Comparison of the functional properties of selected multilayer systems

Electrodeposition of multilayers continues to grow and diversify. Research is still underway on the adaptation of multilayer systems to new applications in various industries. Cu/Ni multilayers are still very commonly used for practical purposes. In this work, the functional properties of selected m...

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Main Authors: D. Gatner, K. Pietrucha, B. Dziergas, A. Nowak, D. Kowalcze, W. Łonski, M. Spilka, M. Kciuk
Format: Article
Language:English
Published: Croatian Metallurgical Society 2023-01-01
Series:Metalurgija
Subjects:
Online Access:https://hrcak.srce.hr/file/434299
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author D. Gatner
K. Pietrucha
B. Dziergas
A. Nowak
D. Kowalcze
W. Łonski
M. Spilka
M. Kciuk
author_facet D. Gatner
K. Pietrucha
B. Dziergas
A. Nowak
D. Kowalcze
W. Łonski
M. Spilka
M. Kciuk
author_sort D. Gatner
collection DOAJ
description Electrodeposition of multilayers continues to grow and diversify. Research is still underway on the adaptation of multilayer systems to new applications in various industries. Cu/Ni multilayers are still very commonly used for practical purposes. In this work, the functional properties of selected multilayer systems with different layers quantity and thicknesses in nanoscale were investigated. The Cu and Ni layers were electrolytically deposited on a low carbon steel substrate and obtained systems were subjected to structural and anticorrosion properties study. The electrochemical parameters were determined by potentiodynamic method and the surface evaluation of the systems after corrosion tests was also carried out.
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spelling doaj.art-3ded419e35b040e0884a3982c4d56ed32023-05-02T10:11:38ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762023-01-01623-4440442Comparison of the functional properties of selected multilayer systemsD. Gatner0K. Pietrucha1B. Dziergas2A. Nowak3D. Kowalcze4W. Łonski5M. Spilka6M. Kciuk7Silesian University of Technology, Gliwice, PolandSilesian University of Technology, Gliwice, PolandSilesian University of Technology, Gliwice, PolandSilesian University of Technology, Gliwice, PolandSilesian University of Technology, Gliwice, PolandSilesian University of Technology, Gliwice, PolandSilesian University of Technology, Gliwice, PolandSilesian University of Technology, Gliwice, PolandElectrodeposition of multilayers continues to grow and diversify. Research is still underway on the adaptation of multilayer systems to new applications in various industries. Cu/Ni multilayers are still very commonly used for practical purposes. In this work, the functional properties of selected multilayer systems with different layers quantity and thicknesses in nanoscale were investigated. The Cu and Ni layers were electrolytically deposited on a low carbon steel substrate and obtained systems were subjected to structural and anticorrosion properties study. The electrochemical parameters were determined by potentiodynamic method and the surface evaluation of the systems after corrosion tests was also carried out.https://hrcak.srce.hr/file/434299Cu/Ni systemgalvanic treatmentmultilayer systemscorrosion resistancex-ray research
spellingShingle D. Gatner
K. Pietrucha
B. Dziergas
A. Nowak
D. Kowalcze
W. Łonski
M. Spilka
M. Kciuk
Comparison of the functional properties of selected multilayer systems
Metalurgija
Cu/Ni system
galvanic treatment
multilayer systems
corrosion resistance
x-ray research
title Comparison of the functional properties of selected multilayer systems
title_full Comparison of the functional properties of selected multilayer systems
title_fullStr Comparison of the functional properties of selected multilayer systems
title_full_unstemmed Comparison of the functional properties of selected multilayer systems
title_short Comparison of the functional properties of selected multilayer systems
title_sort comparison of the functional properties of selected multilayer systems
topic Cu/Ni system
galvanic treatment
multilayer systems
corrosion resistance
x-ray research
url https://hrcak.srce.hr/file/434299
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AT bdziergas comparisonofthefunctionalpropertiesofselectedmultilayersystems
AT anowak comparisonofthefunctionalpropertiesofselectedmultilayersystems
AT dkowalcze comparisonofthefunctionalpropertiesofselectedmultilayersystems
AT włonski comparisonofthefunctionalpropertiesofselectedmultilayersystems
AT mspilka comparisonofthefunctionalpropertiesofselectedmultilayersystems
AT mkciuk comparisonofthefunctionalpropertiesofselectedmultilayersystems