The transformation of mechanical energy into thermal energy within composite energetic materials through various thermomechanical mechanisms is thought to lead to the creation of localized areas of intense heating. The growth of these “hot spots” is responsible for the bulk reaction or decomposition of the energetic material. Understanding the formation and growth of these hot spots has been an active area of research particularly for high-speed impact and shock conditions, but further work remains to be done in particular with respect to hot spot formation due to periodic mechanical excitation. Previous literature has established that many potential thermomechanical mechanisms may act at the interface between the constituent components of ...
At this time, there is a pressing need to develop new technologies capable of detecting, identifying...
High-frequency mechanical excitation can induce heating within energetic materials and may lead to a...
Author Institution: School of Chemical Sciences, University of Illinois at Urbana-Champaign, Urbana...
The transformation of mechanical energy into thermal energy within composite energetic materials thr...
In this work, the ability to use high frequency mechanical excitation to generate significant heatin...
Mechanical action can produce dramatic physical and mechanochemical effects when the energy is spati...
The preferential generation of heat within hidden explosive materials would be highly valuable to cu...
Hotspot (localized heating) in energetic composites can result in unintended ignition of the materia...
Polymer bonded explosives (PBXs) consist of energetic material (EM) crystals embedded inside a polym...
The sensitivity of polymer-bonded explosives (PBXs) can be tuned through adjusting binder material a...
To address security issues in both military and civilian settings, there is a pressing need for impr...
Vapor detection is one of the most effective ways to find hidden plastic-bonded explosives in the fi...
Mechanical action can produce dramatic physical and mechanochemical effects when the energy is spati...
The thermal and mechanical, near-resonant responses of particulate composite plates formed from hydr...
Accidental mishandling of explosive materials leads to thousands of injuries in the US every year. U...
At this time, there is a pressing need to develop new technologies capable of detecting, identifying...
High-frequency mechanical excitation can induce heating within energetic materials and may lead to a...
Author Institution: School of Chemical Sciences, University of Illinois at Urbana-Champaign, Urbana...
The transformation of mechanical energy into thermal energy within composite energetic materials thr...
In this work, the ability to use high frequency mechanical excitation to generate significant heatin...
Mechanical action can produce dramatic physical and mechanochemical effects when the energy is spati...
The preferential generation of heat within hidden explosive materials would be highly valuable to cu...
Hotspot (localized heating) in energetic composites can result in unintended ignition of the materia...
Polymer bonded explosives (PBXs) consist of energetic material (EM) crystals embedded inside a polym...
The sensitivity of polymer-bonded explosives (PBXs) can be tuned through adjusting binder material a...
To address security issues in both military and civilian settings, there is a pressing need for impr...
Vapor detection is one of the most effective ways to find hidden plastic-bonded explosives in the fi...
Mechanical action can produce dramatic physical and mechanochemical effects when the energy is spati...
The thermal and mechanical, near-resonant responses of particulate composite plates formed from hydr...
Accidental mishandling of explosive materials leads to thousands of injuries in the US every year. U...
At this time, there is a pressing need to develop new technologies capable of detecting, identifying...
High-frequency mechanical excitation can induce heating within energetic materials and may lead to a...
Author Institution: School of Chemical Sciences, University of Illinois at Urbana-Champaign, Urbana...