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단일과대하중에 의한 피로균열전파의 지연거동
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  • 단일과대하중에 의한 피로균열전파의 지연거동
  • Retardation of Fatigue Crack Propagation by Single Overloading
저자명
김상철,함경춘,강동명
간행물명
한국산업안전학회지
권/호정보
1992년|7권 1호|pp.20-29 (10 pages)
발행정보
한국안전학회
파일정보
정기간행물|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Effects of strain hardening exponents on the retardation behavior of fatigue crack propagation are experimentally investigated. The retardation of fatigue crack propagation seems to be induced by the crack closure at crack tip. The phenomenon of crack closure becomes remarkable with the increment of strain hardening exponent and magnitude of percent peak load. The ratio of crack growth increment(a$\_$d//w$\_$d/) is influenced by a single overloading (a$\_$d/) and estimated plastic zone size (W$\_$d/=2r$\_$y/) is increased according with the increasing of strain ha.dening exponents. The number of retarded crack growth cycles were (N$\_$d/) decreased as the baseline stress intensity factor .ange( K$\_$b/) was increased. Within the limitation of these experimental results obtained under the single overload, an empirical relation between crack retardation ratio (Nd/N*), strain hardening exponent (n) and percent peak load (%PL) has been proposed as; Nd/N*= exp [PL $.$ PL$.$A(n)+B(n) ] where, A(n)=${alpha}$n+${eta}$, B(n)=${gamma}$n+$delta$, PL=%PL/100 and ${alpha}$=0.78, ${eta}$=0.54, ${gamma}$=0.58 and $delta$=-0.01, It is interesting to note that all these constants are identical for materials such as aluminum(A3203), steel(S4SC), steel(SS41) and stainless steel(SUS316) used in this experimental study.