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Meeting 2023 TMS Annual Meeting & Exhibition
Symposium Alloy Behavior and Design Across Length-Scales: An SMD Symposium Honoring Easo George
Presentation Title Factors Affecting Mechanical Twinning in Single-phase FCC and Polycrystalline MEAs and HEAs
Author(s) Guillaume Laplanche
On-Site Speaker (Planned) Guillaume Laplanche
Abstract Scope In this study, recent progress will be presented in understanding the factors influencing the uniaxial stress above which mechanical twins are observed in medium- and high-entropy alloys (MEAs/HEAs) from the Cr-Mn-Fe-Co-Ni system. Efforts were made to produce alloys that are single-phase face-centered cubic (FCC), chemically homogeneous and have well-controlled grain sizes. Tensile tests at 293 and 77 K were interrupted at different strains and systematically characterized by transmission electron microscopy. The uniaxial twinning stress was found to be temperature independent and to increase with decreasing grain size. When the twinning stress is extrapolated to infinite grain size, it increases linearly with the intrinsic stacking fault energy. The results obtained in the present study will be compared to those of experimental and theoretical studies focusing on single crystals.
Proceedings Inclusion? Planned:
Keywords High-Entropy Alloys, Mechanical Properties, Phase Transformations

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Ambient-temperature Plasticity of Brittle Intermetallics at Micron-meter Size Scales
Challenges in the Design of Refractory Multi-principal Element Alloys
Deformation Mechanisms in Compositionally Complex Polycrystalline CoNiCr-based Superalloys
Deformation Twinning in HCP Ti: The Role of Interfacial Complexions and Interstitial Solutes
Easo George – Advancing Understanding of Mechanical Behavior through Test Material Preparation
Easo George - Recollections of His Youth
Factors Affecting Mechanical Twinning in Single-phase FCC and Polycrystalline MEAs and HEAs
Fracture Properties of High-entropy Alloys
From Superplasticity in Steels to the Great Pyramid of Giza
Functional High Entropy Alloys
Future Prospects of MoSiBTiC Alloys as Ultra-High Temperature Materials
Heat-Resistant Cr-Alloys, Microstructure, Oxidation and Creep
Low Temperature Deformation Mechanisms of CrMnFeCoNi High-entropy Alloy Polycrystals
Physical Metallurgy and Mechanical Properties of Iridium and Platinum Alloys Used in Power and Heat Sources Onboard Interplanetary Spacecraft
Predicting High Entropy Alloy Phase Stability across Length Scales
Solid Solution Hardening Effects on Thermal Stability and Mechanical Properties of Nanostructured Ni-enriched CrMnFeCoNi High Entropy Alloys
Some Unusual Aspects of the Deformation Behavior of FeAl
Strong Effects of Tiny Compositional Changes on Structural and Functional Material Properties
The Interplay between Phase Transformation and Mechanical Properties in High Entropy Alloys
Theory-guided Design of High-strength, Ductile, Single-phase BCC High Entropy Alloys
Utilizing Nanoprecipitates to Modulate Phase Transformation, Strength, and Ductility of HEAs

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