Pascal Forquin, Lisa Tran
The threat of small to medium calibre armor piercing projectiles requires efficient armors that can be achieved by using bilayered configurations. They consist in a front face made of a hard material and a backing made of a ductile material. These solutions are among the most interesting in terms of mass efficiency. A new material made of porous silicon carbide infiltrated with aluminum is considered. The presence of an aluminum skeleton may improve the residual strength after impact. The present study is devoted to a comparison of fragmentation properties of this new material with those of the porous silicon carbide. Quasi-static tests and edge-on impact experiments are performed. The role of aluminum is discussed. An anisotropic damage model is used to analyze the experimental observations.
@article{090d3ad4-fbfd-4f68-8293-32d53ac89533,
title={Effet dun renforcement daluminium sur la},
author={Pascal Forquin and Lisa Tran},
year={2026},
language={en}
}TY - JOUR TI - Effet dun renforcement daluminium sur la AU - Pascal Forquin AU - Lisa Tran PY - 2026 LA - en ER -
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