2010•Materials Science and TechnologyRequires access

Numerical simulation investigation in ballistic limit of Whipple shield structure with Al-foam bumperb

Bin Jia, Ma Zhitao, Wei Zhang, Baojun Pang

Open publisher page 3 citations

Abstract

In order to research the characteristic of Whipple shield subjected to hypervelocity impact of space debris using Al-foam plate as bumper,a microstructure model of geometry for metallic foams was set up simulating their manufacturing process.Hypervelocity impact numerical simulations were conducted by self-programmed Smooth Particle Hydrodynamics and the model is validated by comparison with experimental results.The ballistic limit curves of Whipple shields were obtained numerically using uniform and non-uniform opencell Al-foam plate as bumper respectively.The relative density of foams is 23.2% and their ballistic limit curves were compared with that of Whipple shield with solid Al-plate bumper.The results indicated that Alfoam can fragmentate,liquefy or even gasify projectile at lower velocities than Al-plate under the same areal density.Al-foam bumpers have better shield performance than Al-plate as a whole.The shield performance of uniform Al-foam bumper is better than that of non-uniform one on the whole under the same areal density.

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What this paper is about

In order to research the characteristic of Whipple shield subjected to hypervelocity impact of space debris using Al-foam plate as bumper,a microstructure model of geometry for metallic foams was set up simulating their manufacturing process.Hypervelocity impact numerical simulations were conducted by self-programmed Smooth Particle Hydrodynamics and the model is validated by comparison with experimental results.The ballistic limit curves of Whipple shields were obtained numerically using uniform and non-uniform opencell Al-foam plate as bumper respectively.The relative density of foams is 23.2% and their ballistic limit curves were compared with that of Whipple shield with solid Al-plate bumper.The results indicated that Alfoam can fragmentate,liquefy or even gasify projectile at lower velocities than Al-plate under the same areal density.Al-foam bumpers have better shield performance than Al-plate as a whole.The shield performance of uniform Al-foam bumper is better than that of non-uniform one on the whole under the same areal density.

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Available abstract

In order to research the characteristic of Whipple shield subjected to hypervelocity impact of space debris using Al-foam plate as bumper,a microstructure model of geometry for metallic foams was set up simulating their manufacturing process.Hypervelocity impact numerical simulations were conducted by self-programmed Smooth Particle Hydrodynamics and the model is validated by comparison with experimental results.The ballistic limit curves of Whipple shields were obtained numerically using uniform and non-uniform opencell Al-foam plate as bumper respectively.The relative density of foams is 23.2% and their ballistic limit curves were compared with that of Whipple shield with solid Al-plate bumper.The results indicated that Alfoam can fragmentate,liquefy or even gasify projectile at lower velocities than Al-plate under the same areal density.Al-foam bumpers have better shield performance than Al-plate as a whole.The shield performance of uniform Al-foam bumper is better than that of non-uniform one on the whole under the same areal density.

Key concepts: Ballistic limit, Projectile, Materials science, Hypervelocity, Shield, Shields, Metal foam, Smoothed-particle hydrodynamics

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