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Meeting 2021 TMS Annual Meeting & Exhibition
Symposium TMS-DGM Symposium: A Joint US-European Symposium on Linking Basic Science to Advances in Manufacturing of Lightweight Metals
Presentation Title Solute-vacancy Clustering in Aluminum
Author(s) Dongwon Shin, Jian Peng, Sumit Bahl, Amit Shyam, James Allen Haynes
On-Site Speaker (Planned) Dongwon Shin
Abstract Scope We present a first-principles database of solute-vacancy, homoatomic, heteroatomic solute-solute, and solute-solute-vacancy binding energies of relevant alloying elements in aluminum. We particularly focus on the systems with major alloying elements in aluminum, i.e., Cu, Mg, and Si. The computed binding energies of solute-vacancy, solute-solute pairs, and solute-solute-vacancy triplets agree with available experiments and theoretical results in literature. We consider physical factors such as solute size and formation energies of intermetallic compounds to correlate with binding energies. Systematic studies of the homoatomic and heteroatomic solute-solute-vacancy complexes reveal the overarching effect of the vacancy in stabilizing solute-solute pairs. The binding energy database presented here elucidates the interaction between solute cluster and vacancy in aluminum, and it is expected to provide insight into the design of advanced Al alloys. The research was sponsored by the LDRD Program of Oak Ridge National Laboratory and the Department of Energy, Vehicle Technologies Office, Propulsion Materials Program.
Proceedings Inclusion? Planned:

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Al-Fe-Si Phase Stabilization Using Experimentally Validated Computational Thermodynamics
Fracture Mechanisms under Monotonic Tensile, Fatigue, and Creep Deformation of Cast Al-Cu-Mn-Zr Alloys: Impact of Brittle Intermetallic Grain Boundary Particles
High-throughput Evaluation of Hardening Potency and Solubility of Eight Alloying Elements in Magnesium
High-throughput Experimental Techniques to Measure the CRSS for Slip and Twinning in Mg and Mg Alloys
Solute-vacancy Clustering in Aluminum
Spatial Correlations between Strengthening Particles in Multi-phase Hardenable Aluminum Alloys
Stacking-fault Mediated Plasticity and Strengthening in Lean, Rare-earth Free Magnesium Alloys
Study of the Solidification Pathways of Hypo/hyper-eutectic Al-Ce over a Wide Range of Thermal Histories
The Microstructure, Morphology and Mechanical Properties of Rapidly Solidified Al-10wt%Si-0.4wt%Sc Alloy

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