Mechanisms of formation of nanostructured electrolytic coatings Fe-Ni, Co-Mn, Ni-Cr with functional properties

The evolution of modern industry is impossible without the development of new materials and technologies. Nanostructured coatings, in particular electrolytic coatings, are among the most demanded in mechanical engineering. The purpose of this work was to study the different mechanisms of obtaining F...

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Main Authors: I. G. Zhikhareva, V. V. Schmidt, D. V. Denisenko, V. P. Shchipanov, A. D. Fedorov, A. I. Neustroev
Format: Article
Language:Russian
Published: Industrial University of Tyumen 2023-09-01
Series:Архитектура, строительство, транспорт
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Online Access:https://ast.tyuiu.ru/jour/article/view/125
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author I. G. Zhikhareva
V. V. Schmidt
D. V. Denisenko
V. P. Shchipanov
A. D. Fedorov
A. I. Neustroev
author_facet I. G. Zhikhareva
V. V. Schmidt
D. V. Denisenko
V. P. Shchipanov
A. D. Fedorov
A. I. Neustroev
author_sort I. G. Zhikhareva
collection DOAJ
description The evolution of modern industry is impossible without the development of new materials and technologies. Nanostructured coatings, in particular electrolytic coatings, are among the most demanded in mechanical engineering. The purpose of this work was to study the different mechanisms of obtaining Fe-Ni, Co- Mn, Ni-Cr galvanic alloys and their relationship with the specified universal physical and mechanical properties. Fe-Ni alloy is characterized by high microhardness and corrosion resistance in sea water, low cold brittleness; Co-Mn – by a specified phase composition (α-Co >> α-Mn, amorphous and metastable phase Co(OH)2); Ni-Cr – by high coating microhardness, specified phase composition. The main methods of production: high-frequency alternating current for Fe-Ni and Co-Mn alloys; introduction of a special additive (carbamide or H-acid) for Ni-Cr alloy. The main mechanisms are: Fe-Ni due to phase transition α-Fe → ε-Fe; Co-Mn by means of high-frequency alternating current and carbamide addition, providing a specified phase composition; Ni-Cr by means of stationary method of addition of H-acid (high-chromium alloy of 68 mass percent of Cr) and carbamide (low-chromium alloy of 25 mass percent of Cr). Recommended uses for electroplating: Fe-Ni – for protection of oil and gas production equipment in the Arctic; Co- Mn – in modulation systems and as a nanocatalyst in the Fischer-Tropsch synthesis reaction; Ni-Cr – for corrosion-resistant protective coatings in petrochemistry and for resistive elements.
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institution Kabale University
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language Russian
publishDate 2023-09-01
publisher Industrial University of Tyumen
record_format Article
series Архитектура, строительство, транспорт
spelling doaj-art-c5c56bd551af4df3a2b9840a7b4e98912025-08-20T04:01:01ZrusIndustrial University of TyumenАрхитектура, строительство, транспорт2782-232X2713-07702023-09-01039610310.31660/2782-232X-2023-3-96-103126Mechanisms of formation of nanostructured electrolytic coatings Fe-Ni, Co-Mn, Ni-Cr with functional propertiesI. G. Zhikhareva0V. V. Schmidt1D. V. Denisenko2V. P. Shchipanov3A. D. Fedorov4A. I. Neustroev5Industrial University of TyumenIndustrial University of Tyumen; Tyumen Higher Military Engineer Command School named after A. I. ProshlyakovIndustrial University of Tyumen; PJSC "Tyumen Design and Research Institute of Oil and Gas Industry named after V. I. Muravlenko"Industrial University of TyumenIndustrial University of TyumenIndustrial University of TyumenThe evolution of modern industry is impossible without the development of new materials and technologies. Nanostructured coatings, in particular electrolytic coatings, are among the most demanded in mechanical engineering. The purpose of this work was to study the different mechanisms of obtaining Fe-Ni, Co- Mn, Ni-Cr galvanic alloys and their relationship with the specified universal physical and mechanical properties. Fe-Ni alloy is characterized by high microhardness and corrosion resistance in sea water, low cold brittleness; Co-Mn – by a specified phase composition (α-Co >> α-Mn, amorphous and metastable phase Co(OH)2); Ni-Cr – by high coating microhardness, specified phase composition. The main methods of production: high-frequency alternating current for Fe-Ni and Co-Mn alloys; introduction of a special additive (carbamide or H-acid) for Ni-Cr alloy. The main mechanisms are: Fe-Ni due to phase transition α-Fe → ε-Fe; Co-Mn by means of high-frequency alternating current and carbamide addition, providing a specified phase composition; Ni-Cr by means of stationary method of addition of H-acid (high-chromium alloy of 68 mass percent of Cr) and carbamide (low-chromium alloy of 25 mass percent of Cr). Recommended uses for electroplating: Fe-Ni – for protection of oil and gas production equipment in the Arctic; Co- Mn – in modulation systems and as a nanocatalyst in the Fischer-Tropsch synthesis reaction; Ni-Cr – for corrosion-resistant protective coatings in petrochemistry and for resistive elements.https://ast.tyuiu.ru/jour/article/view/125new coatingsnew phases of materialselectroplating coatingsphase transitionsnanostructurephase transition mechanismsalloys
spellingShingle I. G. Zhikhareva
V. V. Schmidt
D. V. Denisenko
V. P. Shchipanov
A. D. Fedorov
A. I. Neustroev
Mechanisms of formation of nanostructured electrolytic coatings Fe-Ni, Co-Mn, Ni-Cr with functional properties
Архитектура, строительство, транспорт
new coatings
new phases of materials
electroplating coatings
phase transitions
nanostructure
phase transition mechanisms
alloys
title Mechanisms of formation of nanostructured electrolytic coatings Fe-Ni, Co-Mn, Ni-Cr with functional properties
title_full Mechanisms of formation of nanostructured electrolytic coatings Fe-Ni, Co-Mn, Ni-Cr with functional properties
title_fullStr Mechanisms of formation of nanostructured electrolytic coatings Fe-Ni, Co-Mn, Ni-Cr with functional properties
title_full_unstemmed Mechanisms of formation of nanostructured electrolytic coatings Fe-Ni, Co-Mn, Ni-Cr with functional properties
title_short Mechanisms of formation of nanostructured electrolytic coatings Fe-Ni, Co-Mn, Ni-Cr with functional properties
title_sort mechanisms of formation of nanostructured electrolytic coatings fe ni co mn ni cr with functional properties
topic new coatings
new phases of materials
electroplating coatings
phase transitions
nanostructure
phase transition mechanisms
alloys
url https://ast.tyuiu.ru/jour/article/view/125
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AT dvdenisenko mechanismsofformationofnanostructuredelectrolyticcoatingsfenicomnnicrwithfunctionalproperties
AT vpshchipanov mechanismsofformationofnanostructuredelectrolyticcoatingsfenicomnnicrwithfunctionalproperties
AT adfedorov mechanismsofformationofnanostructuredelectrolyticcoatingsfenicomnnicrwithfunctionalproperties
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