详细信息

金属内胆纤维环向缠绕储氢气瓶临界疲劳循环次数影响因素探究    

Research of Influencing Factors to Critical Fatigue Cycle Number for Hydrogen Storage Cylinder Made of Metal and Wound with Fiber

文献类型:期刊文献

中文题名:金属内胆纤维环向缠绕储氢气瓶临界疲劳循环次数影响因素探究

英文题名:Research of Influencing Factors to Critical Fatigue Cycle Number for Hydrogen Storage Cylinder Made of Metal and Wound with Fiber

作者:陈泽鸿[1];黄淞[1];惠虎[1]

机构:[1]华东理工大学机械与动力工程学院,上海200237

年份:2022

卷号:59

期号:4

起止页码:1

中文期刊名:化工设备与管道

外文期刊名:Process Equipment & Piping

收录:CSTPCD;;北大核心:【北大核心2020】;

语种:中文

中文关键词:环向缠绕储氢气瓶;疲劳裂纹扩展法;临界疲劳循环次数;自紧压力;初始裂纹深度

外文关键词:hydrogen storage cylinder with hoop wound fiber outside;fatigue crack growth method;critical fatigue cycle number;autofrettage pressure;initial crack depth

摘要:目前对于采用金属内胆纤维环向缠绕的气瓶疲劳寿命影响因素研究多集中于气瓶的结构参数和工艺参数,对初始存在裂纹的探究较少。对某工作压力30 MPa的金属内胆碳纤维环向缠绕储氢气瓶进行研究,采用基于断裂力学的疲劳裂纹扩展法,结合有限元分析,对其临界疲劳循环次数进行计算,探究不同自紧压力,以及相同自紧压力下不同初始裂纹深度对金属内胆纤维环向缠绕储氢气瓶临界疲劳循环次数的影响。结果表明:(1)气瓶的临界疲劳循环次数随自紧压力的增大而增大;(2)随初始裂纹深度的减小而增加,且深度越小,临界疲劳循环次数增量越大。
Currently the research on the factors affecting the fatigue life of hydrogen storage cylinders made of inner metal shell and hoop wound fiber outside mostly focuses on the structural and process parameters of the cylinders,but less attentions on the initial cracks.In this paper,the research on a hydrogen storage cylinder made of inner metal shell and hoop wound fiber outside and with a working pressure of 30MPa was carried out.The critical fatigue cycle number of the cylinder was calculated by using the fatigue crack growth method based on fracture mechanics and finite element analysis so as to study the effects of different autofrettage pressures and different initial crack depths with the same autofrettage pressure on the critical fatigue cycle number of the cylinder.It was shown from the results that the critical fatigue cycle number of the cylinder will increase with the increase of autofrettage pressure,but decrease with the increase of initial crack depth.

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