Acta Metallurgica Sinica (English Letters) ›› 2024, Vol. 37 ›› Issue (11): 1843-1857.DOI: 10.1007/s40195-024-01732-x
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Shuang Guo1,2, Tianyu Liu2,3, Tianjiao Luo2,3(), Yingju Li2,3, Xiaohui Feng2,3, Qiuyan Huang2,3, Ce Zheng2,3, Cheng Zhu2,3, Yuansheng Yang2,3,4, Weirong Li5, Feng Li1(
)
Received:
2024-02-12
Revised:
2024-03-22
Accepted:
2024-04-03
Online:
2024-11-10
Published:
2024-07-10
Contact:
Tianjiao Luo, tjluo@imr.ac.cn;
Feng Li, lifhr@sut.edu.cn
Shuang Guo, Tianyu Liu, Tianjiao Luo, Yingju Li, Xiaohui Feng, Qiuyan Huang, Ce Zheng, Cheng Zhu, Yuansheng Yang, Weirong Li, Feng Li. Effect of Ag on High-Temperature Oxidation Behavior of Mg-6.5Gd-5.6Y-0.1Nd-0.01Ce-0.4Zr Alloy[J]. Acta Metallurgica Sinica (English Letters), 2024, 37(11): 1843-1857.
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Samples | Gd | Y | Zr | Nd | Ce | Ag | Mg |
---|---|---|---|---|---|---|---|
0Ag | 6.51 | 5.73 | 0.26 | 0.11 | 0.011 | - | Bal. |
1.0Ag | 6.47 | 5.66 | 0.31 | 0.12 | 0.015 | 1.04 | Bal. |
1.5Ag | 6.30 | 5.84 | 0.29 | 0.12 | 0.015 | 1.63 | Bal. |
2.0Ag | 6.40 | 5.47 | 0.22 | 0.12 | 0.015 | 2.09 | Bal. |
Table 1 Actual composition of the alloy (wt%)
Samples | Gd | Y | Zr | Nd | Ce | Ag | Mg |
---|---|---|---|---|---|---|---|
0Ag | 6.51 | 5.73 | 0.26 | 0.11 | 0.011 | - | Bal. |
1.0Ag | 6.47 | 5.66 | 0.31 | 0.12 | 0.015 | 1.04 | Bal. |
1.5Ag | 6.30 | 5.84 | 0.29 | 0.12 | 0.015 | 1.63 | Bal. |
2.0Ag | 6.40 | 5.47 | 0.22 | 0.12 | 0.015 | 2.09 | Bal. |
Points | Mg | Gd | Y | Zr | Nd | Ce | Ag |
---|---|---|---|---|---|---|---|
A | 95.26 | 1.51 | 2.53 | 0.00 | 0.00 | 0.00 | 0.70 |
B | 56.40 | 23.59 | 15.24 | 0.28 | 0.92 | 0.00 | 3.57 |
C | 29.38 | 13.68 | 55.28 | 1.29 | 0.00 | 0.00 | 0 |
D | 48.69 | 11.55 | 11.67 | 24.79 | 0.19 | 0.00 | 3.11 |
E | 59.75 | 30.17 | 6.99 | 0.15 | 0.57 | 0.00 | 2.37 |
Table 2 EDS data of 2.0Ag alloy (wt%)
Points | Mg | Gd | Y | Zr | Nd | Ce | Ag |
---|---|---|---|---|---|---|---|
A | 95.26 | 1.51 | 2.53 | 0.00 | 0.00 | 0.00 | 0.70 |
B | 56.40 | 23.59 | 15.24 | 0.28 | 0.92 | 0.00 | 3.57 |
C | 29.38 | 13.68 | 55.28 | 1.29 | 0.00 | 0.00 | 0 |
D | 48.69 | 11.55 | 11.67 | 24.79 | 0.19 | 0.00 | 3.11 |
E | 59.75 | 30.17 | 6.99 | 0.15 | 0.57 | 0.00 | 2.37 |
Alloys | Parameters | 350 °C | 400 °C | 450 °C |
---|---|---|---|---|
0Ag | k | 0.01123 | 0.01955 | 0.04146 |
R2 | 0.98149 | 0.97764 | 0.9793 | |
c1 | 1.00275 | − 2.37847 × 10-19 | - | |
c2 | − 6.14477 × 10-4 | − 2.92413 × 10-4 | - | |
n | - | - | 1.7366 | |
1.0Ag | k | 0.01207 | 0.02622 | 0.02395 |
R2 | 0.96863 | 0.99493 | 0.97732 | |
c1 | 0.66043 | − 5.90181 × 10-19 | - | |
c2 | 0.00446 | − 0.00596 | - | |
n | - | - | 1.9203 | |
1.5Ag | k | 0.01295 | 0.03107 | 0.03625 |
