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Meeting 2020 TMS Annual Meeting & Exhibition
Symposium Materials Design Approaches and Experiences V
Presentation Title Further Developments of CALPHAD Based Tools for Accelerating Alloy Design
Author(s) Paul Mason, Adam Hope, Kaisheng Wu, Qing Chen, Hai-Lin Chen, Jiayi Yan, Ralf Rettig, Johan Jeppsson, Anders Engstrom
On-Site Speaker (Planned) Paul Mason
Abstract Scope For more than 35 years, CALPHAD based tools have been used in the development of new alloys and improving the understanding and processing of existing alloys. Such tools and databases though are being continually developed and the recognition that CALPHAD is foundational to an ICME/MGI framework has further increased the demands on both software and database development to meet today’s challenges. This presentation will focus on four areas of development: 1) Better integrated thermodynamic and kinetic models and databases with illustrations using Thermo-Calc, DICTRA and TC-PRISMA, 2) CALPHAD databases with broader ranges of composition that are suitable for materials discovery and also materials processing/joining type applications. 3) Extension of the CALPHAD approach to modeling thermo-physical and thermo-mechanical properties, such as thermal conductivity and Martensite growth kinetics. 4) Improved understanding of how different computational approaches such as Ab Initio, CALPHAD and Machine Learning can be used together to accelerate materials design.
Proceedings Inclusion? Planned: Supplemental Proceedings volume

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Accelerated Design of High-temperature Alloys with Data Analytics and Supercomputing
Accelerated Materials Design Strategy for Additive Manufacturing at Access e.V.
Alloy Design Through Sequential Learning
Application of Computational Tools in Designing Ni-base Single-crystal Superalloys
Design of Cobalt Base Single Crystal Superalloys
Design of Ni-Co-Ru Multi-principal Elements Alloys
Design Principles for Complex, Concentrated Alloys (CCAs)
Designing for Local Phase Transformation Strengthening in Nickel Based Superalloys
Development of Cast Alumina-forming Austenitic Stainless Steels and their Implementation In High Temperature Industrial Applications
Development of HAYNES® 233® Alloy
Development of Ni-based Alloys For Transportation Applications
Development of Nuclear Grade Wrought FeCrAl Alloys for Accident Tolerant Fuel Cladding
Domain-guided ML Tool for Designing New Fe-9Cr Steels
Effect of Vibration on Residual Stress of a Stiffened Steel Plate During Welding: A Numerical Study
Equilibrium Segregation and Localized Phase Transition at Stacking Faults in Ni-based Superalloys
Further Developments of CALPHAD Based Tools for Accelerating Alloy Design
Genomic Materials Design: Making CyberSteels Fly
High-throughput CALPHAD Calculation for Accelerated Materials Design
Improved 3rd Generation Single Crystal Superalloy CMSX-4® Plus (SLS) – a Study of Evolutionary Alloy Development
Interface based Alloy Design
L-28 (Invited): Integrated Study of First-principles Calculations and Experimental Measurements for Hydrogen Effect on FCC to HCP Martensitic Transformation
Material and Process 4.0: Model-Based Material and Process Development
Materials Discovery and Design using Heritage Data
Materials Parameters in Designing FCC High-entropy Alloys
Materials, Manufacturing, and Design: Perspectives on New and Nascent Techniques
Microstructural Design for Advanced Aluminium and Magnesium Alloys
Microstructure and Cracking Susceptibility of Continuously Cast Slabs of 3rd Generation Advanced High Strength Steels
New Alloy Design Strategy via Non-conventional Phase Transformation Pathways
Non-equilibrium Interfacial Solute Segregation as a Thermal Stabilization Mechanism in Al-Cu Alloys
On the Use of Multiscale Modeling Strategies to Design Precipitation-hardened Al Alloys
Oxidation Resistant Refractory Metal High Entropy Alloys for Ultrahigh Temperature Structural Applications
Precipitate-mediated Dislocation Transformer in Ni-base Superalloys
Strength Prediction in a Quaternary Mg Alloy System Using a Multi-scale Optimization Framework
Synergistic Nano-precipitation in Mn-stabilized Austenitic Steels
The FaMUS Methodology for Quantify Materials Understanding and Its Application to the NSUF Research Portfolio

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