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Meeting 2021 TMS Annual Meeting & Exhibition
Symposium Computational and Modeling Challenges in Metals and Alloys for Extreme Environments
Presentation Title A Thermo-mechanical Model of the Dynamics of Dislocation Fields in Transient Heterogeneous Temperature Fields
Author(s) Manas Upadhyay
On-Site Speaker (Planned) Manas Upadhyay
Abstract Scope A thermodynamically rigorous model to simulate the dynamics of dislocations due to rapid/gradual solid-state heating-cooling or solid-state thermal cycling (SSTC), is proposed. The proposed model, called the Thermal Field Dislocation Mechanics (T-FDM) model, is an extended coupling of the FDM approach with the heat transfer problem. Its novelty lies in its unique ability to simulate: (i) dislocation generation/annihilation/motion under the action of mechanical and thermal (heat-flux/temperature) boundary conditions, and (ii) local temperature changes induced by moving dislocations with evolving densities. The model can be applied to study dislocation motion under the action of rapidly evolving boundary conditions such as those occurring during AM, quenching, etc. The range of applicability of the model, including dislocation interactions with evolving chemical species (precipitates, microsegregations, etc.) and up-scaling to the crystal plasticity level, will be discussed. Validity of model assumptions, e.g. local thermodynamic equilibrium, are discussed in the context of SSTC during AM.
Proceedings Inclusion? Planned:

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

A Thermo-mechanical Model of the Dynamics of Dislocation Fields in Transient Heterogeneous Temperature Fields
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Mesoscale Modeling of Deformation Behavior of Fe-based Microstructures at High Strain Rates and under Shock Loading Conditions
Modeling of Laser Interactions with BCC Metals Using a Hybrid Atomistic-continuum Approach
Molecular Dynamics Modeling of the Influence of Magnesium Dopants on Grain Boundary Stabilization in Nanocrystalline Aluminum
Multi-scale Simulations of Crystallographic Facet-orientation Dependent Corrosion Behavior in Metallic Alloys
The Microscopic Structure of a Heavily Irradiated Metal
The Role of Precipitates on the Microstructure-sensitive Creep Response of 347H Steel via Crystal Plasticity Simulations
Understanding Interface Properties Through Dislocation Dynamics Simulations in Metallic Nanolaminates

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