Corrosion of aluminum alloy used as sacrificial anode for steel embedded concrete transmission tower in brackish mud

This paper presents the cathodic protection of steel embedded concrete of aluminum based alloy in brackish mud. In this experiment, aluminum based alloys containing 5% zinc, 2% magnesium, and 0.5-2% stannum were fabricated. These elements were added because they produce heat treatable alloys, improv...

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Main Authors: Yahya, Z., Rahman, M.M., Daud, M.
Format: Conference Paper
Language:English
Published: 2018
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spelling my.uniten.dspace-75252018-12-10T08:23:48Z Corrosion of aluminum alloy used as sacrificial anode for steel embedded concrete transmission tower in brackish mud Yahya, Z. Rahman, M.M. Daud, M. This paper presents the cathodic protection of steel embedded concrete of aluminum based alloy in brackish mud. In this experiment, aluminum based alloys containing 5% zinc, 2% magnesium, and 0.5-2% stannum were fabricated. These elements were added because they produce heat treatable alloys, improved anti friction characteristics, fluidibility, and contain highest strengthening effect on aluminum alloys. These alloys were tested as sacrificial cathodic protection for the standard steel embedded concrete exposed to sea water and brackish mud. Surface morphology of the samples after subjected to corrosion was investigated through scanning electron microscopy (SEM) and anode capacity test (efficiency test). The results revealed that sample with the composition of 95.6% of aluminum, 3.83% of zinc, and 0.19% of stannum showed the best performance hence it was selected for cathodic protection in brackish mud. © 2017 Trans Tech Publications, Switzerland. 2018-01-11T09:52:12Z 2018-01-11T09:52:12Z 2017 Conference Paper 10.4028/www.scientific.net/SSP.264.202 en
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
language English
description This paper presents the cathodic protection of steel embedded concrete of aluminum based alloy in brackish mud. In this experiment, aluminum based alloys containing 5% zinc, 2% magnesium, and 0.5-2% stannum were fabricated. These elements were added because they produce heat treatable alloys, improved anti friction characteristics, fluidibility, and contain highest strengthening effect on aluminum alloys. These alloys were tested as sacrificial cathodic protection for the standard steel embedded concrete exposed to sea water and brackish mud. Surface morphology of the samples after subjected to corrosion was investigated through scanning electron microscopy (SEM) and anode capacity test (efficiency test). The results revealed that sample with the composition of 95.6% of aluminum, 3.83% of zinc, and 0.19% of stannum showed the best performance hence it was selected for cathodic protection in brackish mud. © 2017 Trans Tech Publications, Switzerland.
format Conference Paper
author Yahya, Z.
Rahman, M.M.
Daud, M.
spellingShingle Yahya, Z.
Rahman, M.M.
Daud, M.
Corrosion of aluminum alloy used as sacrificial anode for steel embedded concrete transmission tower in brackish mud
author_facet Yahya, Z.
Rahman, M.M.
Daud, M.
author_sort Yahya, Z.
title Corrosion of aluminum alloy used as sacrificial anode for steel embedded concrete transmission tower in brackish mud
title_short Corrosion of aluminum alloy used as sacrificial anode for steel embedded concrete transmission tower in brackish mud
title_full Corrosion of aluminum alloy used as sacrificial anode for steel embedded concrete transmission tower in brackish mud
title_fullStr Corrosion of aluminum alloy used as sacrificial anode for steel embedded concrete transmission tower in brackish mud
title_full_unstemmed Corrosion of aluminum alloy used as sacrificial anode for steel embedded concrete transmission tower in brackish mud
title_sort corrosion of aluminum alloy used as sacrificial anode for steel embedded concrete transmission tower in brackish mud
publishDate 2018
_version_ 1644494221313310720
score 13.145442