Title of article :
Molecular dynamics simulations of hypersonic velocity impact protection properties of CNT/a-SiC composites
Author/Authors :
Maxim A. Makeev، نويسنده , , Deepak Srivastava، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
5
From page :
2451
To page :
2455
Abstract :
The hypersonic velocity impact protection properties of carbon-nanotube-reinforced amorphous silicon carbide composites are investigated using molecular dynamics simulation. The projectile-impact-induced damage to target materials is analyzed for composite targets having perpendicular and parallel alignments of carbon nanotubes with respect to impact direction, and compared to that of pristine amorphous silicon carbide target. It was found that, in the considered range of impact velocities, the penetration depth is approximately the same for both CNT-reinforced composites and pristine a-SiC target. At short time-scales, damage to a target is defined by penetration depth of projectile and density rearrangements taking place in the target material. In the composite with carbon nanotubes aligned parallel to the impact direction, a channeling of damage to deeper regions of the target occurs. In the case of perpendicular alignment, the damage is confined to a narrow region underneath the penetrating projectile. For both considered composite samples, we found that a significant damping of the amplitudes of compressive shock-waves takes place, thus reducing the special extent of damage in composites as compared to that in the pristine a-SiC target.
Keywords :
Nano-reinforced composites , C. Damage tolerance , B. Impact behavior
Journal title :
COMPOSITES SCIENCE AND TECHNOLOGY
Serial Year :
2008
Journal title :
COMPOSITES SCIENCE AND TECHNOLOGY
Record number :
1043009
Link To Document :
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