The motivation for the current study is to evaluate the dynamic loading response of an inert mock explosive material used to replicate the physical and mechanical properties of LX-17-1 and PBX 9502 insensitive high explosives. The evaluation of dynamic material parameters is needed for predicting the deformation behavior including the onset of failure and intensity of fragmentation resulting from high velocity impact events. These parameters are necessary for developing and validating physically based material constitutive models that will characterize the safety and performance of energetic materials. The preliminary study uses a reverse Taylor impact configuration that was designed to measure the dynamic behavior of the explosive mock up ...
Studying the mechanical response of particle-reinforced polymer composites to dynamic loadings has l...
In this presentation we will give the results of our most recent projectile impact experiments for t...
The Master Thesis describes the differences between quasi-static and dynamic material tests and disc...
This paper presents a new dynamic tensile test based on the Taylor impact technique for application ...
The development of material models capable of predicting mechanical behavior such as strength, damag...
Munition articles may be sensitive to case-crushing loading. This is a potential safety hazard since...
As explosives are subjected to increasingly extreme conditions, there has been more desire to develo...
The physical behaviour of a polymer bonded explosive (PBX) fill is important for the development of ...
The TNO Prins Maurits Laboratory, has conducted research in energetic material response to several I...
The Taylor impact test is an experimental technique used to determine dynamic material response and ...
Reverse ballistic impact test, which can obtain the response data of rod/projectile more comprehensi...
Simulation of the complete response of components and systems composed of energetic materials, such ...
Strain rate has a significant influence on the material behavior subjected to dynamic loading, that ...
Damage not only deteriorates the mechanical properties of explosives, but also influences the sensit...
Preliminary modeling and experimental analyses of the violent reaction threshold of semi-heavily con...
Studying the mechanical response of particle-reinforced polymer composites to dynamic loadings has l...
In this presentation we will give the results of our most recent projectile impact experiments for t...
The Master Thesis describes the differences between quasi-static and dynamic material tests and disc...
This paper presents a new dynamic tensile test based on the Taylor impact technique for application ...
The development of material models capable of predicting mechanical behavior such as strength, damag...
Munition articles may be sensitive to case-crushing loading. This is a potential safety hazard since...
As explosives are subjected to increasingly extreme conditions, there has been more desire to develo...
The physical behaviour of a polymer bonded explosive (PBX) fill is important for the development of ...
The TNO Prins Maurits Laboratory, has conducted research in energetic material response to several I...
The Taylor impact test is an experimental technique used to determine dynamic material response and ...
Reverse ballistic impact test, which can obtain the response data of rod/projectile more comprehensi...
Simulation of the complete response of components and systems composed of energetic materials, such ...
Strain rate has a significant influence on the material behavior subjected to dynamic loading, that ...
Damage not only deteriorates the mechanical properties of explosives, but also influences the sensit...
Preliminary modeling and experimental analyses of the violent reaction threshold of semi-heavily con...
Studying the mechanical response of particle-reinforced polymer composites to dynamic loadings has l...
In this presentation we will give the results of our most recent projectile impact experiments for t...
The Master Thesis describes the differences between quasi-static and dynamic material tests and disc...