abstract: Shock loading is a complex phenomenon that can lead to failure mechanisms such as strain localization, void nucleation and growth, and eventually spall fracture. The length scale of damage with respect to that of the surrounding microstructure has proven to be a key aspect in determining sites of failure initiation. Studying incipient stages of spall damage is of paramount importance to accurately determine initiation sites in the material microstructure where damage will nucleate and grow and to formulate continuum models that account for the variability of the damage process due to microstructural heterogeneity, which is the focus of this research. Shock loading experiments were conducted via flyer-plate impact tests for pressur...
We perform molecular dynamics simulations to investigate the shock response of idealized hexagonal c...
Complementary experiments and simulations are conducted to characterize the microstructure and mecha...
Understanding the shock behavior of polycrystals is challenging due to the effects of grain size, de...
A suite of plate-impact experiments have been conducted to determine the dominant factors in dynamic...
A suite of plate-impact experiments have been conducted to determine the dominant factors in dynamic...
Monocrystalline copper samples with orientations of [001] and [221] were shocked at pressures rangin...
A systematic investigation is presented into the microstructural and micromechanical influences on d...
abstract: Understanding damage evolution, particularly as it relates to local nucleation and growth ...
AbstractThe micromechanisms related to ductile failure during dynamic loading of single crystal Cu a...
This research uses atomistic simulations to examine the behavior of nanocrystalline Cu under impact ...
Monocrystalline copper with orientations of [001] and [221] was subjected to shock/recovery experime...
This research uses atomistic simulations to examine the behavior of nanocrystalline Cu under impact ...
We perform molecular dynamics simulations of Cu bicrystals with two important grain boundaries (GBs)...
We perform molecular dynamics simulations of Cu bicrystals with two important grain boundaries (GBs)...
We perform molecular dynamics simulations to investigate the shock response of idealized hexagonal c...
We perform molecular dynamics simulations to investigate the shock response of idealized hexagonal c...
Complementary experiments and simulations are conducted to characterize the microstructure and mecha...
Understanding the shock behavior of polycrystals is challenging due to the effects of grain size, de...
A suite of plate-impact experiments have been conducted to determine the dominant factors in dynamic...
A suite of plate-impact experiments have been conducted to determine the dominant factors in dynamic...
Monocrystalline copper samples with orientations of [001] and [221] were shocked at pressures rangin...
A systematic investigation is presented into the microstructural and micromechanical influences on d...
abstract: Understanding damage evolution, particularly as it relates to local nucleation and growth ...
AbstractThe micromechanisms related to ductile failure during dynamic loading of single crystal Cu a...
This research uses atomistic simulations to examine the behavior of nanocrystalline Cu under impact ...
Monocrystalline copper with orientations of [001] and [221] was subjected to shock/recovery experime...
This research uses atomistic simulations to examine the behavior of nanocrystalline Cu under impact ...
We perform molecular dynamics simulations of Cu bicrystals with two important grain boundaries (GBs)...
We perform molecular dynamics simulations of Cu bicrystals with two important grain boundaries (GBs)...
We perform molecular dynamics simulations to investigate the shock response of idealized hexagonal c...
We perform molecular dynamics simulations to investigate the shock response of idealized hexagonal c...
Complementary experiments and simulations are conducted to characterize the microstructure and mecha...
Understanding the shock behavior of polycrystals is challenging due to the effects of grain size, de...