Ballistic behavior of epoxy matrix composites reinforced with piassava fiber against high energy ammunition

Multilayered Armor Systems are low density plates used in personal protection against high-impact energy ammunition. Such system promotes effective protection, by dissipating the projectile energy and preventing the penetration of fragments. Kevlar™ is commonly used as one of the layers. However, re...

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Bibliographic Details
Main Authors: Fabio Da Costa Garcia Filho, Michelle Souza Oliveira, Artur Camposo Pereira, Lucio Fabio Cassiano Nascimento, José Ricardo Gomes Matheus, Sergio Neves Monteiro
Format: Article
Language:English
Published: Elsevier 2020-03-01
Series:Journal of Materials Research and Technology
Online Access:http://www.sciencedirect.com/science/article/pii/S223878541930479X
Description
Summary:Multilayered Armor Systems are low density plates used in personal protection against high-impact energy ammunition. Such system promotes effective protection, by dissipating the projectile energy and preventing the penetration of fragments. Kevlar™ is commonly used as one of the layers. However, recently, cost-effectives composites reinforced with natural fibers have been considered as an alternative. This work aimed to evaluate the performance of epoxy matrix composites reinforced with stiffer natural piassava fibers as a standing alone target against high energy ammunition. Composites with up to 50 vol% of piassava fibers were produced by press molding. The influence of the volume fraction in the main failure mode observed and the limit velocity ballistic parameter were determined. Macro and microscopically analyses were performed to determinate the failure mechanism. Statistical analyses were used to evaluate the results obtained. It was verified that the 50 vol% reinforced composites were those that presented the best performance, which was found comparable to the results obtained for Kevlar™. Keywords: Composites, Natural fibers, Piassava fiber, Ballistic behavior.
ISSN:2238-7854