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Fatigue Crack Propagation in Steel A131 Under Ice Loading of Crushing,Bending and Buckling

Fatigue Crack Propagation in Steel A131 Under Ice Loading of Crushing, Bending and Buckling
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摘要 Three types of ice loading, which are most commonly present when ice acts on structures, are chosen and simulated for use of fatigue crack propagation tests on offshore structural steel A131. The three types of ice categorized in accordance with the failure modes when acting on structures called Crushing ice, bending ice, and buckling ice, respectively. This paper presents an experimental investigation on the fatigue crack propagation behavior of widely used high strength steel A131 for offshore jackets in the loading environment of ice crushing, bending, and buckling. The test results of fatigue crack propagation in steel A131 tinder these simulated ice loading at temperature 292K are presented and analyzed in detail in this paper, The amplitude root mean square stress intensity factor is optimized to be the fundamental parameter of fatigue crack propagation for all types of ice loading histories. The results are also compared with constant amplitude fatigue crack propagation conclusions as in wave load mode, and a joint investigation on the results from ice forces, ice-induced vibrations, and ice-induced fatigue crack propagation is conducted. Conclusions are drawn for reference in structural design and material selection for offshore structures in ice environments. Three types of ice loading, which are most commonly present when ice acts on structures, are chosen and simulated for use of fatigue crack propagation tests on offshore structural steel A131. The three types of ice categorized in accordance with the failure modes when acting on structures called Crushing ice, bending ice, and buckling ice, respectively. This paper presents an experimental investigation on the fatigue crack propagation behavior of widely used high strength steel A131 for offshore jackets in the loading environment of ice crushing, bending, and buckling. The test results of fatigue crack propagation in steel A131 tinder these simulated ice loading at temperature 292K are presented and analyzed in detail in this paper, The amplitude root mean square stress intensity factor is optimized to be the fundamental parameter of fatigue crack propagation for all types of ice loading histories. The results are also compared with constant amplitude fatigue crack propagation conclusions as in wave load mode, and a joint investigation on the results from ice forces, ice-induced vibrations, and ice-induced fatigue crack propagation is conducted. Conclusions are drawn for reference in structural design and material selection for offshore structures in ice environments.
出处 《China Ocean Engineering》 SCIE EI 2001年第3期315-328,共14页 中国海洋工程(英文版)
基金 This research is financially supported by the National Natural Science Foundation of China (Grant No.5989410) Key Project Foundation of the Chinese Academy of Sciences China National Offshore Oil Corporation
关键词 fatigue crack crack growth rate stress intensity factor ice loading TEMPERATURE steel A131 test fatigue crack crack growth rate stress intensity factor ice loading temperature steel A131 test
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  • 1Duan Menglan Liu Chuntu Wang Weiming Postgraduate, China Classification Society, Beijing 100006 Professor, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100080.Dynamic Ice-Induced Responses of Offshore Fixed Platforms[J].China Ocean Engineering,1996,11(1):55-63. 被引量:3
  • 2柳春图,段梦兰.海冰工程中的结构力学问题[J].机械强度,1995,17(3):7-20. 被引量:21
  • 3Chung,J. S.Ice Mechanics. Applied Mechanics Reviews . 1987
  • 4Croasdale,K. R.Recent Development in Ice Mechanics and Ice Loads. Behaviour of Offshore Structures . 1985
  • 5Croasdale, KR,Frederking, R.Field Techniques for Ice Force Measurements. Proc. IAHR Symp . 1986
  • 6Duan,M. L.Low-Temperature Fatigue and Damage of Offshore Fixed Platforms under Random Ice Loadings. . 1993
  • 7Duan, M. L,Liu, C. T.Dynamic Interaction between Ice and Structures: Random Self-Excited Vibration. the Fourth National Conference on Structural Engineering . 1995
  • 8Danys, JV,Bercha, FG.Investigation of Ice Forces on a Conical Offshore Structure. Ocean Engineering . 1976
  • 9Schwarz,J. et al.Effect of Ice Thickness on Forces. Offshore Technology Conference . 1974
  • 10Sodhi,DS.Ice-Induced Vibrations of Structures. Proc. 9th Int. Symp. on Ice . 1988

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