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Low cycle fatigue behavior of nickel-based superalloy GH4145/SQ at elevated temperature
D. Y. Ye; D. H. Ping; Z. L. Wang; H. H. Xu; X. Y. Mei; C. W. Xu; X. L. Chen
2004
发表期刊Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing
ISSN0921-5093
卷号373期号:1-2页码:54-64
摘要Low-cycle fatigue (LCF) behavior of nickel-based precipitation-strengthened superalloy GH4145/SQ was investigated systematically under fully reversed total strain amplitude control conditions at 538degreesC in laboratory air. It was shown that the alloy exhibited a pronounced initial fatigue hardening followed by continuous fatigue softening to failure at high strain amplitudes, while at low strain amplitudes the initial hardening was followed by a well-defined saturation stage. Microstructure observations using optical and transmission-electron microscopy revealed that slip band density increased with increasing total strain amplitudes and the size of the y' precipitates tended to reduction due to repeated shearing by the dislocations with continuous cyclic straining. The above changes in microstructures during cycling were essentially responsible for the fatigue hardening-softening behavior of the alloy. Both optical and SEM micrographs indicated that at low strain amplitudes crack propagation was basically transgranular, while at high strain amplitudes crack propagation was essentially intergranular. Bilinear behavior with a change of slope at a plastic strain amplitude of about 0.2 pct was observed in cyclic stress-strain (CSS), Coffin-Manson (C-M) and plastic strain energy-life plots. A change in the number of operating slip systems and the fracture modes with the strain amplitude employed was used to explain this two-slope characteristic. In both the companion specimens test (CST) and the incremental step test (IST) methods the alloy exhibited non-masing type behavior. It was suggested that, for the first approximation, the half-life plastic strain energy could be calculated directly according to the equation without reckoning in the non-masing behavior. (C) 2004 Elsevier B.V. All rights reserved.
部门归属zhejiang univ, dept mech, hangzhou 310027, peoples r china. natl inst mat sci, tsukuba, ibaraki 3050047, japan. chinese acad sci, inst met res, shenyang 110016, peoples r china. jiaxing elect power plant, jiaxing 314201, peoples r china. zhejiang provincial elect power test & res inst, hangzhou 310014, peoples r china.;ye, dy (reprint author), zhejiang univ, dept mech, hangzhou 310027, peoples r china;duyi.ye@nims.go.jp
关键词Low-cycle Fatigue (Lcf) Bilinear Behavior Slip Band Fracture Mode Nickel-based Superalloy Nimonic 80a Deformation Mechanisms
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WOS记录号WOS:000221779200007
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被引频次:40[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://ir.imr.ac.cn/handle/321006/35685
专题中国科学院金属研究所
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D. Y. Ye,D. H. Ping,Z. L. Wang,et al. Low cycle fatigue behavior of nickel-based superalloy GH4145/SQ at elevated temperature[J]. Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing,2004,373(1-2):54-64.
APA D. Y. Ye.,D. H. Ping.,Z. L. Wang.,H. H. Xu.,X. Y. Mei.,...&X. L. Chen.(2004).Low cycle fatigue behavior of nickel-based superalloy GH4145/SQ at elevated temperature.Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing,373(1-2),54-64.
MLA D. Y. Ye,et al."Low cycle fatigue behavior of nickel-based superalloy GH4145/SQ at elevated temperature".Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing 373.1-2(2004):54-64.
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