Study on the Characterization of Silica Sand Nanoparticles-Iron Based Composites (Fe-SiO2) Using Nitrogen Atmosphere as Sintering Environment

Metal Matrix Composite has become an attractive alternative in various applications especially in automotive and aerospace industries nowadays. Therefore, in order to study the characterization of Silica Sand Nanoparticles-Iron Based Composites (Fe-SiO2) using Nitrogen atmosphere as sintering envir...

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Main Author: Muhammad Hafiz Bin Abu Talib, Muhammad Hafiz
Format: Final Year Project
Language:English
Published: Universiti Teknologi Petronas 2011
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Online Access:http://utpedia.utp.edu.my/2670/1/Final_Dissertation_HAFIZ_9831.pdf
http://utpedia.utp.edu.my/2670/
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spelling my-utp-utpedia.26702017-01-25T09:41:47Z http://utpedia.utp.edu.my/2670/ Study on the Characterization of Silica Sand Nanoparticles-Iron Based Composites (Fe-SiO2) Using Nitrogen Atmosphere as Sintering Environment Muhammad Hafiz Bin Abu Talib, Muhammad Hafiz TJ Mechanical engineering and machinery Metal Matrix Composite has become an attractive alternative in various applications especially in automotive and aerospace industries nowadays. Therefore, in order to study the characterization of Silica Sand Nanoparticles-Iron Based Composites (Fe-SiO2) using Nitrogen atmosphere as sintering environment, samples were fabricated by mixing pure iron with different weight percentages (5%, 10%, 15% and 20%) of silica sand nanoparticles and undergone several testing and observation before being evaluate. The silica sand nanoparticles-iron based composites were developed by powder metallurgy technique and being sintered in Nitrogen atmosphere at 11000C. The characterization that being evaluated include physical properties (density of green and sintered silica sand nanoparticles-iron based composites), microstructureanalysis (Optical Microscopy & FESEM), elemental composition (EDX Analysis) and mechanical properties (microhardness test of silica sand nanoparticles-iron based composites). The research shows densities were reduced from pure iron to 20wt% of silica sand nanoparticles. However, there were increments in each density of the composite after being sintered which at the same time improved its hardness as well. During sintering, the microstructure also exhibits changes in porosity, pore size also pore shape and with the high rate of atomic motion progressively (diffusion) leads to growth of bonds between particles, shown by the microstructure analysis being conducted. Theoretically stated those properties will improved after sintering process were proven and the composite with highest weight percentage of silica sand nanoparticles (20wt%) offered the best characteristics compared to others. Universiti Teknologi Petronas 2011-09 Final Year Project NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/2670/1/Final_Dissertation_HAFIZ_9831.pdf Muhammad Hafiz Bin Abu Talib, Muhammad Hafiz (2011) Study on the Characterization of Silica Sand Nanoparticles-Iron Based Composites (Fe-SiO2) Using Nitrogen Atmosphere as Sintering Environment. Universiti Teknologi Petronas, Sri Iskandar, Tronoh, Perak. (Unpublished)
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Electronic and Digitized Intellectual Asset
url_provider http://utpedia.utp.edu.my/
language English
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Muhammad Hafiz Bin Abu Talib, Muhammad Hafiz
Study on the Characterization of Silica Sand Nanoparticles-Iron Based Composites (Fe-SiO2) Using Nitrogen Atmosphere as Sintering Environment
description Metal Matrix Composite has become an attractive alternative in various applications especially in automotive and aerospace industries nowadays. Therefore, in order to study the characterization of Silica Sand Nanoparticles-Iron Based Composites (Fe-SiO2) using Nitrogen atmosphere as sintering environment, samples were fabricated by mixing pure iron with different weight percentages (5%, 10%, 15% and 20%) of silica sand nanoparticles and undergone several testing and observation before being evaluate. The silica sand nanoparticles-iron based composites were developed by powder metallurgy technique and being sintered in Nitrogen atmosphere at 11000C. The characterization that being evaluated include physical properties (density of green and sintered silica sand nanoparticles-iron based composites), microstructureanalysis (Optical Microscopy & FESEM), elemental composition (EDX Analysis) and mechanical properties (microhardness test of silica sand nanoparticles-iron based composites). The research shows densities were reduced from pure iron to 20wt% of silica sand nanoparticles. However, there were increments in each density of the composite after being sintered which at the same time improved its hardness as well. During sintering, the microstructure also exhibits changes in porosity, pore size also pore shape and with the high rate of atomic motion progressively (diffusion) leads to growth of bonds between particles, shown by the microstructure analysis being conducted. Theoretically stated those properties will improved after sintering process were proven and the composite with highest weight percentage of silica sand nanoparticles (20wt%) offered the best characteristics compared to others.
format Final Year Project
author Muhammad Hafiz Bin Abu Talib, Muhammad Hafiz
author_facet Muhammad Hafiz Bin Abu Talib, Muhammad Hafiz
author_sort Muhammad Hafiz Bin Abu Talib, Muhammad Hafiz
title Study on the Characterization of Silica Sand Nanoparticles-Iron Based Composites (Fe-SiO2) Using Nitrogen Atmosphere as Sintering Environment
title_short Study on the Characterization of Silica Sand Nanoparticles-Iron Based Composites (Fe-SiO2) Using Nitrogen Atmosphere as Sintering Environment
title_full Study on the Characterization of Silica Sand Nanoparticles-Iron Based Composites (Fe-SiO2) Using Nitrogen Atmosphere as Sintering Environment
title_fullStr Study on the Characterization of Silica Sand Nanoparticles-Iron Based Composites (Fe-SiO2) Using Nitrogen Atmosphere as Sintering Environment
title_full_unstemmed Study on the Characterization of Silica Sand Nanoparticles-Iron Based Composites (Fe-SiO2) Using Nitrogen Atmosphere as Sintering Environment
title_sort study on the characterization of silica sand nanoparticles-iron based composites (fe-sio2) using nitrogen atmosphere as sintering environment
publisher Universiti Teknologi Petronas
publishDate 2011
url http://utpedia.utp.edu.my/2670/1/Final_Dissertation_HAFIZ_9831.pdf
http://utpedia.utp.edu.my/2670/
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score 13.160551