International audienceWe investigate initiation, growth, and healing of wing cracks in confined silica glass by molecular dynamics simulations. Under dynamic compression, frictional sliding of precrack surfaces nucleates nanovoids which evolve into nanocrack columns at the precrack tip. Nanocrack columns merge to form a wing crack, which grows via coalescence with nanovoids in the direction of maximum compression. Lateral confinement arrests the growth and partially heals the wing crack. Growth and arrest of the wing crack occur repeatedly, as observed in dynamic compression experiments on brittle solids under lateral confinement
subj imen tion nsfer ther, we examine the growth of critical voids and characterize regions surroun...
The origin of the brittle-to-ductile transition, experimentally observed in amorphous silica nanofib...
The emergence of size-dependent mechanical strength in nanosized materials is now well-established, ...
International audienceWe investigate initiation, growth, and healing of wing cracks in confined sili...
UnrestrictedMultimillion atom molecular-dynamics (MD) simulations were performed to investigate dyna...
Fracture of silica glass through hypervelocity impact was studied using large-scale classical molecu...
UnrestrictedThis dissertation focuses on molecular dynamics (MD) simulations of shock sensitivity of...
Fracture in brittle materials under a macroscopic load, results from the propagation of atomic-scale...
Abstract. We report here atomic force microscopy experiments designed to uncover the nature of fail-...
Classical molecular dynamics simulations are used to investigate the fracture mechanism, intrinsic s...
Classical molecular dynamics simulations are used to investigate the fracture mechanism, intrinsic s...
We modeled the initiation of fracture in vitreous silica at various strain rates using molecular dyn...
Understanding, predicting and eventually improving the resistance to fracture of silicate materials ...
Understanding, predicting and eventually improving the resistance to fracture of silicate materials ...
Atomistic aspects of dynamic fracture in amorphous and nanostructured silica are herein studied via ...
subj imen tion nsfer ther, we examine the growth of critical voids and characterize regions surroun...
The origin of the brittle-to-ductile transition, experimentally observed in amorphous silica nanofib...
The emergence of size-dependent mechanical strength in nanosized materials is now well-established, ...
International audienceWe investigate initiation, growth, and healing of wing cracks in confined sili...
UnrestrictedMultimillion atom molecular-dynamics (MD) simulations were performed to investigate dyna...
Fracture of silica glass through hypervelocity impact was studied using large-scale classical molecu...
UnrestrictedThis dissertation focuses on molecular dynamics (MD) simulations of shock sensitivity of...
Fracture in brittle materials under a macroscopic load, results from the propagation of atomic-scale...
Abstract. We report here atomic force microscopy experiments designed to uncover the nature of fail-...
Classical molecular dynamics simulations are used to investigate the fracture mechanism, intrinsic s...
Classical molecular dynamics simulations are used to investigate the fracture mechanism, intrinsic s...
We modeled the initiation of fracture in vitreous silica at various strain rates using molecular dyn...
Understanding, predicting and eventually improving the resistance to fracture of silicate materials ...
Understanding, predicting and eventually improving the resistance to fracture of silicate materials ...
Atomistic aspects of dynamic fracture in amorphous and nanostructured silica are herein studied via ...
subj imen tion nsfer ther, we examine the growth of critical voids and characterize regions surroun...
The origin of the brittle-to-ductile transition, experimentally observed in amorphous silica nanofib...
The emergence of size-dependent mechanical strength in nanosized materials is now well-established, ...