Acta Metallurgica Sinica (English Letters) ›› 2015, Vol. 28 ›› Issue (2): 152-158.DOI: 10.1007/s40195-014-0179-3
• Orginal Article • Previous Articles Next Articles
Zhi-Dong Fan, Dong Wang(), Lang-Hong Lou
Received:
2014-02-17
Revised:
2014-05-29
Online:
2015-02-10
Published:
2015-07-23
Zhi-Dong Fan, Dong Wang, Lang-Hong Lou. Corporate Effects of Temperature and Strain Range on the Low Cycle Fatigue Life of a Single-Crystal Superalloy DD10[J]. Acta Metallurgica Sinica (English Letters), 2015, 28(2): 152-158.
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Temperature (°C) | \( \varepsilon_{\text{f}}^{'} {\text{ (\% )}} \) | c | \( \sigma_{\text{f}}^{'} \, ({\text{MPa}}) \) | b | E (GPa) | K (MPa) | n′ |
---|---|---|---|---|---|---|---|
760 | 0.523 | 0.36 | 1,084 | 0.0669 | 102 | 1,540 | 0.0751 |
980 | 1.054 | 1.04 | 1,832 | 0.1946 | 73 | 1,572 | 0.1685 |
Table 1 Strain fatigue parameters of DD10 alloy at 760 and 980 °C
Temperature (°C) | \( \varepsilon_{\text{f}}^{'} {\text{ (\% )}} \) | c | \( \sigma_{\text{f}}^{'} \, ({\text{MPa}}) \) | b | E (GPa) | K (MPa) | n′ |
---|---|---|---|---|---|---|---|
760 | 0.523 | 0.36 | 1,084 | 0.0669 | 102 | 1,540 | 0.0751 |
980 | 1.054 | 1.04 | 1,832 | 0.1946 | 73 | 1,572 | 0.1685 |
Temperature (°C) | ε f (%) | Reduced area (%) | ε yield (%) | σ 0 (MPa) | E (GPa) |
---|---|---|---|---|---|
760 | 15.9 | 15.9 | 0.89 | 1,038 | 98.2 |
980 | 30.4 | 30.7 | 0.42 | 392 | 79.3 |
Table 2 Tensile properties of heat-treated DD10 alloy at 760 and 980 °C
Temperature (°C) | ε f (%) | Reduced area (%) | ε yield (%) | σ 0 (MPa) | E (GPa) |
---|---|---|---|---|---|
760 | 15.9 | 15.9 | 0.89 | 1,038 | 98.2 |
980 | 30.4 | 30.7 | 0.42 | 392 | 79.3 |
Fig. 4 SEM images of fracture after LCF at 760 °C with ∆ε total/2 = 1.2%: a macroscopical fracture topography; b crack initiation site; c slip bands on outer surface
Fig. 5 SEM images of fracture surfaces after LCF at 980 °C with ∆ε total/2 = 1.2%: a macroscopical fracture topography; b crack initiation site; c longitudinal section; d cracks at the exterior surface
Fig. 6 SEM images of longitudinal section for specimens interrupted after 1,500 cyc at 760 °C with ∆ε totoal/2 = 0.7% a, b, that after 30 cyc at 980 °C with ∆ε totoal/2 = 1.2% c, d
Fig. 8 Illustration of crack initiation for alloys DD10 at 980 °C: a original surface; b exterior oxidation layer; c oxide ruptures due to disharmony when deforming; d air passage to crack tip
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