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Erschienen in: Metallurgist 7-8/2020

11.11.2020

Methods for Determining Resistance Indices of Structural Steels under Various Atmospheric Conditions

verfasst von: J. S. Gladchenkova

Erschienen in: Metallurgist | Ausgabe 7-8/2020

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Abstract

Corrosion testing determines the resistance of materials to corrosion under certain environmental conditions including temperature, humidity, and salt water. There are many methods to measure or access corrosion resistance or materials. The study reviews the main methods for assessing the corrosion resistance of structural steels in aquatic environments and moist atmosphere conditions. The method of alternate immersion in a 3.5% NaCl solution has been established as the most complete and reliable method for determining the corrosion resistance of auto-plate steels under atmospheric conditions. There are many standardized corrosion test methods used to assess the corrosion resistance of structural steels in seawater (ASTM G52, ISO 11306, ISO 20340, ISO 2812-2, and GOST 9.909). However, in the Russian Federation, it is nowadays necessary to update the existing standards and develop a new set of standards for testing materials in different zones of exposure to seawater with different corrosion activities.

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Literatur
1.
Zurück zum Zitat I. M. Zharskiy, N. P. Ivanova, D. V. Kuis, et al., Corrosion and Protection of Metal Structures and Equipment: Study Guide [in Russian], Vysshaya shkola, Minsk (2012). I. M. Zharskiy, N. P. Ivanova, D. V. Kuis, et al., Corrosion and Protection of Metal Structures and Equipment: Study Guide [in Russian], Vysshaya shkola, Minsk (2012).
2.
Zurück zum Zitat A. V. Amezhnov, “Comparative analysis of methods of corrosion testing of steels for oilfield pipelines,” Problemy Chern. Metallurg. Materialoveden., No. 4, 36–49 (2019). A. V. Amezhnov, “Comparative analysis of methods of corrosion testing of steels for oilfield pipelines,” Problemy Chern. Metallurg. Materialoveden., No. 4, 36–49 (2019).
3.
Zurück zum Zitat A. M. Syrkin, M. A. Molyavko, and F. B. Shevlyakov, Fundamentals of Electrochemical Processes: Study Guide [in Russian], Publishing House of the Ufa State Petroleum Technical University, Ufa (2009). A. M. Syrkin, M. A. Molyavko, and F. B. Shevlyakov, Fundamentals of Electrochemical Processes: Study Guide [in Russian], Publishing House of the Ufa State Petroleum Technical University, Ufa (2009).
4.
Zurück zum Zitat Kh. A. Arslanova, M. N. Golubchin, A. D. Iskanderov, et al., Geological Dictionary, 2 Vol.; K. N. Paffengolts (editor), Nedra, Moscow (1978). Kh. A. Arslanova, M. N. Golubchin, A. D. Iskanderov, et al., Geological Dictionary, 2 Vol.; K. N. Paffengolts (editor), Nedra, Moscow (1978).
5.
Zurück zum Zitat A. V. Amezhnov and I. G. Rodionova, “Influence of the chemical and phase composition of non-metal inclusions on the corrosion resistance of carbon and low-alloyed steels in aquatic environment characteristic of the operating conditions of oil-field pipelines,” Metallurg, No. 7, 45–52 (2019). A. V. Amezhnov and I. G. Rodionova, “Influence of the chemical and phase composition of non-metal inclusions on the corrosion resistance of carbon and low-alloyed steels in aquatic environment characteristic of the operating conditions of oil-field pipelines,” Metallurg, No. 7, 45–52 (2019).
6.
