Evaluation of Low Voltage Anodizing Process on the Aluminum Foil in Sulphuric Acid Solution

In this study, the anodizing process has been carried out on aluminum foil (0.20 mm thickness) by using a low voltage method. The aim of this work is to observe affect of low voltage anodizing in the surface nature of aluminum foil. The voltage was 5, 6, 7, 8, 12 and 15 V, and the duration of anodiz...

Full description

Bibliographic Details
Main Authors: Hairul Arsyad, Lukmanul Hakim Arma, Yusdiana, Ariyanto
Format: Article
Language:English
Published: University of Kragujevac 2023-06-01
Series:Tribology in Industry
Subjects:
Online Access:http://www.tribology.rs/journals/2023/2023-2/2023-2-05.html
_version_ 1797671670562947072
author Hairul Arsyad
Lukmanul Hakim Arma
Yusdiana
Ariyanto
author_facet Hairul Arsyad
Lukmanul Hakim Arma
Yusdiana
Ariyanto
author_sort Hairul Arsyad
collection DOAJ
description In this study, the anodizing process has been carried out on aluminum foil (0.20 mm thickness) by using a low voltage method. The aim of this work is to observe affect of low voltage anodizing in the surface nature of aluminum foil. The voltage was 5, 6, 7, 8, 12 and 15 V, and the duration of anodizing time was 30, 40, 50, and 60 min. The anodizing process was conducted by using 2 M aqueous sulfuric acid as an anodizing solution. The structural analysis of the oxide layer were performed by using 3D laser measurement optical microstructure. The maximum tensile load of anodized foil conduct by 5kN universal testing machine. The effect of low voltage anodizing on anodized aluminum foil microstructure, surface temperature, surface roughness, thickness, wettability, maximum tensile load, and current profile during anodizing were observed. The results obtained show that even at low voltages, the treatment has influenced the nature of the aluminum foil in terms of surface microstructure, oxide layer profile, maximum tensile load, current profile, surface temperature, wettability, and roughness.
first_indexed 2024-03-11T21:18:55Z
format Article
id doaj.art-7f5238868e9c45c8b612b9e1dcde2afa
institution Directory Open Access Journal
issn 0354-8996
2217-7965
language English
last_indexed 2024-03-11T21:18:55Z
publishDate 2023-06-01
publisher University of Kragujevac
record_format Article
series Tribology in Industry
spelling doaj.art-7f5238868e9c45c8b612b9e1dcde2afa2023-09-28T10:44:14ZengUniversity of KragujevacTribology in Industry0354-89962217-79652023-06-0145223724610.24874/ti.1432.01.23.05Evaluation of Low Voltage Anodizing Process on the Aluminum Foil in Sulphuric Acid SolutionHairul Arsyad0https://orcid.org/0000-0003-3356-2846Lukmanul Hakim Arma1https://orcid.org/0000-0001-6039-7474Yusdiana2https://orcid.org/0009-0004-9116-3346Ariyanto3https://orcid.org/0000-0001-5015-8250Department of Mechanical Engineering, Engineering Faculty, University of Hasanuddin, Makassar, IndonesiaDepartment of Mechanical Engineering, Engineering Faculty, University of Hasanuddin, Makassar, IndonesiaDepartment of Mechanical Engineering, Engineering Faculty, University of Hasanuddin, Makassar, IndonesiaDepartment of Mechanical Engineering, Engineering Faculty, University of Hasanuddin, Makassar, IndonesiaIn this study, the anodizing process has been carried out on aluminum foil (0.20 mm thickness) by using a low voltage method. The aim of this work is to observe affect of low voltage anodizing in the surface nature of aluminum foil. The voltage was 5, 6, 7, 8, 12 and 15 V, and the duration of anodizing time was 30, 40, 50, and 60 min. The anodizing process was conducted by using 2 M aqueous sulfuric acid as an anodizing solution. The structural analysis of the oxide layer were performed by using 3D laser measurement optical microstructure. The maximum tensile load of anodized foil conduct by 5kN universal testing machine. The effect of low voltage anodizing on anodized aluminum foil microstructure, surface temperature, surface roughness, thickness, wettability, maximum tensile load, and current profile during anodizing were observed. The results obtained show that even at low voltages, the treatment has influenced the nature of the aluminum foil in terms of surface microstructure, oxide layer profile, maximum tensile load, current profile, surface temperature, wettability, and roughness.http://www.tribology.rs/journals/2023/2023-2/2023-2-05.htmlsurface characteristiclow voltageanodized aluminum foilmicrostructurewettability
spellingShingle Hairul Arsyad
Lukmanul Hakim Arma
Yusdiana
Ariyanto
Evaluation of Low Voltage Anodizing Process on the Aluminum Foil in Sulphuric Acid Solution
Tribology in Industry
surface characteristic
low voltage
anodized aluminum foil
microstructure
wettability
title Evaluation of Low Voltage Anodizing Process on the Aluminum Foil in Sulphuric Acid Solution
title_full Evaluation of Low Voltage Anodizing Process on the Aluminum Foil in Sulphuric Acid Solution
title_fullStr Evaluation of Low Voltage Anodizing Process on the Aluminum Foil in Sulphuric Acid Solution
title_full_unstemmed Evaluation of Low Voltage Anodizing Process on the Aluminum Foil in Sulphuric Acid Solution
title_short Evaluation of Low Voltage Anodizing Process on the Aluminum Foil in Sulphuric Acid Solution
title_sort evaluation of low voltage anodizing process on the aluminum foil in sulphuric acid solution
topic surface characteristic
low voltage
anodized aluminum foil
microstructure
wettability
url http://www.tribology.rs/journals/2023/2023-2/2023-2-05.html
work_keys_str_mv AT hairularsyad evaluationoflowvoltageanodizingprocessonthealuminumfoilinsulphuricacidsolution
AT lukmanulhakimarma evaluationoflowvoltageanodizingprocessonthealuminumfoilinsulphuricacidsolution
AT yusdiana evaluationoflowvoltageanodizingprocessonthealuminumfoilinsulphuricacidsolution
AT ariyanto evaluationoflowvoltageanodizingprocessonthealuminumfoilinsulphuricacidsolution