As a novel energetic material with quite a high energy density, titanium hydride (TiH2) was introduced into a polytetrafluoroethylene/aluminum (PTFE/Al) reactive material system for the first time. The effects of TiH2 on the reaction energy, dynamic mechanical responses, and reaction properties of the composites were investigated through adiabatic bomb calorimeter, split-Hopkinson pressure bar, and drop-weight experiments. The results show that the reaction heat of the composites improved significantly as the content of TiH2 increased. Under dynamic compression, these composites show obvious strain hardening and strain rate hardening effects. Besides, a certain amount of TiH2 granules helps to improve the material’s compressive streng...
Metal/polymer reactive materials have been studied and applied in a wide range of ways in recent yea...
Al-PTFE (aluminum-polytetrafluoroethene) is regarded as one of the most promising reactive materials...
In order to study reactivity and reaction mechanism of Al-polytetrafluoroethylene (PTFE) mechanicall...
As a novel energetic material with quite a high energy density, titanium hydride (TiH2) was introduc...
Al-PTFE (aluminum-polytetrafluoroethylene) serves as one among the most promising reactive materials...
Polytetrafluoroethylene/aluminum/tungsten (PTFE/Al/W) reactive materials of three different componen...
Metal/fluoropolymer composites are a category of energetic structural materials that release energy ...
As a new type of energetic material, reactive materials are widely used at present; in particular, t...
To analyze the mechanical properties and reaction characteristics of Al-ZrH2-PTFE (aluminum-zirconiu...
Al-PTFE (aluminum-polytetrafluoroethylene) is a typical kind of Reactive Material (RM), which has a ...
Metal/fluoropolymer composites represent a new category of energetic structural materials that relea...
Using SHPB and punch experimental techniques, we investigated the dynamic compressive and shear resp...
Heterogeneous energetic materials have many applications. Their dynamic behavior and microstructural...
Al-PTFE (Al-polytetrafluoroethene) is an important kind of Reactive Material (RM), however only limi...
Many scholars have used experimental research methods to conduct extensive research on the impact en...
Metal/polymer reactive materials have been studied and applied in a wide range of ways in recent yea...
Al-PTFE (aluminum-polytetrafluoroethene) is regarded as one of the most promising reactive materials...
In order to study reactivity and reaction mechanism of Al-polytetrafluoroethylene (PTFE) mechanicall...
As a novel energetic material with quite a high energy density, titanium hydride (TiH2) was introduc...
Al-PTFE (aluminum-polytetrafluoroethylene) serves as one among the most promising reactive materials...
Polytetrafluoroethylene/aluminum/tungsten (PTFE/Al/W) reactive materials of three different componen...
Metal/fluoropolymer composites are a category of energetic structural materials that release energy ...
As a new type of energetic material, reactive materials are widely used at present; in particular, t...
To analyze the mechanical properties and reaction characteristics of Al-ZrH2-PTFE (aluminum-zirconiu...
Al-PTFE (aluminum-polytetrafluoroethylene) is a typical kind of Reactive Material (RM), which has a ...
Metal/fluoropolymer composites represent a new category of energetic structural materials that relea...
Using SHPB and punch experimental techniques, we investigated the dynamic compressive and shear resp...
Heterogeneous energetic materials have many applications. Their dynamic behavior and microstructural...
Al-PTFE (Al-polytetrafluoroethene) is an important kind of Reactive Material (RM), however only limi...
Many scholars have used experimental research methods to conduct extensive research on the impact en...
Metal/polymer reactive materials have been studied and applied in a wide range of ways in recent yea...
Al-PTFE (aluminum-polytetrafluoroethene) is regarded as one of the most promising reactive materials...
In order to study reactivity and reaction mechanism of Al-polytetrafluoroethylene (PTFE) mechanicall...