Studying heat-affected zone deformations of electric arc welding

The paper studies the influence of the most common defects in permanent electric arc welds made during the welding butt joints in infield oil pipelines, onto the strength characteristics of the welded pipe material around the heat-affected zone. A specimen of a butt weld with an obvious defect was u...

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Published inIOP conference series. Materials Science and Engineering Vol. 327; no. 3; pp. 32053 - 32058
Main Authors Suleimanov, R I, Zainagalina, L Z, Khabibullin, M Ya, Zaripova, L M, Kovalev, N O
Format Journal Article
LanguageEnglish
Published Bristol IOP Publishing 01.03.2018
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ISSN1757-8981
1757-899X
DOI10.1088/1757-899X/327/3/032053

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Abstract The paper studies the influence of the most common defects in permanent electric arc welds made during the welding butt joints in infield oil pipelines, onto the strength characteristics of the welded pipe material around the heat-affected zone. A specimen of a butt weld with an obvious defect was used as a subject of the study. The changes in the geometric parameters of the weld were measured with the standard means; Rockwell hardness in the heat-affected zone was determined in certain areas with justification for the weld process modes. The cause of softening was found to be an increased width of the hot spot on the one side of the weld, where an enlarged crystalline structure appears as a result of the pipe material recrystallization under the influence of heat. Changes in the geometry of the thermal action area are determined by accumulation of molten filler on the one side of the weld when the welding rate is decreased. Some recommendations are given to prevent destruction of the welded structures and appearance of emergencies in infield oil pipelines.
AbstractList The paper studies the influence of the most common defects in permanent electric arc welds made during the welding butt joints in infield oil pipelines, onto the strength characteristics of the welded pipe material around the heat-affected zone. A specimen of a butt weld with an obvious defect was used as a subject of the study. The changes in the geometric parameters of the weld were measured with the standard means; Rockwell hardness in the heat-affected zone was determined in certain areas with justification for the weld process modes. The cause of softening was found to be an increased width of the hot spot on the one side of the weld, where an enlarged crystalline structure appears as a result of the pipe material recrystallization under the influence of heat. Changes in the geometry of the thermal action area are determined by accumulation of molten filler on the one side of the weld when the welding rate is decreased. Some recommendations are given to prevent destruction of the welded structures and appearance of emergencies in infield oil pipelines.
Author Kovalev, N O
Zainagalina, L Z
Khabibullin, M Ya
Zaripova, L M
Suleimanov, R I
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  organization: Ufa State Petroleum Technological University, Branch of the University in the City of Oktyabrsky , Russian Federation
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Cites_doi 10.1007/s10556-017-0350-6
10.15828/2075-8545-2017-9-5-98-115
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StartPage 32053
SubjectTerms Arc heating
Arc welding
Butt joints
Crystal defects
Heat affected zone
Petroleum pipelines
Pipelines
Recrystallization
Rockwell hardness
Welded joints
Welded pipes
Welded structures
Welding parameters
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