The Inhibition of Corrosion for Metal Matrix Composites Reinforced with Nano Alumina in Al–Fao Water by Thiourea

In the present investigation, the static electrochemical corrosion behavior of nano (Al2O3)P based aluminum in Al –Fao water with and without inhibitor was compared. The nanocomposites were fabricated by using liquid metallurgy technique. The effect of inhibitors for nanoparticulates weight percenta...

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Main Authors: Mohammed Saieed Waheed, Niveen J. Abdalkadir
Format: Article
Language:English
Published: Unviversity of Technology- Iraq 2015-10-01
Series:Engineering and Technology Journal
Subjects:
Online Access:https://etj.uotechnology.edu.iq/article_116739_c53722bfa29dbd975e6a890485e758fe.pdf
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author Mohammed Saieed Waheed
Niveen J. Abdalkadir
author_facet Mohammed Saieed Waheed
Niveen J. Abdalkadir
author_sort Mohammed Saieed Waheed
collection DOAJ
description In the present investigation, the static electrochemical corrosion behavior of nano (Al2O3)P based aluminum in Al –Fao water with and without inhibitor was compared. The nanocomposites were fabricated by using liquid metallurgy technique. The effect of inhibitors for nanoparticulates weight percentage on the corrosion rate was studied. The corrosion rate was increased by increasing weight percentage of the nanoparticles, the Al/ 5% nano (Al2O3)P composites exhibited the highest corrosion resistance among all the investigated nanocomposites with and without inhibitors. The obtained results signified that the mechanism of adsorption of thiourea molecules on the MMC surface was by physisorption.
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spelling doaj.art-dcae5ea946be43c187f523b5559a06222024-02-04T17:28:33ZengUnviversity of Technology- IraqEngineering and Technology Journal1681-69002412-07582015-10-01338B1445145710.30684/etj.2015.116739116739The Inhibition of Corrosion for Metal Matrix Composites Reinforced with Nano Alumina in Al–Fao Water by ThioureaMohammed Saieed WaheedNiveen J. AbdalkadirIn the present investigation, the static electrochemical corrosion behavior of nano (Al2O3)P based aluminum in Al –Fao water with and without inhibitor was compared. The nanocomposites were fabricated by using liquid metallurgy technique. The effect of inhibitors for nanoparticulates weight percentage on the corrosion rate was studied. The corrosion rate was increased by increasing weight percentage of the nanoparticles, the Al/ 5% nano (Al2O3)P composites exhibited the highest corrosion resistance among all the investigated nanocomposites with and without inhibitors. The obtained results signified that the mechanism of adsorption of thiourea molecules on the MMC surface was by physisorption.https://etj.uotechnology.edu.iq/article_116739_c53722bfa29dbd975e6a890485e758fe.pdfcorrosion inhibitionthioureanano aluminastir castingcorrosion ratepotentiostatic measurementsfao water
spellingShingle Mohammed Saieed Waheed
Niveen J. Abdalkadir
The Inhibition of Corrosion for Metal Matrix Composites Reinforced with Nano Alumina in Al–Fao Water by Thiourea
Engineering and Technology Journal
corrosion inhibition
thiourea
nano alumina
stir casting
corrosion rate
potentiostatic measurements
fao water
title The Inhibition of Corrosion for Metal Matrix Composites Reinforced with Nano Alumina in Al–Fao Water by Thiourea
title_full The Inhibition of Corrosion for Metal Matrix Composites Reinforced with Nano Alumina in Al–Fao Water by Thiourea
title_fullStr The Inhibition of Corrosion for Metal Matrix Composites Reinforced with Nano Alumina in Al–Fao Water by Thiourea
title_full_unstemmed The Inhibition of Corrosion for Metal Matrix Composites Reinforced with Nano Alumina in Al–Fao Water by Thiourea
title_short The Inhibition of Corrosion for Metal Matrix Composites Reinforced with Nano Alumina in Al–Fao Water by Thiourea
title_sort inhibition of corrosion for metal matrix composites reinforced with nano alumina in al fao water by thiourea
topic corrosion inhibition
thiourea
nano alumina
stir casting
corrosion rate
potentiostatic measurements
fao water
url https://etj.uotechnology.edu.iq/article_116739_c53722bfa29dbd975e6a890485e758fe.pdf
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