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The 7.62×39mm BZ (API) projectile, weighing approximately 7.8 grams and traveling at a velocity of 695 meters per second, was simulated impacting an Al₂O₃ (alumina) ceramic plate. This study aimed to evaluate the penetration mechanics, fracture behavior, and energy dissipation during high-velocity impact on brittle ceramic armor materials. The simulation employed advanced numerical methods, incorporating hybrid modeling techniques to accurately represent the complex interactions between the armor-piercing incendiary projectile and the ceramic target. The model accounted for the brittle failure modes of the ceramic, including crack initiation and propagation, as well as the thermal effects induced by the incendiary component of the projectile. Inspired by: Numerical and Experimental Study of the Penetration Effect of Armor-Piercing Incendiary Projectiles https://www.mdpi.com/1996-1944/15/1/18 (Simulation conducted with refined material properties and updated methodologies based on the referenced study.)