 10-4 | 0.73 | 1902 | 3984 | |||
1 d | 18 | 1.08 × 10-5 | 0.93 | 1809 | 1.13 × 10-3 | 0.11 | 2343 | 3 | 4234 | 2000 | |
2 d | 19 | 8.57 × 10-6 | 0.93 | 698 | 1.68 × 10-6 | 1.00 | 1564 | 1758 | 12,770 | 1647 | |
3 d | 20 | 8.23 × 10-6 | 0.91 | 620 | 1.98 × 10-6 | 0.98 | 1338 | 353 | 19,370 | 1627 | |
4 d | 20 | 9.13 × 10-6 | 0.89 | 1024 | 2.57 × 10-6 | 1.00 | 1171 | 2 | 13,040 | 1820 | |
5 d | 21 | 1.14 × 10-5 | 0.86 | 2589 | 3.14 × 10-3 | 0.98 | 400 | 3 | 1184 | 2544 | |
6 d | 24 | 1.07 × 10-5 | 0.87 | 2612 | 1.17 × 10-3 | 0.81 | 1086 | 796 | 3322 | 3017 | |
7 d | 23 | 1.10 × 10-5 | 0.87 | 2971 | 7.09 × 10-4 | 0.98 | 975 | 3995 | |||
AP | 1 h | 16 | 1.12 × 10-5 | 0.93 | 1740 | 1.61 × 10-3 | 0.57 | 1255 | 2318 | ||
6 h | 18 | 9.95 × 10-6 | 0.93 | 3028 | 7.37 × 10-4 | 0.75 | 1913 | 4694 | |||
1 d | 20 | 1.11 × 10-5 | 0.93 | 3300 | 7.18 × 10-4 | 0.70 | 2142 | 4997 | |||
2 d | 23 | 1.13 × 10-5 | 0.94 | 2860 | 1.98 × 10-3 | 0.74 | 825 | 202 | 6189 | 3504 | |
3 d | 24 | 7.66 × 10-6 | 0.96 | 788 | 2.52 × 10-6 | 0.96 | 1625 | 208 | 3152 | 2461 | |
4 d | 27 | 1.02 × 10-5 | 0.90 | 3067 | 1.24 × 10-3 | 0.80 | 980 | 225 | 4245 | 3152 | |
5 d | 32 | 9.72 × 10-6 | 0.90 | 3384 | 5.81 × 10-4 | 0.91 | 1708 | 5225 | |||
6 d | 34 | 8.23 × 10-6 | 0.91 | 3174 | 4.66 × 10-4 | 0.74 | 2931 | 5607 | |||
7 d | 36 | 7.95 × 10-6 | 0.91 | 3725 | 3.96 × 10-4 | 0.69 | 3641 | 6621 | |||
AP + H | 1 h | 19 | 2.41 × 10-6 | 0.80 | 9841 | 3.10 × 10-5 | 0.74 | 16,150 | 23,832 | ||
6 h | 20 | 4.18 × 10-6 | 0.87 | 4783 | 6.53 × 10-5 | 0.51 | 10,980 | 14,035 | |||
1d | 19 | 1.01 × 10-5 | 0.91 | 3589 | 1.41 × 10-4 | 0.66 | 800 | 4730 | |||
2 d | 17 | 1.18 × 10-5 | 0.91 | 2977 | 1.38 × 10-4 | 0.14 | 1012 | 98 | 18,080 | 2875 | |
3 d | 17 | 1.24 × 10-5 | 0.90 | 1626 | 2.00 × 10-4 | 0.10 | 2040 | 200 | 11,990 | 2621 | |
4 d | 18 | 1.06 × 10-5 | 0.90 | 3332 | 4.78 × 10-3 | 1.00 | 124 | 3667 | |||
5 d | 19 | 9.00 × 10-6 | 0.90 | 3513 | 6.86 × 10-4 | 0.74 | 1563 | 4895 | |||
6 d | 19 | 9.19 × 10-6 | 0.91 | 3658 | 7.07 × 10-4 | 0.76 | 1679 | 5140 | |||
7 d | 22 | 9.26 × 10-6 | 0.91 | 3966 | 6.06 × 10-4 | 0.76 | 1886 | 5653 |
Table 2 Data from EIS fitting of the untreated Mg1Mn, AP and AP + H treated specimens at OCP in 3.5 wt% NaCl for 7 d
