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Article

Ballistic Behavior of Epoxy Composites Reinforced with Amazon Titica Vine Fibers (Heteropsis flexuosa) in Multilayered Armor System and as Stand-Alone Target

by
Juliana dos Santos Carneiro da Cunha
1,*,
Lucio Fabio Cassiano Nascimento
1,
Ulisses Oliveira Costa
1,
Wendell Bruno Almeida Bezerra
1,
Michelle Souza Oliveira
1,
Maria de Fátima Vieira Marques
2,
Ana Paula Senra Soares
3 and
Sergio Neves Monteiro
1
1
Department of Materials Science, Military Institute of Engineering—IME, Praça General Tibúrcio, 80, Urca, Rio de Janeiro 22290-270, RJ, Brazil
2
Institute of Macromolecules Professor Eloisa Mano, Federal University of Rio de Janeiro, Horácio Macedo Av., 2.030, Bloco J, University City, Rio de Janeiro 21941-598, RJ, Brazil
3
Department of Organic Processes, School of Chemistry, Federal University of Rio de Janeiro, Rio de Janeiro 21941-598, RJ, Brazil
*
Author to whom correspondence should be addressed.
Polymers 2023, 15(17), 3550; https://doi.org/10.3390/polym15173550
Submission received: 4 July 2023 / Revised: 11 August 2023 / Accepted: 23 August 2023 / Published: 26 August 2023

Abstract

Seeking to improve personal armor equipment by providing mobility and resistance to penetration, this research aimed to explore the potential of sustainable materials in order to assess their ability in ballistic applications. Titica vine fibers (TVFs) extracted from aerial roots of Heteropsis flexuosa from the Amazon region were incorporated at 10, 20, 30, and 40 vol% into an epoxy matrix for applications in ballistic multilayered armor systems (MASs) and stand-alone tests for personal protection against high-velocity 7.62 mm ammunition. The back-face signature (BFS) depth measured for composites with 20 and 40 vol% TVFs used as an intermediate layer in MASs was 25.6 and 32.5 mm, respectively, and below the maximum limit of 44 mm set by the international standard. Fracture mechanisms found by scanning electron microscopy (SEM) attested the relevance of increasing the fiber content for applications in MASs. The results of stand-alone tests showed that the control (0 vol%) and samples with 20 vol% TVFs absorbed the highest impact energy (Eabs) (212–176 J), and consequently displayed limit velocity (VL) values (213–194 m/s), when compared with 40 vol% fiber composites. However, the macroscopic evaluation found that, referring to the control samples, the plain epoxy shattered completely. In addition, for 10 and 20 vol% TVFs, the composites were fragmented or exhibited delamination fractures, which compromised their physical integrity. On the other hand, composites with 30 and 40 vol% TVFs, whose Eabs and VL varied between 166–130 J and 189–167 m/s, respectively, showed the best physical stability. The SEM images indicated that for composites with 10 and 20 vol% TVFs, the fracture mode was predominantly brittle due to the greater participation of the epoxy resin and the discrete action of the fibers, while for composites with 30 and 40 vol% TVFs, there was activation of more complex mechanisms such as pullout, shearing, and fiber rupture. These results indicate that the TVF composite has great potential for use in bulletproof vests.
Keywords: natural fiber composite; titica vine fibers; multilayered armor; ballistic natural fiber composite; titica vine fibers; multilayered armor; ballistic

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MDPI and ACS Style

da Cunha, J.d.S.C.; Nascimento, L.F.C.; Costa, U.O.; Bezerra, W.B.A.; Oliveira, M.S.; Marques, M.d.F.V.; Soares, A.P.S.; Monteiro, S.N. Ballistic Behavior of Epoxy Composites Reinforced with Amazon Titica Vine Fibers (Heteropsis flexuosa) in Multilayered Armor System and as Stand-Alone Target. Polymers 2023, 15, 3550. https://doi.org/10.3390/polym15173550

AMA Style

da Cunha JdSC, Nascimento LFC, Costa UO, Bezerra WBA, Oliveira MS, Marques MdFV, Soares APS, Monteiro SN. Ballistic Behavior of Epoxy Composites Reinforced with Amazon Titica Vine Fibers (Heteropsis flexuosa) in Multilayered Armor System and as Stand-Alone Target. Polymers. 2023; 15(17):3550. https://doi.org/10.3390/polym15173550

Chicago/Turabian Style

da Cunha, Juliana dos Santos Carneiro, Lucio Fabio Cassiano Nascimento, Ulisses Oliveira Costa, Wendell Bruno Almeida Bezerra, Michelle Souza Oliveira, Maria de Fátima Vieira Marques, Ana Paula Senra Soares, and Sergio Neves Monteiro. 2023. "Ballistic Behavior of Epoxy Composites Reinforced with Amazon Titica Vine Fibers (Heteropsis flexuosa) in Multilayered Armor System and as Stand-Alone Target" Polymers 15, no. 17: 3550. https://doi.org/10.3390/polym15173550

APA Style

da Cunha, J. d. S. C., Nascimento, L. F. C., Costa, U. O., Bezerra, W. B. A., Oliveira, M. S., Marques, M. d. F. V., Soares, A. P. S., & Monteiro, S. N. (2023). Ballistic Behavior of Epoxy Composites Reinforced with Amazon Titica Vine Fibers (Heteropsis flexuosa) in Multilayered Armor System and as Stand-Alone Target. Polymers, 15(17), 3550. https://doi.org/10.3390/polym15173550

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