Комплексная демагнетизация труб при электродуговой сварке

The selectivity and efficacy of methods of demagnetization of joined for welding magnetized large-diameter pipes are investigated. It is determined that integrated demagnetization of pipes during repair works on main pipelines, which represents the sequential use of methods of degaussing and compens...

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Published in:Технічна електродинаміка
Date:2012
Main Authors: Волохов, С.А., Добродеев, П.Н., Мамин, Г.И.
Format: Article
Language:Russian
Published: Інститут електродинаміки НАН України 2012
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Online Access:https://nasplib.isofts.kiev.ua/handle/123456789/62068
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Journal Title:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Cite this:Комплексная демагнетизация труб при электродуговой сварке / С.А. Волохов, П.Н. Добродеев, Г.И. Мамин // Технічна електродинаміка. — 2012. — № 4. — С. 19–24. — Бібліогр.: 9 назв. — pос.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
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author Волохов, С.А.
Добродеев, П.Н.
Мамин, Г.И.
author_facet Волохов, С.А.
Добродеев, П.Н.
Мамин, Г.И.
citation_txt Комплексная демагнетизация труб при электродуговой сварке / С.А. Волохов, П.Н. Добродеев, Г.И. Мамин // Технічна електродинаміка. — 2012. — № 4. — С. 19–24. — Бібліогр.: 9 назв. — pос.
collection DSpace DC
container_title Технічна електродинаміка
description The selectivity and efficacy of methods of demagnetization of joined for welding magnetized large-diameter pipes are investigated. It is determined that integrated demagnetization of pipes during repair works on main pipelines, which represents the sequential use of methods of degaussing and compensation, allows to reliably reduce the magnetic field in the weld area to the level which does not adversely affect the welding process.
first_indexed 2025-11-30T11:25:18Z
format Article
fulltext ISSN 1607-7970. . . 2012. 4 19 537.624.7: 621.318 . 1, , . 1, , . 2, , 1 , . , 19, 72, , 61106, , 2 « », . , 21, , 61001, . - . , - , , , - . . 9, . 2, . 6. : , , , , , . . , - , - , , - « » . - , - [1,8]. 100 150 , , - , 6 [1,6]. - 25. - - . , , - ( ) , . , - , , , - . - . , , ( ) - , . - , . , , » - ( ) . - , - [7,9], - , . - . , , © ., ., ., 2012 20 ISSN 1607-7970. . . 2012. 4 . - ( ) . , 5÷10, - 25÷100, . . . [7] - . , - , - . - , - [1]. - . . [5] ( ) [2]. – 0 , = 0 = 0. ( 2725-94. . .) - , , . , , . - , - [3]. - , , - , . – - , - . - , - . . - - , , , - [6]. . - , 17 10 , 1220 , 16 . - , . 100–150 - - 16 2 2 20 , 8 7 5 6 3 4 2 Z Y 1 Bx . 1 ISSN 1607-7970. . . 2012. 4 21 . . 1, . Bx - , ». ±1999 2,5%. , , , - . , , - . . K, , – 10 . (10 ), ( ) . . - 2 .1. 1 ( - ), - , . - ( ) [4] . 2. ) ( ) , - =10 ( K) (10)/ (10) = 5,3. - ) = 5,3· ( ). - 3 . 1 2 . 2. , , 6,5 . : – - - , - ; – - : ( ), - . - . 3 . 2. 4 , - 6,5 ), . 2. 2 - - . 3 - ( , . "O") ( , . ") . . 2 . 3 , . . 1 2 3 4 5 6 7 8 , 13,3 12,2 11,4 10 11,4 14 13,3 12,2 13,3 , 5,2 6,3 7,9 10 7,9 4,3 5,2 6,3 5,2 . 1 2 3 4 5 6 7 8 , 5,2 6,3 7,9 10 7,9 4,3 5,2 6,3 5,2 , 140 120 110 90 70 80 80 120 140 , 128 118 120 111 76 68 73 118 128 , +30 +20 +10 0 -20 -30 -20 +20 +30 , 20 19 15 12 14 16 18 19 20 (40), +2,4 -0,2 -2,6 -3 -3,6 -3,4 -2,8 -0,2 +2,4 . 2 40 50 60 70 80 90 100 2 3 4 5 6 7 8 9 10 , , 22 ISSN 1607-7970. . . 