Measuring corrosion rate and protector effectiveness of advanced multilayer metallic materials by newly developed methods
The paper estimates corrosion resistance of new multilayer metallic materials with internal protector against pitting. Using an electron microscope method, the mechanism of the layers' corrosive destruction has been experimentally substantiated. The authors have suggested chemical and electroch...
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doaj-dfffdf4c6f994b05849fe304444a33012020-11-25T02:07:46ZengElsevierHeliyon2405-84402018-08-0148e00731Measuring corrosion rate and protector effectiveness of advanced multilayer metallic materials by newly developed methodsVladimir A. Grachev0Andrey E. Rozen1Yuri P. Perelygin2Sergey Yu. Kireev3Irina S. Los'4Andrey A. Rozen5A.N. Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences, 31, Bldg 4, Leninsky Prospect, Moscow, 119071, Russia; Corresponding author.Penza State University, 40, Krasnaya St., Penza, 440026, RussiaPenza State University, 40, Krasnaya St., Penza, 440026, RussiaPenza State University, 40, Krasnaya St., Penza, 440026, RussiaPenza State University, 40, Krasnaya St., Penza, 440026, RussiaPenza State University, 40, Krasnaya St., Penza, 440026, RussiaThe paper estimates corrosion resistance of new multilayer metallic materials with internal protector against pitting. Using an electron microscope method, the mechanism of the layers' corrosive destruction has been experimentally substantiated. The authors have suggested chemical and electrochemical methods of accelerated corrosion tests allowing for determining the corrosion destruction rate. The electrochemical method reveals the limiting stage of the process and allows calculating the mass corrosion index and substantiating the choice of protector for the specific corrosive medium. The chemical method allows for quantitative assessment of the internal protector's effectiveness and for defining the multilayer/monometallic material corrosion resistance ratio.http://www.sciencedirect.com/science/article/pii/S2405844018302743Materials scienceElectrochemistry |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Vladimir A. Grachev Andrey E. Rozen Yuri P. Perelygin Sergey Yu. Kireev Irina S. Los' Andrey A. Rozen |
spellingShingle |
Vladimir A. Grachev Andrey E. Rozen Yuri P. Perelygin Sergey Yu. Kireev Irina S. Los' Andrey A. Rozen Measuring corrosion rate and protector effectiveness of advanced multilayer metallic materials by newly developed methods Heliyon Materials science Electrochemistry |
author_facet |
Vladimir A. Grachev Andrey E. Rozen Yuri P. Perelygin Sergey Yu. Kireev Irina S. Los' Andrey A. Rozen |
author_sort |
Vladimir A. Grachev |
title |
Measuring corrosion rate and protector effectiveness of advanced multilayer metallic materials by newly developed methods |
title_short |
Measuring corrosion rate and protector effectiveness of advanced multilayer metallic materials by newly developed methods |
title_full |
Measuring corrosion rate and protector effectiveness of advanced multilayer metallic materials by newly developed methods |
title_fullStr |
Measuring corrosion rate and protector effectiveness of advanced multilayer metallic materials by newly developed methods |
title_full_unstemmed |
Measuring corrosion rate and protector effectiveness of advanced multilayer metallic materials by newly developed methods |
title_sort |
measuring corrosion rate and protector effectiveness of advanced multilayer metallic materials by newly developed methods |
publisher |
Elsevier |
series |
Heliyon |
issn |
2405-8440 |
publishDate |
2018-08-01 |
description |
The paper estimates corrosion resistance of new multilayer metallic materials with internal protector against pitting. Using an electron microscope method, the mechanism of the layers' corrosive destruction has been experimentally substantiated. The authors have suggested chemical and electrochemical methods of accelerated corrosion tests allowing for determining the corrosion destruction rate. The electrochemical method reveals the limiting stage of the process and allows calculating the mass corrosion index and substantiating the choice of protector for the specific corrosive medium. The chemical method allows for quantitative assessment of the internal protector's effectiveness and for defining the multilayer/monometallic material corrosion resistance ratio. |
topic |
Materials science Electrochemistry |
url |
http://www.sciencedirect.com/science/article/pii/S2405844018302743 |
work_keys_str_mv |
AT vladimiragrachev measuringcorrosionrateandprotectoreffectivenessofadvancedmultilayermetallicmaterialsbynewlydevelopedmethods AT andreyerozen measuringcorrosionrateandprotectoreffectivenessofadvancedmultilayermetallicmaterialsbynewlydevelopedmethods AT yuripperelygin measuringcorrosionrateandprotectoreffectivenessofadvancedmultilayermetallicmaterialsbynewlydevelopedmethods AT sergeyyukireev measuringcorrosionrateandprotectoreffectivenessofadvancedmultilayermetallicmaterialsbynewlydevelopedmethods AT irinaslos measuringcorrosionrateandprotectoreffectivenessofadvancedmultilayermetallicmaterialsbynewlydevelopedmethods AT andreyarozen measuringcorrosionrateandprotectoreffectivenessofadvancedmultilayermetallicmaterialsbynewlydevelopedmethods |
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