Vanadium Dispersion Strengthening of Low-Carbon Pipe Steels

被引:0
作者
Naumenko V.V. [1 ]
Bagmet O.A. [1 ]
Matrosov M.Y. [2 ]
Khlybov O.S. [1 ]
Kichkina A.A. [2 ]
Dyakonov D.L. [2 ]
机构
[1] JSC Vyksa Metallurgical Plant, Vyksa, 607060, Nizhny Novgorod oblast
[2] Bardin Central Research Institute of Ferrous Metallurgy, Moscow
关键词
casting and rolling complex; dispersion hardening; low-carbon microalloyed steels; mechanical properties; microstructure; nitrogen; strengthening mechanisms; vanadium;
D O I
10.3103/S0967091219090080
中图分类号
学科分类号
摘要
Abstract: The research results of the nitrogen and vanadium influence on the microstructure, fine structure formation and mechanical properties of low-carbon steel pipe are considered. It is shown that it is possible to obtain cold-resistant mill products with strength classes from K48 to K60 with high (26–29%) percentage of elongation by dispersion hardening due to the precipitation of vanadium particles together with hardening of a manganese solid solution in the conditions of the Vyksa Metallurgical Plant casting and rolling complex. © 2019, Allerton Press, Inc.
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页码:642 / 648
页数:6
相关论文
共 9 条
[1]  
Naumenko V.V., Bagmet O.A., Muntin A.V., Et al., Casting ad rolling complex: Microalloying of pipe steels in order to produce cold-resistant coiled rolled product, (Development of Steel Rolled Product and Pipe Manufacturing Technology in the Vyksa Production Area), pp. 248-273, (2016)
[2]  
Matrosov Y.I., Litvinenko D.A., Golovanenko S.A., Stal’ Dlya magistral’nykh Gazoprovodov (Steel for Main Pipelines), (1989)
[3]  
Naumenko V.V., Bagmet O.A., Influence of vanadium and nitrogen on the structure formation and properties of K60 (X70) rolled steel coils, Steel Transl, 47, pp. 339-344, (2017)
[4]  
Efron L.I., Metallovedenie v “bol’shoi” metallurgiyi, Trubnye Stali (Physical Metallurgy in Large-Scale Production: Pipe Steel), (2012)
[5]  
Mitchell P.S., Use of vanadium in high-strength steels, Materialy Mezhdunarodnogo nauchno-tekhnicheskogo seminara, Problemy Proizvodstva I Primeneniya Stalei S Vanadiem, pp. 53-80, (2007)
[6]  
Korchinskii M.M., Advanced metal construction materials and new role of microalloyed steels, 6, pp. 124-130, (2005)
[7]  
Zhang X.-G.G., Yang C.-F., Shang C.-J., New Development of HSLA Steels in China, HSLA Steels 2015, Microalloying 2015 & Offshore Engineering Steels 2015, pp. 1-15, (2015)
[8]  
Yang C., R&D application of V–N microalloyed steels in China, Proc. Conf. HSLA Steels 2015, pp. 917-930, (2015)
[9]  
Naumenko V.V., Bagmet O.A., Mursenkov E.S., Assimilation of production under casting and rolling conditions of pipe rolled product from steels of the V–N microalloying system resistant to cold and hydrogen sulfide cracking, Metallurgist, 63, pp. 163-175, (2019)