STUDY OF Zn-Ni ALLOY COATINGSMODIFIED BY NANO-AL2O3 PARTICLES INCORPORATION

Zn–Ni–Al2O3 nano-composite coatings were electrodeposited on mild steel using a novel sol enhanced electroplating method. The effect of alumina sol on the electrodeposition process, and coating properties was investigated using, X-ray diffraction, scanning electron microscopy (SEM), measurement of...

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Main Authors: Malika Diafi, Said Benramache, Elhachmi Guettaf Temam, Adaika Mohamed Lakhdar, Brahim Gasmi
Format: Article
Language:English
Published: SciCell s.r.o. 2016-09-01
Series:Acta Metallurgica Slovaca
Subjects:
EIS
XRD
SEM
Online Access:https://journals.scicell.org/index.php/AMS/article/view/184
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spelling doaj-750b1a1f5f5e422393b6b466f683372e2020-11-25T02:00:19ZengSciCell s.r.o.Acta Metallurgica Slovaca1335-15321338-11562016-09-0122310.12776/ams.v22i3.706STUDY OF Zn-Ni ALLOY COATINGSMODIFIED BY NANO-AL2O3 PARTICLES INCORPORATIONMalika DiafiSaid BenramacheElhachmi Guettaf TemamAdaika Mohamed LakhdarBrahim Gasmi Zn–Ni–Al2O3 nano-composite coatings were electrodeposited on mild steel using a novel sol enhanced electroplating method. The effect of alumina sol on the electrodeposition process, and coating properties was investigated using, X-ray diffraction, scanning electron microscopy (SEM), measurement of microhardness and chronoamperometry and electrochemical impedance spectroscopy were studied in a solution of 3% NaCl. The results indicated that the electro-crystallization processes of Zn–Ni and Zn–Ni–Al2O3 were governed by a three-dimensional nucleation process controlled by diffusion. XRD results showed that the phase structure of both alloy and composite coatings was single Ni5Zn21-γ phase, and the addition of alumina sol in the Zn-Ni matrix increases the microhardness, and we note the maximum hardness is obtained for 50 g/L Al2O3. Conversely, these coatings showed smaller crystallite size and Surface of coatings was uniform and compact, the values of Rct and Zw increase, while the values of Cdl decrease with increasing alumina nano-particles content values for the Zn–Ni– Al2O3 alloy clearly confirm the better corrosion resistance. https://journals.scicell.org/index.php/AMS/article/view/184Al2O3NickelZincEISXRDSEM
collection DOAJ
language English
format Article
sources DOAJ
author Malika Diafi
Said Benramache
Elhachmi Guettaf Temam
Adaika Mohamed Lakhdar
Brahim Gasmi
spellingShingle Malika Diafi
Said Benramache
Elhachmi Guettaf Temam
Adaika Mohamed Lakhdar
Brahim Gasmi
STUDY OF Zn-Ni ALLOY COATINGSMODIFIED BY NANO-AL2O3 PARTICLES INCORPORATION
Acta Metallurgica Slovaca
Al2O3
Nickel
Zinc
EIS
XRD
SEM
author_facet Malika Diafi
Said Benramache
Elhachmi Guettaf Temam
Adaika Mohamed Lakhdar
Brahim Gasmi
author_sort Malika Diafi
title STUDY OF Zn-Ni ALLOY COATINGSMODIFIED BY NANO-AL2O3 PARTICLES INCORPORATION
title_short STUDY OF Zn-Ni ALLOY COATINGSMODIFIED BY NANO-AL2O3 PARTICLES INCORPORATION
title_full STUDY OF Zn-Ni ALLOY COATINGSMODIFIED BY NANO-AL2O3 PARTICLES INCORPORATION
title_fullStr STUDY OF Zn-Ni ALLOY COATINGSMODIFIED BY NANO-AL2O3 PARTICLES INCORPORATION
title_full_unstemmed STUDY OF Zn-Ni ALLOY COATINGSMODIFIED BY NANO-AL2O3 PARTICLES INCORPORATION
title_sort study of zn-ni alloy coatingsmodified by nano-al2o3 particles incorporation
publisher SciCell s.r.o.
series Acta Metallurgica Slovaca
issn 1335-1532
1338-1156
publishDate 2016-09-01
description Zn–Ni–Al2O3 nano-composite coatings were electrodeposited on mild steel using a novel sol enhanced electroplating method. The effect of alumina sol on the electrodeposition process, and coating properties was investigated using, X-ray diffraction, scanning electron microscopy (SEM), measurement of microhardness and chronoamperometry and electrochemical impedance spectroscopy were studied in a solution of 3% NaCl. The results indicated that the electro-crystallization processes of Zn–Ni and Zn–Ni–Al2O3 were governed by a three-dimensional nucleation process controlled by diffusion. XRD results showed that the phase structure of both alloy and composite coatings was single Ni5Zn21-γ phase, and the addition of alumina sol in the Zn-Ni matrix increases the microhardness, and we note the maximum hardness is obtained for 50 g/L Al2O3. Conversely, these coatings showed smaller crystallite size and Surface of coatings was uniform and compact, the values of Rct and Zw increase, while the values of Cdl decrease with increasing alumina nano-particles content values for the Zn–Ni– Al2O3 alloy clearly confirm the better corrosion resistance.
topic Al2O3
Nickel
Zinc
EIS
XRD
SEM
url https://journals.scicell.org/index.php/AMS/article/view/184
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