Acta Metallurgica Sinica (English Letters) ›› 2018, Vol. 31 ›› Issue (7): 742-752.DOI: 10.1007/s40195-018-0701-0
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Yue-Ling Guo1(), Li-Na Jia1(
), Hua-Rui Zhang1(
), Bin Kong1(
), Yong-Lin Huang1(
), Hu Zhang1(
)
Received:
2017-10-03
Revised:
2017-11-22
Online:
2018-07-10
Published:
2018-06-06
Yue-Ling Guo, Li-Na Jia, Hua-Rui Zhang, Bin Kong, Yong-Lin Huang, Hu Zhang. Microstructure and High-Temperature Oxidation Behavior of Dy-Doped Nb-Si-Based Alloys[J]. Acta Metallurgica Sinica (English Letters), 2018, 31(7): 742-752.
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Fig. 2 Microstructures of Dy-doped Nb-Si-based alloys: base alloy (a, b); 0.05Dy alloy (c, d); 0.10Dy alloy (e, f); 0.15Dy alloy (g, h). (a, c, e, g) are the vertical microstructures parallel to DS direction. (b, d, f, h) are the transversal microstructures perpendicular to DS direction
Specimen | Nb | Si | Ti | Cr | Al | Hf | Dy |
---|---|---|---|---|---|---|---|
Base alloy | |||||||
Nbss | 60.34 | 0.78 | 28.42 | 6.15 | 3.01 | 1.30 | - |
αNb5Si3 | 42.53 | 38.57 | 15.79 | 0.28 | 0.66 | 2.17 | - |
γNb5Si3 | 28.35 | 37.38 | 27.94 | 0.72 | 1.43 | 4.18 | - |
0.15Dy alloy | |||||||
Nbss | 60.28 | 0.49 | 28.52 | 6.48 | 2.96 | 1.27 | - |
αNb5Si3 | 42.77 | 38.67 | 15.50 | 0.22 | 0.66 | 2.18 | 0.01 |
γNb5Si3 | 26.93 | 37.92 | 28.91 | 0.74 | 1.26 | 4.24 | 0.03 |
Table 1 Compositions of the main phases in the base alloy and the 0.15Dy alloy (at.%)
Specimen | Nb | Si | Ti | Cr | Al | Hf | Dy |
---|---|---|---|---|---|---|---|
Base alloy | |||||||
Nbss | 60.34 | 0.78 | 28.42 | 6.15 | 3.01 | 1.30 | - |
αNb5Si3 | 42.53 | 38.57 | 15.79 | 0.28 | 0.66 | 2.17 | - |
γNb5Si3 | 28.35 | 37.38 | 27.94 | 0.72 | 1.43 | 4.18 | - |
0.15Dy alloy | |||||||
Nbss | 60.28 | 0.49 | 28.52 | 6.48 | 2.96 | 1.27 | - |
αNb5Si3 | 42.77 | 38.67 | 15.50 | 0.22 | 0.66 | 2.18 | 0.01 |
γNb5Si3 | 26.93 | 37.92 | 28.91 | 0.74 | 1.26 | 4.24 | 0.03 |
Fig. 5 SEM morphologies of oxide scales grown on Dy-doped Nb-Si-based alloys after oxidation at 1250 °C for 58 h: a base alloy; b 0.05Dy alloy; c 0.10Dy alloy; d 0.15Dy alloy
Fig. 6 TEM images of the oxide scale grown on 0.15Dy-doped Nb-Si-based alloy after oxidation at 1250 °C for 58 h a, b and the typical selected-area diffraction of Ti0.4Cr0.3Nb0.3O2 c, Nb2O5 d, TiNb2O7 e and Ti2Nb10O29 f. The inset in b shows the typical selected-area diffraction pattern of SiO2
Crystal structure | Composition | ||||||
---|---|---|---|---|---|---|---|
O | Nb | Si | Ti | Cr | Al | ||
SiO2 | Amorphous | 66.76 | - | 33.24 | - | - | - |
Nb2O5 | Monoclinic | 62.44 | 29.21 | - | 8.35 | - | - |
TiNb2O7 | Monoclinic | 72.45 | 18.94 | - | 8.61 | - | - |
Ti2Nb10O25 | Monoclinic | 57.76 | 31.45 | - | 10.79 | - | - |
Ti0.4Cr0.3Nb0.3O2 | Tetragonal | 49.93 | 14.90 | - | 24.71 | 10.46 | - |
Table 2 Compositions of the oxides grown on 0.15Dy after oxidation at 1250 °C for 58 h (at.%)
Crystal structure | Composition | ||||||
---|---|---|---|---|---|---|---|
O | Nb | Si | Ti | Cr | Al | ||
SiO2 | Amorphous | 66.76 | - | 33.24 | - | - | - |
Nb2O5 | Monoclinic | 62.44 | 29.21 | - | 8.35 | - | - |
TiNb2O7 | Monoclinic | 72.45 | 18.94 | - | 8.61 | - | - |
Ti2Nb10O25 | Monoclinic | 57.76 | 31.45 | - | 10.79 | - | - |
Ti0.4Cr0.3Nb0.3O2 | Tetragonal | 49.93 | 14.90 | - | 24.71 | 10.46 | - |
Fig. 7 a Cross sections of the layer-structured oxide scale formed on 0.15Dy-doped Nb-Si-based alloy after oxidation at 1250 °C for 58 h. b The microstructure of the oxide scale at a high magnification
Fig. 8 Sectional microstructures of Dy-doped Nb-Si-based alloys after oxidation at 1250 °C for 58 h: a base alloy; b 0.05Dy alloy; c 0.10Dy alloy; d 0.15Dy alloy. a Displays the vertical microstructure parallel to DS direction. b, c, d show the transversal microstructures perpendicular to DS direction
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