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Meeting MS&T21: Materials Science & Technology
Symposium Processing and Performance of Materials Using Microwaves, Electric and Magnetic Fields, Ultrasound, Lasers, and Mechanical Work: The Rustum Roy Symposium
Sponsorship ACerS Basic Science Division
ACerS Manufacturing Division
Organizer(s) Morsi Mohamed Mahmoud, King Fahd University Of Petroleum And Minerals
Dinesh Agrawal, Pennsylvania State University
Guido Link, Karlsruhe Institute of Technology
Motoyasu Sato, Chubu University
Rishi Raj, University of Colorado
Christina Wildfire, National Energy Technology Laboratory
Zhiwei Peng, Central South University
Scope This symposium focuses on the discovery of novel processing methods, manufacturing, and performance of materials systems under the influence of microwaves, electric and magnetic fields (ac or dc), laser, ultrasound and mechanical energy. The symposium explores the fundamental science and mechanisms underlying these processing methods. Phenomena where electric and magnetic driving forces are coupled with mechanical and chemical effects will be emphasized especially at the system level. Sessions at the symposium will cover but not limited to the following topics: (i) Microwave Materials Processing, (ii) Electric Field Assisted Sintering, (iii) Phenomena in Li+ Batteries, (iv) Biological Phenomena in Electric and Magnetic fields, and (v) Microstructure Evolution and Phase Transformations under the influence of Electric and/or Magnetic fields.
Abstracts Due 04/15/2021
PRESENTATIONS APPROVED FOR THIS SYMPOSIUM INCLUDE

Assessment of Homogeneity in Percolated Composite Samples
Characterizing the Kinetics of Isothermal Microwave-assisted Chemical Syntheses (IMACS): Application of a Unified Process Kinetic Equation (UPKE)
Conditions for the Microwave Effect
Electric Current Processing of Additively Manufactured Ti-6Al-4V Alloy
Electromagnetic Assisted Thermal Processing Enabling Spatially Selective Phase Transformation of Metal Amorphous Nanocomposites
Freeform Microcasting
Methodology for Scaling Microwave Catalyst in a Fixed Bed
Micro Flash Sintering for Additive Manufacturing of Ceramics
Novel Electrode Configuration Effects on the Microstructural Homogeneity of Flash Sintered Ceramics for Solid-state Battery Electrolytes.
Solid State Joining of Dissimilar Single Crystal Ni-based Superalloys Using Field Assisted Sintering Technology (FAST)


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