R2 | 0.97539 | 0.99865 | 0.98089 | |
c1 | 0.51521 | − 1.17842 × 10-18 | - | |
c2 | 0.00814 | − 0.0114 | - | |
n | - | - | 1.7805 | |
2.0Ag | k | 0.01972 | 0.03096 | 0.03356 |
R2 | 0.9648 | 0.99245 | 0.98192 | |
c1 | 1.41663 | − 2.2075 × 10-20 | - | |
c2 | − 0.00857 | 0.00579 | - | |
n | - | - | 1.9368 |
Table 3 Relevant data of fitting curves for four alloys at 350 °C, 400 °C and 450 °C
Alloys | Parameters | 350 °C | 400 °C | 450 °C |
---|---|---|---|---|
0Ag | k | 0.01123 | 0.01955 | 0.04146 |
R2 | 0.98149 | 0.97764 | 0.9793 | |
c1 | 1.00275 | − 2.37847 × 10-19 | - | |
c2 | − 6.14477 × 10-4 | − 2.92413 × 10-4 | - | |
n | - | - | 1.7366 | |
1.0Ag | k | 0.01207 | 0.02622 | 0.02395 |
R2 | 0.96863 | 0.99493 | 0.97732 | |
c1 | 0.66043 | − 5.90181 × 10-19 | - | |
c2 | 0.00446 | − 0.00596 | - | |
n | - | - | 1.9203 | |
1.5Ag | k | 0.01295 | 0.03107 | 0.03625 |
R2 | 0.97539 | 0.99865 | 0.98089 | |
c1 | 0.51521 | − 1.17842 × 10-18 | - | |
c2 | 0.00814 | − 0.0114 | - | |
n | - | - | 1.7805 | |
2.0Ag | k | 0.01972 | 0.03096 | 0.03356 |
R2 | 0.9648 | 0.99245 | 0.98192 | |
c1 | 1.41663 | − 2.2075 × 10-20 | - | |
c2 | − 0.00857 | 0.00579 | - | |
n | - | - | 1.9368 |
Temperatures | ΔGMgO | ΔGGd2O3 | ΔGY2O3 | ΔGZrO2 |
---|---|---|---|---|
623 K | − 653,428.9 | − 1,969,362.0 | − 2,026,730.2 | − 1,196,767.3 |
673 K | − 658,862.3 | − 1,984,915.0 | − 2,039,706.9 | − 1,142,166.5 |
723 K | − 633,568.0 | − 2,000,984.9 | − 2,001,309.0 | − 1,147,496.5 |
Table 4 Gibbs free energy of actual reactions at temperatures of 623 K, 673 K, and 723 K (J/mol)
Temperatures | ΔGMgO | ΔGGd2O3 | ΔGY2O3 | ΔGZrO2 |
---|---|---|---|---|
623 K | − 653,428.9 | − 1,969,362.0 | − 2,026,730.2 | − 1,196,767.3 |
673 K | − 658,862.3 | − 1,984,915.0 | − 2,039,706.9 | − 1,142,166.5 |
723 K | − 633,568.0 | − 2,000,984.9 | − 2,001,309.0 | − 1,147,496.5 |
Points | Mg | Gd | Y |
---|---|---|---|
P1 | 92.49 | 3.47 | 4.04 |
P2 | 93.63 | 3.00 | 3.37 |
P3 | 94.43 | 2.77 | 2.80 |
P4 | 94.79 | 2.63 | 2.58 |
P5 | 90.89 | 4.96 | 4.16 |
P6 | 91.78 | 4.25 | 3.96 |
P7 | 92.54 | 3.89 | 3.57 |
P8 | 92.90 | 3.51 | 3.59 |
P9 | 88.59 | 6.36 | 5.05 |
P10 | 88.36 | 6.22 | 5.42 |
P11 | 89.02 | 5.34 | 5.64 |
P12 | 89.49 | 5.38 | 5.13 |
Table 5 EDS analysis of the matrix of four alloys oxidized for 120 h at different temperatures (wt%)
Points | Mg | Gd | Y |
---|---|---|---|
P1 | 92.49 | 3.47 | 4.04 |
P2 | 93.63 | 3.00 | 3.37 |
P3 | 94.43 | 2.77 | 2.80 |
P4 | 94.79 | 2.63 | 2.58 |
P5 | 90.89 | 4.96 | 4.16 |
P6 | 91.78 | 4.25 | 3.96 |
P7 | 92.54 | 3.89 | 3.57 |
P8 | 92.90 | 3.51 | 3.59 |
P9 | 88.59 | 6.36 | 5.05 |
P10 | 88.36 | 6.22 | 5.42 |
P11 | 89.02 | 5.34 | 5.64 |
P12 | 89.49 | 5.38 | 5.13 |
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