2012. 4 , , - . - 30% . - - , , , . 1. , - , , - , , - . - , . 3, . - 200 5 . 2, . 4 – ( , - . "O") - ( , . " "). - =140/30=4,7. , 6 [1]. , . : . - ( ) – 9,4 ; – 1,2; . – 0,6 ; – 20 ( 10 ). - 6 . 2, . 5 – - ( , . "O") - ( , . " "). , - 7 , – 9 . « » , - , - . - , , - . - : 5 . - . ( ) ( ). - 7 . 2 . 6, : – - ( 1); (40) – 0 20 40 60 80 100 120 140 160 1 2 3 4 5 6 7 8 Bx , . 3 . 4 -40 -20 0 20 40 60 80 100 120 140 160 1 2 3 4 5 6 7 8 Bx , 0 20 40 60 80 100 120 140 160 1 2 3 4 5 6 7 8 Bx , . 5 ISSN 1607-7970. . . 2012. 4 23 40 ( 2). 6, =140/3,6=39, . - - . , ( 25) - . - , - 7 , , - 6 . , - , , , , - . » « » . . - , - , - , - . 1. ., ., . // , . – 2004. – 10. – . 11–13. 2. . - // . – 2005. – 2. – . 12–17. 3. ., ., . - // . " - ". – 2010. – .2. – . 9–12. 4. . - // . " ". – 2002. – .2. – . 92–95. 5. ., . - // . – 1999. – 1. – . 22–27; – 2. – . 7–13. 6. ., ., . // - . – 2010. – 3. – . 3–7. 7. ., ., ., ., ., . // . – 2006. – 4. – . 55–59. 8. ., ., . // . – 2009. – 8. – . 25–30. 9. Dobrodeiev P., Volokhov S., Kildishev A. Magnetically quiet shipboard-type electrical equipment: methods in design and manufacturing // IEEE Oceanic Engineering Society. OCEANS'98. Conference Proceedings Nice, France. 28 Sept.-1 Oct. 1998. (Cat. No.98CH36259). IEEE. New York, NY, USA. – 1998. – Vol.3. – Pp. 1468–72. . 6 -5 5 15 25 1 2 3 4 5 6 7 8 B x, 24 ISSN 1607-7970. . . 2012. 4 537.624.7: 621.318 1, , 2, , 3, , 1,2 – , . , 19, 72, , 61106, , 3 – « », . , 21, , 61001, . . , - , , - , - . . 9, . 2, . 6. : , , , , - , . INTEGRATED DEMAGNETIZATION OF PIPES AT ARC WELDING S.A.Volokhov1, P.N.Dobrodeiev1, G.I.Mamin2, 1 – Science and Technology of Magnetism of Technical Objects, National Academy of Sciences of Ukraine, 19 Industrialna st., PO Box 72, Kharkiv, 61106, Ukraine, 2 – Association «Kharkovneftemash», 21 Marshala Koneva st., Kharkiv, 61106, Ukraine. The selectivity and efficacy of methods of demagnetization of joined for welding magnetized large-diameter pipes are investigated. It is determined that integrated demagnetization of pipes during repair works on main pipelines, which represents the sequential use of methods of degaussing and compensation, allows to reliably reduce the magnetic field in the weld area to the level which does not adversely affect the welding process. References 9, tables 2, figures 6. Key words: main pipelines, arc welding, demagnetization, degaussing, compensation, efficacy. 1. Volokhov S.A., Dobrodeiev P.N., Mamin G.I. Demagnetization of pipes on main pipelines for high quality welding // Remont, vosstanovlenie i modernizatsiia. – 2004. – 10. – Pp. 11–13. (Rus) 2. Volokhov S.A. Evaluation of the magnetic state of ferromagnetic structure using the phase diagrams method // Tekhnichna elektrodynamika. – 2005. – 2. – Pp. 12–17. (Rus) 3. Volokhov S.A., Dobrodeiev P.N., Derkach V.V. Stability of statically demagnetized states of the ferromag- netic structure // Tekhnichna elektrodynamika. Tematychnyi vypusk "Problemy suchasnoi elektrotekhniky". – 2010. – Vol.2. – Pp. 9–12. (Rus) 4. Volokhov S.A. Electromagnetic processing of pipes on the main pipelines for high quality welding // Tekhnichna elektrodynamika. Tematychnyi vypusk "Problemy suchasnoi elektrotekhniky". – 2002. – Vol.2. – Pp. 92– 95. (Rus) 5. Zirka S.E., Moroz Yu.I. Modelling of magnetic hysteresis based on generalized rules of Madelung // Tekhnichna elektrodynamika. – 1999. – 1. – Pp. 