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Erschienen in:

19.06.2024

Corrosion properties, chemical composition, and surface morphology of non-ferrous metals after tests at different temperature and humidity conditions

verfasst von: L. K. Avdeeva, L. V. Godulyan, A. I. Kovalev, D. L. Wainstein, V. O. Vakhrushev

Erschienen in: Metallurgist | Ausgabe 1/2024

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Abstract

In order to predict the shelf life of non-ferrous metals, laboratory studies into the kinetics of corrosion processes of metals under various temperature and humidity conditions were performed. The results of 12-month corrosion tests of the following non-ferrous metals are presented: aluminum, cobalt, copper, nickel, tin, lead, and zinc at various relative humidity and air temperature conditions. All the metals studied were found to be corrosion-resistant under atmospheric conditions at a relative humidity of no more than 80% and an air temperature of no more than 30 °C. An increase in air humidity from 70 to 95% and air temperature from 20 to 50 °C leads to an increase in corrosion-induced losses of metals, primarily for zinc, cobalt, and lead. During the tests, changes in the appearance of the sample surface were recorded. The chemical and phase composition of oxide films on the metal surface, as well as their morphology, were studied after different test periods. The results will be used in future works in developing methods for predicting the shelf life of non-ferrous metals.

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Literatur
1.
Zurück zum Zitat Rosenfeld IL (1960) Atmospheric corrosion of metals. Publ. USSR Academy of Sciences, Moscow Rosenfeld IL (1960) Atmospheric corrosion of metals. Publ. USSR Academy of Sciences, Moscow
2.
Zurück zum Zitat Kubashevsky O, Hopkins B (1965) Oxidation of metals and alloys, 2nd edn. Metallurgiya, Moscow Kubashevsky O, Hopkins B (1965) Oxidation of metals and alloys, 2nd edn. Metallurgiya, Moscow
3.
Zurück zum Zitat Strekalov PV (1972) Investigation into the kinetics of initial stages of atmospheric corrosion of zinc under adsorption moisture films. Dissert. Thes, Moscow Strekalov PV (1972) Investigation into the kinetics of initial stages of atmospheric corrosion of zinc under adsorption moisture films. Dissert. Thes, Moscow
4.
Zurück zum Zitat Mikhailovskiy YN, Strekalov PV, Agafonov VV (1980) Metal protection. 16(4) Mikhailovskiy YN, Strekalov PV, Agafonov VV (1980) Metal protection. 16(4)
5.
Zurück zum Zitat Agafonov VV (1980) Development of a mathematical model for atmospheric corrosion of metals and a method for predicting their corrosion resistance in different climates dissert. Thes, Мoscow Agafonov VV (1980) Development of a mathematical model for atmospheric corrosion of metals and a method for predicting their corrosion resistance in different climates dissert. Thes, Мoscow
6.
Zurück zum Zitat Leygraf C et al (2016) Atmospheric corrosion. John Wiley & SonsCrossRef Leygraf C et al (2016) Atmospheric corrosion. John Wiley & SonsCrossRef
7.
Zurück zum Zitat Mendoza AR, Corvo F (2000) Outdoor and indoor atmospheric corrosion of non-ferrous metals. Corros Sci 42(7):1123–1147CrossRef Mendoza AR, Corvo F (2000) Outdoor and indoor atmospheric corrosion of non-ferrous metals. Corros Sci 42(7):1123–1147CrossRef
8.
Zurück zum Zitat Panchenko YM, Marshakov AI (2016) Long-term prediction of metal corrosion losses in atmosphere using a power-linear function. Corros Sci 109:217–229CrossRef Panchenko YM, Marshakov AI (2016) Long-term prediction of metal corrosion losses in atmosphere using a power-linear function. Corros Sci 109:217–229CrossRef
9.
Zurück zum Zitat Cai Y et al (2020) Atmospheric corrosion prediction: a review. Corros Rev 38(4):299–321CrossRef Cai Y et al (2020) Atmospheric corrosion prediction: a review. Corros Rev 38(4):299–321CrossRef
