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Analysis of ultimate pressure of corroded subsea pipe repaired with composite considering temperature and material degradation

机译:考虑温度和材料降解的复合材料修复海底管道腐蚀极限压力分析

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Corroded subsea pipe repaired with composite material is more and more used because of its low cost, simple process and short time, but the repair effect will be affected by factors such as temperature and material degradation. To study the law of the effect, the finite element method is used to analyze ultimate loads on repaired pipe by considering the factors of temperature and material degradation. The results show that the ultimate yielding and bursting pressure decreases with the increase in temperature for both the defect pipe and repaired pipe under temperature and internal pressure. The ultimate pressures are larger when both ends of the pipe are fixed comparing with one end is free, but they also decrease faster as the temperature increases. Experiments show that elastic modulus and glass transition temperature of composite will decrease when exposed to prolonged seawater and high temperature. The degradation of composite repair layer performance has a great effect on the ultimate pressure of pipe, and the failure of the repair area will be caused under long-time harsh environment. In this paper, the design repair thickness of composite is obtained, which could improve the repair efficiency of corroded pipes and reduce cost as well.
机译:复合材料修复的腐蚀海底管由于成本低,工艺简单,时间短而越来越多地被使用,但是修复效果会受到温度和材料降解等因素的影响。为了研究其影响规律,在考虑温度和材料降解因素的情况下,采用有限元方法对修复后的管道的极限载荷进行分析。结果表明,在温度和内压作用下,缺陷管和修复管的最终屈服和爆破压力均随温度的升高而降低。与两端自由时相比,当两端固定时极限压力较大,但随着温度升高,极限压力也会更快下降。实验表明,暴露于长时间的海水和高温下,复合材料的弹性模量和玻璃化转变温度会降低。复合修复层性能的下降对管道的极限压力有很大的影响,在长期的恶劣环境下会导致修复区域的失效。本文获得了复合材料的设计修复厚度,可以提高腐蚀管道的修复效率,降低成本。

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