We report reactive molecular dynamics simulations using the ReaxFF reactive force field to examine shock-induced hot-spot formation followed by detonation initiation in realistic (2.7 million atoms) models of polymer bonded explosives (PBX) with nonplanar interfaces. We considered here two energetic materials (EMs) pentaerythritol tetranitrate (PETN), a common EM for PBX, and silicon pentaerythritol tetranitrate (Si-PETN), which is so extremely sensitive that it has not been possible to characterize its shock properties experimentally. In each case the EM was embedded in a hydroxyl-terminated polybutadiene (HTPB) based polymer binder matrix to form a model of PBX that has a periodic sawtooth nonplanar interface. For the cases in which the s...
The role of binder deformation and the associated energy dissipation on the detonation sensitivity o...
Hotspot (localized heating) in energetic composites can result in unintended ignition of the materia...
The computing power now available has led researchers to reconsider mesoscale simulations as a means...
The fundamental processes in shock-induced instabilities of materials remain obscure, particularly f...
In order to elucidate how shocks in heterogeneous materials affect decomposition and reactive proces...
We report reactive molecular dynamics simulations using the ReaxFF reactive force field to examine s...
Polymer bonded explosives (PBXs) consist of energetic material (EM) crystals embedded inside a polym...
Accidental mishandling of explosive materials leads to thousands of injuries in the US every year. U...
In order to elucidate how shocks in heterogeneous materials affect decomposition and reactive proces...
We study the shock-induced hot spot formation mechanism of octahydro-1,3,5,7-tetranitro-1,3,5,7-tetr...
The sensitivity of polymer-bonded explosives (PBXs) can be tuned through adjusting binder material a...
Binders play a pivotal role in solid propellants and polymer-bonded energetic composites by providin...
Mesoscale models are needed to predict the effect of changes to the microstructure of plastic-bonded...
The transformation of mechanical energy into thermal energy within composite energetic materials thr...
High explosives represent a class of materials known as energetic materials, in which providing an e...
The role of binder deformation and the associated energy dissipation on the detonation sensitivity o...
Hotspot (localized heating) in energetic composites can result in unintended ignition of the materia...
The computing power now available has led researchers to reconsider mesoscale simulations as a means...
The fundamental processes in shock-induced instabilities of materials remain obscure, particularly f...
In order to elucidate how shocks in heterogeneous materials affect decomposition and reactive proces...
We report reactive molecular dynamics simulations using the ReaxFF reactive force field to examine s...
Polymer bonded explosives (PBXs) consist of energetic material (EM) crystals embedded inside a polym...
Accidental mishandling of explosive materials leads to thousands of injuries in the US every year. U...
In order to elucidate how shocks in heterogeneous materials affect decomposition and reactive proces...
We study the shock-induced hot spot formation mechanism of octahydro-1,3,5,7-tetranitro-1,3,5,7-tetr...
The sensitivity of polymer-bonded explosives (PBXs) can be tuned through adjusting binder material a...
Binders play a pivotal role in solid propellants and polymer-bonded energetic composites by providin...
Mesoscale models are needed to predict the effect of changes to the microstructure of plastic-bonded...
The transformation of mechanical energy into thermal energy within composite energetic materials thr...
High explosives represent a class of materials known as energetic materials, in which providing an e...
The role of binder deformation and the associated energy dissipation on the detonation sensitivity o...
Hotspot (localized heating) in energetic composites can result in unintended ignition of the materia...
The computing power now available has led researchers to reconsider mesoscale simulations as a means...