22–27; – 2. – Pp. 7–13. (Rus) 6. Zirka S.E., Moroz Yu.I., Moroz E.Yu. Inverse model of magnetic hysteresis // Tekhnichna elektrodynamika. – 2010. – 3. – Pp. 3–7. (Rus) 7. Rozov V.Yu., Piliugina O.Yu., Lupikov V.S., Dobrodeiev P.N., Getman A.V., Volokhov S.A. Introduction to demagnetization of technical objects // Elektrotekhnika i elektromekhanika. – 2006. – 4. – Pp. 55–59. (Rus) 8. Tretiakov I.V., Rigmant M.B., Scherbinin V.E. Ways to improve the quality of welding of gas pipelines through the preliminary removal of the residual of the magnetization // Defektoskopiia. – 2009. – 8. – . 25–30. (Rus) 9. Dobrodeiev P., Volokhov S., Kildishev A. Magnetically quiet shipboard-type electrical equipment: methods in design and manufacturing // IEEE Oceanic Engineering Society. OCEANS'98. Conference Proceedings Nice, France. 28 Sept.-1 Oct. 1998. (Cat. No.98CH36259). IEEE. New York, NY, USA. – 1998. – Vol.3. – Pp. 1468–72. 25.01.2012 Received 25.01.2012
id nasplib_isofts_kiev_ua-123456789-62068
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
issn 0204-3599
language Russian
last_indexed 2025-11-30T11:25:18Z
publishDate 2012
publisher Інститут електродинаміки НАН України
record_format dspace
spelling Волохов, С.А.
Добродеев, П.Н.
Мамин, Г.И.
2014-05-16T06:37:34Z
2014-05-16T06:37:34Z
2012
Комплексная демагнетизация труб при электродуговой сварке / С.А. Волохов, П.Н. Добродеев, Г.И. Мамин // Технічна електродинаміка. — 2012. — № 4. — С. 19–24. — Бібліогр.: 9 назв. — pос.
0204-3599
https://nasplib.isofts.kiev.ua/handle/123456789/62068
537.624.7: 621.318
The selectivity and efficacy of methods of demagnetization of joined for welding magnetized large-diameter pipes are investigated. It is determined that integrated demagnetization of pipes during repair works on main pipelines, which represents the sequential use of methods of degaussing and compensation, allows to reliably reduce the magnetic field in the weld area to the level which does not adversely affect the welding process.
ru
Інститут електродинаміки НАН України
Технічна електродинаміка
Теоретична електротехніка та електрофізика
Комплексная демагнетизация труб при электродуговой сварке
Integrated demagnetization of pipes at arc welding
Article
published earlier
spellingShingle Комплексная демагнетизация труб при электродуговой сварке
Волохов, С.А.
Добродеев, П.Н.
Мамин, Г.И.
Теоретична електротехніка та електрофізика
title Комплексная демагнетизация труб при электродуговой сварке
title_alt Integrated demagnetization of pipes at arc welding
title_full Комплексная демагнетизация труб при электродуговой сварке
title_fullStr Комплексная демагнетизация труб при электродуговой сварке
title_full_unstemmed Комплексная демагнетизация труб при электродуговой сварке
title_short Комплексная демагнетизация труб при электродуговой сварке
title_sort комплексная демагнетизация труб при электродуговой сварке
topic Теоретична електротехніка та електрофізика
topic_facet Теоретична електротехніка та електрофізика
url https://nasplib.isofts.kiev.ua/handle/123456789/62068
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AT dobrodeevpn kompleksnaâdemagnetizaciâtrubpriélektrodugovoisvarke
AT mamingi kompleksnaâdemagnetizaciâtrubpriélektrodugovoisvarke
AT volohovsa integrateddemagnetizationofpipesatarcwelding
AT dobrodeevpn integrateddemagnetizationofpipesatarcwelding
AT mamingi integrateddemagnetizationofpipesatarcwelding