A Prediction of Crack Propagation Rate under Random Loading

랜덤하중에서의 균열전파속도 추정법에 관한 연구

  • Published : 1994.12.01

Abstract

Under variable amplitude loading conditions, retardation or accelerated condition of fatigue crack growth occurs with every cycle, Because fatigue crack growth behavior varied depend on load time history. The modeling of stress amplitude with storm loading acted to ships and offshore structures applied this paper. The crack closure behavior examine by recording the variation in load-strain relationship. By taking process mentioned above, fatigue crack growth rate, crack length, stress intensity factor, and crack closure stress intensity factor were obtained from the stress cycles of each type of storm ; A(6m), B(7m), C(8m), D(9m), E(11m) and F(15m) which was wave height. It showed that the good agreement with between the experiment results and simulation of storm loads. So this estimated method of crack propagtion rate gives a good criterion for the safe design of vessels and marine structure.

Keywords

References

  1. Journal of Basic Engineering Crack Propagation in Thin Metal Sheet under Repeated Loading H.W.Liu
  2. Transactions of the ASME Design Aspects of High-Temperature Fatigue With Particular Reference to Thermal Stress L.F.Coffin,J.R.;Schenectady,N.Y.
  3. Transactions of the ASME A Critical Analysis of Crack Propagation Laws P.Paris;F.Erdogan
  4. J. Mech. Phys. Solids v.8 Yielding of Steels Containing Slits D.S.Dugdale
  5. J. of Soc. of the Nav. Arch. of Japan v.144 A Study of Cumulative Damage in Fatigue by Block Loading with P-Distribution Iida,K.;Kaneko,A.
  6. 韓國海洋工學會誌 v.3 no.1 p分布 블럭荷重에 依한 人工海水中의 腐蝕疲勞强度特性에 關한 硏究 表東根;高柱石
  7. Fatigue of Engineering Materials and Structures v.1 Cumulative Fatigue Damage under Random Loads H.Okamura;S.Sakai;I.Susuki
  8. J. of Soc. of the Nav. Arch. of Japan v.163 Studies on the Fatigue Crack Growth under Random Loading(2nd Report) Yasumitsu Tomita;Kiyoshi Hashimoto;Hajime Sakata
  9. ISOPE v.4 Statistical Characteristics of Wave-Induced Load and Simulation Method of Wave Loading Pattern for Fatigue design Yasumitsu Tomita;H.K.;T.F.
  10. Stress Intensity Factors Handbook v.1 The Society of Material Science