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X80钢级油气管道缺陷修复用B型套筒尺寸优化设计

李猛 周顺荣 王克克 李剑 崔心昱 汪珍 李研 刘鑫

压力容器2024,Vol.41Issue(3):49-58,10.
压力容器2024,Vol.41Issue(3):49-58,10.DOI:10.3969/j.issn.1001-4837.2024.03.007

X80钢级油气管道缺陷修复用B型套筒尺寸优化设计

Size optimization design of B-type sleeve for defect repair of X80 steel grade oil and gas pipeline

李猛 1周顺荣 1王克克 1李剑 1崔心昱 1汪珍 1李研 1刘鑫1

作者信息

  • 1. 国家管网集团云南公司 昆明维抢修分公司,昆明 650000
  • 折叠

摘要

Abstract

For the problems such as different requirements of domestic and foreign standards for the length,thickness,installation clearance and other parameters of B-type sleeve,and the lack of corresponding theoretical basis and experimental data on design size of B-type sleeve lacks,the simulation software was used to change the parameters of the B-type sleeve and compare and analyze the stress distribution after the installation of the sleeve under different parameters.It is found that when the length of the B-type sleeve changes in the range of 200~800 mm,the stress level on the fillet weld increases with the increase of the length of the sleeve,and the rising trend is obvious when it is greater than 600 mm.Considering the internal pressure and axial load of the sleeve in the geologically unstable area,when the thickness of the sleeve changes in the range of 17~21 mm,the stress at the fillet weld remains at a relatively low level;the installation gap of the sleeve has little effect on the stress at the fillet weld,but the axial strain at the fillet weld increases with the increase of the installation gap of the sleeve.According to the analysis results,the sleeve was trial-produced for internal pressure cycle test and bending test.No stress concentration and weld delay cracks were found in the B-type sleeve after installation,and the repair effect on pipeline penetrating defects was good.

关键词

油气管道/X80管道/B型套筒/Workbench仿真平台/优化设计

Key words

oil and gas pipelines/X80 pipeline/B-type sleeve/Workbench simulation platform/optimization design

分类

机械制造

引用本文复制引用

李猛,周顺荣,王克克,李剑,崔心昱,汪珍,李研,刘鑫..X80钢级油气管道缺陷修复用B型套筒尺寸优化设计[J].压力容器,2024,41(3):49-58,10.

压力容器

OA北大核心CSTPCD

1001-4837

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