Microstructure-dependent fatigue behavior of aged Cu-6Ni-1.5Si alloy with discontinuous/cellular precipitates

  • Goto, M.
  • Yamamoto, T.
  • Han, S. Z.
  • Lim, S. H.
  • Kim, S.
  • 외 5명
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초록

The effect of microstructure on the fatigue strength of age-hardened Cu-6Ni-1.5Si alloy was investigated in this study. The aging was conducted at 500 degrees C for 0.5 h for the precipitation of disk-shaped delta-Ni2Si precipitates (continuous precipitates) and 3 h for the discontinuous precipitation of fiber-shaped, stable delta-Ni2Si precipitates to strengthen the Cu matrix. The tensile strength of 0.5 h-aged specimens was about 1.3 times greater than that of the 3 h-aged counterparts, but with inferior electrical conductivity. Despite the considerable difference in tensile strength, no notable difference in fatigue strength was observed between 0.5 h- and 3 h-aged specimens. The 3 h-aged specimens had superior electrical conductivity without sacrificing fatigue strength of the 0.5 h-aged specimens. The physical background of high-cycle fatigue strength in Cu-6Ni-1.5Si alloys with continuous precipitates and discontinuous precipitates is discussed considering the microstructure-sensitive behavior of fatigue cracks.

키워드

Copper alloysFatigueMicrostructurePrecipitatesCrackGrain boundariesHIGH-CYCLE FATIGUEELECTRICAL-PROPERTIESPROPAGATION BEHAVIORCRACK INITIATIONCUMICROCRACKSSTRENGTHCONDUCTIVITYEVOLUTION
제목
Microstructure-dependent fatigue behavior of aged Cu-6Ni-1.5Si alloy with discontinuous/cellular precipitates
저자
Goto, M.Yamamoto, T.Han, S. Z.Lim, S. H.Kim, S.Iwamura, T.Kitamura, J.Ahn, J. -H.Yakushiji, T.Lee, J.
DOI
10.1016/j.msea.2019.01.057
발행일
2019-02-18
유형
Article
저널명
Materials Science & Engineering A: Structural Materials: Properties, Microstructure and Processing
747
페이지
63 ~ 72