This work clarifies the origin of anomalous surface deformation reflected by peculiar surface patterns around indentation impressions on various crystallographic planes of sapphire. The three-dimensional finite element simulation (3D-FEM) of nanoindentation in Al2O3 crystal allowed the authors to localize the regions in which various kinds of twinning and slip are most prone to be activated. The work provides a novel approach to the “hardness anisotropy”, which was modeled so far using a modified uniaxial-stress approximation of this essentially 3D, non-isotropic contact problem. The calculated results enabled the authors to unravel the asymmetric surface deformation detected on prismatic planes by the high-resolution microscopy, which cann...
The substructures of sapphire single crystals explosively shocked at pressures of 5, 12 and 23 GPa w...
The effect of crystal orientation on nanoindentation behavior at both quasi-static and high strain r...
In this work, we have developed a mathematical framework to investigate the deformation response und...
This work clarifies the origin of anomalous surface deformation reflected by peculiar surface patter...
In this study, single groove nanoscratch experiments using a friction force microscope (FFM) with a ...
The nanoscale elastic-plastic characteristics of the C plane of sapphire single crystal were studied...
Single-crystal sapphire is utilized as a high-performance engineering material, especially in extrem...
Single-crystal sapphire (α-Al2O3) is a hard and brittle material. Due to its highly crystalline natu...
International audienceSingle-crystal sapphire exhibits a highly anisotropic fracture behavior. The s...
Knowledge of the complex deformation behavior in the anisotropic materials is one of essential issue...
A multiscale method is applied to study the response of an aluminum single-crystal substrate to cycl...
The atomic structure of dislocation cores is decisive for the understanding of plasticity in crystal...
Nanotwinned metals exhibit superior mechanical properties due to unique dislocation–twin bound...
Crystal plasticity finite element (CPFE) simulations of AA2024 under nanoindentation at six differen...
The nanoscale pop-in phenomena in polycrystalline alpha-Al2O3 and single crystal alpha-Al2O3(0001) w...
The substructures of sapphire single crystals explosively shocked at pressures of 5, 12 and 23 GPa w...
The effect of crystal orientation on nanoindentation behavior at both quasi-static and high strain r...
In this work, we have developed a mathematical framework to investigate the deformation response und...
This work clarifies the origin of anomalous surface deformation reflected by peculiar surface patter...
In this study, single groove nanoscratch experiments using a friction force microscope (FFM) with a ...
The nanoscale elastic-plastic characteristics of the C plane of sapphire single crystal were studied...
Single-crystal sapphire is utilized as a high-performance engineering material, especially in extrem...
Single-crystal sapphire (α-Al2O3) is a hard and brittle material. Due to its highly crystalline natu...
International audienceSingle-crystal sapphire exhibits a highly anisotropic fracture behavior. The s...
Knowledge of the complex deformation behavior in the anisotropic materials is one of essential issue...
A multiscale method is applied to study the response of an aluminum single-crystal substrate to cycl...
The atomic structure of dislocation cores is decisive for the understanding of plasticity in crystal...
Nanotwinned metals exhibit superior mechanical properties due to unique dislocation–twin bound...
Crystal plasticity finite element (CPFE) simulations of AA2024 under nanoindentation at six differen...
The nanoscale pop-in phenomena in polycrystalline alpha-Al2O3 and single crystal alpha-Al2O3(0001) w...
The substructures of sapphire single crystals explosively shocked at pressures of 5, 12 and 23 GPa w...
The effect of crystal orientation on nanoindentation behavior at both quasi-static and high strain r...
In this work, we have developed a mathematical framework to investigate the deformation response und...