The present work is aimed at studying the effect of solidification rate on reinforcement clustering in particle reinforced metal matrix composites (PMMCs) through numerical simulations and experimental studies. A macrotransport-solidification kinetics (MTSK) model was used to simulate the solidification kinetics of the PMMCs. The experimental validation of the numerical model was achieved through the Newtonian and Fourier thermal analysis methods. Results reveal that the MTSK model can be successfully used to predict the local microstructural scales and to evaluate the risk of cluster formation in cast particle reinforced composites. (C) 2009 Elsevier B.V. All rights reserved
Al 2024-SiC metal matrix composite (MMC) powders produced by centrifugal atomization were hot extrud...
Al 2024-SiC metal matrix composite (MMC) powders produced by centrifugal atomization were hot extrud...
Achieving the uniform distribution of reinforcement particles in MMCs is very important for the effe...
The damage and deformation behaviour of particle reinforced aluminum matrix composites can be highly...
The damage and deformation behaviour of particulate reinforced metal matrix composites (PMMCs) can b...
The aim in this work is to develop a numerical model capable of predicting the grain density in the ...
Presented work focused on the movement of SiC particles in the vicinity of the solidification front ...
Presented work focused on the movement of SiC particles in the vicinity of the solidification front ...
Particle distribution in particulate metal matrix composites was investigated experimentally and the...
Various reports in the literature have highlighted the effects of particle distribution on the fatig...
Distribution of particle reinforcements in cast composites is determined by the morphology of the so...
The effect of particle size on particle distribution during the casting of particulate metal matrix ...
Metal matrix composites (MMCs) have received much attention due to their promising advanced mechanic...
Metal matrix composites are complex materials consisting of various phases which can display largely...
The solidification kinetics of metals and alloys can be investigated by means of the derivative ther...
Al 2024-SiC metal matrix composite (MMC) powders produced by centrifugal atomization were hot extrud...
Al 2024-SiC metal matrix composite (MMC) powders produced by centrifugal atomization were hot extrud...
Achieving the uniform distribution of reinforcement particles in MMCs is very important for the effe...
The damage and deformation behaviour of particle reinforced aluminum matrix composites can be highly...
The damage and deformation behaviour of particulate reinforced metal matrix composites (PMMCs) can b...
The aim in this work is to develop a numerical model capable of predicting the grain density in the ...
Presented work focused on the movement of SiC particles in the vicinity of the solidification front ...
Presented work focused on the movement of SiC particles in the vicinity of the solidification front ...
Particle distribution in particulate metal matrix composites was investigated experimentally and the...
Various reports in the literature have highlighted the effects of particle distribution on the fatig...
Distribution of particle reinforcements in cast composites is determined by the morphology of the so...
The effect of particle size on particle distribution during the casting of particulate metal matrix ...
Metal matrix composites (MMCs) have received much attention due to their promising advanced mechanic...
Metal matrix composites are complex materials consisting of various phases which can display largely...
The solidification kinetics of metals and alloys can be investigated by means of the derivative ther...
Al 2024-SiC metal matrix composite (MMC) powders produced by centrifugal atomization were hot extrud...
Al 2024-SiC metal matrix composite (MMC) powders produced by centrifugal atomization were hot extrud...
Achieving the uniform distribution of reinforcement particles in MMCs is very important for the effe...