10.
Zurück zum Zitat Kutyrev AE, Chesnokov DV (2018) Data analysis on full-scale tests of aluminum alloys and development of the concept of their complex corrosion tests. Korroz., Staren. i Biostoikost mater. v Morsk. Klim, pp 80–96 Kutyrev AE, Chesnokov DV (2018) Data analysis on full-scale tests of aluminum alloys and development of the concept of their complex corrosion tests. Korroz., Staren. i Biostoikost mater. v Morsk. Klim, pp 80–96
11.
Zurück zum Zitat Cramer SD, Matthes SA, Covino BS Jr., Bullard SJ, Holcomb GR (2002) Environmental factors affecting the atmospheric corrosion of copper. In: Outdoor atmospheric corrosion—STP 1421—American society for testing and materials Cramer SD, Matthes SA, Covino BS Jr., Bullard SJ, Holcomb GR (2002) Environmental factors affecting the atmospheric corrosion of copper. In: Outdoor atmospheric corrosion—STP 1421—American society for testing and materials
12.
Zurück zum Zitat Cramer SD, Matthes SA (2003) Simulated service testing in the atmosphere, corrosion. Fundam Test Prot 13A: Cramer SD, Matthes SA (2003) Simulated service testing in the atmosphere, corrosion. Fundam Test Prot 13A:
13.
Zurück zum Zitat Panchenko YM (2016) Models of long-term forecast of corrosion losses of technically important metals. Part 1. Models based on corrosion losses of metals for the first year. Corros Mater Prot 3:1–15 Panchenko YM (2016) Models of long-term forecast of corrosion losses of technically important metals. Part 1. Models based on corrosion losses of metals for the first year. Corros Mater Prot 3:1–15
14.
Zurück zum Zitat Panchenko YM (2016) Models of long-term forecast of corrosion losses of technically important metals. Part 2. Models based on predicted corrosion losses of metals for the first year. Corros Mater Prot 6:1–16 Panchenko YM (2016) Models of long-term forecast of corrosion losses of technically important metals. Part 2. Models based on predicted corrosion losses of metals for the first year. Corros Mater Prot 6:1–16
15.
Zurück zum Zitat Panchenko YM, Kovtanyuk VV, Nikolaeva LA (2013) Long-term predictions of the corrosion losses by the linear dependence from the period of the stationary stage onset and using the power function. Part 2. Corros Mater Prot 8:8–15 Panchenko YM, Kovtanyuk VV, Nikolaeva LA (2013) Long-term predictions of the corrosion losses by the linear dependence from the period of the stationary stage onset and using the power function. Part 2. Corros Mater Prot 8:8–15
16.
Zurück zum Zitat GOST 9.040-74. Calculated and experimental method for accelerated test of corrosion lossen in atmospheric conditions [in Russian]. GOST 9.040-74. Calculated and experimental method for accelerated test of corrosion lossen in atmospheric conditions [in Russian].
17.
Zurück zum Zitat GOST 9.908-85. Methods for determination of corrosion and corrosion resistance indices [in Russian]. GOST 9.908-85. Methods for determination of corrosion and corrosion resistance indices [in Russian].
18.
Zurück zum Zitat ISO 9223:2017. Corrosion of metals and alloys. Corrosivity of Atmospheres. Classification, Determination and Estimation [in Russian]. ISO 9223:2017. Corrosion of metals and alloys. Corrosivity of Atmospheres. Classification, Determination and Estimation [in Russian].
Metadaten
Titel
Corrosion properties, chemical composition, and surface morphology of non-ferrous metals after tests at different temperature and humidity conditions
verfasst von
L. K. Avdeeva
L. V. Godulyan
A. I. Kovalev
D. L. Wainstein
V. O. Vakhrushev
Publikationsdatum
19.06.2024
Verlag
Springer US
Erschienen in
Metallurgist / Ausgabe 1/2024
Print ISSN: 0026-0894
Elektronische ISSN: 1573-8892
DOI
https://doi.org/10.1007/s11015-024-01705-6

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