Accelerated Tests of Protective Properties of Packaging Materials for Cold-Rolled Steel

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Abstract:

Metal products are exposed to atmospheric corrosion during transport, long-term storage and operation. An important trend in corrosion protection is development of cutting-edge packaging materials containing volatile corrosion inhibitors (VCI). The issue under study is relevant because metal products are mainly exported by sea through regions with a humid tropical climate. Package protective capabilities are in focus when selecting packaging materials containing volatile corrosion inhibitors. The paper contains the results of comparison testing corrosion protection capabilities of combined packaging papers with volatile corrosion inhibitors using a number of methods: as per GOST 9.054 (method 1), GOST 9.305, Germany VIA Test method and that of the USA Federal Standard. It is found that inhibitors protect cold-rolled steel provided the package is at least partly sealed. Tests with all accelerated methods show that the UNI inhibitor provides the best corrosion protection.

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Solid State Phenomena (Volume 284)

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1278-1283

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October 2018

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© 2018 Trans Tech Publications Ltd. All Rights Reserved

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[1] L.G. Kolyada, E.V. Tarasyuk, A.P. Ponomarev, V.R. Vafin, The Analysis of the Modern Packaging Materials for the Metal Products, Iron and Steel Industry. 6 (1410) (2017) 61-73.

Google Scholar

[2] I.V. Semenova, Corrosion and Corrosion Protection, PHYSAMATLIT, Moscow, (2002).

Google Scholar

[3] E. Mattssom, Electrochemical Corrosion/ edited by Ya.М. Kolotyrkin. Мoscow: Metallurgy, (1991).

Google Scholar

[4] S. Keller, G. Reinhard, Packaging Materials Containing Volatile Corrosion Inhibitors. Protection Concept, Corrosion: Materials, Protection. 8 (2015) 24-34.

Google Scholar

[5] I.L. Rosenfeld, V.P. Parsiantseva, Atmospheric Corrosion Inhibitors, Nauka, Moscow, (1985).

Google Scholar

[6] L.I. Antropov, E.M. Makushin, V.F. Panasenko, Metal Corrosion Inhibitors, Technika, Kiev, (1981).

Google Scholar

[7] A.N. Rogova, A.V. Rasumkov, Modern Methods of Metal Product Protection against Corrosion with Multi-Layer Combined Materials, Transport and Consumer Packaging. 6 (2002) 44-47.

Google Scholar

[8] N.L. Medyanik, I.V. Shadrunova, L.G. Kolyada, E.V. Tarasyuk, T.V. Chekushina, Investigation of strength and corrosion resistance properties of combined packaging materials for metal products, Metallurgical and Mining Industry. 8 (2016) 14-20.

Google Scholar

[9] V.V. Kharionovskiy, Сorrosion protection of gas-main pipelines: modern methods and instruments, Corrosion: Materials, Protection. 5 (2017) 41-48.

Google Scholar

[10] Zhang Xueyuan, He Wenle, I.O. Wallinder, Jinshan Pan, C. Leygraf, Determination of instantaneous corrosion rates and runoff rates of copper from naturally patinated copper during continuous rain events, Corrosion Science. 44(9) (2002) 2131-2151.

DOI: 10.1016/s0010-938x(02)00015-x

Google Scholar

[11] S.R. Filippov, O.R. Kharin, Material for Package with Volatile Corrosion Inhibitor, RU 2287466 (2006).

Google Scholar

[12] N.V. Danyakin, А.А. Sigida, Up-to-date Volatile Atmospheric Corrosion Inhibitors (Review), Auditorium. 1 (13) (2017) 131-137.

Google Scholar

[13] Yu.I. Kuznetsov, Volatile Atmospheric Corrosion Inhibitors. Part 2, Corrosion: Materials, Protection. 3 (2004) 26-29.

Google Scholar

[14] N.N. Andreev, Yu.I. Kuznetsov, Physical and Chemical Aspects of Effect of Volatile Metal Corrosion Inhibitors, Chemistry Soultions. 8 (2005) 754-765.

Google Scholar

[15] Yu.I. Kuznetsov, On Steel Protection from Carbon Corrosion with Volatile Inhibitors, c 9 (2004) 17-21.

Google Scholar

[16] Kh.Ya. Girevaya, L.G. Kolyada, A.V. Ponomarev, Quality issue of multi-layer angle bars used for packaging metal products, Current High-End Technologies. 7 (2015) 19-22.

Google Scholar

[17] L.G. Kolyada, E.V. Tarasyuk, N.L. Kalugina, Technology of packing materials for metal products, Solid State Phenomena. 870 (2016) 454-459.

DOI: 10.4028/www.scientific.net/msf.870.454

Google Scholar

[18] L.S. Pinchuk, A.S. Neverov, Polymer Films Containing Corrosion Inhibitors, М., Chemistry, (1993).

Google Scholar

[19] А.А. Mikhaylov, P.V. Strekalov, Yu. M. Panchenko and others Atmospheric Metal Corrosion in Regions with Tropical and Subtropical Climate, Corrosion^ Materials, Protection. 6 (2006) 2-11.

Google Scholar

[20] Yu.I. Panchenko, P.V. Strekalov, Formation, Promotion and Removal of Atmospheric Metal Corrosion Products. Model of Integral Mass of Product Formation, Metal Protection. 41(4) (2005) 402–416.

Google Scholar