| Title | Influence of Infill Pattern on Ballistic Resistance Capabilities of 3D-Printed Polymeric Structures |
| Publication Type | Journal Article |
| Year of Publication | 2025 |
| Date Published | 07/2025 |
| Journal | MDPI Polymers |
| Authors | Bisić, M, Pandžić, A, Jusufbegović, M, Ćerimović, M, Elek, P |
| Abstract | Recent technological advances have expanded the use of 3D-printed polymer components across industries, including a growing interest in military applications. The effective defensive use of such materials depends on a thorough understanding of polymer properties, printing techniques, structural design, and influencing parameters. This paper analyzes the ballistic resistance of 3D-printed polymer structures against 9 × 19 mm projectiles. Cuboid targets with different infill patterns—cubic, grid, honeycomb, and gyroid—were fabricated and tested experimentally using live ammunition. Post-impact, CT scans were used to non-destructively measure projectile penetration depths. The honeycomb infill demonstrated superior bullet-stopping performance. Additionally, mechanical properties were experimentally determined and applied in FEM simulations, confirming the ability of commercial software to predict projectile–target interaction in complex geometries. A simplified analytical model also produced satisfactory agreement with experimental observations. The results contribute to a better understanding of impact behavior in 3D-printed polymer structures, supporting their potential application in defense systems. |
| Refereed Designation | Refereed |