[1]许贵芝 编译.大直径输气管道焊接热循环的复制研究[J].焊管,2014,37(9):69-72.[doi:1001-3938(2014)09-0069-04]
 Edited and Translated by XU Guizhi.Research on Welding Thermal Cycle Replication of Large Diameter Gas Pipeline[J].,2014,37(9):69-72.[doi:1001-3938(2014)09-0069-04]
点击复制

大直径输气管道焊接热循环的复制研究
分享到:

《焊管》[ISSN:1001-3938/CN:61-1160/TE]

卷:
37
期数:
2014年第9期
页码:
69-72
栏目:
经验交流
出版日期:
2014-09-28

文章信息/Info

Title:
Research on Welding Thermal Cycle Replication of Large Diameter Gas Pipeline
文章编号:
1001-3938(2014)09-0069-04
作者:
许贵芝 编译
(南京航空附件厂,南京 210002)
Author(s):
Edited and Translated by XU Guizhi
(Nanjing Aviation Accessories,Nanjing 210002,China)
关键词:
焊管输气管道大直径焊接热循环t8/5
Keywords:
welded pipegas pipelinelarge diameterwelding thermal cyclet8/5
分类号:
TE973
DOI:
1001-3938(2014)09-0069-04
文献标志码:
A
摘要:
为了研究影响试样和钢管焊接热循环参数的主要因素,乌克兰巴顿焊接研究所进行了一系列大直径输气管道焊接热循环的复制研究试验,提出了3种试验台上固定试样的方法。研究结果表明,所有规格的大直径输气管道焊缝的焊接热循环参数t8/5都可以用宽度200 mm以上的试样焊接复制,小宽度的试件则取决于焊接线能量和试件厚度的比例大小,管道在较高的初始温度下焊接后,焊缝金属的冲击韧性会有所降低。
Abstract:
In order to study the main factors affecting welding thermal cycle of specimen and steel pipe, a serious of replication studies were conducted for welding thermal cycle of large diameter gas pipeline in Ukraine Barton Welding Research Institute, and 3 kinds of fixing sample methods on test bed were put forward. The results indicated that the welding thermal cycle parameter t8/5 of all sizes of large diameter gas pipeline weld can copy by using the sample with width more than 200 mm, the specimen with small width depends on the welding energy and proportion to the specimen thickness. After welding under higher initial temperature, the impact toughness of weld metal will be decreased.

相似文献/References:

[1]马海君.强力焊管的孔型设计[J].焊管,2007,30(4):56.[doi:1001-3938(2007)04-0056-02]
 MA Hai-jun.Pass Design of High-strength Welded Pipe[J].,2007,30(9):56.[doi:1001-3938(2007)04-0056-02]
[2]刘庆才,李 东,黎剑锋.影响输气管线钢管抗H2S性能主要因素的探讨[J].焊管,2007,30(5):54.[doi:1001-3938(2007)05-0054-05]
 LIU Qing-cai,LI Dong,LI Jian-feng.Key Factors Affecting Sour Service Ability of Welded Pipe and Its Domestic Production[J].,2007,30(9):54.[doi:1001-3938(2007)05-0054-05]
[3]黄志潜.遵循正确的技术方向 合理确定西气东输二线技术方案[J].焊管,2007,30(6):5.[doi:1001-3938(2007)06-0005-06]
 HUANG Zhi-qian.Rationally Design the Technical Parameters for the Second WEGP Project Based on the Verified Developing Trend of Technology[J].,2007,30(9):5.[doi:1001-3938(2007)06-0005-06]
[4]Satoshi IGI 伊木.中国西气东输二线管道延性断裂分析(一)[J].焊管,2008,31(2):23.[doi:1001-3938(2008)02-0023-04]
 Satoshi IGI.Analysis on Ductile Fracture of the Second West to East Gas Pipeline Project[J].,2008,31(9):23.[doi:1001-3938(2008)02-0023-04]
[5]Satoshi IGI 伊木.中国西气东输二线管道延性断裂分析(二)[J].焊管,2008,31(3):33.[doi:1001-3938(2008)03-0033-06]
 Satoshi IGI.Analysis on Ductile Fracture of the Second West to East Gas Pipeline Project[J].,2008,31(9):33.[doi:1001-3938(2008)03-0033-06]
[6]彭在美.我国焊接钢管的发展进入重要的战略转折期[J].焊管,2008,31(6):5.[doi:1001-3938(2008)06-0005-10]
 PENG Zai-mei.The Development of China Welded Pipe Steps into the Important Strategic Transition Period[J].,2008,31(9):5.[doi:1001-3938(2008)06-0005-10]
[7]李霄,熊庆人,石凯,等.焊管残余应力研究进展及展望[J].焊管,2009,32(7):12.[doi:1001-3938(2009)07-0012-06]
 LI Xiao,XIONG Qing-ren,SHI Kai,et al.Research Progress and Prospect of Residual Stress in Welded Pipe[J].,2009,32(9):12.[doi:1001-3938(2009)07-0012-06]
[8]马 露 涛.φ720mm焊管平头机夹管装置设计[J].焊管,2009,32(9):47.[doi:1001-3938(2009)09-0047-03]
 MA Lu-tao.Design for φ720mm Welded Pipe Beveling Machine Clamp Pipe Device[J].,2009,32(9):47.[doi:1001-3938(2009)09-0047-03]
[9]耿开博.铝管、不锈钢管的高频感应焊接[J].焊管,2009,32(11):29.[doi:1001-3938(2009)11-0029-03]
 GENG Kai-bo.High-frequency Induction Welding of Aluminum and Stainless Steel Pipes[J].,2009,32(9):29.[doi:1001-3938(2009)11-0029-03]
[10]陈志翔,Jean Paul Boillot,Jeff Noruk.数字激光视觉技术在焊管生产中的应用[J].焊管,2010,33(2):29.[doi:1001-3938(2010)02-0029-04]
 CHEN Zhi-xiang,Jean Paul Boillot,Jeff Noruk.Application of Digital Laser Vision Technology in Welded Pipe Production[J].,2010,33(9):29.[doi:1001-3938(2010)02-0029-04]
[11]谢航超.输气管道内减阻涂料黏度对钢管内喷涂的影响[J].焊管,2014,37(8):59.[doi:1001-3938(2014)08-0059-04]
 XIE Hangchao.Influence on Steel Pipe internal Coating of Internal Resistance-reducing Coating Viscosity for Gas Pipeline[J].,2014,37(9):59.[doi:1001-3938(2014)08-0059-04]
[12]杨继平,毛浓召,杜 华,等.输气管道内壁无溶剂内减阻环氧涂层的应用研究[J].焊管,2015,38(1):33.[doi:1001-3938(2015)01-0033-05]
 YANG Jiping,MAO Nongzhao,DU Hua,et al.Study on the Application of Solvent-free Inner Resistance-reducing Epoxy Coating Used in Gas Pipeline Internal Wall[J].,2015,38(9):33.[doi:1001-3938(2015)01-0033-05]

备注/Memo

备注/Memo:
收稿日期:2014-02-18
译者简介:许贵芝,男,高级工程师,南京市焊接学会前委员,长期从事俄文的翻译工作。
更新日期/Last Update: