Acta Metallurgica Sinica (English Letters) ›› 2022, Vol. 35 ›› Issue (4): 679-692.DOI: 10.1007/s40195-021-01287-1
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K. J. Tan1,2, J. J. Liang1(), X. G. Wang1(
), X. P. Tao1,2, J. Gong1, C. Sun1, Y. Z. Zhou1, X. F. Sun1
Received:
2021-04-07
Revised:
2021-05-26
Accepted:
2021-06-06
Online:
2021-09-07
Published:
2021-09-07
Contact:
J. J. Liang,X. G. Wang
About author:
X. G. Wang, xgwang11b@imr.ac.cnK. J. Tan, J. J. Liang, X. G. Wang, X. P. Tao, J. Gong, C. Sun, Y. Z. Zhou, X. F. Sun. Oxidation Performance and Interdiffusion Behaviour of two MCrAlY Coatings on a Fourth-Generation Single-Crystal Superalloy[J]. Acta Metallurgica Sinica (English Letters), 2022, 35(4): 679-692.
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W + Mo + Ta | Co | Cr | Al | Re | Ru | Ni |
---|---|---|---|---|---|---|
15 | 12 | 4 | 5.8 | 6 | 3 | Bla. |
Table 1 Chemical composition of the superalloy (wt%)
W + Mo + Ta | Co | Cr | Al | Re | Ru | Ni |
---|---|---|---|---|---|---|
15 | 12 | 4 | 5.8 | 6 | 3 | Bla. |
Coating | Co | Cr | Al | Si | Y | Hf | Ni |
---|---|---|---|---|---|---|---|
A | 32 | 20 | 10 | 0.1 | 0.6 | - | Bla. |
B | 20 | 28 | 10 | 0.1 | 0.6 | 0.1 | Bla. |
Table 2 Chemical composition of the targets of two coatings (wt%)
Coating | Co | Cr | Al | Si | Y | Hf | Ni |
---|---|---|---|---|---|---|---|
A | 32 | 20 | 10 | 0.1 | 0.6 | - | Bla. |
B | 20 | 28 | 10 | 0.1 | 0.6 | 0.1 | Bla. |
Elements | Sample A | Sample B | ||||
---|---|---|---|---|---|---|
Substrate | IDZ | Coating | Substrate | IDZ | Coating | |
Al | 5.4 | 6.8 | 7.4 | 5.8 | 5.9 | 6.3 |
Cr | 4.6 | 8.5 | 20.8 | 4.1 | 10.8 | 26.5 |
Co | 11.9 | 18.4 | 32.1 | 12.2 | 10.2 | 22.6 |
Ni | 52.1 | 51.4 | 39.7 | 54.6 | 49.2 | 44.3 |
Ru | 3.6 | 0.8 | - | 2.9 | 2.0 | - |
Ta | 7.6 | 7.3 | - | 8.9 | 9.8 | - |
W | 10.2 | 4.4 | - | 5.4 | 6.3 | - |
Re | 4.5 | 2.4 | - | 6.2 | 5.9 | - |
Hf | - | - | - | - | - | 0.4 |
Table 3 Element composition in different regions of the two samples (wt%)
Elements | Sample A | Sample B | ||||
---|---|---|---|---|---|---|
Substrate | IDZ | Coating | Substrate | IDZ | Coating | |
Al | 5.4 | 6.8 | 7.4 | 5.8 | 5.9 | 6.3 |
Cr | 4.6 | 8.5 | 20.8 | 4.1 | 10.8 | 26.5 |
Co | 11.9 | 18.4 | 32.1 | 12.2 | 10.2 | 22.6 |
Ni | 52.1 | 51.4 | 39.7 | 54.6 | 49.2 | 44.3 |
Ru | 3.6 | 0.8 | - | 2.9 | 2.0 | - |
Ta | 7.6 | 7.3 | - | 8.9 | 9.8 | - |
W | 10.2 | 4.4 | - | 5.4 | 6.3 | - |
Re | 4.5 | 2.4 | - | 6.2 | 5.9 | - |
Hf | - | - | - | - | - | 0.4 |
Fig. 7 Microstructure of surface with substrate a, d samples after 10 h exposure as well as sample A b, e and sample B c, f samples after 100 h exposure
Oxidation Time (h) | Coating A | Coating B | ||||
---|---|---|---|---|---|---|
IDZ | SRZ | Al2O3 | IDZ | SRZ | Al2O3 | |
0 | 0 | 0 | 0 | 12 | 0 | 0 |
10 | 17 | 14 | 2.1 | 20 | 17 | 3.1 |
100 | 54 | 19 | 2.5 | 51 | Full | 5.3 |
200 | 89 | 0 | 2.8 | 92 | Full | 5.8 |
Table 4 Thickness of each area of two coating samples after oxidation (μm)
Oxidation Time (h) | Coating A | Coating B | ||||
---|---|---|---|---|---|---|
IDZ | SRZ | Al2O3 | IDZ | SRZ | Al2O3 | |
0 | 0 | 0 | 0 | 12 | 0 | 0 |
10 | 17 | 14 | 2.1 | 20 | 17 | 3.1 |
100 | 54 | 19 | 2.5 | 51 | Full | 5.3 |
200 | 89 | 0 | 2.8 | 92 | Full | 5.8 |
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