Sample | Time | Rs (Ω cm2) | CPEf | Rf (Ω cm2) | CPEdl | Rct (Ω cm2) | RL (Ω cm2) | L (H cm−2) | Rp (Ω cm2) | ||
---|---|---|---|---|---|---|---|---|---|---|---|
Yf (Ω−1 cm−2 sn) | n | Ydl (Ω−1 cm−2 sn) | n | ||||||||
Untreated | 1 h | 19 | 1.25 × 10-5 | 0.92 | 1493 | 1.55 × 10-3 | 0.84 | 5989 | 2060 | ||
6 h | 18 | 1.13 × 10-5 | 0.93 | 2526 | 8.85 × 10-4 | 0.73 | 1902 | 3984 | |||
1 d | 18 | 1.08 × 10-5 | 0.93 | 1809 | 1.13 × 10-3 | 0.11 | 2343 | 3 | 4234 | 2000 | |
2 d | 19 | 8.57 × 10-6 | 0.93 | 698 | 1.68 × 10-6 | 1.00 | 1564 | 1758 | 12,770 | 1647 | |
3 d | 20 | 8.23 × 10-6 | 0.91 | 620 | 1.98 × 10-6 | 0.98 | 1338 | 353 | 19,370 | 1627 | |
4 d | 20 | 9.13 × 10-6 | 0.89 | 1024 | 2.57 × 10-6 | 1.00 | 1171 | 2 | 13,040 | 1820 | |
5 d | 21 | 1.14 × 10-5 | 0.86 | 2589 | 3.14 × 10-3 | 0.98 | 400 | 3 | 1184 | 2544 | |
6 d | 24 | 1.07 × 10-5 | 0.87 | 2612 | 1.17 × 10-3 | 0.81 | 1086 | 796 | 3322 | 3017 | |
7 d | 23 | 1.10 × 10-5 | 0.87 | 2971 | 7.09 × 10-4 | 0.98 | 975 | 3995 | |||
AP | 1 h | 16 | 1.12 × 10-5 | 0.93 | 1740 | 1.61 × 10-3 | 0.57 | 1255 | 2318 | ||
6 h | 18 | 9.95 × 10-6 | 0.93 | 3028 | 7.37 × 10-4 | 0.75 | 1913 | 4694 | |||
1 d | 20 | 1.11 × 10-5 | 0.93 | 3300 | 7.18 × 10-4 | 0.70 | 2142 | 4997 | |||
2 d | 23 | 1.13 × 10-5 | 0.94 | 2860 | 1.98 × 10-3 | 0.74 | 825 | 202 | 6189 | 3504 | |
3 d | 24 | 7.66 × 10-6 | 0.96 | 788 | 2.52 × 10-6 | 0.96 | 1625 | 208 | 3152 | 2461 | |
4 d | 27 | 1.02 × 10-5 | 0.90 | 3067 | 1.24 × 10-3 | 0.80 | 980 | 225 | 4245 | 3152 | |
5 d | 32 | 9.72 × 10-6 | 0.90 | 3384 | 5.81 × 10-4 | 0.91 | 1708 | 5225 | |||
6 d | 34 | 8.23 × 10-6 | 0.91 | 3174 | 4.66 × 10-4 | 0.74 | 2931 | 5607 | |||
7 d | 36 | 7.95 × 10-6 | 0.91 | 3725 | 3.96 × 10-4 | 0.69 | 3641 | 6621 | |||
AP + H | 1 h | 19 | 2.41 × 10-6 | 0.80 | 9841 | 3.10 × 10-5 | 0.74 | 16,150 | 23,832 | ||
6 h | 20 | 4.18 × 10-6 | 0.87 | 4783 | 6.53 × 10-5 | 0.51 | 10,980 | 14,035 | |||
1d | 19 | 1.01 × 10-5 | 0.91 | 3589 | 1.41 × 10-4 | 0.66 | 800 | 4730 | |||
2 d | 17 | 1.18 × 10-5 | 0.91 | 2977 | 1.38 × 10-4 | 0.14 | 1012 | 98 | 18,080 | 2875 | |
3 d | 17 | 1.24 × 10-5 | 0.90 | 1626 | 2.00 × 10-4 | 0.10 | 2040 | 200 | 11,990 | 2621 | |
4 d | 18 | 1.06 × 10-5 | 0.90 | 3332 | 4.78 × 10-3 | 1.00 | 124 | 3667 | |||
