王雅芬, 李荣光, 冯少广, 李莹, 张鑫, 李睿, 王春明. CFRP修复城市燃气管道焊缝缺陷的可行性[J]. 油气储运, 2012, 31(9): 674-677. DOI: 10.6047/j.issn.1000-8241.2012.09.007
引用本文: 王雅芬, 李荣光, 冯少广, 李莹, 张鑫, 李睿, 王春明. CFRP修复城市燃气管道焊缝缺陷的可行性[J]. 油气储运, 2012, 31(9): 674-677. DOI: 10.6047/j.issn.1000-8241.2012.09.007
WANG Yafen, LI Rongguang, FENG Shaoguang, LI Ying, ZHANG Xin, LI Rui, WANG Chunming. Feasibility of repairing urban gas pipeline weld defects by CFRP[J]. Oil & Gas Storage and Transportation, 2012, 31(9): 674-677. DOI: 10.6047/j.issn.1000-8241.2012.09.007
Citation: WANG Yafen, LI Rongguang, FENG Shaoguang, LI Ying, ZHANG Xin, LI Rui, WANG Chunming. Feasibility of repairing urban gas pipeline weld defects by CFRP[J]. Oil & Gas Storage and Transportation, 2012, 31(9): 674-677. DOI: 10.6047/j.issn.1000-8241.2012.09.007

CFRP修复城市燃气管道焊缝缺陷的可行性

Feasibility of repairing urban gas pipeline weld defects by CFRP

  • 摘要: 焊缝缺陷是城市燃气管道一种常见的缺陷类型,严重降低管道的承压能力,进而影响管道的安全运行。管道缺陷CFRP修复技术作为一种新型免焊管体修复技术,具有施工方法简单、无需动火、修复效果优异等特点。分析了CFRP修复城市燃气管道焊缝缺陷的可行性:依据力学理论计算结果,要抵抗焊缝完全开裂时管道断裂产生的轴向剪切力,焊缝的CFRP的单边铺设长度不小于287 mm;全尺寸爆破试验、压力波动试验以及模拟管道带压弯曲应力试验结果表明,修复后的管道可完全恢复承压能力,并具有优异的耐压力波动性能和抗弯曲应力性能。应用研究表明,CFRP修复技术存在局限性,无法修复缺陷程度超过80%及泄漏型的管道缺陷。

     

    Abstract: Weld defects are common in long-distance pipelines, which severely reduce loading capacity of pipelines further affect safe operation ofthe pipelines. CFRP (carbon fiber composite) repair technology is a new welding-free pipeline repair technology, with simple construction method, hot work free, excellent repair effect and other characteristics. Feasibility of weld defects repairing for long-distance pipeline by carbon fiber composite is analyzed. In accordance with calculation results based on mechanical theory, unilateral laying length of weld carbon fiber composite shall not be less than 287 mm to axial shear force caused by the pipeline rupture when the weld is cracked completely.The results of full-scale burst testing, pressure fluctuation testing and simulated bending stress testing of pipeline under pressure show thant the repaired pipeline can completely restore loading capacity and have excellent resistance to pressure fluctuations and bending stress.However, due to the limitations of carbon fiber composite repair technology itself, defects of more than 80% and pipeline leakage defects can not be repaired.

     

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