Corrosion and Wear Analysis in Marine Transport Constructions

Aleksandrs Urbahs, Konstantīns Savkovs, Gints Rijkuris, Darja Andrejeva

Abstract


Corrosion is one of the most common naturally occurring processes studied by thermodynamics, which includes oxidation process, metal disruption, and its chemical and electrochemical effects under environmental influence. Corrosion of metal and equipment accounts for a considerable proportion of total corrosion losses, thus providing the impetus for further investigation and developments related to corrosion protection in order to provide transport systems and industry with corrosion preventive materials and tools.

Keywords:

Corrosion; maritime transport; metal coatings; wear

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References


NACE – Economic Impact, Assessment of the Global Cost of Corrosion. [Online]. Available: http://impact.nace.org/economic-impact.aspx. Accessed on: December 15, 2017.

R. E. Melchers, “Corrosion Uncertainty Modelling for Steel Structures,” Journal of Constructional Steel Research, vol. 52, no. 1, pp. 3–19, Oct. 1999. https://doi.org/10.1016/S0143-974X(99)00010-3

A. M. Berendsen, Marine Painting Manual. Springer Science & Business Media, 1989. https://doi.org/10.1007/978-94-017-2186-8

T. Tezdogan and Y. K. Demirel, “An Overview of Marine Corrosion Protection With a Focus on Cathodic Protection and Coatings,” Brodogradnja/Shipbuilding, Brodarski Institute, vol. 65, no. 2, 2014.

I. A. Stepnov, Morskaja Korrozia. M.: Metallurgia, 1983. p. 512.

V. D. Pirogov et al., Korrozia i zasita sudov, Spravocnik. L.: Sudostroenie, 1987. p. 376

R. Yhnevic, E. Valaskovskij, A. Viduhovskij and G. Stankevic, Tehnika borjbi s korroziej. Translation from Polish, L.: Himia, 1978. p. 304.

H. D. Racev and S. T. Stefanova, Spravocnik po Korrozija. Sofija – Derzavno Izdateljsvo “Tehnika”, 1977.

Posiva Oy, Safety Case for the Disposal of Spent Nuclear Fuel at Olkiluoto. 2012. [Online]. Available: http://www.posiva.fi/files/3010/Posiva_2012-04web.pdf. Accessed on: December 3, 2017.

Hach Company / Hach Lange GmbH, pH Alkalinity of Water, 2nd ed. 2015. [Online]. Available: https://www.hach.com/asset-get.download.jsa?id=29641556307. Accessed on: November 30, 2017.

N. A. Azarenko, S. V. Litovchenko, I. M. Nekljudov and P. I. Stoev, Korrozija I Zasita Metallov. Cast 1. Himiceskaja Korrozia Metallov. Ministry of Education and Science of Ukraine. V. N. Karazin Kharkiv National University. p. 187

T. L. Lukanina, I. S. Mihajlova and M. A. Radin, Himiceskoe Soprotivlenie Materialov i Zasita ot Korrozii. Saint Petersburg, 2014.

The LibreTexts libraries, Standard Electrode Potentials. [Online]. Available: https://chem.libretexts.org/Textbook_Maps/General_Chemistry_Textbook_Maps/Map%3A_General_Chemistry_(Petrucci_et_al.)/20%3A_Electrochemistry/20.2%3A_Standard_Electrode_Potentials. Accessed on: December 10, 2017.

A. Urbahs, K. Savkovs, V. Ņesterovskis and G. Rijkuris, “A Device for Measuring Electrode Potential,” LV patent LV 15205 B, July 20, 2017.

A. Urbahs, G. Rijkuris and K. Savkovs, “Corrosion and Wear Resistant Nanostructured Metal Coatings Characteristics Analysis,” in Proceedings of the AES-ATEMA 26th International Conference, Ottawa, Series – Advances and Trends in Engineering Materials and their Applications, 12–16 October, 2015, pp. 37–42. , ISSN 978-1-927838-21

А. Urbahs, G. Rijkuris and I. Stelpa, “Marine Vessel Structure and Equipment Corrosion Defect Characteristics,” Production and Engineering, vol. 35, pp. 38–45, 2013.




DOI: 10.1515/tae-2018-0001

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