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Fe-29%Ni-17%Co 저열팽창 합금의 피로 특성에 미치는 알파상의 영향
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  • Fe-29%Ni-17%Co 저열팽창 합금의 피로 특성에 미치는 알파상의 영향
저자명
김민종,권진한,조규상,이기안,Kim. Min-Jong,Gwon. Jin-Han,Cho. Kyu-Sang,Lee. Kee-Ahn
간행물명
한국재료학회지
권/호정보
2014년|24권 9호|pp.481-487 (7 pages)
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한국재료학회
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정기간행물|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

The effect of alpha phase on the fatigue properties of Fe-29%Ni-17%Co low thermal expansion alloy was investigated. Two kinds of alloys (Base alloy and Alpha alloy) were prepared by controlling the minimal alloy composition. Microstructure observation, tensile, high-cycle fatigue, and low-cycle fatigue results were measured in this study. The Base alloy microstructure showed typical austenite ${gamma}$ phase. Alpha alloy represented the dispersed phase in the austenite ${gamma}$ matrix. As a result of tensile testing, Alpha alloy was found to have higher strengths (Y.S. & T.S.) and lower elongation compared to those of the Base alloy. High cycle fatigue results showed that Alpha alloy had a higher fatigue limit (360MPa) than that (330MPa) of the Base alloy. The Alpha alloy exhibited the superior high cycle fatigue property in all of the fatigue stress conditions. SEM fractography results showed that the alpha phase could act to effectively retard both fatigue crack initiation and crack propagation. In the case of low-cycle fatigue, the Base alloy had longer fatigue life in the high plastic strain amplitude region and the Alpha alloy showed better fatigue property only in the low plastic strain amplitude region. The fatigue deformation behavior of the Fe-29%Ni-17%Co alloy was also discussed as related with its microstructure.