Relation between the structure and the pitting corrosion resistance of hypereutectoid U10 steel / Egorova L.Y., Savrai R.A., Berezovskaya V.V., Makarov A.V., Schastlivtsev V.M., Tabatchikova T.I., Merkushkin E.A. // Russian Metallurgy (Metally). - 2014. - V. 2014, l. 1. - P. 49-54.

ISSN:
00360295
Type:
Article
Abstract:
Polarization pitting corrosion tests are used to investigate the effect of a structure on the corrosion resistance of hypereutectoid U10 steel. In the steel structure, coarse-lamellar and fine-lamellar pearlite forms as a result of isothermal decomposition at temperatures of 500 and 650°C and fine-lamellar pearlite forms during additional annealing at 650°C for 10 or 300 min. The nonequilibrium structure of fine-lamellar pearlite obtained in the process of isothermal decomposition at a temperature of 500°C is found to have the maximum pitting corrosion resistance among the structural states under study. © 2014 Pleiades Publishing, Ltd.
Author keywords:
Index keywords:
Isotherms; Pearlite; Pitting; Additional annealing; Isothermal decomposition; Nonequilibrium structures; Structural state; Corrosion resistance
DOI:
10.1134/S0036029514010066
Смотреть в Scopus:
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84899964171&doi=10.1134%2fS0036029514010066&partnerID=40&md5=e298e7d4962e15b0283113535c0d60a1
Соавторы в МНС:
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Affiliations Institute of Metal Physics, Ural Branch, Russian Academy of Sciences, ul. S. Kovalevskoi 18, Yekaterinburg, 620990, Russian Federation; Institute of Machine Science, Ural Branch, Russian Academy of Sciences, ul. Komsomol'skaya 34, Yekaterinburg, 620990, Russian Federation; El'tsin Ural Federal University, pr. Lenina 51, Yekaterinburg, 620083, Russian Federation
References Gridnev, V.N., Gavrilyuk, V.G., Meshkov, Y.Y., (1974) The Strength and Elasticity of Cold Deformed Steel, , Kiev: Naukova Dumka; Tushinskii, L.I., Bataev, A.A., Tikhomirova, L.B., (1993) Structure of Pearlite and Structural Strength of Steel, , Novosibirsk: Nauka; Schastlivtsev, V.M., Mirzaev, D.A., Yakovleva, I.L., Okishev, K.Y., Tabatchikova, T.I., Khlebnikova, Y.V., (2006) Pearlite in Carbon Steels, , Yekaterinburg: UrO RAN; Schastlivtsev, V.M., Tabatchikova, T.I., Makarov, A.V., Egorova, L.Y., Yakovleva, I.L., Effect of ferrite solid-solution strengthening and cementite spheroidizing on the wear resistance of a eutectoid carbon steel with a fine-lamellar pearlitic structure (1999) Phys. Met. Metallogr., 88 (7), pp. 87-95; Makarov, A.V., Schastlivtsev, V.M., Tabatchikova, T.I., Yakovleva, I.L., Khlebnikova, Y.V., Egorova, L.Y., Wear resistance of hypereutectoid carbon steels with structures of isothermally transformed austenite (2004) Phys. Met. Metallogr., 97 (5), pp. 519-530; Izotov, V.I., Pozdnyakov, V.A., Luk'yanenko, E.V., Usanova, O.Y., Filippov, G.A., Influence of the pearlite fineness on the mechanical properties, deformation behavior, and fracture characteristics of carbon steel (2007) Phys. Met. Metallogr., 103 (5), pp. 519-529; Makarov, A.V., Savrai, R.A., Schastlivtsev, V.M., Tabatchikova, T.I., Egorova, L.Y., Mechanical properties and fracture upon static tension of the high-carbon steel with different types of pearlite structure (2007) Phys. Met. Metallogr., 104 (5), pp. 522-534; Izotov, V.I., Pozdnyakov, V.A., Luk'yanenko, E.V., Evolution of the dislocation structure and the formation of fatigue microcracks in pearlitic-ferritic steels (2008) Phys. Met. Metallogr., 105 (5), pp. 535-545; Makarov, A.V., Savrai, R.A., Schastlivtsev, V.M., Tabatchikova, T.I., Yakovleva, I.L., Egorova, L.Y., Structural features of the behavior of a high-carbon pearlitic steel upon cyclic loading (2011) Phys. Met. Metallogr., 111 (1), pp. 95-109; Houdremont, E., (1956) Handbuch Der Sonderstahlkunde, , Berlin: Springer; Cookson, J.M., Mutton, P.J., The role of the environment in the rolling contact fatigue cracking of rails (2011) Wear., 271 (1-2), pp. 113-119; Romaniv, O.N., Nikiforchin, G.N., (1986) The Mechanics of Corrosion Fracture of Constructional Alloys, , Moscow: Metallurgiya; Kolotyrkin, Y.M., (1985) Metal and Corrosion, , Moscow: Metallurgiya; Clover, D., Kinsella, B., Pejcic, B., de Marco, R., The influence of microstructure on the corrosion rate of various carbon steels (2005) J. Appl. Electrochem., 35, pp. 139-149; Sorokina, V.G., Gervas'Eva, M.A., (2003) Handbook of Steels and Alloys, , Moscow: Intermet Inzhiniring; Berezovskaya, V.V., Savrai, R.A., Merkushkin, E.A., Makarov, A.V., Structure and mechanical and corrosion properties of new high-nitrogen Cr-Mn steels containing molybdenum (2012) Russian Metallurgy (Metally), No. 5, pp. 380-388; Schastlivtsev, V.M., Yakovleva, I.L., Mirzaev, D.A., Structural transformations in pearlite during heating: I. Solid-solution hardening of the ferrite component of pearlite (1994) Fiz. Met. Metalloved., 77 (4), pp. 138-147; Bhagavathi, L.R., Chaudhari, G.P., Nath, S.K., Mechanical and corrosion behavior of plain low carbon dual-phase steels (2011) Mater. Design., 32, pp. 433-440; Makarov, A.V., Schastlivtsev, V.M., Gorkunov, E.S., Possibilities of nondestructive testing of physico-mechanical characteristics of hypereutectoid carbon steels with the structures of isothermal austenite decomposition (2002) Russ. J. Nondestr. Test., 38 (10), pp. 767-787
Correspondence Address Egorova, L. Y.; Institute of Metal Physics, Ural Branch, Russian Academy of Sciences, ul. S. Kovalevskoi 18, Yekaterinburg, 620990, Russian Federation; email: phym@imp.uran.ru
Publisher Maik Nauka-Interperiodica Publishing
Language of Original Document English
Abbreviated Source Title Russ. Metall. (Metally)
Source Scopus