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Spherical Cavity Expansion Approach for the Study of Rigid-Penetrator’s Impact Problems

2020/02/05 by M. Buchely, Alejandro Marañón · 1 voice
Materials Science · Engineering · Physics and Astronomy · #High-Velocity Impact and Material Behavior #Energetic Materials and Combustion #Laser-Plasma Interactions and Diagnostics

paper · pdf · doi:10.3390/applmech1010003

openalex publication_date 2020/02/05 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/22

Abstract

In recent years, Spherical Cavity Expansion (SCE) theory has been extensively utilized to model dynamic deformation processes related to indentation and penetration problems in many fields. In this review, the SCE theory is introduced by explaining the different mathematical features of this theory, its solution, and a potential application to model the penetration of a rigid penetrator into a deformable target. First, a chronologically literature review of the most common models used to study this kind of penetration problems is introduced, focusing on the SCE theory. Then, the engineering model of penetration is presented using the SCE approach. The model is then compared and validated with some FE numerical simulations and with previous penetration results. It is concluded that this engineering model based on the SCE theory can be utilized to predict the projectile deceleration and penetration depth into the semi-infinite and finite targets impacted by rigid penetrators.

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