Strength Analysis and Influence Factors Research of Carbon-Fiber Wound Composite Gas Cylinder With Aluminum Liner

Wang Zunwu, Chenghong Duan, Xiangpeng Luo
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Abstract

The carbon-fiber wound composite gas cylinder with aluminum liner is a kind of the commonly used composite material wound gas cylinder, which has the advantages of light weight, high strength and high explosion resistance, and it has been widely used in aviation, chemical industry and other industries. As the application conditions of composite gas cylinder are more and more strict, the strength requirements of composite gas cylinder are higher, and the composite layer parameters in the manufacturing process are important factors that affect the strength of composite gas cylinder. In this paper, the finite element model of a carbon-fiber wound composite gas cylinder with aluminum liner is established by using APDL (ANSYS Parametric Design Language), and the stress distribution rules of aluminum liner and composite of gas cylinder under the conditions of autofrettage pressure, zero pressure, working pressure, hydrostatic test pressure and minimum bursting pressure is studied. The strength of the gas cylinder is evaluated according to the “DOT-CFFC” Code (basic requirements for fully wrapped carbon-fiber reinforced aluminum lined cylinders). In addition, influence rules of composite layer structure of winding mode and autofrettage on the strength and bearing capacity of gas cylinder is further explored. The work could provide reference for the practical application of carbon-fiber wound composite gas cylinder with aluminum liner.
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铝衬碳纤维缠绕复合气瓶强度分析及影响因素研究
铝衬碳纤维缠绕复合气瓶是一种常用的复合材料缠绕气瓶,具有重量轻、强度高、耐爆炸等优点,在航空、化工等行业得到了广泛的应用。随着复合气瓶的应用条件越来越严格,对复合气瓶的强度要求也越来越高,而制造过程中的复合层参数是影响复合气瓶强度的重要因素。本文利用ANSYS参数化设计语言(APDL)建立了碳纤维缠绕铝衬垫复合气瓶的有限元模型,研究了自增强压力、零压力、工作压力、静水试验压力和最小爆破压力下铝衬垫和复合气瓶的应力分布规律。气瓶的强度按照《DOT-CFFC》规范(全缠绕碳纤维增强铝内衬气瓶基本要求)进行评定。此外,进一步探讨了缠绕方式和自增强复合层结构对气瓶强度和承载能力的影响规律。该工作可为铝衬碳纤维缠绕复合气瓶的实际应用提供参考。
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