Jurnal Rekayasa Material, Manufaktur & Energi
Vol 9, No 2: JULI 2026

Kemajuan Material Komposit Berbasis Termoplastik untuk Helm Balistik yang Ringan dan Berkinerja Tinggi

Nabila Zahira Nasution (Unknown)
Sovian Aritonang (Universitas Pertahanan Repubpik Indonesia)



Article Info

Publish Date
31 Jul 2026

Abstract

The advancement of modern material technology has driven innovation in ballistic protection, particularly in the development of lightweight yet high-performance helmets for military and law enforcement applications. One of the main focuses of current research is the use of thermoplastic-based composite materials as an alternative to conventional thermoset composites such as epoxy–Kevlar. Thermoplastic composites—such as polyether ether ketone (PEEK), polypropylene (PP), and polyamide (PA)—offer several advantages, including high toughness, recyclability, and ease of fabrication through thermoforming or compression molding techniques. In terms of the state of the art, numerous studies have demonstrated significant improvements in impact energy absorption and penetration resistance in ballistic helmets reinforced with aramid, UHMWPE, or carbon fibers combined with thermoplastic matrices. However, most research still focuses on individual mechanical testing without a comprehensive approach to the influence of fabrication parameters, fiber–matrix compatibility, or the correlation between microstructural characteristics and ballistic performance. The identified research gap lies in the absence of a systematic review that integrates the latest findings to map trends, technical challenges, and research directions for developing thermoplastic composite materials as optimal solutions for lightweight, ergonomic, and high-performance ballistic helmets. This study aims to identify, evaluate, and critically synthesize the recent advancements in thermoplastic-based composite   materials for ballistic helmet   applications, emphasizingmechanical   performance, ballistic   resistance, and   material   sustainability   potential. Furthermore, this research seeks to formulate recommendations for future research directions in the development of head protection systems utilizing thermoplastic composite materials. The methodology employed is a Systematic Literature Review (SLR) with a descriptive-analytical approach based on the PRISMA (Preferred Reporting Items for Systematic Reviews and Meta- Analyses) guidelines. The SLR process includes identification, selection, quality assessment, and synthesis of data from relevant scientific publications published over the past two decades. Through this approach, the study is expected to produce a comprehensive mapping of trends, challenges, and innovation opportunities in the development of lightweight, durable, and sustainable thermoplastic composite-based ballistic helmets.

Copyrights © 2026






Journal Info

Abbrev

RMME

Publisher

Subject

Aerospace Engineering Control & Systems Engineering Electrical & Electronics Engineering Energy Engineering

Description

Jurnal Rekayasa Material, Manufaktur & Energi, yang diterbitkan oleh Fakultas Teknik, Program Studi Teknik Mesin, Universitas Muhammadiyah Sumatera Utara (UMSU), Medan, Sumatera Utara, Indonesia, Jurnal Rekayasa Material, Manufaktur & Energi menerima artikel ilmiah hasil-hasil penelitian, dan ...