The 3rd International Conference on Composites: Characterization, Fabrication and Application (CCFA-3) , 2012-12-18

Title : ( Fabrication of Aluminum–Graphite Composites by SPS Method )

Authors: Shervin Daneshvar E Asl , Farhad KhorramshahiMohammadAbad , davoud khademi , Hossein Yavari Mehrabani , Abolfazl Babakhani ,

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Abstract

Abstract - The current study is focused on the synthesis of Aluminum-Graphite composites (Al-C) by Spark Plasma Sintering (SPS) method. In order to investigate the synthesis process, the different main parameters such as ageing time, and mold type were studied. Considering these aims, in the first step, the composites of Aluminum matrix reinforced by Graphite particles were synthesized. Then the cylindrical samples with different weight percent (Al- 10%C, Al-5%C, and Al-1%C) were pressed at uniaxial pressure of 12MPa and then were sintered at temperature of 550 oC. Finally, the evaluation of microstructural was carried out. The results showed that not only these composites were successfully synthesized by SPS method, but also the micro-hardness and porosity percent of composites were increased by increasing of Graphite fraction in composition.

Keywords

, aluminium, graphite, metal matrix composites, spark plasma sintering.
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@inproceedings{paperid:1031526,
author = {Daneshvar E Asl, Shervin and KhorramshahiMohammadAbad, Farhad and Khademi, Davoud and Yavari Mehrabani, Hossein and Babakhani, Abolfazl},
title = {Fabrication of Aluminum–Graphite Composites by SPS Method},
booktitle = {The 3rd International Conference on Composites: Characterization, Fabrication and Application (CCFA-3)},
year = {2012},
location = {تهران, IRAN},
keywords = {aluminium; graphite; metal matrix composites; spark plasma sintering.},
}

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%0 Conference Proceedings
%T Fabrication of Aluminum–Graphite Composites by SPS Method
%A Daneshvar E Asl, Shervin
%A KhorramshahiMohammadAbad, Farhad
%A Khademi, Davoud
%A Yavari Mehrabani, Hossein
%A Babakhani, Abolfazl
%J The 3rd International Conference on Composites: Characterization, Fabrication and Application (CCFA-3)
%D 2012

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