Computational Simulations of Interface Defeat

Abstract

The widespread use of modeling and simulation for design of armor systems is critically dependent on the accuracy of the underlying structure of such simulations. Acceptance of these tools hinges upon end user trust in the predicted results. As the overall implementation of a design code can be composed of a number of material models, it is essential that those models accurately reflect true physical behavior. Computations are performed using the Johnson-Holmquist (JH) constitutive model for brittle materials for penetration problems into ceramics, as implemented in both the Eulerian CTH and the Lagrangian EPIC shock physics codes. The results of the computations are compared and the influence of the numerics and material model coupling are evaluated. A description of some important computational features involving finite elements and meshless particles are also outlined, with observations on the direction of future code and model development.

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Document Details

Document Type
Technical Report
Publication Date
Dec 01, 2002
Accession Number
ADA476328

Entities

People

  • Brian Leavy
  • Douglas Templeton
  • Timothy J Holmquist

Organizations

  • United States Army Tank Automotive Research, Development and Engineering Center

Tags

DTIC Thesaurus Topics

  • Abstracts
  • Accuracy
  • Availability
  • Classification
  • Computations
  • Contracts
  • Couplings
  • Dynamics
  • Information Operations
  • Instructions
  • Materials
  • Monitoring
  • Observation
  • Particles
  • Physics
  • Simulations
  • Singapore

Readers

  • Computational Fluid Dynamics (CFD)
  • Systems Analysis and Design