Numerical Simulation Study on the Influence of Explosive Shape on the Dynamic Response of Tracked Vehicles

2026-99-1103

9/11/2026

Authors
Abstract
Content
This study utilizes finite element analysis and a multi-material arbitrary Lagrangian-Eulerian (ALE) formulation to systematically investigate the dynamic responses of tracked armored vehicles under underbody blast loading from cylindrical, spherical, and cubic charges. Numerical results indicate that, given equivalent charge masses and detonation distances, the shape of the explosive geometry significantly affects shock wave propagation characteristics and the subsequent structural response behavior. Compared to the other two charge configurations, the cylindrical charge exhibits superior shock propagation velocity and a more rapid dynamic response time in the vertical direction. Consequently, the cylindrical charge induces a maximum elastic displacement of 114.9 mm in the underbody structure—surpassing the cubic and spherical charges by factors of 1.16 and 1.18, respectively—while significantly intensifying near-field overpressure.
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DOI
https://doi.org/10.4271/2026-99-1103
Citation
Tang, J., Fu, T., Liu, Y., Feng, Y., et al., "Numerical Simulation Study on the Influence of Explosive Shape on the Dynamic Response of Tracked Vehicles," 2025 International Conference on Intelligent Equipment, Vehicle Engineering and Automation Control (ICEVA2025), Shenyang, China, December 5, 2025, https://doi.org/10.4271/2026-99-1103.
Additional Details
Publisher
Published
Sep 11
Product Code
2026-99-1103
Content Type
Technical Paper
Language
English