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About this Symposium
Meeting MS&T22: Materials Science & Technology
Symposium Innovative Process Design and Processing for Advanced Structural Materials
Sponsorship
Organizer(s) Ju-Young Kim, UNIST
Jae-il Jang, Hanyang University
Sung-Tae Hong, University of Ulsan
Rongshan Qin, The Open University
Scope Innovative process design and processing for advanced structural materials are essential in meeting rapidly increasing industrial requirements to cope with new technologies and to improve the world-wide competitiveness of structural materials. For this purpose, corresponding R&D activities are required to achieve an optimal process design enabling the structural materials getting over limits of respective physical properties and the development of cost-/time-effective multidimensional evaluation/diagnosis systems.

The topics of this symposium cover such activities and include (but not limited to):
• Industrialization of structural materials by applying an innovative hybrid process based on electrical current and charge effects
• Development of multi-functional and light-weight, non-ferrous materials and high-strength and low-density composites
• Predictive modelling of material design and process optimization based on neural networks and thermodynamic calculations
• Multi-dimensional characterizations of mechanical properties and materials microstructures for process pre-designs

Abstracts Due 05/15/2022
Proceedings Plan Planned: None Selected
PRESENTATIONS APPROVED FOR THIS SYMPOSIUM INCLUDE

A New Method for Measurement of Flow Stresses at High Strain Rates and Temperatures for Improved Simulation of Friction Stir Welding
A Novel Gas-pocket Assisted Underwater Friction Stir Spot Processing Technique for Underwater Welding
A Study on Migrating Boundary Induced Plasticity Using Molecular Dynamics Simulation for Pure Iron
Additive Manufacturing of Multi-principal Element Alloys
Alloy Design Strategies for Coloring Al-Mg-Si Alloys with ADC12 and AZ91
Atomic-scale Unique Interface Observation of η/Al in Al-Zn-Mg Alloy
Automated Process Design for Heat Shrink Casing of Welded Parts of Buried District Heating Pipe
Co-design of 3D Printing, Parts and Microstructure
Developing NiTi for a Stable Two-way Shape Memory Behavior
Development of a Gradient Structural Material Using Electrically Assisted Pressure Joining of Fe-Mn-Al-C Lightweight Steels
Development of a Self-heated Composite Tool for Out of Autoclave and Out of Oven Cure of Thin Ply Composite Structures
Development of Highly Stretchable and Impermeable Encapsulation by Applying Wavy-structure to Thermally Grown Silicon Dioxide
Discontinuous Yielding Behavior Due to Twinning Accompanied by Abnormal Grain Growth in Fine-grained Copper
Effect of Electric Current on The Microstructure and Properties of Duplex Stainless Steel
Effect of Heat Treatment in 9% Ni Steels on Cryogenic Impact Toughness
Effects of Electric Current on the Plastic Deformation Behavior of Pure Copper, Iron, and Titanium
Effects of Mn and Grain Refinement on Hydrogen Embrittlement Resistance of FCC High-entropy Alloys
Electric Current-induced Phenomena in Materials
Enhanced Flaw-tolerance of Nanoporous Gold with Grain Boundary Plasticity
Enhancement of Mechanical Properties in Nanoporous Gold
FE-based Virtual DMAs for Characterization of Viscoelastic Behavior in Composite Materials
Friction Assisted Dissimilar Solid State Joining of Aluminum and Copper Pipes
Improvement of Mechanical Properties of Metallic Materials by Multilayered Structure
Improvement of Structural Stability and Characterization of Nanoscale Defects in Amorphous Alumina Thin Film
Integrated Welding and Thermal Processing for Ferritic/Martensitic Steels
Manufacture of Advanced 3D Composites Using a New 3D Weaving Technique and Their Design Using a Neural Network
MatILDaź - Application of a User-oriented Material Database
Mechanical Properties and Reliability of Nanolayered Stretchable Interconnect with Nanocrystalline Copper and Ternary Metallic Glass
Mechanisms Driving Defect Formation in High Power Laser Welding of Nickel Alloys
Microstructure-based Fatigue Life Modeling Methodology for Ferritic-pearlitic Hypo-eutectoid Steels
Microstructure and Deflection Behavior of Diffusion Bonded Fe-Ni-Mo/Invar Bimetallic Strips
Modern Supercomputing for Accelerating the Design of High-temperature Aluminum Alloys
Monte Carlo Simulations for Microstructure Evolution via Diffusion
Nano-mechanical Characterization in Constituent Phases of Steels for Understanding Multi-scale Deformation Behavior
Novel Solid-State Metal Powder Fabrication Process for Feedstock of Metal Matrix Composites Additive Manufacturing
On the Micromechanical Response of a Mild Steel during Abrupt Strain Path Changes (SPCs)
Porous Silicon Carbide (SiC) for Composite Core Sandwich Structures
Recent Nanoindentation Studies on Innovative Process Design for Advanced Structural Materials
Residual Stress in Steel H-beam Produced by Hot-rolling and QST Investigated by Instrumented Indentation Testing
Solid-state Bulk Joining of Dissimilar Metal Alloys by Electrically Assisted Pressure Joining
Structural Evolution during Nanostructuring and Heating of an Additive-manufactured Stainless Steel Examined by X-ray and In-situ Neutron Diffraction Analyses
Study on the Behavior of Fine Particles by the Vibration of the Medium with Polluted Air Inside the Rigid Housing
Tapered-rolling to Produce Mixed-mode Cracking Resistant Steels
The Friction and Product Quality in Dry Metal Forming with Volatile Media
Uniaxial Tensile Behavior After Baking Treatment in a Low Carbon Steel Accompanying Inhomogeneous Plastic Yielding
Virtual Thermo-mechanical Process Design of Metallic Materials by Integrating Crystal Plasticity and Phase Field Model


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