Fortuitous exposure to high temperatures initiates reaction in energetic materials and possibilities of such event are of great concern in terms of the safe and controlled usage of explosive devices. Experimental and numerical investigations on time to explosion and location of ignition of a phase changing polymer bonded explosive material (80 per cent RDX and 20 per cent binder), contained in a metallic confinement subjected to controlled temperature build-up on its surface, are presented. An experimental setup was developed in which the polymer bonded explosive material filled in a cylindrical confinement was provided with a precise control of surface heating rate. Temperature at various radial locations was monitored till ignition. A com...
AbstractPyrolysis is the thermochemical process that leads to the ignition of a solid fuel and a key...
Mesoscale models are needed to predict the effect of changes to the microstructure of plastic-bonded...
This dissertation explores the shock compression of solid state explosives by thin, laser-driven fly...
Journal ArticleOne of the uncertainties in the calculations of time-to-explosion for containers of h...
The knowledge of ignition parameters of explosive materials (EM) presents both the definite scientif...
The cookoff of energetic materials involves the combined effects of several physical and chemical pr...
Thermal decomposition rates and mechanisms of explosives are of obvious importance to efforts design...
The authors compare two-dimensional model results with measurements for the thermal, chemical and me...
Fast cookoff is of interest in the areas of fire hazard reduction and the development of directed en...
Energetic materials encompass a wide range of chemical compounds all associated with a significant r...
Empirical and phenomenological hydrodynamic reactive flow models, such as the ignition-and-growth an...
Explosion hazards exist in many industrial sectors including chemical processing, mining, nuclear po...
Pyrolysis is the thermochemical process that leads to the ignition of a solid fuel and a key mechani...
The fast and slow cookoff behaviour of two series of candidate insensitive booster compositions base...
An overview of cookoff modeling at Sandia National Laboratories is presented aimed at assessing the ...
AbstractPyrolysis is the thermochemical process that leads to the ignition of a solid fuel and a key...
Mesoscale models are needed to predict the effect of changes to the microstructure of plastic-bonded...
This dissertation explores the shock compression of solid state explosives by thin, laser-driven fly...
Journal ArticleOne of the uncertainties in the calculations of time-to-explosion for containers of h...
The knowledge of ignition parameters of explosive materials (EM) presents both the definite scientif...
The cookoff of energetic materials involves the combined effects of several physical and chemical pr...
Thermal decomposition rates and mechanisms of explosives are of obvious importance to efforts design...
The authors compare two-dimensional model results with measurements for the thermal, chemical and me...
Fast cookoff is of interest in the areas of fire hazard reduction and the development of directed en...
Energetic materials encompass a wide range of chemical compounds all associated with a significant r...
Empirical and phenomenological hydrodynamic reactive flow models, such as the ignition-and-growth an...
Explosion hazards exist in many industrial sectors including chemical processing, mining, nuclear po...
Pyrolysis is the thermochemical process that leads to the ignition of a solid fuel and a key mechani...
The fast and slow cookoff behaviour of two series of candidate insensitive booster compositions base...
An overview of cookoff modeling at Sandia National Laboratories is presented aimed at assessing the ...
AbstractPyrolysis is the thermochemical process that leads to the ignition of a solid fuel and a key...
Mesoscale models are needed to predict the effect of changes to the microstructure of plastic-bonded...
This dissertation explores the shock compression of solid state explosives by thin, laser-driven fly...