5 d | 19 | 9.00 × 10-6 | 0.90 | 3513 | 6.86 × 10-4 | 0.74 | 1563 | 4895 | |||
6 d | 19 | 9.19 × 10-6 | 0.91 | 3658 | 7.07 × 10-4 | 0.76 | 1679 | 5140 | |||
7 d | 22 | 9.26 × 10-6 | 0.91 | 3966 | 6.06 × 10-4 | 0.76 | 1886 | 5653 |
Sample | icorr (μA cm−2) | Ecorr (V, Ag/AgCl/Sat KCl) | βa (mV dec−1) | βc (mV dec−1) |
---|---|---|---|---|
Untreated | 29 | − 1.61 | 104 | − 213 |
AP | 13 | − 1.58 | 118 | − 256 |
AP + H | 0.3 | − 1.54 | 161 | − 148 |
Table 3 Electrochemical data evaluated by Tafel fitting of the Mg1Mn specimen
Sample | icorr (μA cm−2) | Ecorr (V, Ag/AgCl/Sat KCl) | βa (mV dec−1) | βc (mV dec−1) |
---|---|---|---|---|
Untreated | 29 | − 1.61 | 104 | − 213 |
AP | 13 | − 1.58 | 118 | − 256 |
AP + H | 0.3 | − 1.54 | 161 | − 148 |
Fig. 12 Surface of the Mg1Mn alloy with corrosion products after immersion testing at OCP in 3.5 wt% NaCl for 7 days: a, d, g Untreated, b, e, h AP treated and c, f, i AP + H treated
Fig. 13 Surface appearance of untreated Mg1Mn specimen without the corrosion products after immersion testing in 3.5 wt% NaCl for 7 days: a,b optical image, c, d SEM image
Fig. 14 Surface appearance of AP treated Mg1Mn specimen without the corrosion products after immersion testing in 3.5 wt% NaCl for 7 days: a,b optical images, c, d SEM images
Fig. 15 Surface appearance of AP + H treated Mg1Mn specimen without the corrosion products after immersion testing in 3.5 wt% NaCl for 7 days: a b optical images, c d SEM images
Fig. 16 X-ray diffraction (XRD) patterns of the Mg1Mn specimens containing corrosion products after immersion testing at OCP in 3.5 wt% NaCl for 7 days
Fig. 17 XPS of C 1s, Mg 1s O 1s and Mn 2p of the corrosion products for Mg1Mn specimens after immersion testing: a-d Untreated, e-g AP treated, h-j AP + H treated
Fig. 18 a Surface morphology of the AP + H treated specimen with the corrosion products after immersion at OCP in 3.5 wt% NaCl for 1 day, b the corresponding elemental mapping of region D
Fig. 19 a Surface morphology of the AP + H treated specimen without corrosion product, b the corresponding elemental mapping of Region E and the content of the elements
[1] |
M. Esmaily, J.E. Svensson, S. Fajardo, N. Birbilis, G.S. Frankel, S. Virtanen, R. Arrabal, S. Thomas, L.G. Johansson, Prog. Mater. Sci. 89, 92 (2017)
