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Title: | Study of wear on anodised PM Aluminium Matrix composite reinforced with 15 wt % Saffil Alumina Short Fibre |
Authors: | Mohd Nazree, Derman Zainal Arifin, Ahmad Luay Bakir, Hussain Nurulakmal, Mohd Sharif |
Keywords: | Anodising Powder metallurgy Wear Metal matrix composite Aluminium Composites Aluminum alloys |
Issue Date: | 9-Jun-2007 |
Publisher: | Universiti Malaysia Perlis |
Series/Report no.: | International Conference of Sustainable Materials (ICoSM) 2007 |
Abstract: | A study of wear behaviour on anodised powder metallurgy aluminium matrix composites (PM AMC) reinforced with Saffil™ alumina short fibres was done. AMC was fabricated by powder metallurgy methods (PM) with using Al flake powders and Saffil™ alumina short fibres. PM AMC reinforced with 15 wt% Saffil™ alumina short fibre was selected because it showed optimum mechanical and physical properties. Sulphuric acid anodising process was carried out with 15% concentration of sulphuric acid concentrations, 18 V anodising voltage and 60 minutes anodising time at room temperature. Scanning electron microscope (SEM) was used to investigate coating morphology and thickness. The pin on disk test was used for wear testing with 1 kg load in 150 rpm rotating speed. This reserch was found that H2S04 anodising was able to give good coating to MMC. The AMC showed lower wear rate compared to the Al samples. Anodising process will be reduced 59% and 13% wear coefficient of Al and AMC. The research was found that H2SO4 anodising was able to give good coating to AMC and give good wear resistance. |
Description: | Organized by School of Environmental Engineering, School of Materials Engineering and School of Bioprocess Engineering (UniMAP), 9th - 11th June 2007 at Park Royal Hotel, Penang. |
URI: | http://dspace.unimap.edu.my/123456789/6352 |
Appears in Collections: | Conference Papers Mohd Nazree Derman, Assoc. Prof. Dr. |
Files in This Item:
File | Description | Size | Format | |
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Study Of Wear On Anodised PM Aluminium Matrix Composite Reinforced.pdf | 2.09 MB | Adobe PDF | View/Open |
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