Microdefects of Biocorroded Pipe Steel Surfaces and Safety Assessment of Localized Stress Concentrators
The effect of sulfate-reducing bacteria (SRB) on the corrosion of steel 20 was investigated. Results demonstrated that the chemical composition of corrosion products, the corrosion rate, and corrosion type were altered due to the adherence of SRB and the subsequent formation of biofilm on the steel...
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doaj-185d431d1c304736994716dac2a642fa2020-11-25T03:12:43ZengMDPI AGMetals2075-47012020-06-011085285210.3390/met10070852Microdefects of Biocorroded Pipe Steel Surfaces and Safety Assessment of Localized Stress ConcentratorsPavlo Maruschak0Volodymyr Dzura1Olegas Prentkovskis2Iaroslav Lytvynenko3Myroslava Polutrenko4Department of Industrial Automation, Ternopil National Ivan Puuj Technical University, Ruska str. 56, 46001 Ternopil, UkraineDepartment of Industrial Automation, Ternopil National Ivan Puuj Technical University, Ruska str. 56, 46001 Ternopil, UkraineDepartment of Mobile Machinery and Railway Transport, Faculty of Transport Engineering, Vilnius Gediminas Technical University, Plytinės g. 27, Vilnius LT-10105, LithuaniaDepartment of Industrial Automation, Ternopil National Ivan Puuj Technical University, Ruska str. 56, 46001 Ternopil, UkraineIvano-Frankivsk National Technical University of Oil and Gas, Karpatska str. 15, 76019 Ivano-Frankivsk, UkraineThe effect of sulfate-reducing bacteria (SRB) on the corrosion of steel 20 was investigated. Results demonstrated that the chemical composition of corrosion products, the corrosion rate, and corrosion type were altered due to the adherence of SRB and the subsequent formation of biofilm on the steel 20 surface. The micromechanisms of biocorrosion damage of specimens from pipe steel 20 were quantified on the basis of the microgeometry of the degraded surface and the localization parameters of corrosive stress microconcentrators. Stress concentrators in the vicinity of the micro-cuts, which are the depths of the profilograms, make it possible to evaluate safe (allowable) microcorrosion damage. The proposed approach complements the well-known methods for monitoring biodeterioration of pipe steels. With its help, it was found that a decrease in the corrosion rate of specimens with the addition of an inhibitor does not always clearly indicate its effectiveness. The case where the introduction of an inhibitor led to the destruction of the SRB biofilm on the surface of specimens from steel 20, but caused the activation of local corrosion processes and the formation of a more developed microrelief, is considered. The hollows of such microrelief are potential places of origin of defects, which require additional control.https://www.mdpi.com/2075-4701/10/7/852pipeline steelmicrobiologically influenced corrosioninhomogeneous biofilmstress concentrators |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Pavlo Maruschak Volodymyr Dzura Olegas Prentkovskis Iaroslav Lytvynenko Myroslava Polutrenko |
spellingShingle |
Pavlo Maruschak Volodymyr Dzura Olegas Prentkovskis Iaroslav Lytvynenko Myroslava Polutrenko Microdefects of Biocorroded Pipe Steel Surfaces and Safety Assessment of Localized Stress Concentrators Metals pipeline steel microbiologically influenced corrosion inhomogeneous biofilm stress concentrators |
author_facet |
Pavlo Maruschak Volodymyr Dzura Olegas Prentkovskis Iaroslav Lytvynenko Myroslava Polutrenko |
author_sort |
Pavlo Maruschak |
title |
Microdefects of Biocorroded Pipe Steel Surfaces and Safety Assessment of Localized Stress Concentrators |
title_short |
Microdefects of Biocorroded Pipe Steel Surfaces and Safety Assessment of Localized Stress Concentrators |
title_full |
Microdefects of Biocorroded Pipe Steel Surfaces and Safety Assessment of Localized Stress Concentrators |
title_fullStr |
Microdefects of Biocorroded Pipe Steel Surfaces and Safety Assessment of Localized Stress Concentrators |
title_full_unstemmed |
Microdefects of Biocorroded Pipe Steel Surfaces and Safety Assessment of Localized Stress Concentrators |
title_sort |
microdefects of biocorroded pipe steel surfaces and safety assessment of localized stress concentrators |
publisher |
MDPI AG |
series |
Metals |
issn |
2075-4701 |
publishDate |
2020-06-01 |
description |
The effect of sulfate-reducing bacteria (SRB) on the corrosion of steel 20 was investigated. Results demonstrated that the chemical composition of corrosion products, the corrosion rate, and corrosion type were altered due to the adherence of SRB and the subsequent formation of biofilm on the steel 20 surface. The micromechanisms of biocorrosion damage of specimens from pipe steel 20 were quantified on the basis of the microgeometry of the degraded surface and the localization parameters of corrosive stress microconcentrators. Stress concentrators in the vicinity of the micro-cuts, which are the depths of the profilograms, make it possible to evaluate safe (allowable) microcorrosion damage. The proposed approach complements the well-known methods for monitoring biodeterioration of pipe steels. With its help, it was found that a decrease in the corrosion rate of specimens with the addition of an inhibitor does not always clearly indicate its effectiveness. The case where the introduction of an inhibitor led to the destruction of the SRB biofilm on the surface of specimens from steel 20, but caused the activation of local corrosion processes and the formation of a more developed microrelief, is considered. The hollows of such microrelief are potential places of origin of defects, which require additional control. |
topic |
pipeline steel microbiologically influenced corrosion inhomogeneous biofilm stress concentrators |
url |
https://www.mdpi.com/2075-4701/10/7/852 |
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