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Meeting MS&T21: Materials Science & Technology
Symposium Manufacturing and Processing of Advanced Ceramic Materials
Sponsorship ACerS Manufacturing Division
Organizer(s) Bai Cui, University of Nebraska Lincoln
James Hemrick, Oak Ridge National Laboratory
Mike Alexander, Allied Mineral Products
Eric J. Faierson, Iowa State University
Keith J. DeCarlo, Blasch Precision Ceramics
Scope Processing and manufacturing routes control the microstructure and properties of advanced structural and functional ceramic materials. Almost all stages during the manufacturing of ceramics have some effects on the mechanical, electrical, and optical properties of ceramic products. Some of the manufacturing variables may include the purity and particle size of the starting powders, mixing and milling of powders, and the consolidation process, which may influence the microstructural formation, such as the phase transformation, grain growth, porosity, defects, and residual stress in ceramics.

The purpose of this symposium is to provide an international forum to foster the discussion of the recent advances in manufacturing and processing of advanced ceramics. This symposium seeks technical presentations related to experimental and modeling studies of various processes related to the synthesis, sintering, casting, additive manufacturing, machining, welding, and surface engineering of ceramic materials.
The symposium will encompass, but not limited to, the following themes:
• Synthesis of ceramic powders, such as sol-gel, molten salt, hydrothermal synthesis;
• Sintering of ceramics, including spark plasma sintering, microwave sintering, flash sintering, cold sintering, laser sintering, etc.;
• Welding and joining methods for ceramics;
• Surface engineering of ceramics, including coating, shot peening, laser peening, etc.;
• Multiscale models and/or in-situ experimental methods to understand the processing mechanisms in ceramics;
• Emerging technologies for additive manufacturing of ceramics, such as selective laser melting/sintering, powder bed fusion, binder jetting, and digital light processing.

Abstracts Due 04/15/2021
PRESENTATIONS APPROVED FOR THIS SYMPOSIUM INCLUDE

A Novel Room-temperature Synthesis Technique for Producing High-density Electroceramic Composites
Analysis of Crystal Structure in Calcium and Strontium Hexaborides with Lithium Dopants
Aqueous Colloidal Processing of WC Based Materials with Alternative Metals as Sintering Aids or Binder
Bulk Amorphous SiCN Produced through Plasma Synthesis and Spark Plasma Sintering
Chemical Vapor Deposition of Zirconium-silicon-carbon Compositions
Comparison of Microstructural Evolution of Hydroxyapatite Powder Sintered by Microwave, SPS and Conventional Sintering
Development Calcium Doped La(Cr0.2Co0.2Fe0.2Mn0.2Ni0.2)O3 High Entropy Perovskite Oxides
Development of New Synthesis Route for Environmentally Friendly Thermoelectric Rare Earth Borocarbonitrides for Upcoming Carbon-neutral Society
Dispersion Studies of Alumina Toughened Zirconia Powders for Direct Ink Writing Applications
Effects of Sintering Additive and Oxygen Partial Pressure on Solid-state Single-crystal Growth of YAG Ceramics
Flash Sintering, Ultrafast Sintering without Electric Fields, and Electric Field Effects on Microstructural Evolution
Green State Joining of Silicon Carbide for High-temperature Applications
High Temperature Coatings for Concentrated Solar Power Receivers
Issues Related to the Manufacturing and Processing of Refractory Ceramic Materials
Leveraging Computational Thermodynamics for Guiding SiC-ZrC Chemical Vapor Deposition Process Development
Low Energy Syntheses of Ceramic Powders and Composites
Low Temperature Synthesis Methods for Nanoparticle Carbides
Luminescence Thermometry - Striving a Breakthrough
Making Pre-stressed Ceramics with High Strength and High Damage Tolerance
Mechanical Properties of La2Zr2O7/ ZrO2 Composites Prepared by Coating of ZrO2 Sol
Pressureless Sintered SiC Formed via Thermoplastic Fugitive Binders for High-temperature Applications
Progress of Silicon Nitride: Processing, Structure and Property
Recent Progress in Fusion Welding of Structural Ceramics and Composites
Selective Laser Sintering of Hexagonal Barium Titanate Ceramics
Self-propagating High Temperature Synthesis of Chevrel Phase Compounds
Spark Plasma Joining of HfB2-ZrB2-SiC Composites Using Ni as a Filler
Surface Stengthening of Single-crystal Alumina by High-temperature Laser Shock Peening
Textured UHTC Borides Using Extremely Low Magnetic Fields
The Future of Manufacturing in Energy-intensive Industries
Ultra-fast Laser Sintering of Alumina and the Microstructure Prediction Based on Machine Learning
Unique Technological Advantages and Progress towards Manufacturing Scale-up


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