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DEVELOPING STRESS INTENSIFICATION FACTORS FOR COMPOSITE REPAIR SYSTEMS USED TO REPAIR DAMAGED PIPE

机译:用于修复损坏管道的复合修复系统的应力强化因素

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For the better part of the past 15 years composite materials have been used to repair corrosion in high pressure gas and liquid transmission pipelines. This method of repair is widely accepted throughout the pipeline industry because of the extensive evaluation efforts performed by composite repair manufacturers, operators, and research organizations. Pipeline damage comes in different forms, one of which involves dents that include plain dents, dents in girth welds and seam welds. An extensive study has been performed over the past several years involving multiple composite manufacturers that installed their repair systems on the above mentioned dent types. The test samples were pressure cycled to failure to determine the level of life extension provided by the composite materials over a set of unrepaired test samples. Several of the repaired dents in the study did not fail even after 250,000 pressure cycles had been applied at a range of 72% SMYS. The primary purpose of this paper is to present details on how Stress Intensification Factors were derived using the empirically-generated data. The results of this study clearly demonstrate the significant potential that composite repair systems have, when properly designed and installed, to restore the integrity of damaged pipelines and piping systems to ensure long-term service.
机译:为了过去15年的较好部分,复合材料已被用于修复高压气体和液体传动管道的腐蚀。这种维修方法在整个管道行业中广泛接受,因为复合修复制造商,运营商和研究组织进行了广泛的评估工作。管道损坏有不同的形式,其中一个涉及包括普通凹痕,周长焊缝和缝焊的凹痕的凹痕。过去几年进行了广泛的研究,涉及多个复合制造商,该制造商在上述凹痕类型上安装了其修复系统。测试样品循环压力以便确定由复合材料提供的一组未料测试样品提供的寿命延长水平。即使在72%的循环范围内施用250,000个压力循环,该研究中的几个修复凹痕也不会失败。本文的主要目的是提出有关使用经验生成的数据得出的压力强化因素的细节。本研究的结果清楚地展示了复合修复系统在适当设计和安装时具有的重要潜力,以恢复损坏的管道和管道系统的完整性,以确保长期服务。

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