A Novel Study of Penetration into Concrete Targets by Ogive Nose Projectiles
Ahmad Reza Khoogar, Mohamad Ali Mohades, Khodadad Vahedi
Abstract
Ahmad Reza Khoogar, Mohamad Ali Mohades, Khodadad Vahedi
Abstract
In design of defense structures, concrete are often used to provide protection against incidental dynamic loadings such as the impact of a steel projectile. In the present study, a new analytical model is proposed to predict penetration depth into concrete targets by ogive nose projectile. Hence, to develop the model and simulate penetration of high velocity ogive-shape nose steel projectiles into concrete targets, several tests has been simulated numerically with the Ls-Dyna finite element code. The results show good agreement with the analytical analyses and experimental results from other researchers.
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In design of defense structures, concrete are often used to provide protection against incidental dynamic loadings such as the impact of a steel projectile. In the present study, a new analytical model is proposed to predict penetration depth into concrete targets by ogive nose projectile. Hence, to develop the model and simulate penetration of high velocity ogive-shape nose steel projectiles into concrete targets, several tests has been simulated numerically with the Ls-Dyna finite element code. The results show good agreement with the analytical analyses and experimental results from other researchers.
Key concepts: Projectile, Penetration (warfare), Structural engineering, Finite element method, LS-DYNA, Engineering, Materials science, Operations research