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Thermally Enhanced Slip Casting of Alumina Ceramics
A. M. Murfin
*
,
J. G.P. Binner
*
Corresponding author for this work
Metallurgy and Materials
Research output
:
Contribution to journal
›
Article
›
peer-review
6
Citations (Scopus)
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Keyphrases
Slip Casting
100%
Alumina Ceramic
100%
Thermally Enhanced
100%
Casting Rate
100%
Microwave Energy
50%
Heat Energy
50%
Flocculant
50%
High Temperature
25%
Large Components
25%
Ambient Temperature
25%
Nitric Acid
25%
Aluminum Oxide
25%
Viscosity
25%
Temperature Rise
25%
Detrimental Effects
25%
Water Uptake
25%
Microwave Radiation
25%
Complex Shape
25%
Movement Speed
25%
Water Movement
25%
Thin-walled
25%
Dispersion State
25%
Energy-intensive
25%
Local Temperature Gradient
25%
Plaster of Paris
25%
Convection Oven
25%
Waterfront
25%
Temperature Processing
25%
Engineering
Aluminum Oxide
100%
Slip Casting
100%
Casting Rate
100%
Thermal Energy
50%
Fluid Viscosity
25%
Detrimental Effect
25%
Temperature Increase
25%
Thermal Gradient
25%
Temperature Gradients
25%
Complex Shape
25%
Plaster
25%
Thin Walled Body
25%
Cast Layer
25%
Material Science
Aluminum Oxide
100%