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Published in: Metallurgist 9-10/2024

08-03-2024

The Role of the Weld Metal Structure Formation in Selecting Rational Cooling Rates When Welding K80 Strength Grade Steel

Authors: L. A. Efimenko, A. A. Ramus, I. Yu. Utkin, N. A. Murashov, E. M. Vyshemirsky, S. P. Sevostyanov, R. Yu. Muratov

Published in: Metallurgist | Issue 9-10/2024

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Abstract

The authors studied the specifics of the kinetics of austenite decomposition in the near-weld region of the heat-affected zone, as well as the weld metal under the welding process conditions used in the construction of main gas pipelines made of promising K80 strength grade steels. An approach to selecting rational cooling rates during welding is presented.

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Literature
1.
go back to reference A. V. Konovalov, A. S. Kurkin, E. L. Makarov, V. M. Nerovnyi, and B. F. Yakushin, Theory of Welding Processes [in Russian], ed. by V. M. Nerovnyi, MGTU im. N. E. Bauman, Moscow (2007). A. V. Konovalov, A. S. Kurkin, E. L. Makarov, V. M. Nerovnyi, and B. F. Yakushin, Theory of Welding Processes [in Russian], ed. by V. M. Nerovnyi, MGTU im. N. E. Bauman, Moscow (2007).
2.
go back to reference E. L. Makarov, Theory of Weldability of Steels and Alloys [in Russian], MGTU im. N. E. Bauman, Moscow (2018). E. L. Makarov, Theory of Weldability of Steels and Alloys [in Russian], MGTU im. N. E. Bauman, Moscow (2018).
3.
go back to reference V. I. Stolyarov et al., “Weldability of high-strength steels for large-diameter gas pipelines,” Probl. Chern. Metall. and Materialoved., No. 3, 39–47 (2008). V. I. Stolyarov et al., “Weldability of high-strength steels for large-diameter gas pipelines,” Probl. Chern. Metall. and Materialoved., No. 3, 39–47 (2008).
4.
go back to reference D. A. Ringinen et al., “Study of weldability of X100 strength grade steel,” Metallurg, No. 12, 68–74 (2013). D. A. Ringinen et al., “Study of weldability of X100 strength grade steel,” Metallurg, No. 12, 68–74 (2013).
5.
go back to reference I. I. Frantov, I. L. Permyakov, and A. N. Bortsov, “Kinetics of phase transformations of austenite in the near-weld and heat-affected zones during welding of microalloyed pipe steels,” Probl. Chern. Metall. and Materialoved., No. 3, 38–45 (2011). I. I. Frantov, I. L. Permyakov, and A. N. Bortsov, “Kinetics of phase transformations of austenite in the near-weld and heat-affected zones during welding of microalloyed pipe steels,” Probl. Chern. Metall. and Materialoved., No. 3, 38–45 (2011).
6.
go back to reference L. A. Efimenko, O. Yu. Elagina, E. M. Vyshemirsky, O. E. Kapustin, A. V. Muradov, and A. K. Prygaev, Conventional and Promising Steels for the Construction of Main Gas and Oil Pipelines [in Russian], Logos, Moscow (2011). L. A. Efimenko, O. Yu. Elagina, E. M. Vyshemirsky, O. E. Kapustin, A. V. Muradov, and A. K. Prygaev, Conventional and Promising Steels for the Construction of Main Gas and Oil Pipelines [in Russian], Logos, Moscow (2011).
7.
go back to reference L. A. Efimenko, A. A. Ramus, and A. O. Merkulova, “Specifics of austenite decomposition in the heat-affected zone during welding of high-strength steels,” Fizika Metallov i Metallovedeniye, 116, No. 5, 520 (2015). L. A. Efimenko, A. A. Ramus, and A. O. Merkulova, “Specifics of austenite decomposition in the heat-affected zone during welding of high-strength steels,” Fizika Metallov i Metallovedeniye, 116, No. 5, 520 (2015).
8.
go back to reference STO Gazprom 2-4.1-713-2013, Technical Requirements for Pipes and Fittings [in Russian], Moscow (2014). STO Gazprom 2-4.1-713-2013, Technical Requirements for Pipes and Fittings [in Russian], Moscow (2014).
9.
