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Meeting Materials Science & Technology 2019
Symposium Journal of the American Ceramic Society Awards Symposium
Sponsorship
Organizer(s) William G. Fahrenholtz, Missouri University of Science and Technology
Scope This symposium will recognize authors from the Journal of the American Ceramic Society. Papers published in the previous volume will be selected to identify the best papers, the most highly cited papers, graduate student authors, new authors, papers in emerging research areas, and other papers that have had an impact on the field of ceramic science. This will be an invitation only symposium so that all presentations will be invited. Each invited lecture will be based on a published paper and the authors will receive recognition for their accomplishments. We anticipate having all of the presentations be 40 min in length.
Abstracts Due 04/05/2019
Proceedings Plan Undecided
PRESENTATIONS APPROVED FOR THIS SYMPOSIUM INCLUDE

Conductivity of Iron-doped Strontium Titanate in the Quenched and Degraded States
Creep and Relaxation of Cement Paste Caused by Stress-induced Dissolution of Hydrated Solid Components
Electronic structure and mechanical properties of a large realistic model of inter-granular glassy film in β-Si3N4
Fabrication and Properties of Transparent Nd-doped BaF2 Ceramics
High-performance Energy Harvesting Piezoceramics with High Depolarization Temperature
High-strength, Light-weight and Printable Ceramic Foams with Hierarchical Pore Structure from Boehmite Foams
Increased UV absorption of natural hydroxyapatite–based sunscreen through laser ablation in liquid
Microstructure-conductivity relationship of Na3Zr2Si2PO12
New Advanced Sintering Approaches Based on Spark Plasma Sintering
Polar domain structural evolution under electric field and temperature in the (Bi0.5Na0.5)TiO3–0.06BaTiO3 piezoceramics
Sinter-cracking: simulations and experiments
Sintering Forces Acting among Particles during Sintering by Grain Boundary/Surface Diffusion
The Future of Grain Boundary Complexion Engineering
Thermochemical Model on the Carbothermal Reduction of Oxides During Spark Plasma Sintering of Zirconium Diboride
Titanate based glass-ceramics for actinide immobilization


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