AbstractStrain bursts are often observed during compression tests of single crystal micropillars. In this work, we formulate a new continuum model that accounts for the strain bursts within the framework of crystal plasticity. The strain bursts are separated from the loading stage (nearly elastic loading) by introducing a dimensionless constant in the continuum model, and are detected by load serrations. The boundary conditions in the context of micropillar compression are studied and they are shown to be changing and unpredictable as plastic deformation proceeds. To evaluate the validity of our model, finite element simulations of the uniaxial compression tests on nickel micropillars are performed. Our simulations produce clearly visible s...
International audiencePlasticity, a key property in the mechanical behavior and processing of crysta...
In small-scale metallic systems, collective dislocation activity has been correlated with size effec...
International audienceIncompatibility stresses can develop in bicrystals due to material elastic and...
AbstractStrain bursts are often observed during compression tests of single crystal micropillars. In...
The plastic deformation of the micropillar proceeds as a series of strain bursts, showing an intermi...
AbstractSystematic experimental investigations have demonstrated that the plastic deformation of mic...
Size effects and strain bursts that are observed in compression experiments of single crystalline mi...
Mechanical deformation of nanopillars displays features that are distinctly different from the bulk ...
Micron-scale single crystalline materials deform plastically via large intermittent strain bursts th...
The miniaturization trends on electronic components manufacturing, have challenged conventional know...
Under stress, many crystalline materials exhibit irreversible plastic deformation caused by the moti...
Nanoindentation techniques recently developed to measure the mechanical response of crystals under e...
In this study, based on the Orowan equation and the principle of Bergstrom dislocation evolution, th...
In small-scale mechanical tests, such as micropillar compression tests, plastic deformation is often...
International audienceA micromorphic single crystal plasticity model is formulated at finite deforma...
International audiencePlasticity, a key property in the mechanical behavior and processing of crysta...
In small-scale metallic systems, collective dislocation activity has been correlated with size effec...
International audienceIncompatibility stresses can develop in bicrystals due to material elastic and...
AbstractStrain bursts are often observed during compression tests of single crystal micropillars. In...
The plastic deformation of the micropillar proceeds as a series of strain bursts, showing an intermi...
AbstractSystematic experimental investigations have demonstrated that the plastic deformation of mic...
Size effects and strain bursts that are observed in compression experiments of single crystalline mi...
Mechanical deformation of nanopillars displays features that are distinctly different from the bulk ...
Micron-scale single crystalline materials deform plastically via large intermittent strain bursts th...
The miniaturization trends on electronic components manufacturing, have challenged conventional know...
Under stress, many crystalline materials exhibit irreversible plastic deformation caused by the moti...
Nanoindentation techniques recently developed to measure the mechanical response of crystals under e...
In this study, based on the Orowan equation and the principle of Bergstrom dislocation evolution, th...
In small-scale mechanical tests, such as micropillar compression tests, plastic deformation is often...
International audienceA micromorphic single crystal plasticity model is formulated at finite deforma...
International audiencePlasticity, a key property in the mechanical behavior and processing of crysta...
In small-scale metallic systems, collective dislocation activity has been correlated with size effec...
International audienceIncompatibility stresses can develop in bicrystals due to material elastic and...