The shock response of a polymer-bonded copper powder was investigated by means of plate impact experiments in a gas gun (pressure range 1-8 GPa) and using in-contact explosive loading (pressures up to 37 GPa). Stress gauges were used to determine the material shock states in the planar impact, and the experimental data of shock and particle velocities (U, u) were fitted to a straight line giving a Hugoniot equation of state U=(0.85 +/- 0.08)+(2.64 +/- 0.05). In the explosive loading experiments, the shock speed in the material was measured using optical methods, and impedance matching was performed to determine the shock state in the sample. Comparison between the two experiments shows that the states attained in the lower-pressure range (p...
Micro-sized copper powder (99.95%; O≤0.3) has been shock-processed with explosives of high detonatio...
The response of a variety of materials subject to impact shock loads was investigated with a 38mm di...
This thesis is focused on the shock to detonation transition of aluminized plastic bonded high explo...
The response of polymers to shock loading is becoming of increasing importance, both as binder syste...
The shock velocity dependence on shock pressure in composite explosive materials containing polymeri...
PlSEM is a plastic explosive based on RDX, PETN and non-explosive binder used in linear shaped charg...
By using shock pins, data were gathered on the trajectories of shock waves in stainless steel (SS-30...
Munition articles may be sensitive to case-crushing loading. This is a potential safety hazard since...
Explosive cladding of dissimilar plates is achieved by the intensive deformation occurring at high p...
Detonations of nitromethane spherical charges have been carried out to study close-in blast loading ...
This thesis represents a brief overview of author´s research work done in the characterization of ex...
Polymer bonded, copper powder metal flexible sheet, called “plastic-metal” by these authors, is used...
Mesoscale responses of plastic bonded explosives under shock loading are investigated using material...
The zero-order reaction rates (specific rate constants) of isothermal decomposition at 120 degrees C...
This thesis is focused on the shock to detonation transition of aluminized plastic bonded high explo...
Micro-sized copper powder (99.95%; O≤0.3) has been shock-processed with explosives of high detonatio...
The response of a variety of materials subject to impact shock loads was investigated with a 38mm di...
This thesis is focused on the shock to detonation transition of aluminized plastic bonded high explo...
The response of polymers to shock loading is becoming of increasing importance, both as binder syste...
The shock velocity dependence on shock pressure in composite explosive materials containing polymeri...
PlSEM is a plastic explosive based on RDX, PETN and non-explosive binder used in linear shaped charg...
By using shock pins, data were gathered on the trajectories of shock waves in stainless steel (SS-30...
Munition articles may be sensitive to case-crushing loading. This is a potential safety hazard since...
Explosive cladding of dissimilar plates is achieved by the intensive deformation occurring at high p...
Detonations of nitromethane spherical charges have been carried out to study close-in blast loading ...
This thesis represents a brief overview of author´s research work done in the characterization of ex...
Polymer bonded, copper powder metal flexible sheet, called “plastic-metal” by these authors, is used...
Mesoscale responses of plastic bonded explosives under shock loading are investigated using material...
The zero-order reaction rates (specific rate constants) of isothermal decomposition at 120 degrees C...
This thesis is focused on the shock to detonation transition of aluminized plastic bonded high explo...
Micro-sized copper powder (99.95%; O≤0.3) has been shock-processed with explosives of high detonatio...
The response of a variety of materials subject to impact shock loads was investigated with a 38mm di...
This thesis is focused on the shock to detonation transition of aluminized plastic bonded high explo...