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Necking contributions to sigma-phase formation in a hot-corrosion-resistant superalloy during creep exposure
J. S. Hou; L. Z. Zhou; C. Yuan; J. T. Guo; W. Wang; X. Z. Qin; P. K. Liaw
2013
Source PublicationMaterials Characterization
ISSN1044-5803
Volume77Pages:47-52
AbstractStress has been shown to accelerate the formation of the sigma phase in the experimental Ni-based superalloys during the high-temperature exposure. However, with the necking phenomenon occurring in strained-to-fractured specimens after the creep exposure at 1073 K/365 MPa for 1700 h, the stress decreases, while the amount of the sigma phase increases from the fracture face to the end of the fractured gauge section. Nucleation mechanisms of the a phase are discussed. The energy dynamics analysis indicates that the decrease of the sigma-phase density by necking is mainly due to the increased matrix strain energy, while the shape, size, and composition of the a phase are not affected by necking. (C) 2013 Elsevier Inc. All rights reserved.
description.department[hou, j. s. ; zhou, l. z. ; yuan, c. ; guo, j. t. ; wang, w. ; qin, x. z.] chinese acad sci, inst met res, shenyang 110016, peoples r china. [liaw, p. k.] univ tennessee, dept mat sci & engn, knoxville, tn 37996 usa. ; hou, js (reprint author), chinese acad sci, inst met res, shenyang 110016, peoples r china. ; jshou@imr.ac.cn
KeywordMicrostructure Necking Stress Rupture Superalloy Crystal Precipitation Stress
URL查看原文
Language英语
Document Type期刊论文
Identifierhttp://ir.imr.ac.cn/handle/321006/71259
Collection中国科学院金属研究所
Recommended Citation
GB/T 7714
J. S. Hou,L. Z. Zhou,C. Yuan,et al. Necking contributions to sigma-phase formation in a hot-corrosion-resistant superalloy during creep exposure[J]. Materials Characterization,2013,77:47-52.
APA J. S. Hou.,L. Z. Zhou.,C. Yuan.,J. T. Guo.,W. Wang.,...&P. K. Liaw.(2013).Necking contributions to sigma-phase formation in a hot-corrosion-resistant superalloy during creep exposure.Materials Characterization,77,47-52.
MLA J. S. Hou,et al."Necking contributions to sigma-phase formation in a hot-corrosion-resistant superalloy during creep exposure".Materials Characterization 77(2013):47-52.
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