COATING THICKNESS ANALYSIS OF DEPOSITED FeCrAl SUBSTRATE BY γ-AL2O3 THROUGH NiO-ELECTROPLATING

Nickel Oxide (NiO) have widely applied in industrial and automotive to forming oxide layer on the substrate due to it have high thermal stability and corrosion resistant. However, NiO was not directly diffused to the substrate via co-precipitation, spray-pyrolysis and sol-gel methods. Therefore, NiO...

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Main Authors: Hadi Pranoto, Nurato Nurato, Dafit Feriyanto
Format: Article
Language:Indonesian
Published: Universitas Mercu Buana 2018-10-01
Series:Jurnal Ilmiah SINERGI
Subjects:
NiO
Online Access:http://publikasi.mercubuana.ac.id/index.php/sinergi/article/view/2771
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spelling doaj-b1f6c91e016d4e01a251b966082405d42020-11-25T01:02:12ZindUniversitas Mercu BuanaJurnal Ilmiah SINERGI1410-23312460-12172018-10-0122317718410.22441/sinergi.2018.3.0062262COATING THICKNESS ANALYSIS OF DEPOSITED FeCrAl SUBSTRATE BY γ-AL2O3 THROUGH NiO-ELECTROPLATINGHadi Pranoto0Nurato Nurato1Dafit Feriyanto2Program Studi Teknik Mesin, Fakultas Teknik, Universitas Mercu BuanaProgram Studi Teknik Mesin, Fakultas Teknik, Universitas Mercu BuanaProgram Studi Teknik Mesin, Fakultas Teknik Teknologi, Universiti Tun Hussein Onn MalaysiaNickel Oxide (NiO) have widely applied in industrial and automotive to forming oxide layer on the substrate due to it have high thermal stability and corrosion resistant. However, NiO was not directly diffused to the substrate via co-precipitation, spray-pyrolysis and sol-gel methods. Therefore, NiO-electroplating was performed in coating FeCrAl substrate by γ-Al2O3 powder. This method was conducted using various time of 15, 30, 45, 60 and 75 minutes, a current of DC power supply is 1.28A and sulphamate type solution. From the data shows that smallest surface roughness (Ra) of NiO-electroplating (EL) samples located at EL 30 min sample for 0.69 µm. Ra of raw material was lower than coated samples due to it performed by coating activity on the substrate. It supported by coating thickness analysis that treated samples has a higher coating thickness up to 11.3 µm. EDS analysis observed some elements on coated and uncoated samples such as Carbon (C) of 4.62-20.67%, Oxygen (O) of 6.16-19.62%, Nickel (Ni) of 6.76-25.14%, Iron (Fe) of 23.96-48.53%, Sodium (Na) of 2.21-9.95%, Chromium (Cr) of 7.97-15.59% and Aluminum (Al) of 2.17-3.12%. Those elements promote to develop a protective oxide layer on FeCrAl at a high temperature of 1000 0C.http://publikasi.mercubuana.ac.id/index.php/sinergi/article/view/2771ElectroplatingCoating thicknessNiOFeCrAl
collection DOAJ
language Indonesian
format Article
sources DOAJ
author Hadi Pranoto
Nurato Nurato
Dafit Feriyanto
spellingShingle Hadi Pranoto
Nurato Nurato
Dafit Feriyanto
COATING THICKNESS ANALYSIS OF DEPOSITED FeCrAl SUBSTRATE BY γ-AL2O3 THROUGH NiO-ELECTROPLATING
Jurnal Ilmiah SINERGI
Electroplating
Coating thickness
NiO
FeCrAl
author_facet Hadi Pranoto
Nurato Nurato
Dafit Feriyanto
author_sort Hadi Pranoto
title COATING THICKNESS ANALYSIS OF DEPOSITED FeCrAl SUBSTRATE BY γ-AL2O3 THROUGH NiO-ELECTROPLATING
title_short COATING THICKNESS ANALYSIS OF DEPOSITED FeCrAl SUBSTRATE BY γ-AL2O3 THROUGH NiO-ELECTROPLATING
title_full COATING THICKNESS ANALYSIS OF DEPOSITED FeCrAl SUBSTRATE BY γ-AL2O3 THROUGH NiO-ELECTROPLATING
title_fullStr COATING THICKNESS ANALYSIS OF DEPOSITED FeCrAl SUBSTRATE BY γ-AL2O3 THROUGH NiO-ELECTROPLATING
title_full_unstemmed COATING THICKNESS ANALYSIS OF DEPOSITED FeCrAl SUBSTRATE BY γ-AL2O3 THROUGH NiO-ELECTROPLATING
title_sort coating thickness analysis of deposited fecral substrate by γ-al2o3 through nio-electroplating
publisher Universitas Mercu Buana
series Jurnal Ilmiah SINERGI
issn 1410-2331
2460-1217
publishDate 2018-10-01
description Nickel Oxide (NiO) have widely applied in industrial and automotive to forming oxide layer on the substrate due to it have high thermal stability and corrosion resistant. However, NiO was not directly diffused to the substrate via co-precipitation, spray-pyrolysis and sol-gel methods. Therefore, NiO-electroplating was performed in coating FeCrAl substrate by γ-Al2O3 powder. This method was conducted using various time of 15, 30, 45, 60 and 75 minutes, a current of DC power supply is 1.28A and sulphamate type solution. From the data shows that smallest surface roughness (Ra) of NiO-electroplating (EL) samples located at EL 30 min sample for 0.69 µm. Ra of raw material was lower than coated samples due to it performed by coating activity on the substrate. It supported by coating thickness analysis that treated samples has a higher coating thickness up to 11.3 µm. EDS analysis observed some elements on coated and uncoated samples such as Carbon (C) of 4.62-20.67%, Oxygen (O) of 6.16-19.62%, Nickel (Ni) of 6.76-25.14%, Iron (Fe) of 23.96-48.53%, Sodium (Na) of 2.21-9.95%, Chromium (Cr) of 7.97-15.59% and Aluminum (Al) of 2.17-3.12%. Those elements promote to develop a protective oxide layer on FeCrAl at a high temperature of 1000 0C.
topic Electroplating
Coating thickness
NiO
FeCrAl
url http://publikasi.mercubuana.ac.id/index.php/sinergi/article/view/2771
work_keys_str_mv AT hadipranoto coatingthicknessanalysisofdepositedfecralsubstratebygal2o3throughnioelectroplating
AT nuratonurato coatingthicknessanalysisofdepositedfecralsubstratebygal2o3throughnioelectroplating
AT dafitferiyanto coatingthicknessanalysisofdepositedfecralsubstratebygal2o3throughnioelectroplating
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