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High-Temperature Rupture of 5083-Al Alloy under Multiaxial Stress States
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  • High-Temperature Rupture of 5083-Al Alloy under Multiaxial Stress States
  • High-Temperature Rupture of 5083-Al Alloy under Multiaxial Stress States
저자명
Kim. Ho-Kyung,Chun. Duk-Kyu,Kim. Sung- Hoon
간행물명
Journal of mechanical science and technology
권/호정보
2005년|19권 7호|pp.1432-1440 (9 pages)
발행정보
대한기계학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

High-temperature rupture behavior of 5083-Al alloy was tested for failure at 548K under multiaxial stress conditions: uniaxial tension using smooth bar specimens, biaxial shearing using double shear bar specimens, and triaxial tension using notched bar specimens. Rupture times were compared for uniaxial, biaxial, and triaxial stress conditions with respect to the maximum principal stress, the von Mises effective stress, and the principal facet stress. The results indicate that the von Mises effective and principal facet stresses give good correlation for the material investigated, and these parameters can predict creep life data under the multiaxial stress states with the rupture data obtained from specimens under the uniaxial stress. The results suggest that the creep rupture of this alloy under the testing condition is controlled by cavitation coupled with highly localized deformation process, such as grain boundary sliding. It is also conceivable that strain softening controls the highly localized deformation modes which result in cavitation damage in controlling rupture time of this alloy.