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聚乙烯燃气管道电熔接头熔区应力分析
引用本文:胡安琪,聂新宇,姚登樽,陈贤朋,郑津洋,施建峰.聚乙烯燃气管道电熔接头熔区应力分析[J].压力容器,2019(5):21-28,20.
作者姓名:胡安琪  聂新宇  姚登樽  陈贤朋  郑津洋  施建峰
作者单位:浙江大学能源工程学院;中国石油天然气管道科学研究院有限公司;浙江庆发管业科技有限公司;高压过程装备与安全教育部工程研究中心
基金项目:国家自然科学基金项目(51575480,51842501);中央高校基本科研业务费专项资金项目(2017FZA4012)
摘    要:电熔焊接是聚乙烯管道最常用的连接方法之一,电熔接头的设计对管道系统安全至关重要。电熔接头焊接界面应力分布的准确分析是电熔接头设计的基础。采用理论公式推导和有限元分析相结合的方法,研究电熔接头在内压、轴向力和温度变化作用下的应力分布情况,发现接头焊接界面应力分布呈现中间小、两边大的规律。定义端部应力集中系数为界面峰值应力与平均应力的比值,分析得到应力集中系数随熔区长度的关系,结果可为基于内压与轴向力的电熔接头熔区设计提供理论参考。

关 键 词:聚乙烯管  电熔接头  熔区长度  应力分布

Stress Analysis of Fusion Zone of Electrofusion Joint of Polyethylene Gas Pipeline
Hu Anqi,Nie Xinyu,Yao Dengzun,Chen Xianpeng,Zheng Jinyang,Shi Jianfeng.Stress Analysis of Fusion Zone of Electrofusion Joint of Polyethylene Gas Pipeline[J].Pressure Vessel Technology,2019(5):21-28,20.
Authors:Hu Anqi  Nie Xinyu  Yao Dengzun  Chen Xianpeng  Zheng Jinyang  Shi Jianfeng
Affiliation:(College of Energy Engineering,Zhejiang University,Hangzhou 310027,China;Pipeline Research Institute,CNPC,Langfang 065000,China;Zhejiang Qingfa Pipe Technology Co.,Ltd.,Yuyao 315400,China;High-pressure Process Equipment and Safety Engineering Research Center Ministry of Education,Hangzhou 310027,China)
Abstract:Electrofusion (EF) is one of the most common methods for connecting polyethylene(PE) pipes.Proper design of EF joint is crucial for the safety of the piping system.Accurate analysis of the stress distribution at interface of the EF joint is the basis for design of joint.In this paper,the method of combination of theoretical formula calculation and finite element analysis (FEA) was used to study the stress distribution of EF joint under variable internal pressure,axial force and temperature.It was found that the stress distributed at the welding interface was small in the middle and large on both sides.The edge stress concentration factor was defined as the ratio of peak stress to average stress of the interface.The relationship between the edge stress concentration factor and fusion zone length was obtained by analysis.The results can provide a theoretical reference for design of fusion zone length of the electrofusion joint based on internal pressure and axial force.
Keywords:polyethylene pipes  electrofusion joint  fusion zone length  stress distribution
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