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About this Symposium

Meeting MS&T25: Materials Science & Technology
Symposium Processing and Performance of Materials Using Microwaves, Electric and Magnetic Fields, Ultrasound, Lasers, and Mechanical Work – Rustum Roy Symposium
Sponsorship ACerS Basic Science Division
Organizer(s) Morsi M. Mahmoud, Abdullah Al Salem University (AASU)
Rishi Raj, University of Colorado
Motoyasu Sato, Chubu University
Dinesh Agrawal, Pennsylvania State University
Christina Wildfire, National Energy Technology Laboratory
Guido Link, Karlsruhe Institute of Technology
Daudi R. Waryoba, Pennsylvania State 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 05/15/2025

PRESENTATIONS APPROVED FOR THIS SYMPOSIUM INCLUDE


A New State of Matter Induced by the Flash Process
Corrosion protection of powder metal parts by cold spray coating of AlCrCoFeNi high entropy alloy
Detecting rare earth elements and critical transition metals via optically detected magnetic resonance (ODMR) and spin-relaxometry using nitrogen vacancy centers in nanodiamonds
Development of Femtosecond Laser-Based Purification Techniques of High-Purity Quartz for Industrial Energy Applications
Dual Effect of Burst-Type Alternating Electromagnetic Fields on Bacterial Proliferation and Biofilm Suppression at Low Cell Concentration
Effects of Magnetic Field Heat Treatment on Irradiated HT9 F/M Steel
Electrophoretic Alignment of Boron-Nitride Nanotubes within Silicone Polymers: E-field Control of Anisotropic Thermal Conductivity
Enhancing Radiation Resilience of Wide-Bandgap Semiconductors and Alloys via Electron Wind Force Annealing
Extra “knob” to microstructural engineering for metals and alloys via transient athermal electro-pulsing treatment
Finite Element Modeling of Temperature-Dependent Microwave Dielectric Properties in Engineered Particulate Composites
Graphene Infused Copper: A New State of Matter Enabled by “Flash”
Hybrid microwave processing, characterization, and hot corrosion of yttria stabilized zirconia
Influence of SiC particles on the Mechanical properties of Cu-based composite casting developed through Microwave hybrid heating
Microstructural evolution of copper during ultrasonic surface modification
Microwave-Assisted Sintering of SOEC Electrodes Materials for Accelerated Sintering Kinetics, Microstructural Development, Defect Formation, and Chemical Stability
Multiphysics Simulation of Laser Welding aluminum Structures
Optimizing Ultrafast Laser Bessel Beam Glass Cutting via Machine Learning
Precision laser joining of copper busbars with minimal thermal damage for power semiconductor modules
Ultra-Fast Sintering of SOECs Electrodes Ceramics: Microstructure Optimization in Seconds via Joule-Driven Heating
Untitled
Vacuum Melting and Elevated Temperature Forming of High Purity Cu-S Alloy for Semiconductor Interconnect Seed Applications.
Wide two-transition magnetocaloric effect in Ho1-xCexNi (x = 0-0.1) from 4-35 K


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