Analytical Predictions of Fragment Penetration through Hollow Concrete Masonry Units

Abstract

Modeling steel casing fragment impacts on hollow CMU poses some problems, since the fragments will typically penetrate through the front face and may also penetrate the back face. Techniques are needed for predicting (a) the size of the hole created by the penetration, (b) the size of the annular region of damaged concrete around the hole, and (c) the residual velocity of the fragment. A series of calculations using the AUTODYN code were performed to investigate the accuracy and reliability of the model. The model uses the smooth particle hydrodynamics (SPH) approach to represent the CMU. A variety of steel fragment sizes were projected at a layer of CMU, and the resulting hole size, damage, and fragment residual velocity were tabulated. Results were validated against existing empirical relationships to insure the model's applicability, while additional analyses demonstrated trends and parametric sensitivity.

Document Details

Document Type
Pub Defense Publication
Publication Date
Jan 01, 2008
Source ID
10.1155/2008/586876

Entities

People

  • Bence Gerber
  • David Bogosian

Organizations

  • Air Force Research Laboratory

Tags

Readers

  • Computational Modeling and Simulation
  • Explosive Engineering.