Electrochemical Corrosion Properties of Ternary Al and Quaternary Zr Added Bell Metal in 0.1M NaCl Solution

The electrochemical corrosion property of ternary Al and quaternary Zr added Bell metal in 0.1M Sodium Chloride solution has been experimentally conducted at room temperature. Electrochemical impedance spectroscopy (EIS) method and Potentiodynamic polarization technique are used to carry out the ele...

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Main Authors: Sakib Al Razi Khan, Mohammad Ashfaq Hossain, Maglub Al Nur, Mohammad Salim Kaiser
Format: Article
Language:English
Published: Universitas Negeri Malang 2021-07-01
Series:Journal of Mechanical Engineering Science and Technology
Subjects:
Online Access:http://journal2.um.ac.id/index.php/jmest/article/view/17382
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spelling doaj-03f3630875a848f8a0e06d97b845fe122021-10-08T07:24:50ZengUniversitas Negeri MalangJournal of Mechanical Engineering Science and Technology2580-08172580-24022021-07-015111610.17977/um016v5i12021p0016757Electrochemical Corrosion Properties of Ternary Al and Quaternary Zr Added Bell Metal in 0.1M NaCl SolutionSakib Al Razi Khan0Mohammad Ashfaq Hossain1Maglub Al Nur2Mohammad Salim Kaiser3Department of Mechanical Engineering, Bangladesh University of Engineering and Technology, Dhaka, 1000, BangladeshDepartment of Mechanical Engineering, Bangladesh University of Engineering and Technology, Dhaka, 1000, BangladeshDepartment of Mechanical Engineering, Bangladesh University of Engineering and Technology, Dhaka, 1000, BangladeshBangladesh University of Engineering and Technology, Dhaka-1000, BangladeshThe electrochemical corrosion property of ternary Al and quaternary Zr added Bell metal in 0.1M Sodium Chloride solution has been experimentally conducted at room temperature. Electrochemical impedance spectroscopy (EIS) method and Potentiodynamic polarization technique are used to carry out the electrochemical investigation. Microhardness test is also conducted for all three alloys and it reveals that Al addition increases the hardness of bell metal due to the formation of different intermetallic precipitates of Cu and Al. Optical Micrograph as well as Scanning Electron Micrograph have also been studied to characterize their surface condition. It is found that Zr addition refines the grain structure of the alloy and results in increase of hardness. The EIS study reveals that the corrosion resistance is seem to be augmented with the addition of ternary Al and quaternary Zr to bell metal. The potentiodynamic polarization curves disclose that both ternary Al added and quaternary Zr added alloy show better corrosion performance than the base bell metal alloy due to the formation of stable aluminium oxide film. The currentdensity (Icorr) of base bell metal showed higher value than both ternary Al added and quaternary Zr added bell metal alloys. The corrosion potential (Ecorr) and the open circuit potential (OCP) were seen to be moved to the more positive direction for the Al and Zr added alloys. Microstructure and SEM study of the alloys after corrosion revealed a formation of an oxide film on the surface of the ternary A and quaternary Zr added alloys, the probable cause of which is the presence of Al in the respective alloys.http://journal2.um.ac.id/index.php/jmest/article/view/17382bell metal, corrosion, eis, sem, tafel
collection DOAJ
language English
format Article
sources DOAJ
author Sakib Al Razi Khan
Mohammad Ashfaq Hossain
Maglub Al Nur
Mohammad Salim Kaiser
spellingShingle Sakib Al Razi Khan
Mohammad Ashfaq Hossain
Maglub Al Nur
Mohammad Salim Kaiser
Electrochemical Corrosion Properties of Ternary Al and Quaternary Zr Added Bell Metal in 0.1M NaCl Solution
Journal of Mechanical Engineering Science and Technology
bell metal, corrosion, eis, sem, tafel
author_facet Sakib Al Razi Khan
Mohammad Ashfaq Hossain
Maglub Al Nur
Mohammad Salim Kaiser
author_sort Sakib Al Razi Khan
title Electrochemical Corrosion Properties of Ternary Al and Quaternary Zr Added Bell Metal in 0.1M NaCl Solution
title_short Electrochemical Corrosion Properties of Ternary Al and Quaternary Zr Added Bell Metal in 0.1M NaCl Solution
title_full Electrochemical Corrosion Properties of Ternary Al and Quaternary Zr Added Bell Metal in 0.1M NaCl Solution
title_fullStr Electrochemical Corrosion Properties of Ternary Al and Quaternary Zr Added Bell Metal in 0.1M NaCl Solution
title_full_unstemmed Electrochemical Corrosion Properties of Ternary Al and Quaternary Zr Added Bell Metal in 0.1M NaCl Solution
title_sort electrochemical corrosion properties of ternary al and quaternary zr added bell metal in 0.1m nacl solution
publisher Universitas Negeri Malang
series Journal of Mechanical Engineering Science and Technology
issn 2580-0817
2580-2402
publishDate 2021-07-01
description The electrochemical corrosion property of ternary Al and quaternary Zr added Bell metal in 0.1M Sodium Chloride solution has been experimentally conducted at room temperature. Electrochemical impedance spectroscopy (EIS) method and Potentiodynamic polarization technique are used to carry out the electrochemical investigation. Microhardness test is also conducted for all three alloys and it reveals that Al addition increases the hardness of bell metal due to the formation of different intermetallic precipitates of Cu and Al. Optical Micrograph as well as Scanning Electron Micrograph have also been studied to characterize their surface condition. It is found that Zr addition refines the grain structure of the alloy and results in increase of hardness. The EIS study reveals that the corrosion resistance is seem to be augmented with the addition of ternary Al and quaternary Zr to bell metal. The potentiodynamic polarization curves disclose that both ternary Al added and quaternary Zr added alloy show better corrosion performance than the base bell metal alloy due to the formation of stable aluminium oxide film. The currentdensity (Icorr) of base bell metal showed higher value than both ternary Al added and quaternary Zr added bell metal alloys. The corrosion potential (Ecorr) and the open circuit potential (OCP) were seen to be moved to the more positive direction for the Al and Zr added alloys. Microstructure and SEM study of the alloys after corrosion revealed a formation of an oxide film on the surface of the ternary A and quaternary Zr added alloys, the probable cause of which is the presence of Al in the respective alloys.
topic bell metal, corrosion, eis, sem, tafel
url http://journal2.um.ac.id/index.php/jmest/article/view/17382
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AT maglubalnur electrochemicalcorrosionpropertiesofternaryalandquaternaryzraddedbellmetalin01mnaclsolution
AT mohammadsalimkaiser electrochemicalcorrosionpropertiesofternaryalandquaternaryzraddedbellmetalin01mnaclsolution
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