AbstractThis paper is focused on the physics of hypervelocity soil penetration. The influence of the shape, material and structural integrity of various impactors on penetration depth was investigated in the range of speeds between 0.3 and 4.0km/s. Deviation of impactors from their initial trajectory, melting, erosion and spall has also been studied. Initially, with the increase in impact speed, the penetration depth increased. At a certain critical speed, the impactors reached their maximum penetration depth. With further increases in the impact speed the penetration depth declined. We developed refined analytical solutions to compute the maximum penetration depth achievable by a given impactor as well as its penetration depth in the regio...
We report on the penetration of cylindrical projectiles dropped from rest into a dry, noncohesive gr...
Within the framework of the planned AIDA mission [1], an impactor spacecraft (DART) hits the second ...
We present experiments and numerical simulations of hypervelocity impacts of 0.5 mm steel spheres in...
AbstractThis paper is focused on the physics of hypervelocity soil penetration. The influence of the...
A parameter analysis is performed on an analytical penetration model which has been recently develop...
AbstractThis paper presents experimental and computational results of a long-rod penetrating dry gra...
Tungsten projectiles were shot into sand at velocities between 600 and 2200 m/s. Penetration was max...
In order to determine the effects of target thickness on the penetration and cratering of a target r...
This paper presents experimental and computational results of a long-rod penetrating dry granular sa...
To investigate the cratering effects of hypervelocity rod projectile impacting on rocks, a two-stage...
AbstractThis paper presents numerical simulations of hypervelocity impacts of 0.5-mm steel spheres i...
With the hypervelocity kinetic weapon and hypersonic cruise missiles research projects being carried...
We present data for the penetration of a variety of spheres, dropped from rest, into a loose noncohe...
In this paper we consider issues related to numerical modelling of processes of high-speed impact ef...
Experiments have been conducted to quantify the effect the geotechnical conditions surrounding a bur...
We report on the penetration of cylindrical projectiles dropped from rest into a dry, noncohesive gr...
Within the framework of the planned AIDA mission [1], an impactor spacecraft (DART) hits the second ...
We present experiments and numerical simulations of hypervelocity impacts of 0.5 mm steel spheres in...
AbstractThis paper is focused on the physics of hypervelocity soil penetration. The influence of the...
A parameter analysis is performed on an analytical penetration model which has been recently develop...
AbstractThis paper presents experimental and computational results of a long-rod penetrating dry gra...
Tungsten projectiles were shot into sand at velocities between 600 and 2200 m/s. Penetration was max...
In order to determine the effects of target thickness on the penetration and cratering of a target r...
This paper presents experimental and computational results of a long-rod penetrating dry granular sa...
To investigate the cratering effects of hypervelocity rod projectile impacting on rocks, a two-stage...
AbstractThis paper presents numerical simulations of hypervelocity impacts of 0.5-mm steel spheres i...
With the hypervelocity kinetic weapon and hypersonic cruise missiles research projects being carried...
We present data for the penetration of a variety of spheres, dropped from rest, into a loose noncohe...
In this paper we consider issues related to numerical modelling of processes of high-speed impact ef...
Experiments have been conducted to quantify the effect the geotechnical conditions surrounding a bur...
We report on the penetration of cylindrical projectiles dropped from rest into a dry, noncohesive gr...
Within the framework of the planned AIDA mission [1], an impactor spacecraft (DART) hits the second ...
We present experiments and numerical simulations of hypervelocity impacts of 0.5 mm steel spheres in...