Zurück zum Zitat A. V. Amezhnov, I. G. Rodionova, A. I. Zaitsev, E. I. Zarkova, and M. Ye. Marzoeva, “Regularities of the influence of the characteristics of non-metal inclusions, phase exudations on the corrosion resistance of low-carbon and ultra-low-carbon steels,” Problemy Chern. Metallurg. Materialoveden., No. 1, 58–69 (2019). A. V. Amezhnov, I. G. Rodionova, A. I. Zaitsev, E. I. Zarkova, and M. Ye. Marzoeva, “Regularities of the influence of the characteristics of non-metal inclusions, phase exudations on the corrosion resistance of low-carbon and ultra-low-carbon steels,” Problemy Chern. Metallurg. Materialoveden., No. 1, 58–69 (2019).
7.
Zurück zum Zitat M. G. Deev, “World Ocean. The main parameters of sea water. Problematic and industry-specific issues of physical geography,” Geografiya, No. 20, 5–7 (2009). M. G. Deev, “World Ocean. The main parameters of sea water. Problematic and industry-specific issues of physical geography,” Geografiya, No. 20, 5–7 (2009).
8.
Zurück zum Zitat V. V. Dmitriev, Marine Encyclopedic Dictionary. Dictionary in 3 Volumes [in Russian], Vol. 3, Sudostroyenie, Saint Petersburg (1994). V. V. Dmitriev, Marine Encyclopedic Dictionary. Dictionary in 3 Volumes [in Russian], Vol. 3, Sudostroyenie, Saint Petersburg (1994).
9.
Zurück zum Zitat S. D. Zinchenko, A. M. Lamukhin, M. V. Filatov, S. V. Efimov, I. G. Rodionova, A. I. Zaitsev, and O. N. Baklanova, “Development of recommendations on making tube steels produced at the Severstal’ combine cleaner with respect to corrosion-active nonmetallic inclusions,” Metallurgist, 49, No. 3–4, 131–137 (2005).CrossRef S. D. Zinchenko, A. M. Lamukhin, M. V. Filatov, S. V. Efimov, I. G. Rodionova, A. I. Zaitsev, and O. N. Baklanova, “Development of recommendations on making tube steels produced at the Severstal’ combine cleaner with respect to corrosion-active nonmetallic inclusions,” Metallurgist, 49, No. 3–4, 131–137 (2005).CrossRef
10.
Zurück zum Zitat V. S. Kemkhadze, Corrosion and Protection of Metals in Humid Subtropics [in Russian], Nauka, Moscow (1983). V. S. Kemkhadze, Corrosion and Protection of Metals in Humid Subtropics [in Russian], Nauka, Moscow (1983).
11.
Zurück zum Zitat O. A. Ivanova, “Evaluation of the corrosion resistance of a deep-water drilling platform for the conditions of the Black Sea, ecological safety of the coastal and shelf zones of the sea,” Morsk. Gidrofiziches. Inst. RAN (Sevastopol), No. 2, 292–295 (2010). O. A. Ivanova, “Evaluation of the corrosion resistance of a deep-water drilling platform for the conditions of the Black Sea, ecological safety of the coastal and shelf zones of the sea,” Morsk. Gidrofiziches. Inst. RAN (Sevastopol), No. 2, 292–295 (2010).
12.
Zurück zum Zitat M. A. Maleeva, M. A. Petrunin, L. B. Maksaeva, T. A. Yurasova, and A. I. Marshakov, “Local corrosive dissolution of steel in solutions imitating ground electrolyte,” Korroziya: Materialy i Zashchita, No. 11, 1–7 (2014). M. A. Maleeva, M. A. Petrunin, L. B. Maksaeva, T. A. Yurasova, and A. I. Marshakov, “Local corrosive dissolution of steel in solutions imitating ground electrolyte,” Korroziya: Materialy i Zashchita, No. 11, 1–7 (2014).
13.
Zurück zum Zitat A. I. Mikheev, “Influence of fouling and low temperatures on the safe operation of ships,” Vodn. Transport, No. 3, 56–61 (2013). A. I. Mikheev, “Influence of fouling and low temperatures on the safe operation of ships,” Vodn. Transport, No. 3, 56–61 (2013).
14.
Zurück zum Zitat N. A. Shkatova, Ecological and Technological Study of Barrier-Type Coating for Protection Against Corrosion and Marine Fouling of Oil and Gas Pipelines, Floating Facilities and Port Facilities (For Example, Gelendzhik Bay) [in Russian], PhD Tech. Synopsis of a Thesis, Krasnodar (2015). N. A. Shkatova, Ecological and Technological Study of Barrier-Type Coating for Protection Against Corrosion and Marine Fouling of Oil and Gas Pipelines, Floating Facilities and Port Facilities (For Example, Gelendzhik Bay) [in Russian], PhD Tech. Synopsis of a Thesis, Krasnodar (2015).
