Plastic deformation of micron-scale crystalline solids exhibits stress-strain curves with significant sample-to-sample variations. It is a pertinent question if this variability is purely random or to some extent predictable. Here we show, by employing machine learning techniques such as regression neural networks and support vector machines that deformation predictability evolves with strain and crystal size. Using data from discrete dislocations dynamics simulations, the machine learning models are trained to infer the mapping from features of the pre-existing dislocation configuration to the stress-strain curves. The predictability vs strain relation is non-monotonic and exhibits a system size effect: larger systems are more predictable....
Recent advances in machine learning have unlocked new potential for innovation in engineering scienc...
Micron-scale single crystalline materials deform plastically via large intermittent strain bursts th...
Nanoindentation techniques recently developed to measure the mechanical response of crystals under e...
Plastic deformation of micron-scale crystalline solids exhibits stress-strain curves with significan...
Predicting the behavior of complex systems is one of the main goals of science. An important example...
Predicting the behaviour of complex systems is one of the main goals of science. An important exampl...
Deformation of crystalline materials is an interesting example of complex system behaviour. Small sa...
This work focuses on integrating crystal plasticity based deformation models and machine learning te...
The present thesis makes a connection between spatially resolved strain correlations and material pr...
We study a one-dimensional model of a dislocation pileup driven by an external stress and interactin...
The continued advancements in material development and design require understanding the relationship...
Efficient and precise prediction of plasticity by data-driven models relies on appropriate data prep...
The miniaturization trends on electronic components manufacturing, have challenged conventional know...
Here you can find the results and code corresponding to the article "Modeling the relationship betwe...
Under stress, many crystalline materials exhibit irreversible plastic deformation caused by the moti...
Recent advances in machine learning have unlocked new potential for innovation in engineering scienc...
Micron-scale single crystalline materials deform plastically via large intermittent strain bursts th...
Nanoindentation techniques recently developed to measure the mechanical response of crystals under e...
Plastic deformation of micron-scale crystalline solids exhibits stress-strain curves with significan...
Predicting the behavior of complex systems is one of the main goals of science. An important example...
Predicting the behaviour of complex systems is one of the main goals of science. An important exampl...
Deformation of crystalline materials is an interesting example of complex system behaviour. Small sa...
This work focuses on integrating crystal plasticity based deformation models and machine learning te...
The present thesis makes a connection between spatially resolved strain correlations and material pr...
We study a one-dimensional model of a dislocation pileup driven by an external stress and interactin...
The continued advancements in material development and design require understanding the relationship...
Efficient and precise prediction of plasticity by data-driven models relies on appropriate data prep...
The miniaturization trends on electronic components manufacturing, have challenged conventional know...
Here you can find the results and code corresponding to the article "Modeling the relationship betwe...
Under stress, many crystalline materials exhibit irreversible plastic deformation caused by the moti...
Recent advances in machine learning have unlocked new potential for innovation in engineering scienc...
Micron-scale single crystalline materials deform plastically via large intermittent strain bursts th...
Nanoindentation techniques recently developed to measure the mechanical response of crystals under e...