李荣光, 冯庆善, 王学力, 刘悦, 王春明, 陈哲, 张晓春, 刘加春. B型全封闭钢质套筒修复技术改进[J]. 油气储运, 2010, 29(10): 755-758. DOI: 10.6047/j.issn.1000-8241.2010.10.009
引用本文: 李荣光, 冯庆善, 王学力, 刘悦, 王春明, 陈哲, 张晓春, 刘加春. B型全封闭钢质套筒修复技术改进[J]. 油气储运, 2010, 29(10): 755-758. DOI: 10.6047/j.issn.1000-8241.2010.10.009
LI Rongguang, FENG Qingshan, WANG Xueli, . Improvement on Remediation Technology for Type B Full-encirclement Steel Sleeves[J]. Oil & Gas Storage and Transportation, 2010, 29(10): 755-758. DOI: 10.6047/j.issn.1000-8241.2010.10.009
Citation: LI Rongguang, FENG Qingshan, WANG Xueli, . Improvement on Remediation Technology for Type B Full-encirclement Steel Sleeves[J]. Oil & Gas Storage and Transportation, 2010, 29(10): 755-758. DOI: 10.6047/j.issn.1000-8241.2010.10.009

B型全封闭钢质套筒修复技术改进

Improvement on Remediation Technology for Type B Full-encirclement Steel Sleeves

  • 摘要: 我国东部管网老化严重, 大量螺旋焊缝和环焊缝缺陷需要采用套筒修复。传统B型套筒修复技术, 由于焊缝余高的存在, 套筒与管壁的安装贴合度差, 同时对焊缝顶部产生的集中作用力, 促使裂纹继续扩展, 使修复质量大打折扣。基于软件模拟和力学分析研制了新型凸式B型套筒, 在筒壁预留焊缝凹槽, 安装时通过凹槽过渡焊缝, 解决了传统B型套筒与缺陷管体结合贴合度低、焊接难度高、修复质量差等问题。新型凸式B型套筒修复管件的爆破压力达到14MPa, 远高于管体的实际运行压力和屈服压力。

     

    Abstract: Because of serious aging problem existed in Eastern Oil Pipelines Networks, a lot of defects in circular welds and spiral welds need to be repaired by sleeve way Traditional type B sleeve is not suitable to eliminate this kind of defects due to the wetd reinforcement and low tightness between the sleeve and pipe wall, and meanwhile, concentrated interaction force will effect on welds' top, which result in a poor repair quality and crack growing, Based on software simulation and mechanical analysis, a new type B convex sleeve is developed whose wall reserves weld groove which can transfer the welds when it is installed, therefore, the problems in low tightness between the traditional type B sleeve and pipe body with defects, the high difficulty in welding and poor repair quality for the traditional type B sleeve are solved, The bursting-proof capacity of pipe repaired by this new type B convex sleeve can reach to 14 MPa, which is much higher than the practical operating pressure and yield pressure of the pipe.

     

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