15.
Zurück zum Zitat L. L. Shreir, Corrosion Volume I Metal, Environment Reactions Butterworth-Heinemann British Library Cataloging in Publication Data (1994). L. L. Shreir, Corrosion Volume I Metal, Environment Reactions Butterworth-Heinemann British Library Cataloging in Publication Data (1994).
16.
Zurück zum Zitat V. I. Khizhnyakov, Yu. A. Kudashkin, M. V. Khizhnyakov, and A. V. Zhilin, “Corrosion cracking of stress-strain pipelines during oil and gas transportation,” Izv. Tomskogo Politekhnich. Univers., 319, No. 3, 84–89 (2011). V. I. Khizhnyakov, Yu. A. Kudashkin, M. V. Khizhnyakov, and A. V. Zhilin, “Corrosion cracking of stress-strain pipelines during oil and gas transportation,” Izv. Tomskogo Politekhnich. Univers., 319, No. 3, 84–89 (2011).
17.
Zurück zum Zitat E. M. Lebedev and I. N. Ilyin, Methods for the Study of Marine and Oceanic Fouling, Obrastaniye i Biopovrezhdeniya. Ekologicheskiye Problem [in Russian], Nauka, Moscow, 65–76 (1992). E. M. Lebedev and I. N. Ilyin, Methods for the Study of Marine and Oceanic Fouling, Obrastaniye i Biopovrezhdeniya. Ekologicheskiye Problem [in Russian], Nauka, Moscow, 65–76 (1992).
18.
Zurück zum Zitat E. A. Varchenko and M. G. Kurs, “Full-scale testing of materials in seawater: key approaches to assessing resistance to corrosion and biological damage,” Ispytan. Material. Trudy VIAM, No. 11(59), 117–126 (2017). E. A. Varchenko and M. G. Kurs, “Full-scale testing of materials in seawater: key approaches to assessing resistance to corrosion and biological damage,” Ispytan. Material. Trudy VIAM, No. 11(59), 117–126 (2017).
19.
Zurück zum Zitat E. Kh. Shakhpazov, I. G. Rodionova, O. N. Baklanova, A. I. Zaytsev, et al., “Increasing the corrosion resistance of carbon and lowalloyed steels for the automotive industry by optimizing metallurgical technology,” Metallurg, No. 2, 45–48 (2006). E. Kh. Shakhpazov, I. G. Rodionova, O. N. Baklanova, A. I. Zaytsev, et al., “Increasing the corrosion resistance of carbon and lowalloyed steels for the automotive industry by optimizing metallurgical technology,” Metallurg, No. 2, 45–48 (2006).
20.
Zurück zum Zitat I. G. Rodionova, A. I. Zaitsev, and O. N. Baklanova, “Corrosion-active non-metallic inclusions in carbon and low-carbon steels,” in: Collection of the Scientific Works [in Russian], Metallurgizdat, Moscow (2005). I. G. Rodionova, A. I. Zaitsev, and O. N. Baklanova, “Corrosion-active non-metallic inclusions in carbon and low-carbon steels,” in: Collection of the Scientific Works [in Russian], Metallurgizdat, Moscow (2005).
21.
Zurück zum Zitat E. Kh. Shakhpazov, A. I. Zaitsev, and I. G. Rodionova, “Progress in the technology of production of auto-plate steels,” in the Book Metal Week in Moscow, November 13–17, 2006, Proceedings of Conferences and Seminars, Academician A. I. Tselikov All-Russian Scientific Research and Design Institute of Metallurgical Engineering (2007), pp. 143–149. E. Kh. Shakhpazov, A. I. Zaitsev, and I. G. Rodionova, “Progress in the technology of production of auto-plate steels,” in the Book Metal Week in Moscow, November 13–17, 2006, Proceedings of Conferences and Seminars, Academician A. I. Tselikov All-Russian Scientific Research and Design Institute of Metallurgical Engineering (2007), pp. 143–149.
22.
