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FATIGUE AND FRACTURE-BEHAVIOR OF AN ALUMINUM-LITHIUM ALLOY-8090-T6 AT AMBIENT AND CRYOGENIC TEMPERATURE
Y. B. Xu; L. Wang; Y. Zhang; Z. G. Wang; Q. Z. Hu
1991
Source PublicationMetallurgical Transactions a-Physical Metallurgy and Materials Science
ISSN0360-2133
Volume22Issue:3Pages:723-729
AbstractAn investigation has been made of the fatigue and fracture behavior of an Al-Li-Cu-Mg-Zr 8090-T6 alloy at room (300 K) and liquid nitrogen (77 K) temperatures. The fatigue and fracture strengths, as well as ductility of the alloy, have been found to increase with decreasing temperature. The observations by scanning electron microscopy (SEM) and transmission electron microscopy (TEM) reveal that the changes in fatigue and fracture behavior with temperature are considered to be associated with the change in the deformation and fracture modes. It has been found that the occurrence of the localized shear deformation bands in which the hard precipitates are sheared by moving dislocations is responsible for the reduction of fatigue and fracture strengths as well as ductility of the alloy at room temperature. However, the improvement of both strength and ductility of the alloy at liquid nitrogen temperature might be attributed to the deeper and larger delamination that occurred on the fracture surface.
description.departmentshenyang univ polytech,shenyang 110021,peoples r china.;xu, yb (reprint author), acad sinica,inst met res,fatigue & fracture mat lab,shenyang 110015,peoples r china
KeywordAl-li Alloys x Alloys Toughness 2090-t8e41 Deformation
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Document Type期刊论文
Identifierhttp://ir.imr.ac.cn/handle/321006/39484
Collection中国科学院金属研究所
Recommended Citation
GB/T 7714
Y. B. Xu,L. Wang,Y. Zhang,et al. FATIGUE AND FRACTURE-BEHAVIOR OF AN ALUMINUM-LITHIUM ALLOY-8090-T6 AT AMBIENT AND CRYOGENIC TEMPERATURE[J]. Metallurgical Transactions a-Physical Metallurgy and Materials Science,1991,22(3):723-729.
APA Y. B. Xu,L. Wang,Y. Zhang,Z. G. Wang,&Q. Z. Hu.(1991).FATIGUE AND FRACTURE-BEHAVIOR OF AN ALUMINUM-LITHIUM ALLOY-8090-T6 AT AMBIENT AND CRYOGENIC TEMPERATURE.Metallurgical Transactions a-Physical Metallurgy and Materials Science,22(3),723-729.
MLA Y. B. Xu,et al."FATIGUE AND FRACTURE-BEHAVIOR OF AN ALUMINUM-LITHIUM ALLOY-8090-T6 AT AMBIENT AND CRYOGENIC TEMPERATURE".Metallurgical Transactions a-Physical Metallurgy and Materials Science 22.3(1991):723-729.
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