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Meeting Materials Science & Technology 2019
Symposium Processing and Performance of Materials Using Microwaves, Electric and Magnetic Fields, Ultrasound, Lasers, and Mechanical Work – Rustum Roy Symposium
Organizer(s) Morsi Mohamed Mahmoud, King Fahd University of Petroleum and Minerals - KFUPM
Dinesh Agrawal, Pennsylvania State University
Guido Link, Karlsruhe Institute of Technology
Motoyasu Sato, Chubu University
Rishi Raj, University of Colorado
Victoria L. Blair, Army Research Laboratory
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 04/05/2019
Proceedings Plan Planned: At-meeting proceedings

Advanced In-Line Nanocrystallization of Amorphous Metal Ribbon (AMR) Alloys Through Mechanical and Electromagnetic Fields
An Irreversible Thermodynamic Perspective on Chemical Reaction Kinetics in Ceramic Processing under Resonant Microwave-Fields
Characterization of the native thin oxide layer of Copper Metal Powder Sintered via Microwaves
Effect of Alternating Electromagnetic Field on Extracellular Polymeric Substances Derived from Biofilms And Its Mechanism
Effect of plasma heating on the liquid steel in tundish
Effect of Pulsed Electric Current on Metastable Austenitic Steel
Effective Permittivity of Metal/Ceramic Composites and Microwave Heating Characteristics
Electric Current Annealing of Zircaloy Alloy and Associated Mechanisms
Electro-pulse and High Magnetic Field Annealing of Cold-Rolled NiFe
Exploration of Phase Transformations in alnico and its Implications for Magnetic Annealing
Field-Assisted Processing of SiC-Diamond Composite Blends
Graphite-Si-SiC ceramics produced by microwave assisted reactive melt infiltration.
In-situ high spatial resolution two-color thermography in micrwoave selective heating system
Locally Activated Solution Processing Would be Preferable Than General Hydrothermal/Solvothermal Processing Using Autoclaves
Magnetic field-assisted electrodeposition of nickel composite coatings
Magnetic Field-Assisted Freeze Casting of Porous Ceramic Structures
Microwave Effects in Heterogenous Materials: A Study on Catalysis
Modeling Microstructural Evolution under Applied Magnetic Fields
Proposal of mining method of methane hydrate by microwave
Radio Frequency and Microwave Heating of Preceramic Polymers and its Application in Silicon Carbide Processing.
Stage I Laser Flash Sintering
Thermal Analysis of a High Temperature Coaxial Dielectric Test Cell
Ultrasonic and Vibration Enhanced Materials Processing
Using Surface Charge Mobility Theory to Explain Certain Microwave Effects
Vapor Dephosphorization Kinetics from Steel Making Slag by Microwave Rapid Heating

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