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Meeting MS&T23: Materials Science & Technology
Symposium Integration between Modeling and Experiments for Crystalline Metals: From Atomistic to Macroscopic Scales V
Presentation Title A Rule-free Computational Prediction of the Slip-interface Reaction and the Subsequent Microstructure Evolution in Heterogeneous Materials under Deformation
Author(s) Liming Xiong, Thanh Phan
On-Site Speaker (Planned) Liming Xiong
Abstract Scope High-performance structural materials are usually heterogeneous and contain a high density of interfaces such as stacking faults, grain boundaries (GBs), phase boundaries (PBs), and many more. When subjected to plastic deformation, the overall performance of these materials is largely dictated by the interaction between the dislocation-mediated plastic flow and those interfaces. In this talk, we will present our recent development of an adaptive concurrent atomistic-continuum simulation tool for predicting the slip-GB reaction and the subsequent structure changes in plastically deformed polycrystalline alloys with its grain size spanning from nanometers to micrometers. Without any slip-GB reaction rules being used as inputs, this simulation tool is shown to be capable to capture an experimentally comparable microstructure evolutions in heterogeneous materials exposed to extreme stresses, corrosive, irradiations, and even a combination of them.

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

A Rule-free Computational Prediction of the Slip-interface Reaction and the Subsequent Microstructure Evolution in Heterogeneous Materials under Deformation
An Investigation on the Microstructural Uncertainty in Molecular Dynamic Simulations of Polycrystalline Nickel
Assessing the Predictive Capabilities of Precipitation Strengthening Models for Deformation Twinning in Mg Alloys Using Phase-field Simulations
Coupled Crystal Plasticity and Phase-field Fracture Model for Single Crystal Plastic Deformation and Failure Prediction
Crystal Plasticity Modeling of Ti-6Al-4V Alloy under Uncertainty with Surrogate Optimization and Experimental Validation
Deformation Behavior of Lightweight Clad Sheet: Experiment and Modeling
Diffusion in Curved Grain Boundaries
Effects of Defects on Stress- and Thermally-induced Martensitic Transformation of Nanocrystalline NiTi Alloys: A Molecular Dynamics Study
From Anti-Arrhenius to Arrhenius Behavior in a Dislocation-obstacle Bypass
Hole Expansion Testing of Thin Sheet Materials at Various Strain Rates for Advanced Constitutive Model Calibration
Micromechanical Modeling of Additively Manufactured Inconel 625 Informed by in situ High-energy X-ray Diffraction
Misorientation Effects in Single Crystal Plasticity Finite Element Modeling
Monte Carlo Grain Growth Simulations of Discontinuous Changes in Grain Boundary Velocity Induced by Grain Boundary Transformations
Plastic Deformation and Failure Predictions of Al-6061 with Inhomogeneities Using Finite Element Modeling Techniques Across Different Length Scales
Prediction and Quantification of Suzuki Segregation at Stacking Faults in FCC-based Alloys and Compounds
Prediction of Forming Limits for Austenitic Stainless Steel Tubes
Quantifying the Role of Coarse Intermetallic Particles on Twinning Behavior
The Role of Plastic Anisotropy on the Reorientation Trajectories of BCC Polycrystals
Unravelling the Nucleation and Growth Mechanism of {11-22} Twin in Titanium
Validation Experiments Developed for Casting Modeling

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