- 영문명
- Effects of the Strengthening Mechanism on Fatigue Properties of Precipitation-Hardened Al Alloy
- 발행기관
- 한국산업기술융합학회(구. 산업기술교육훈련학회)
- 저자명
- 김원회(Won-Hoe Kim)
- 간행물 정보
- 『산업기술연구논문지』산업기술연구논문지 제26권 1호, 1~8쪽, 전체 8쪽
- 주제분류
- 공학 > 산업공학
- 파일형태
- 발행일자
- 2021.03.31

국문 초록
영문 초록
The effects of the strengthening mechanism on the fatigue properties of Al-Mg-Si alloy were investigated. Annealing was conducted to minimize the precipitation-hardening effects on Al-Mg-Si alloy, as it could be the most efficient method to stabilize the precipitates. Severe plastic deformation was adapted to obtain grain-refining and work-hardening effects after the annealing process. To evaluate the change in fatigue properties and to investigate the dominant strengthening mechanisms in the specimens, fatigue crack propagation and low-cycle fatigue tests were performed. The experimental results showed that the fatigue crack propagation rate of the annealed specimen was higher than those of other specimens that were grain-refined and precipitation-hardened. During the low-cycle fatigue test, the annealed specimen exhibited cyclic hardening and saturation behavior, whereas the grain-refined specimen exhibited saturation and softening behavior. The low-cycle fatigue life and characteristics of the hysteresis loops of the specimens were evaluated using various parameters. Precipitation-hardened specimens exhibited higher fatigue strength and ductility coefficients than those under other conditions.
목차
Ⅰ. 서론
Ⅱ. 실험
Ⅲ. 실험결과 및 고찰
Ⅳ. 결론
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