ABSTRACT The experimental results of specific heat capacity of 2 plastic bonded explosives formulations based on 1,3,5-trinitroperhydro-1,3,5-triazine, using differential scanning calorimetry thermal analysis, and the theoretical ones calculated with the specific heat capacity and mass fraction of individual compounds are compared for a temperature range between 340 and 410 K. Apart the filler, the plastic bonded explosives composition includes the binder based on hydroxyl-terminated polybutadiene, the plasticizer bis (2-ethylhexyl) sebacate and the curing agent isophorone diisocyanate. The experimental and theoretical results showed a better approach when no curing agent is added. Without curing agent, the specific heat capacity of plastic...
Abstract: Recent work in our laboratory has established a time-temperature superposition law for a P...
Various plastic bonded explosives (PBXs) contain about 5-wt% polymer, plasticizer, and stabilizer as...
The violence of thermal explosions with energetic materials is affected by many material properties,...
The experimental results of specific heat capacity of 2 plastic bonded explosives formulations based...
Mechanical, thermal, and sensitivity properties of plastic bonded explosives (PBX) depend on the typ...
Thermal behavior and decomposition kinetics of formex-bonded on some attractive cyclic nitramines (B...
This paper describes formulations of plastic bonded explosives (PBXs) based on three highly brisant ...
Conventional cast explosives (RDX/TNT) have major drawbacks of poor mechanical properties,shrinkages...
The chemical compatibility and the adhesion of energetic materials and additive materials exert a st...
In this paper, the decomposition reaction models and thermal hazard properties of 1,3,5-trinitro-1,3...
Energetic plasticizers are an essential component of propellants and have a significant impact on th...
Abstract: bicyclo-hmX (cis-1,3,4,6-tetranitro-octahydroimidazo-[4,5-d] imidazole or bChmX) was studi...
Polymer bonded explosives (PBXs) are widely used as energetic fillings in various warheads, which ma...
Few products take several years of research effort to be synthesize yet disintegrate in scarcely mil...
The compressive constitutive strength behavior of PBXN-110 and its HTPB-based binder system was meas...
Abstract: Recent work in our laboratory has established a time-temperature superposition law for a P...
Various plastic bonded explosives (PBXs) contain about 5-wt% polymer, plasticizer, and stabilizer as...
The violence of thermal explosions with energetic materials is affected by many material properties,...
The experimental results of specific heat capacity of 2 plastic bonded explosives formulations based...
Mechanical, thermal, and sensitivity properties of plastic bonded explosives (PBX) depend on the typ...
Thermal behavior and decomposition kinetics of formex-bonded on some attractive cyclic nitramines (B...
This paper describes formulations of plastic bonded explosives (PBXs) based on three highly brisant ...
Conventional cast explosives (RDX/TNT) have major drawbacks of poor mechanical properties,shrinkages...
The chemical compatibility and the adhesion of energetic materials and additive materials exert a st...
In this paper, the decomposition reaction models and thermal hazard properties of 1,3,5-trinitro-1,3...
Energetic plasticizers are an essential component of propellants and have a significant impact on th...
Abstract: bicyclo-hmX (cis-1,3,4,6-tetranitro-octahydroimidazo-[4,5-d] imidazole or bChmX) was studi...
Polymer bonded explosives (PBXs) are widely used as energetic fillings in various warheads, which ma...
Few products take several years of research effort to be synthesize yet disintegrate in scarcely mil...
The compressive constitutive strength behavior of PBXN-110 and its HTPB-based binder system was meas...
Abstract: Recent work in our laboratory has established a time-temperature superposition law for a P...
Various plastic bonded explosives (PBXs) contain about 5-wt% polymer, plasticizer, and stabilizer as...
The violence of thermal explosions with energetic materials is affected by many material properties,...