Fundamental investigations on the spark plasma sintering/synthesis process. II. Modeling of current and temperature distributions

Modeling and experimental analyses were carried out to investigate current and temperature distributions under typical spark plasma sintering (SPS) conditions. The simulation utilized two sample materials with widely differing electrical conductivities, alumina and copper. Current and heat generatio...

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Published inMaterials science & engineering. A, Structural materials : properties, microstructure and processing Vol. 394; no. 1-2; pp. 139 - 148
Main Authors ANSELMI-TAMBURINI, U, GENNARI, S, GARAY, J. E, MUNIR, Z. A
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier 15.03.2005
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Abstract Modeling and experimental analyses were carried out to investigate current and temperature distributions under typical spark plasma sintering (SPS) conditions. The simulation utilized two sample materials with widely differing electrical conductivities, alumina and copper. Current and heat generation gradients were evaluated in the radial and axial directions for both cases. Radial gradients result in significant differences in temperature between the surface of the graphite die and its center, in agreement with experimental measurements. Axial gradients are shown to influence the homogeneity of the product.
AbstractList Modeling and experimental analyses were carried out to investigate current and temperature distributions under typical spark plasma sintering (SPS) conditions. The simulation utilized two sample materials with widely differing electrical conductivities, alumina and copper. Current and heat generation gradients were evaluated in the radial and axial directions for both cases. Radial gradients result in significant differences in temperature between the surface of the graphite die and its center, in agreement with experimental measurements. Axial gradients are shown to influence the homogeneity of the product.
Author ANSELMI-TAMBURINI, U
MUNIR, Z. A
GARAY, J. E
GENNARI, S
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  organization: Department Chemical Engineering and Materials Science, University of California, One Shields Avenue, Davis, CA 95616, United States
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Issue 1-2
Keywords Temperature distribution
Heat source
Spark plasma sintering
Electrical conductivity
Synthesis
SPS
Spark plasma sintering method
Temperature and current distributions
Copper
Alumina
Modeling
Inorganic compound
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SubjectTerms Applied sciences
Cross-disciplinary physics: materials science; rheology
Exact sciences and technology
Materials science
Materials synthesis; materials processing
Metal powders
Metals. Metallurgy
Physics
Powder metallurgy. Composite materials
Production techniques
Title Fundamental investigations on the spark plasma sintering/synthesis process. II. Modeling of current and temperature distributions
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