O PROCESSO DE ANODIZAçãO DO ALUMíNIO E SUAS LIGAS: UMA ABORDAGEM HISTóRICA E ELETROQUíMICA

THE ANODIZING PROCESS OF ALUMINUM AND ITS ALLOYS: A HISTORICAL AND ELECTROCHEMICAL APPROACH. Al and its alloys are found in several industrial applications. However, like most metals, this material is not immune to corrosion, being necessary to be protected against corrosion. One of the methods most commonly employed to improve the corrosion resistance of Al alloys is the anodizing process, which consists of thickening of the natural oxide (Al2O3) presents in Al through anodic oxidation. The anodizing process is accomplished by immersion of the Al alloy into an acid bath and passing an electric current through it. This process produces two layers: a barrier layer thicker than the natural oxide and a layer with regular arrangement of nanopores (porous layer). This duplex structure forms the anodized layer with a large specific surface area. With the advent of nanotechnology, this layer has been applied in other areas due to its low cost, stability, absence of toxicity, and biocompatibility. In this context, this paper addresses a historical and electrochemical review of the anodizing process of Al and its alloys, presenting the main events that culminated in the development of the current processes and the understanding of the relationship between the chemical reactions and the mechanisms that occur during nucleation and development of the oxide layer.

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Main Authors: Araujo,João Victor de Sousa, Silva,Rejane Maria Pereira da, Klumpp,Rafael Emil, Costa,Isolda
Format: Digital revista
Language:Portuguese
Published: Sociedade Brasileira de Química 2021
Online Access:http://old.scielo.br/scielo.php?script=sci_arttext&pid=S0100-40422021000800999
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spelling oai:scielo:S0100-404220210008009992021-09-24O PROCESSO DE ANODIZAçãO DO ALUMíNIO E SUAS LIGAS: UMA ABORDAGEM HISTóRICA E ELETROQUíMICAAraujo,João Victor de SousaSilva,Rejane Maria Pereira daKlumpp,Rafael EmilCosta,Isolda aluminum electrochemistry anodizing nanotechnology THE ANODIZING PROCESS OF ALUMINUM AND ITS ALLOYS: A HISTORICAL AND ELECTROCHEMICAL APPROACH. Al and its alloys are found in several industrial applications. However, like most metals, this material is not immune to corrosion, being necessary to be protected against corrosion. One of the methods most commonly employed to improve the corrosion resistance of Al alloys is the anodizing process, which consists of thickening of the natural oxide (Al2O3) presents in Al through anodic oxidation. The anodizing process is accomplished by immersion of the Al alloy into an acid bath and passing an electric current through it. This process produces two layers: a barrier layer thicker than the natural oxide and a layer with regular arrangement of nanopores (porous layer). This duplex structure forms the anodized layer with a large specific surface area. With the advent of nanotechnology, this layer has been applied in other areas due to its low cost, stability, absence of toxicity, and biocompatibility. In this context, this paper addresses a historical and electrochemical review of the anodizing process of Al and its alloys, presenting the main events that culminated in the development of the current processes and the understanding of the relationship between the chemical reactions and the mechanisms that occur during nucleation and development of the oxide layer.info:eu-repo/semantics/openAccessSociedade Brasileira de QuímicaQuímica Nova v.44 n.8 20212021-08-01info:eu-repo/semantics/articletext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S0100-40422021000800999pt10.21577/0100-4042.20170748
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language Portuguese
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author Araujo,João Victor de Sousa
Silva,Rejane Maria Pereira da
Klumpp,Rafael Emil
Costa,Isolda
spellingShingle Araujo,João Victor de Sousa
Silva,Rejane Maria Pereira da
Klumpp,Rafael Emil
Costa,Isolda
O PROCESSO DE ANODIZAçãO DO ALUMíNIO E SUAS LIGAS: UMA ABORDAGEM HISTóRICA E ELETROQUíMICA
author_facet Araujo,João Victor de Sousa
Silva,Rejane Maria Pereira da
Klumpp,Rafael Emil
Costa,Isolda
author_sort Araujo,João Victor de Sousa
title O PROCESSO DE ANODIZAçãO DO ALUMíNIO E SUAS LIGAS: UMA ABORDAGEM HISTóRICA E ELETROQUíMICA
title_short O PROCESSO DE ANODIZAçãO DO ALUMíNIO E SUAS LIGAS: UMA ABORDAGEM HISTóRICA E ELETROQUíMICA
title_full O PROCESSO DE ANODIZAçãO DO ALUMíNIO E SUAS LIGAS: UMA ABORDAGEM HISTóRICA E ELETROQUíMICA
title_fullStr O PROCESSO DE ANODIZAçãO DO ALUMíNIO E SUAS LIGAS: UMA ABORDAGEM HISTóRICA E ELETROQUíMICA
title_full_unstemmed O PROCESSO DE ANODIZAçãO DO ALUMíNIO E SUAS LIGAS: UMA ABORDAGEM HISTóRICA E ELETROQUíMICA
title_sort o processo de anodização do alumínio e suas ligas: uma abordagem histórica e eletroquímica
description THE ANODIZING PROCESS OF ALUMINUM AND ITS ALLOYS: A HISTORICAL AND ELECTROCHEMICAL APPROACH. Al and its alloys are found in several industrial applications. However, like most metals, this material is not immune to corrosion, being necessary to be protected against corrosion. One of the methods most commonly employed to improve the corrosion resistance of Al alloys is the anodizing process, which consists of thickening of the natural oxide (Al2O3) presents in Al through anodic oxidation. The anodizing process is accomplished by immersion of the Al alloy into an acid bath and passing an electric current through it. This process produces two layers: a barrier layer thicker than the natural oxide and a layer with regular arrangement of nanopores (porous layer). This duplex structure forms the anodized layer with a large specific surface area. With the advent of nanotechnology, this layer has been applied in other areas due to its low cost, stability, absence of toxicity, and biocompatibility. In this context, this paper addresses a historical and electrochemical review of the anodizing process of Al and its alloys, presenting the main events that culminated in the development of the current processes and the understanding of the relationship between the chemical reactions and the mechanisms that occur during nucleation and development of the oxide layer.
publisher Sociedade Brasileira de Química
publishDate 2021
url http://old.scielo.br/scielo.php?script=sci_arttext&pid=S0100-40422021000800999
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