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Influence of PEO Electrolyzer Geometry on Current Density Distribution and Resultant Coating Properties on Zr-1Nb Alloy

This paper is devoted to the study of the current density distribution effect on plasma electrolytic oxidation process and resultant coatings on a Zr-1Nb alloy. The influence of the distance between the plates simultaneously placed into an electrolyzer was evaluated to assess the throwing power of t...

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Autores principales: Aubakirova, Veta, Gunderov, Dmitry, Farrakhov, Ruzil, Astanin, Vasily, Stotskiy, Andrey, Sharipov, Arseny, Demin, Alexey, Khalilov, Leonard, Parfenov, Evgeny
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10179548/
https://www.ncbi.nlm.nih.gov/pubmed/37176260
http://dx.doi.org/10.3390/ma16093377
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author Aubakirova, Veta
Gunderov, Dmitry
Farrakhov, Ruzil
Astanin, Vasily
Stotskiy, Andrey
Sharipov, Arseny
Demin, Alexey
Khalilov, Leonard
Parfenov, Evgeny
author_facet Aubakirova, Veta
Gunderov, Dmitry
Farrakhov, Ruzil
Astanin, Vasily
Stotskiy, Andrey
Sharipov, Arseny
Demin, Alexey
Khalilov, Leonard
Parfenov, Evgeny
author_sort Aubakirova, Veta
collection PubMed
description This paper is devoted to the study of the current density distribution effect on plasma electrolytic oxidation process and resultant coatings on a Zr-1Nb alloy. The influence of the distance between the plates simultaneously placed into an electrolyzer was evaluated to assess the throwing power of the PEO process. The current density on the facing surfaces of the plates decreases when the distance between them shrinks. This current density has a notable impact on the resultant PEO coating in terms of the surface morphology parameters and electrochemically evaluated corrosion resistance. The influence of this effect is low on the stages of anodizing and spark discharges (60–120 s of the PEO), and significantly increases on the stage of microarc discharges (120–360 s of the PEO). The coating obtained with a smaller distance between the plates, while having the same coating thickness as the others, exhibits higher wear resistance. New correlations between the current density, diffusion coefficient, time constant of nucleation and the coating thickness in the middle of the facing samples were established; in addition, a correlation of the coating morphology in this area with the roughness parameters RPc, RSm was shown. This study contributes to the development of optimized PEO processes for the simultaneously coated several devices of complex shape, e.g., orthopedic implants.
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spelling pubmed-101795482023-05-13 Influence of PEO Electrolyzer Geometry on Current Density Distribution and Resultant Coating Properties on Zr-1Nb Alloy Aubakirova, Veta Gunderov, Dmitry Farrakhov, Ruzil Astanin, Vasily Stotskiy, Andrey Sharipov, Arseny Demin, Alexey Khalilov, Leonard Parfenov, Evgeny Materials (Basel) Article This paper is devoted to the study of the current density distribution effect on plasma electrolytic oxidation process and resultant coatings on a Zr-1Nb alloy. The influence of the distance between the plates simultaneously placed into an electrolyzer was evaluated to assess the throwing power of the PEO process. The current density on the facing surfaces of the plates decreases when the distance between them shrinks. This current density has a notable impact on the resultant PEO coating in terms of the surface morphology parameters and electrochemically evaluated corrosion resistance. The influence of this effect is low on the stages of anodizing and spark discharges (60–120 s of the PEO), and significantly increases on the stage of microarc discharges (120–360 s of the PEO). The coating obtained with a smaller distance between the plates, while having the same coating thickness as the others, exhibits higher wear resistance. New correlations between the current density, diffusion coefficient, time constant of nucleation and the coating thickness in the middle of the facing samples were established; in addition, a correlation of the coating morphology in this area with the roughness parameters RPc, RSm was shown. This study contributes to the development of optimized PEO processes for the simultaneously coated several devices of complex shape, e.g., orthopedic implants. MDPI 2023-04-26 /pmc/articles/PMC10179548/ /pubmed/37176260 http://dx.doi.org/10.3390/ma16093377 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Aubakirova, Veta
Gunderov, Dmitry
Farrakhov, Ruzil
Astanin, Vasily
Stotskiy, Andrey
Sharipov, Arseny
Demin, Alexey
Khalilov, Leonard
Parfenov, Evgeny
Influence of PEO Electrolyzer Geometry on Current Density Distribution and Resultant Coating Properties on Zr-1Nb Alloy
title Influence of PEO Electrolyzer Geometry on Current Density Distribution and Resultant Coating Properties on Zr-1Nb Alloy
title_full Influence of PEO Electrolyzer Geometry on Current Density Distribution and Resultant Coating Properties on Zr-1Nb Alloy
title_fullStr Influence of PEO Electrolyzer Geometry on Current Density Distribution and Resultant Coating Properties on Zr-1Nb Alloy
title_full_unstemmed Influence of PEO Electrolyzer Geometry on Current Density Distribution and Resultant Coating Properties on Zr-1Nb Alloy
title_short Influence of PEO Electrolyzer Geometry on Current Density Distribution and Resultant Coating Properties on Zr-1Nb Alloy
title_sort influence of peo electrolyzer geometry on current density distribution and resultant coating properties on zr-1nb alloy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10179548/
https://www.ncbi.nlm.nih.gov/pubmed/37176260
http://dx.doi.org/10.3390/ma16093377
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