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The effect of sintering temperature and the amount of reinforcement on the properties of Al–Al2O3 composite
AbstractThe aim of this research is to investigate the effect of the amount of reinforcement on the properties of Al–Al2O3 composite. Alumina particles were mixed with Aluminum particles in the range of 0–20wt.%. The average particle sizes for the matrix and reinforcement were 30 and 12μm, respectively.The samples were prepared at two levels of sintering temperature for a constant sintering time of 45min. It was illustrated that at high weight fractions of reinforcement, the relative density decreases while the hardness and wear resistance increases.Results show that by increasing the amount of Alumina from 0% to 10%, the hardness increased from 33 to 62 BHN, while the compressive strength was raised from 133 to 273MPa. The addition of alumina decreased the wear rate from 0.0447mm3/m to 0.0262mm3/m.
The effect of sintering temperature and the amount of reinforcement on the properties of Al–Al2O3 composite
AbstractThe aim of this research is to investigate the effect of the amount of reinforcement on the properties of Al–Al2O3 composite. Alumina particles were mixed with Aluminum particles in the range of 0–20wt.%. The average particle sizes for the matrix and reinforcement were 30 and 12μm, respectively.The samples were prepared at two levels of sintering temperature for a constant sintering time of 45min. It was illustrated that at high weight fractions of reinforcement, the relative density decreases while the hardness and wear resistance increases.Results show that by increasing the amount of Alumina from 0% to 10%, the hardness increased from 33 to 62 BHN, while the compressive strength was raised from 133 to 273MPa. The addition of alumina decreased the wear rate from 0.0447mm3/m to 0.0262mm3/m.
The effect of sintering temperature and the amount of reinforcement on the properties of Al–Al2O3 composite
Rahimian, M. (author) / Ehsani, N. (author) / Parvin, N. (author) / Baharvandi, H.R. (author)
2008-11-25
5 pages
Article (Journal)
Electronic Resource
English
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