2005Ordnance Material Science and EngineeringRequires access

Research of the effect of aggregations on the anti-penetration properties of concrete targets by MCA

Jun He

Open publisher page 1 citations

Abstract

The relative theory and mathematical model of Movable Cellular Automata (MCA) method were described for simulating the high - rate penetration in this paper. The 2 - D numerical simulations on the penetrations of projectile into concrete targets with different content of aggregates were completed at impact velocity, 700 m/s. The calculation result showed the penetration processes is the local deformation processes. The content and distribution of aggregations near the penetration point have an effect on the an-ti - penetration properties of the concrete targets. In addition, the penetration depth vs impact velocity is given. The numerical example above proves that this algorithm is powerful and efficient for simulating the high - rate penetration.

About this research paper

What this paper is about

The relative theory and mathematical model of Movable Cellular Automata (MCA) method were described for simulating the high - rate penetration in this paper. The 2 - D numerical simulations on the penetrations of projectile into concrete targets with different content of aggregates were completed at impact velocity, 700 m/s. The calculation result showed the penetration processes is the local deformation processes. The content and distribution of aggregations near the penetration point have an effect on the an-ti - penetration properties of the concrete targets. In addition, the penetration depth vs impact velocity is given. The numerical example above proves that this algorithm is powerful and efficient for simulating the high - rate penetration.

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Available abstract

The relative theory and mathematical model of Movable Cellular Automata (MCA) method were described for simulating the high - rate penetration in this paper. The 2 - D numerical simulations on the penetrations of projectile into concrete targets with different content of aggregates were completed at impact velocity, 700 m/s. The calculation result showed the penetration processes is the local deformation processes. The content and distribution of aggregations near the penetration point have an effect on the an-ti - penetration properties of the concrete targets. In addition, the penetration depth vs impact velocity is given. The numerical example above proves that this algorithm is powerful and efficient for simulating the high - rate penetration.

Key concepts: Penetration (warfare), Projectile, Penetration rate, Materials science, Cellular automaton, Penetration depth, Mechanics, Computer simulation

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