Zurück zum Zitat E. T. Shapovalov, I. G. Rodionova, A. I. Zaitsev, M. E. Kovalevskaya, O. N. Baklanova, N. V. Skomorokhova, T. I. Strizhakova, A. Yu. Kazankov, V. V. Kuznetsov, and T. O. Latysheva, “Factors determining the corrosion resistance and other consumer properties of cold-rolled mill products. Metallurgical aspects of improvement of the complex of properties,” International Conference: Modern Requirements and Metallurgical Aspects of Increasing Corrosion Resistance and Other Properties of Carbon and Low- Alloyed Steels, Moscow, October 29–30, 2008, Problemy Chern. Metallurg. Materialoveden., No. 3, 68–76 (2009). E. T. Shapovalov, I. G. Rodionova, A. I. Zaitsev, M. E. Kovalevskaya, O. N. Baklanova, N. V. Skomorokhova, T. I. Strizhakova, A. Yu. Kazankov, V. V. Kuznetsov, and T. O. Latysheva, “Factors determining the corrosion resistance and other consumer properties of cold-rolled mill products. Metallurgical aspects of improvement of the complex of properties,” International Conference: Modern Requirements and Metallurgical Aspects of Increasing Corrosion Resistance and Other Properties of Carbon and Low- Alloyed Steels, Moscow, October 29–30, 2008, Problemy Chern. Metallurg. Materialoveden., No. 3, 68–76 (2009).
23.
Zurück zum Zitat I. G. Rodionova, O. N. Baklanova, A. I. Zaitsev, et al., “Investigation of factors controlling the corrosion resistance of microalloyed auto-plate steels,” Problemy Chern. Metallurg. Materialoveden., No. 2, 45–55 (2010). I. G. Rodionova, O. N. Baklanova, A. I. Zaitsev, et al., “Investigation of factors controlling the corrosion resistance of microalloyed auto-plate steels,” Problemy Chern. Metallurg. Materialoveden., No. 2, 45–55 (2010).
24.
Zurück zum Zitat A. V. Amezhnov, I. G. Rodionova, D. V. Kuznetsov, A. A. Komissarov, and E. P. Sidorova, “Effect of heat treatment on corrosion activity of nonmetallic inclusions and steel corrosion resistance in aqueous media,” Metallurgist, 62, No. 11, 1232–1239 (2019).CrossRef A. V. Amezhnov, I. G. Rodionova, D. V. Kuznetsov, A. A. Komissarov, and E. P. Sidorova, “Effect of heat treatment on corrosion activity of nonmetallic inclusions and steel corrosion resistance in aqueous media,” Metallurgist, 62, No. 11, 1232–1239 (2019).CrossRef
25.
Zurück zum Zitat I. G. Rodionova, E. T. Shapovalov, M. E. Kovalevskaya, O. N. Baklanova, et al., “Increasing resistance to atmospheric corrosion of auto-plate steels by optimizing the chemical composition and technological parameters of production,” Metallurg, No. 8, 46–52 (2005). I. G. Rodionova, E. T. Shapovalov, M. E. Kovalevskaya, O. N. Baklanova, et al., “Increasing resistance to atmospheric corrosion of auto-plate steels by optimizing the chemical composition and technological parameters of production,” Metallurg, No. 8, 46–52 (2005).
26.
Zurück zum Zitat Standard ASTM G 44-75. Alternate Immersion Stress Corrosion Testing in 3.5% Sodium Chloride Solution. Standard ASTM G 44-75. Alternate Immersion Stress Corrosion Testing in 3.5% Sodium Chloride Solution.
27.
Zurück zum Zitat A. D. Gorin, Improvement of the Consumer Properties of Ultra-Low-Carbon Auto-Plate Steels by Optimizing Their Chemical Composition and Technological Parameters of Production [in Russian], Dissertation of PhD in Engineering, Moscow (2006). A. D. Gorin, Improvement of the Consumer Properties of Ultra-Low-Carbon Auto-Plate Steels by Optimizing Their Chemical Composition and Technological Parameters of Production [in Russian], Dissertation of PhD in Engineering, Moscow (2006).
Metadaten
Titel
Methods for Determining Resistance Indices of Structural Steels under Various Atmospheric Conditions
verfasst von
J. S. Gladchenkova
Publikationsdatum
11.11.2020
Verlag
Springer US
Erschienen in
Metallurgist / Ausgabe 7-8/2020
Print ISSN: 0026-0894
Elektronische ISSN: 1573-8892
DOI
https://doi.org/10.1007/s11015-020-01038-0

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