abstract: In material science, microstructure plays a key role in determining properties, which further determine utility of the material. However, effectively measuring microstructure evolution in real time remains an challenge. To date, a wide range of advanced experimental techniques have been developed and applied to characterize material microstructure and structural evolution on different length and time scales. Most of these methods can only resolve 2D structural features within a narrow range of length scale and for a single or a series of snapshots. The currently available 3D microstructure characterization techniques are usually destructive and require slicing and polishing the samples each time a picture is taken. Simulation meth...
In this chapter, a predictive multiscale model based on a cellular automaton (CA)-finite element (FE...
In this study, a novel unified framework for the study of both microstructural evolution and the mec...
Complex applications in modern aerospace technology urgently call for advanced structural materials ...
We present an efficient solver for the simulation of many-particle solid-state-sintering processes. ...
A hybrid Cellular Automata-Monte Carlo (CA-MC) approach is developed to simulate the sintering of pa...
All ceramics and powder metals, including the ceramics components that Sandia uses in critical weapo...
A predictive model is developed to simulate the evolution of the solidification microstructure durin...
In this study, the sintering behavior of additively manufactured stainless steel powder particles is...
Sintering controls microstructure and quality of powder‐metallurgical and ceramic products and the e...
Sintering, as a thermal process at elevated temperature below the melting point, is widely used to b...
International audienceA major goal of numerical models and computer simulations in materials science...
The interdependence between structural mechanics and microstructure solidification is an inherently ...
A predictive model, based on a Cellular Automaton (CA) - Finite Element (FE) method, has been develo...
A cellular automaton (CA) model to predict the formation of grain macrostructure during solidificati...
dissertationNumerical simulation methods, Monte Carlo simulation and phase field simulation methods ...
In this chapter, a predictive multiscale model based on a cellular automaton (CA)-finite element (FE...
In this study, a novel unified framework for the study of both microstructural evolution and the mec...
Complex applications in modern aerospace technology urgently call for advanced structural materials ...
We present an efficient solver for the simulation of many-particle solid-state-sintering processes. ...
A hybrid Cellular Automata-Monte Carlo (CA-MC) approach is developed to simulate the sintering of pa...
All ceramics and powder metals, including the ceramics components that Sandia uses in critical weapo...
A predictive model is developed to simulate the evolution of the solidification microstructure durin...
In this study, the sintering behavior of additively manufactured stainless steel powder particles is...
Sintering controls microstructure and quality of powder‐metallurgical and ceramic products and the e...
Sintering, as a thermal process at elevated temperature below the melting point, is widely used to b...
International audienceA major goal of numerical models and computer simulations in materials science...
The interdependence between structural mechanics and microstructure solidification is an inherently ...
A predictive model, based on a Cellular Automaton (CA) - Finite Element (FE) method, has been develo...
A cellular automaton (CA) model to predict the formation of grain macrostructure during solidificati...
dissertationNumerical simulation methods, Monte Carlo simulation and phase field simulation methods ...
In this chapter, a predictive multiscale model based on a cellular automaton (CA)-finite element (FE...
In this study, a novel unified framework for the study of both microstructural evolution and the mec...
Complex applications in modern aerospace technology urgently call for advanced structural materials ...