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Título del libro: Materials Science And Technology Conference And Exhibition 2015, Ms And T 2015
Título del capítulo: Microstructure and properties of bilayer-graded Al-matrix composites by one-step pressureless infiltration of SiC/Rice husk ash preforms

Autores UNAM:
AMIN BAHRAMI; NILOOFAR SOLTANI;
Autores externos:

Idioma:
Inglés
Año de publicación:
2015
Palabras clave:

Aluminum alloys; Elastic moduli; Metallic matrix composites; Particle size; Particle size analysis; Porosity; Preforming; Silicon carbide; Taguchi methods; Al matrix composites; Graded materials; Hardness and modulus; Infiltration temperatures; Microstructure and properties; Pressureless infiltration; Quantitative effects; Rice husk ash; Analysis of variance (ANOVA)


Resumen:

The quantitative effect of the following parameters on the one single step pressureless infiltration characteristics of bilayer SiCp/rice-husk ash (RHA) porous preforms by aluminum alloys was investigated using the Taguchi method and analysis of variance (ANOVA): infiltration temperature and time, SiC particle size, RHA percentage, percentage porosity in the preforms, and magnesium content in the alloy. The contributions of each of the parameters and their interactions to the retained porosity, hardness and modulus of elasticity of the resulting bilayer composites were determined. The parameters that most significantly impact the modulus of elasticity (E) of the resulting composites are infiltration time and SiO2 phase type (from RHA), with contribution of 27 % and 21 %, respectively. They are followed by preform porosity, Mg concentration and process temperature, with contributions of 13 %, 12 % and 11 %, correspondingly. Verification tests conducted using the established optimum parameters show a good agreement with the projected values of modulus of elasticity (169 ± 9 GPa) and retained porosity (1.9 ±0.8). Copyright © 2015 MS&T15®.


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