DOI URL |
[2] |
T. Zhang, Y. Shao, G. Meng, Z. Cui, F. Wang, Corros. Sci. 53, 1960 (2011)
DOI URL |
[3] |
L.Y. Chen, J.Q. Xu, H. Choi, M. Pozuelo, X. Ma, S. Bhowmick, J.M. Yang, S. Mathaudhu, X.C. Li, Nature 528, 539 (2015)
DOI |
[4] |
M.S. Song, R.C. Zeng, Y.F. Ding, R.W. Li, M. Easton, I. Cole, N. Birbilis, X.B. Chen, J. Mater. Sci. Technol. 35, 535 (2019)
DOI URL |
[5] |
P.P. Wu, G.L. Song, Y.X. Zhu, Y.J. Deng, D.J. Zheng, Compos. Pt B -Eng. 243, 110165 (2022)
DOI URL |
[6] | J.F. Song, J. She, D.L. Chen, F.S. Pan, J. Magnes, Alloys 8, 1 (2020) |
[7] | Z.Z. Yin, W.C. Qi, R.C. Zeng, X.B. Chen, C.D. Gu, S.K. Guan, Y.F. Zheng, J. Magnes, Alloys 8, 42 (2020) |
[8] |
P. Li, Z. Shao, W. Fu, W. Ma, K. Yang, H. Zhou, M. Gao, Corros. Commun. 9, 44 (2023)
DOI URL |
[9] |
L. Liu, Q. Deng, P. White, S. Dong, I.S. Cole, J. Dong, X.B. Chen, Corros. Commun. 8, 40 (2022)
DOI URL |
[10] |
X. Zhang, Y. Zhang, Y. Lv, Z. Dong, T. Hashimoto, X. Zhou, Corros. Commun. 6, 67 (2022)
DOI URL |
[11] |
A. Zaffora, F. Di Franco, D. Virtù, F. Carfì Pavia, G. Ghersi, S. Virtanen, M. Santamaria, ACS Appl. Mater Interfaces. 13, 12866 (2021)
DOI URL |
[12] |
J.R. Liu, H. Wang, Q.X. Yuan, X.P. Song, J. Power Sources 395, 8 (2018)
DOI URL |
[13] |
C. Hu, M.J. Xu, J. Zhang, B.N. Hu, G. Yu, J. Alloy. Compd. 770, 48 (2019)
DOI URL |
[14] |
X. Wei, P.D. Liu, S.J. Ma, Z.C. Li, X.B. Peng, R.P. Deng, Q. Zhao, Corros. Sci. 173, 108729 (2020)
DOI URL |
[15] |
X. Wang, C. Jing, Y.X. Chen, X.S. Wang, G. Zhao, X. Zhang, W. Liang, B.Q. Liu, B.Q. Dong, Y.X. Zhang, J. Magnes. Alloy. 8, 291 (2020)
DOI URL |
[16] |
D.D. Zhang, F. Peng, X.Y. Liu, J. Alloy. Compd. 853, 157010 (2021)
DOI URL |
[17] |
C. Ke, M.S. Song, R.C. Zeng, Y. Qiu, Y. Zhang, R.F. Zhang, R.L. Liu, I. Cole, N. Birbilis, X.B. Chen, Corros. Sci. 151, 143 (2019)
DOI URL |
[18] |
D. Merachtsaki, E.C. Tsardaka, E. Anastasiou, A. Zouboulis, Constr. Build. Mater. 312, 125441 (2021)
DOI URL |
[19] |
S. Pommiers Belin, J. Frayret, A. Uhart, J.B. Ledeuil, J.C. Dupin, A. Castetbon, M. Potin Gautier, Appl. Surf. Sci. 298, 199 (2014)
DOI URL |
[20] |
M. Ali, M. Elsherif, A.E. Salih, A. Ul-Hamid, M.A. Hussein, S. Park, A.K. Yetisen, H. Butt, J. Alloy. Compd. 825, 154140 (2020)
