结构工程
断裂力学
振动疲劳
船体
有限元法
强度因子
可靠性(半导体)
巴黎法
应力集中
焊接
裂缝闭合
蒙特卡罗方法
工程类
材料科学
数学
机械工程
海洋工程
统计
物理
量子力学
功率(物理)
作者
Weidong Zhao,Bernt J. Leira,Guoqing Feng,Chao Gao,Ting Cui
标识
DOI:10.1016/j.marstruc.2021.103075
摘要
Fatigue is a common failure mode in ship structures. For structures with an initial crack, the fatigue crack propagation behavior needs to be considered. The purpose of this study is to establish a procedure for analysis of fatigue crack propagation of ship structures in combination with reliability methods. The stress intensity factor (SIF) and geometry correction factor are calculated by means of finite element analysis. Validation for the SIF calculation is achieved by comparing the computed results with those based on related solutions. Since fatigue damage usually occurs in weld areas, the effect of such components on the fatigue crack propagation behavior was also considered in this work. The Paris law in combination with the Monte Carlo technique are employed for the fatigue crack propagation analysis in this study. Reliability updating based on inspection for cracks is also carried out. A computer program was developed for the purpose of fatigue crack propagation analysis within the framework of reliability methods. An application example of fatigue crack propagation in relation to the hull of the icebreaker Xuelong 2 is presented. The sensitivity of the procedure to key analysis parameters (sample size, initial crack size) is also considered. Finally, the effect of low temperatures on the computed results is also analyzed.
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