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Meeting 2021 TMS Annual Meeting & Exhibition
Symposium Advances in Powder and Ceramic Materials Science
Presentation Title Understanding the Role of Electric Field in the Manipulation of Particles in Aqueous Media and Fabrication of Ice-templated Ceramics
Author(s) Dipankar Ghosh, Sashanka Akurati, Shizhi Qian, Diego A Terrones, Bharath Gundrati
On-Site Speaker (Planned) Dipankar Ghosh
Abstract Scope Ice-templating technique enables the fabrication of directionally porous ceramic materials. In recent years, extrinsic manipulation of ice-templated structure using energized fields has received significant attention. However, the potential of electric fields is yet to be fully explored for the ice-templating technique. A significant advantage is that ceramic particles can directly respond to the applied electric field without the need for the second phase material, making the electric fields preferable for particle manipulation. Also, electric fields can be applied to different concentration of aqueous ceramic suspensions. In this presentation we will discuss our ongoing efforts in using electric fields in the manipulation of ceramic particles in aqueous media and fabrication of ice-templated ceramics. We will discuss the role of various parameters of electric field in the manipulation of ceramic particles and ice-templated microstructure. Preliminary results on computational modeling of the interactions between ceramic particles and electric field will be also presented.
Proceedings Inclusion? Planned:
Keywords Ceramics, Mechanical Properties, Characterization

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

An Analysis on the Factors Affecting Oxidation Resistance of Silicon Containing Ultra High Temperature Borides Ceramics
Apatite Formation Ability of Ca2MgSi2O7 Bioceramic
Biodegradability and Bioactivity of Porous Hydroxyapatite-PCL-hardystonite for Using in Bone Tissue Engineering Application
Bulk High-entropy Nitrides and Carbonitrides
Chemical Etch/Modification Effect on CO Oxidation Performance of Ceria Supported Catalysts
Diamond Graphitization and Its Effect on Hardness of Diamond Particulate Ceramic Composites
Dielectrophoretic Control of Ceramic Particles for Fabrication of Ice-templated Structures
Discovery of Novel High-entropy Ceramics via Machine Learning
Effect of Diamond Content and Modality on the Densification of Diamond Particulate Ceramic Composites by Hot-pressing
Effects of Yttria Content and Atmosphere on Structural Evolution of Highly Porous Yttria-stabilized Zirconia Aerogels
Elucidating the Influence of the Thermodynamics, Kinetics, and Chemistries of Molten Salts to Synthesize Ceramics for Energy Applications
Flash Sintering of Gadolinium-doped Ceria: Densification and Microstructure
Layered Ceramic Structures In1+x(Ti1/2Zn1/2)1-xO3(ZnO)m (m = 2, 4, and 6; x = 0.5): Synthesis, Phase Stability and Dielectric Properties
Low-cost Forming and Reactive Melt Infiltration Processing of High-temperature, Thermally-cyclable Carbide/Metal Composites in Complex, Near Net Shapes for Renewable Energy Applications
Mineralogical Characteristics of Sepiolite under Thermal Treatment
New Insights into Sintering Processing for Solid State Electrolytes – A Phase-Field Simulation Study
Processing of TiB2-TiC Based Materials with Fine Microstructure and Improved Mechanical Properties
Structural Integrity of Complex Oxide Scales for Improved Oxidation Resistance of Ultra-high Temperature Ceramics
Synthesis of Willemite Bioceramic by Mechanochemical Procedure
Understanding the Role of Electric Field in the Manipulation of Particles in Aqueous Media and Fabrication of Ice-templated Ceramics

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