High-frequency mechanical excitation has been shown to generate heat within composite energetic materials and even induce reactions in single energetic crystals embedded within an elastic binder. To further the understanding of how wave scattering effects attributable to the presence of an energetic crystal can result in concentrated heating near the inclusion, an analytical model is developed. The stress and displacement solutions associated with the scattering of compressional plane waves by a spherical obstacle (Pao and Mow, 1963, “Scattering of Plane Compressional Waves by a Spherical Obstacle,” J. Appl. Phys., 34(3), pp. 493–499) are modified to account for the viscoelastic effects of the lossy media surrounding the inclusion (Gaunaurd...
The role of binder deformation and the associated energy dissipation on the detonation sensitivity o...
Mechanical action can produce dramatic physical and mechanochemical effects when the energy is spati...
An approach is presented for modeling the thermal expansion boundary layer in energetic materials su...
High-frequency mechanical excitation can induce heating within energetic materials and may lead to a...
In this work, the ability to use high frequency mechanical excitation to generate significant heatin...
The thermal and mechanical, near-resonant responses of particulate composite plates formed from hydr...
To address security issues in both military and civilian settings, there is a pressing need for impr...
The ability to detect explosive materials may be significantly enhanced with local increases in vapo...
The preferential generation of heat within hidden explosive materials would be highly valuable to cu...
AbstractThe transport of energetic materials—whether by truck over rough terrain, or attached to the...
At this time, there is a pressing need to develop new technologies capable of detecting, identifying...
The article of record as published may be found at https://doi.org/10.1088/1361-651X/ab2224In this w...
The transformation of mechanical energy into thermal energy within composite energetic materials thr...
The study of the thermomechanical response of materials to a time‑dependent heat load is of paramoun...
The chemical reaction of powder energetic material is of great interest in energy and pyrotechnic ap...
The role of binder deformation and the associated energy dissipation on the detonation sensitivity o...
Mechanical action can produce dramatic physical and mechanochemical effects when the energy is spati...
An approach is presented for modeling the thermal expansion boundary layer in energetic materials su...
High-frequency mechanical excitation can induce heating within energetic materials and may lead to a...
In this work, the ability to use high frequency mechanical excitation to generate significant heatin...
The thermal and mechanical, near-resonant responses of particulate composite plates formed from hydr...
To address security issues in both military and civilian settings, there is a pressing need for impr...
The ability to detect explosive materials may be significantly enhanced with local increases in vapo...
The preferential generation of heat within hidden explosive materials would be highly valuable to cu...
AbstractThe transport of energetic materials—whether by truck over rough terrain, or attached to the...
At this time, there is a pressing need to develop new technologies capable of detecting, identifying...
The article of record as published may be found at https://doi.org/10.1088/1361-651X/ab2224In this w...
The transformation of mechanical energy into thermal energy within composite energetic materials thr...
The study of the thermomechanical response of materials to a time‑dependent heat load is of paramoun...
The chemical reaction of powder energetic material is of great interest in energy and pyrotechnic ap...
The role of binder deformation and the associated energy dissipation on the detonation sensitivity o...
Mechanical action can produce dramatic physical and mechanochemical effects when the energy is spati...
An approach is presented for modeling the thermal expansion boundary layer in energetic materials su...