go back to reference L. I. Efron, Metal Science in Large Metallurgy, Pipe Steels [in Russian], Metallurgizdat, Moscow (2012). L. I. Efron, Metal Science in Large Metallurgy, Pipe Steels [in Russian], Metallurgizdat, Moscow (2012).
10.
go back to reference M. Yu. Matrosov, I. V. Lyasotskii, A. A. Kichkina, D. L. Dyakonov, and A. A. Efimov, “Specifics and classification of structures of low-carbon low-alloy high-strength pipe steels,” Stal’, No. 1, 65–74 (2012). M. Yu. Matrosov, I. V. Lyasotskii, A. A. Kichkina, D. L. Dyakonov, and A. A. Efimov, “Specifics and classification of structures of low-carbon low-alloy high-strength pipe steels,” Stal’, No. 1, 65–74 (2012).
11.
go back to reference I. A. Yakubtsov and J. D. Boyd, “Bainite transformation during continuous cooling of low carbon microalloyed steel,” Materials Science and Technology, 17, No. 3, 296–301 (2001).CrossRef I. A. Yakubtsov and J. D. Boyd, “Bainite transformation during continuous cooling of low carbon microalloyed steel,” Materials Science and Technology, 17, No. 3, 296–301 (2001).CrossRef
12.
go back to reference Yu. D. Morozov, M. Yu. Matrosov, S. Yu. Nastich, and A. B. Arabey, “New generation high-strength pipe steels with ferrite-bainite structure,” Metallurg, No. 8, 39–42 (2008). Yu. D. Morozov, M. Yu. Matrosov, S. Yu. Nastich, and A. B. Arabey, “New generation high-strength pipe steels with ferrite-bainite structure,” Metallurg, No. 8, 39–42 (2008).
13.
go back to reference M. A. Smirnov, I. Yu. Pyshmintsev, and A. N. Boryakova, “On the classification of microstructures of low-carbon pipe steels," Metallurg, No. 7, 45–51 (2010). M. A. Smirnov, I. Yu. Pyshmintsev, and A. N. Boryakova, “On the classification of microstructures of low-carbon pipe steels," Metallurg, No. 7, 45–51 (2010).
14.
go back to reference D. Bai, L. Collins, and F. Hamad, “Microstructure and mechanical properties of high strength linepipe steels,” in: Materials Science and Metallurgy and Technology (MS&T), Steel Product Applications: Thermomechanical Processing, Detroit (2007), pp. 355–367. D. Bai, L. Collins, and F. Hamad, “Microstructure and mechanical properties of high strength linepipe steels,” in: Materials Science and Metallurgy and Technology (MS&T), Steel Product Applications: Thermomechanical Processing, Detroit (2007), pp. 355–367.
15.
go back to reference A.Yu. Ivanov, R.V. Sulyagin, and G.D. Motovilina, “Structure and properties of the heat-affected zone of X80 strength grade steel pipes welded with different heat input,” Metallurg, No. 6, 58–64 (2011). A.Yu. Ivanov, R.V. Sulyagin, and G.D. Motovilina, “Structure and properties of the heat-affected zone of X80 strength grade steel pipes welded with different heat input,” Metallurg, No. 6, 58–64 (2011).
16.
go back to reference L.A. Efimenko and A.A. Ramus, “Effect of structure morphology on the brittle fracture resistance of welded joints of high-strength pipe steels,” MiTOM, No. 9 (723), 41–45 (2015). L.A. Efimenko and A.A. Ramus, “Effect of structure morphology on the brittle fracture resistance of welded joints of high-strength pipe steels,” MiTOM, No. 9 (723), 41–45 (2015).
17.
go back to reference STO Gazprom 2-2.2-136-2007, Instruction on Welding Technologies for Construction and Repair of Field and Main Gas Pipelines [in Russian], Part I, Moscow (2007). STO Gazprom 2-2.2-136-2007, Instruction on Welding Technologies for Construction and Repair of Field and Main Gas Pipelines [in Russian], Part I, Moscow (2007).
Metadata
Title
The Role of the Weld Metal Structure Formation in Selecting Rational Cooling Rates When Welding K80 Strength Grade Steel
Authors
L. A. Efimenko
A. A. Ramus
I. Yu. Utkin
N. A. Murashov
E. M. Vyshemirsky
S. P. Sevostyanov
R. Yu. Muratov
Publication date
08-03-2024
Publisher
Springer US
Published in
Metallurgist / Issue 9-10/2024
Print ISSN: 0026-0894
Electronic ISSN: 1573-8892
DOI
https://doi.org/10.1007/s11015-024-01626-4

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