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Meeting 2024 TMS Annual Meeting & Exhibition
Symposium Advances in Ceramic Materials and Processing
Sponsorship TMS Extraction and Processing Division
TMS Materials Processing and Manufacturing Division
TMS: Materials Characterization Committee
TMS: Powder Materials Committee
Organizer(s) Bowen Li, Michigan Technological University
Dipankar Ghosh, Old Dominion University
Eugene A. Olevsky, San Diego State University
Kathy Lu, University of Alabama Birmingham
Faqin Dong, Southwest University of Science and Technology
Jinhong Li, China University of Geosciences
Ruigang Wang, Michigan State University
Alexander D. Dupuy, University of Connecticut
Scope This symposium emphasizes the advances of ceramic/glass materials in the fundamental research, technology development, and industrial applications.

Ceramic materials science covers the science and technology of creating objects from inorganic, non-metallic materials, and includes design, synthesis, and fabrication of ceramics, glasses, advanced concretes, and ceramic-metal composites. Recent years, the hybrids of ceramic and metallic materials have received plenty of interdisciplinary inspirations and achievements in material processes and functional applications including ionic conductors, catalysis, energy conversion and storage, superconductors, semiconductor, filtrations, etc.

Topics of this symposium will cover, but not limited to:
• Silicates, oxides, and non-oxide ceramics and glasses
• Synthesis, characterization, modeling, and simulation of ceramic materials
• Design and control of ceramic microstructure and properties
• Ceramic powders and processing
• Catalyst and catalyst support materials
• Fundamental understanding of ceramic materials and processes.
• Novel methods, techniques, and instruments used to characterize ceramics and glasses.
• High entropy ceramics (and/or entropy stabilized, complex-concentrated, compositionally-complex, multi-principal cation ceramics)
• Bioceramics, electronic, magnetic ceramics, and applications
• Surface treatment and ceramic thin films, membranes, and coatings
• Porous ceramic materials
• Hybrid systems of ceramic, metal, and/or polymer composites
• Ceramics used for extreme environments
• Metallurgical byproducts for ceramic manufacturing

A special session(s) focusing on high entropy ceramics will be held.

Abstracts Due 07/15/2023
Proceedings Plan Planned:

3D Printed Carbon-carbon Tooling as an Energy Efficient Alternative to Graphite in EFAS/SPS
A Combined DFT and NPD Approach to Determine the Phase Boundaries of the ε-phase of Tungsten Boride
Additively Formed Composite Carbide Fibers
Assembly of Particles and Chain Formation in Aqueous Ceramic Suspensions Induced by High-frequency AC Electric Field
C-1: Flash Crystallization of Li2O-Al2O3-SiO2 Glass System
C-2: Production of Ceramic Tiles with Glass Waste and Kaolinitic Clay
Cation Mobility Enhancing Strategies in Organic-inorganic Hybrid Materials for Solid Electrolytes
Ce2S3-Li2S-P2S5 Glass-ceramic Electrolytes for All-solid-state Li-S Battery
Chemical Tempering of Soda Lime Silicate Glass by Electric Field Assisted Techniques
Comparative Study of Aluminium Grain-refinement with Conventional and Glass Fiber Modified Ceramic Shell in the Investment Casting Process
Composite Materials Made from Battery Waste Ceramics
Computational Study of Ionic Transport in Lithium Garnet Oxides with Machine-learning Interatomic Potentials
Control of Vapor Phase Mixtures for Additively Deposited Carbon Structures
Cotton Templated 3D Interconnected Chain LLZO Structure as PVDF/LLZO Composite Polymer Electrolyte with Superior Ionic Conductivity for Solid-state Lithium-ion Batteries
Engineering the Functional and Mechanical Behavior of Multiphase Entropy Stabilized Oxides by Controlling Microstructural Evolution
Glass Waste Powders and Additives Based Ceramic Materials for Additive Manufacturing of Bricks
Hierarchically-porous, Diatomite-based Absorbents Fabricated by Combining 3D-printed Templating and Freeze Casting Techniques for Wastewater Treatments
High-entropy 2D Transition Metal Carbide MXenes
High Temperature Characterizations of Ceramics and Metals by Heating Microscopy
Interplay between Structure, Charge, and Spin in Entropy-stabilized Oxides for Widely Tunable Responses
Mapping the Creation of Nanoporous Ultra-high-temperature Ceramics
Mass Spectrometric Investigation of Thermodynamic Properties of CaSiO3 Wollastonite
Mechanical Properties Investigation of Amorphous Oxide Coatings Produced by Pulsed Laser Deposition
Microstructure and Chemical Composition of Al2O3-, Cr2O3- and MgO-rich Refractories Exposed to Plastic Ashes
Microstructure and Properties of Novel Al2O3/Ti/Al2TiO5 Composites Fabricated via Slip Casting
Microwave-assisted Synthesis: A Facile Method for Fabrication of High-entropy Oxide Nanoparticles for Various Applications
MXene Derived Carbides as Templating Materials for ZrB2-based Ultra-high Temperature Ceramics (UHTCs)
Non-equimolar Multicomponent Rare Earth Oxides as Environmental Barrier Coatings
Phase Transformations in Entropy Stabilized Oxides
Phase Transition Behavior of Rare Earth Oxide Ce2O3 in CaO-SiO2-5wt.%Al2O3 System at 1673-1873K
Pile-up Behavior of Dislocation Loops Punched Out by Nano-indentation in Wurtzite-type Ceramics
Production of Additive W-Ta Refractory Powders by Mechanical Alloying
Role of Secondary Phase Formation on Electrical Behavior in Sodium Doped High Entropy Oxides
Single-mode Microwave Processing of Functional Magnetic Ceramic Ferrites
Spark Plasma Sintering Fabricating Transparent Alumina Complex Shape
Structural and Microstructural Behavior of PLT:ER Ferroelectric System
Synthesis and Characterization of High-entropy Perovskite Ceramics: Paving the Way for Advanced Multifunctional Materials
Synthesis and Characterization of Laser Cladding AlMgB14 – Metal Composite Coatings
Synthesis and Fabrication of Li-glass Electrolytes (Li2.99Ba0.005OCl) for All-solid-state Batteries
Synthesis and Processing of Sulfide-based Alkali Superionic Conductors
Synthesis of Hexagonal Boron Nitride at Low Temperature
Thermodynamic Analysis of Fe2AlB2 Prepared by Molten Salt Electrochemical Method
Thermodynamic Analysis of Fe3Si Prepared from Steel Slag by Molten Salt Electrolytic
Transforming Ultra-high Temperature Metal Ceramic Multilayers
Understanding Ion Transport in Ceramic Fast Ion Conductors
Will “High Entropy” Carbides be Enabling Materials for Extreme Environments

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