Fatigue damage behavior of freestanding 40 mu m-thick Ni foils was investigated. We found that there were evident differences in fatigue behaviors of the foils loaded normal to and parallel to the rolling direction. EBSD analyses revealed that fatigue cracking along grain boundaries (GBs) or slip bands in two kinds of the foils depended on the difference in Schmid factor of the grains along both sides of the GBs and the misorientation angle of the GB. Fatigue damage mechanism was discussed.
部门归属
[xu, jin
; zhang, guang-ping] chinese acad sci, inst met res, shenyang natl lab mat sci, shenyang 110016, peoples r china.
; xu, j (reprint author), chinese acad sci, inst met res, shenyang natl lab mat sci, 72 wenhua rd, shenyang 110016, peoples r china.
; gpzhang@imr.ac.cn
J. Xu,G. P. Zhang. Fatigue Damage Behavior of Freestanding 40 mu m-Thick Nickel Foils for MEMS Applications[J]. Advanced Engineering Materials,2013,15(6):496-502.
APA
J. Xu,&G. P. Zhang.(2013).Fatigue Damage Behavior of Freestanding 40 mu m-Thick Nickel Foils for MEMS Applications.Advanced Engineering Materials,15(6),496-502.
MLA
J. Xu,et al."Fatigue Damage Behavior of Freestanding 40 mu m-Thick Nickel Foils for MEMS Applications".Advanced Engineering Materials 15.6(2013):496-502.
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