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About this Conference
Meeting MS&T23: Materials Science & Technology
Dates 10/01/2023 - 10/05/2023
Location Columbus, OH, USA
Scope The Materials Science & Technology (MS&T) technical meeting and exhibition is the long-standing, recognized forum for fostering technical innovation at the intersection of materials science, engineering, and application. Each year, MS&T brings together scientists, engineers, students, suppliers, and business leaders to discuss current research and technical applications and to shape the future of materials science and technology. The event's unmatched technical program addresses structure, properties, processing, and performance across the materials community. Its exhibition showcases a wide variety of equipment and services to the automotive, aerospace, instrumentation, medical, oilfield, and energy industries. MS&T is organized by a joint partnership of leading materials science-related societies: the American Ceramic Society (ACerS), the Association for Iron and Steel Technology (AIST), and The Minerals, Metals & Materials Society (TMS). Note regarding symposium proposals: The MS&T23 technical program will take place Monday, Tuesday, and Wednesday from 8:00 a.m. to 5:30 p.m., and on Thursday from 8:00 a.m. to 12:00 p.m. MS&T has a half-day plenary session planned for Tuesday afternoon. The maximum number of sessions available per symposium is six.
Conference Chair MS&T Administration, MS&T PCC
Meeting Home Page

15th Symposium on Green and Sustainable Technologies for Materials Manufacturing and Processing
3D Printing of Biomaterials and Devices
ACerS Frontiers of Science and Society: The Rustum Roy Lecture
ACerS Richard M. Fulrath Award Session
ACerS Robert B. Sosman Award Symposium
ACerS/EPDC: Arthur L. Friedberg Ceramic Engineering Tutorial and Lecture
Additive Manufacturing Modeling, Simulation, and Machine Learning: Microstructure, Mechanics, and Process
Additive Manufacturing of Ceramic-based Materials: Process Development, Materials, Process Optimization and Applications
Additive Manufacturing of High and Ultra-high Temperature Ceramics and Composites: Processing, Characterization and Testing
Additive Manufacturing of Metals: Microstructure, Properties and Alloy Development
Additive Manufacturing of Titanium-based Materials: Processing, Microstructure and Material Properties
Additive Manufacturing: Design, Materials, Manufacturing, Challenges and Applications
Additive Manufacturing: Equipment, Instrumentation and In-Situ Process Monitoring
Advanced Ceramics for Environmental Remediation
Advanced Joining Technologies for Automotive Lightweight Structures
Advanced Materials for Harsh Environments
Advancements in Steel Structural Refinement
Advances in Ferrous Metallurgy
Advances in Surface Engineering
Advances in Understanding of Martensite in Steels II
Advances in Understanding of Martensite in Steels II
Advances in Zinc-coated Sheet Steel Processing and Properties
Agile Additive Manufacturing by Employing Breakthrough Functionalities
Career Transition: How to Navigate the Job Market? Insights from Academia and Industry
Ceramics and Glasses Modeling by Simulations and Machine Learning
Ceramics for New Generation Nuclear Energy System Application
Computation Assisted Materials Development for Improved Corrosion Resistance
Computational Discovery, Understanding, and Design of Multi-principal Element Materials
Controlled Synthesis, Processing, and Applications of Structural and Functional Nanomaterials
Curricular Innovations and Continuous Improvement of Academic Programs (and Satisfying ABET along the Way): The Elizabeth Judson Memorial Symposium
Emergent Materials Under Extremes and Decisive In Situ Characterizations
Energy Efficient Solid-state Processing
Energy Materials for Sustainable Development
Engineering Ceramics: Microstructure-Property-Performance Relations and Applications
Glasses and Optical Materials: Current Issues and Functional Applications
Grain Boundaries, Interfaces, and Surfaces: Fundamental Structure-Property-Performance Relationships
High Entropy Materials: Concentrated Solid Solutions, Intermetallics, Ceramics, Functional Materials and Beyond IV
High Temperature Corrosion and Degradation of Structural Materials
History of Materials Science and Engineering
Hybrid Organic-inorganic Materials for Alternative Energy
Integrated Computational Materials Engineering (ICME) for Ceramics and Ceramic Matrix Composites (CMCs) in Extreme Environments
Integration between Modeling and Experiments for Crystalline Metals: From Atomistic to Macroscopic Scales V
Interface-mediated Phenomena in Structural Materials
Journal of the American Ceramic Society Awards Symposium
Leveraging Integrated Computational Materials Engineering for High-fidelity Physics-based and Machine Learning Models
Light Metal Technology
Manufacturing and Processing of Advanced Ceramic Materials
Materials Informatics for Images and Multi-dimensional Datasets
Materials Processing and Fundamental Understanding Based on Machine Learning and Data Informatics
Mesoscale Phenomena in Functional Polycrystals and Their Nanostructures
Metal Powder Synthesis and Processing: Fundamental Aspects and Modeling
Multi Scale Modeling of Microstructure Deformation in Material Processing
Nanotechnology for Energy, Environment, Electronics, Healthcare and Industry
Next Generation Biomaterials
Phase Transformations and Microstructure Evolution during Post-Processing of Additively Manufactured Metals
Phase Transformations in Ceramics: Science and Applications
Processing and Performance of Materials Using Microwaves, Electric and Magnetic Fields, Ultrasound, Lasers, and Mechanical Work – Rustum Roy Symposium
Progressive Solutions to Improve Corrosion Resistance of Nuclear Waste Storage Materials
Recent Advances in Development and Processing of 3rd Generation Steels for Sustainable Future
Recent Developments of Light Weight Alloys and Composites
Solid-state Optical Materials and Luminescence Properties
Steels for Sustainable Development II
Synthesis, Characterization, Modeling and Applications of Functional Porous Materials
Thermodynamics of Materials in Extreme Environments

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