DOI URL |
[21] |
S. Pommiers, J. Frayret, A. Castetbon, M. Potin Gautier, Corros Sci. 84, 135 (2014)
DOI URL |
[22] |
X. Yang, L.H. Liu, M.Z. Zhang, W.F. Tan, G.H. Qiu, L.R. Zheng, J. Hazard. Mater. 374, 26 (2019)
DOI URL |
[23] |
F. Witte, J. Fischer, J. Nellesen, C. Vogt, J. Vogt, T. Donath, F. Beckmann, Acta Biomater. 6, 1792 (2010)
DOI PMID |
[24] |
R.Y. Zhang, S. Cai, G.H. Xu, H. Zhao, Y. Li, X.X. Wang, K. Huang, M.G. Ren, X.D. Wu, Appl. Surf. Sci. 313, 896 (2014)
DOI URL |
[25] |
L. Liu, Q.Y. Yang, L. Huang, X.M. Liu, Y.Q. Liang, Z.D. Cui, X.J. Yang, S.L. Zhu, Z.Y. Li, Y.F. Zheng, K.W.K. Yeung, S.L. Wu, Appl. Surf. Sci. 484, 511 (2019)
DOI |
[26] | R.C. Zeng, X.X. Sun, Y.W. Song, F. Zhang, S.Q. Li, H.Z. Cui, E.H. Han, Trans. Nonferrous Met. Soc. China 23, 3293 (2013) |
[27] |
K.R. Hallam, P.C. Minshall, P.J. Heard, P.E.J. Flewitt, Corros. Sci. 112, 347 (2016)
DOI URL |
[28] |
M. Shahabi Navid, M. Esmaily, J.E. Svensson, M. Halvarsson, L. Nyborg, Y. Cao, L.G. Johansson, J. Electrochem. Soc. 161, C277 (2014)
DOI URL |
[29] |
Y.C. Wang, B.Y. Liu, X.A. Zhao, X.H. Zhang, Y.C. Miao, N. Yang, B. Yang, L.Q. Zhang, W.J. Kuang, J. Li, E. Ma, Z.W. Shan, Nat. Commun. 9, 4058 (2018)
DOI |
[30] |
L.C. Li, J.C. Gao, Y. Wang, Surf. Coat. Technol. 185, 92 (2004)
DOI URL |
[31] |
J.L. Zhang, C.D. Gu, W. Yan, J.P. Tu, X.D. Ding, Surf. Coat. Technol. 344, 702 (2018)
DOI URL |
[32] |
J.S. Xie, J.H. Zhang, S.J. Liu, Z.H. Li, L. Zhang, R.Z. Wu, L.G. Hou, M.L. Zhang, Coatings 9, 160 (2019)
DOI URL |
[33] |
F. Cao, Z. Shi, G.L. Song, M. Liu, A. Atrens, Corros. Sci. 76, 60 (2013)
DOI URL |
[34] |
Z. Shi, F. Cao, G.L. Song, M. Liu, A. Atrens, Corros. Sci. 76, 98 (2013)
DOI URL |
[35] |
S.A. Khan, Y. Miyashita, Y. Mutoh, Z. Bin Sajuri, Mater. Sci. Eng. 420, 315 (2006)
DOI URL |
[36] |
L.N. Zhang, Z.T. Hou, X. Ye, Z.B. Xu, X.L. Bai, P. Shang, Front. Mater. Sci. 7, 227 (2013)
DOI URL |
[37] |
A. Prasad, P.J. Uggowitzer, Z.M. Shi, A. Atrens, Adv. Eng. Mater. 14, 477 (2012)
DOI URL |
[38] |
Z.M. Shi, A. Atrens, Corros. Sci. 53, 226 (2011)
DOI URL |
[39] |
F. Cao, C. Zhao, G.L. Song, D. Zheng, Corros. Sci. 150, 161 (2019)
DOI URL |
[40] |
