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DIGITAL LIBRARY: SAMPE 2025 | INDIANAPOLIS, IN | MAY 19-22

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Design of Ballistic Armor Using Additive Manufacturing of Kevlar Material

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Title: Design of Ballistic Armor Using Additive Manufacturing of Kevlar Material

Authors: Jack Bride, Roha Ali, Elthary Elgandor, Jedidiah Jimenez

DOI: 10.33599/nasampe/s.25.0140

Abstract: This project evaluates the effectiveness of various geometries created using advanced additive manufacturing (AM) of Kevlar fiber, chopped carbon fiber-reinforced filament for ballistic protection applications. This study expands on sandwich panel designs with woven Kevlar face sheets and investigates an optimal fiber reinforced filament core structure design. A unit cell workflow was developed in nTop to take advantage of its custom cell modeling and FEA capabilities. Unit cell types were simulated and tested from the hexagonal honeycomb, gyroid TPMS, and re-entrant auxetic cell families. Core structure thickness and cell size were additive manufacturing parameters that were varied to assess the impact absorption. Moreover, the additively manufactured cell structures were encapsulated with a damping material, particularly silica. To determine the best kind of silica for ballistic applications, 3 kinds of silica with varying tensile strengths were molded into a shape like the cores. The samples were then tensile-tested using an Instron 8801 universal testing machine to determine which offered the best balance between strength and ductility. The experimental approach began by determining the material characteristics for test coupons for both continuous fiber and chopped fiber in 0- and 90-degree filament orientations.

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Conference: SAMPE 2025

Publication Date: 2025/05/19

SKU: TP25-0000000140

Pages: 9

Price: $18.00

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