As explosives are subjected to increasingly extreme conditions, there has been more desire to develop models to predict their performance, sensitivity, and mechanical response. In order to develop these models, however, experimental data are needed for validation. To this end, a series of quasi-static and dynamic mechanical tests have been performed on two similar energetic materials. This has allowed the mechanical response to be characterized for strain-rates ranging from 10(exp -4)/s - 10(exp 3)/s by incorporating both quasi-static load frames and a Split-Hopkinson Pressure Bar (SHPB). Additional tests have been performed using the SHPB in order to characterize the mechanical response of the explosives under confined conditions. Still ad...
Energetic materials, in particular HMX, is widely used in many applications as polymer bonded explos...
International audienceLow velocity impacts can ignite explosives or energetic materials. Ignition de...
The aim of the research reported here was to investigate the strain rate and temperature sensitivity...
International audienceThis article deals with the characterization of the static mechanical behavior...
International audienceThis article deals with the characterization of the static mechanical behavior...
International audienceThis article deals with the characterization of the static mechanical behavior...
International audienceThis article deals with the characterization of the static mechanical behavior...
Compared to the many thousands of studies that have been performed on the energy release mechanisms ...
This paper describes how the dynamic compressive behaviour of a quasi-brittle material has been char...
Polymer bonded explosives (PBXs) are widely used as energetic fillings in various warheads, which ma...
The development of material models capable of predicting mechanical behavior such as strength, damag...
International audienceLow velocity impacts on energetic materials induce plastic deformations and sl...
Munition articles may be sensitive to case-crushing loading. This is a potential safety hazard since...
Abstract. Low velocity impacts can ignite explosives or energetic materials. Ignition depends on the...
Low velocity impacts can ignite explosives or energetic materials. Ignition depends on the mechanic...
Energetic materials, in particular HMX, is widely used in many applications as polymer bonded explos...
International audienceLow velocity impacts can ignite explosives or energetic materials. Ignition de...
The aim of the research reported here was to investigate the strain rate and temperature sensitivity...
International audienceThis article deals with the characterization of the static mechanical behavior...
International audienceThis article deals with the characterization of the static mechanical behavior...
International audienceThis article deals with the characterization of the static mechanical behavior...
International audienceThis article deals with the characterization of the static mechanical behavior...
Compared to the many thousands of studies that have been performed on the energy release mechanisms ...
This paper describes how the dynamic compressive behaviour of a quasi-brittle material has been char...
Polymer bonded explosives (PBXs) are widely used as energetic fillings in various warheads, which ma...
The development of material models capable of predicting mechanical behavior such as strength, damag...
International audienceLow velocity impacts on energetic materials induce plastic deformations and sl...
Munition articles may be sensitive to case-crushing loading. This is a potential safety hazard since...
Abstract. Low velocity impacts can ignite explosives or energetic materials. Ignition depends on the...
Low velocity impacts can ignite explosives or energetic materials. Ignition depends on the mechanic...
Energetic materials, in particular HMX, is widely used in many applications as polymer bonded explos...
International audienceLow velocity impacts can ignite explosives or energetic materials. Ignition de...
The aim of the research reported here was to investigate the strain rate and temperature sensitivity...