F. Cao, Z.M. Shi, J. Hofstetter, P.J. Uggowitzer, G.L. Song, M. Liu, A. Atrens, Corros. Sci. 75, 78 (2013)
DOI URL |
[41] |
P.J. Burke, Z. Bayindir, G.J. Kipouros, Appl. Spectrosc. 66, 510 (2012)
DOI PMID |
[42] |
L. Wang, T. Shinohara, B.P. Zhang, Appl. Surf. Sci. 256, 5807 (2010)
DOI URL |
[43] |
S. Li, H.A. Khan, L.H. Hihara, H. Cong, J. Li, Corros. Sci. 132, 300 (2018)
DOI URL |
[44] |
Q.S. Yao, Z.C. Li, Z.M. Qiu, F. Zhang, X.B. Chen, D.C. Chen, S.K. Guan, R.C. Zeng, Rare Met. 38, 629 (2019)
DOI |
[45] |
F. Cao, C. Zhao, J. You, J.J. Hu, D.J. Zheng, G.L. Song, Adv. Eng. Mater. 21, 1900363 (2019)
DOI URL |
[46] |
S. Fajardo, I. Llorente, J.A. Jiménez, J.M. Bastidas, D.M. Bastidas, Corros. Sci. 154, 246 (2019)
DOI |
[47] |
Z. Li, Z. Ba, T. Wang, J. Kuang, Y. Jia, Mater. Res. Express 6, 116440 (2019)
DOI URL |
[48] | R.C. Zeng, L.J. Liu, T.T. Pang, F. Zhang, W.W. Zhang, S.Q. Li, H.Z. Cui, E.H. Han, Acta Metall. Sin. -Engl. Lett. 28, 373 (2015) |
[49] | Y.F. Zhang, S.W. Tang, T.G. Lin, G.Y. Liu, J. Hu, Acta Metall. Sin. -Engl. Lett. 32, 1111 (2019) |
[50] |
I. Kozina, H. Krawiec, M. Starowicz, M. Kawalec, Int. J. Mol. Sci. 22, 8301 (2021)
DOI URL |
[51] | Z.Z. Yin, Z.Q. Zhang, X.J. Tian, Z.L. Wang, R.C. Zeng, Acta Metall. Sin. -Engl. Lett. 34, 25 (2021) |
[52] | Y. Shao, R.C. Zeng, S.Q. Li, L.Y. Cui, Y.H. Zou, S.K. Guan, Y.F. Zheng, Acta Metall. Sin. -Engl. Lett. 33, 615 (2020) |
[53] |
F. Tong, X. Chen, J. Wang, S. Wei, W. Gao, A.C.S. Appl, Energy Mater. 5, 9657 (2022)
DOI URL |
[54] | Q.S. Dong, Z.X. Ba, Z.Z. Wang, J. Kuang, Z.Y. Cai, C. Yuan, Acta Metall. Sin. -Engl. Lett. 29, 993 (2016) |
[55] |
J. Chen, Y. Song, D. Shan, E.H. Han, Corros. Sci. 53, 3281 (2011)
DOI URL |
[56] |
R. Lindström, L.G. Johansson, G.E. Thompson, P. Skeldon, J.E. Svensson, Corros. Sci. 46, 1141 (2004)
DOI URL |
[57] |
M.C. Zhao, M. Liu, G.L. Song, A. Atrens, Corros. Sci. 50, 3168 (2008)
DOI URL |
[58] |
H.R. Bakhsheshi Rad, M.H. Idris, M.R. Abdul Kadir, A. Ourdjini, M. Medraj, M. Daroonparvar, E. Hamzah, Mater Des. 53, 283 (2014)
DOI URL |
[59] |
X.N. Gu, Y.F. Zheng, Front. Mater. Sci. China 4, 111 (2010)
DOI URL |
[60] |
H. Miao, H. Huang, Y. Shi, H. Zhang, J. Pei, G. Yuan, Corros. Sci. 122, 90 (2017)
DOI URL |
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