Analisis Perbandingan Kekuatan Struktur Komposit Serat Hibiscus Tiliaceus dan Serat Karbon Kevlar dengan Metode Vacuum Bag menggunakan Uji Tembak
DOI:
https://doi.org/10.54706/senastindo.v7.2025.464Keywords:
Composite, Hibiscus Tiliaceus Fiber, Carbon FiberAbstract
Composites are composite materials made from two or more materials that produce new, superior properties. This study examines the strength of composite structures made from natural Hibiscus Tiliaceus fiber (waru fiber) and synthetic carbon Kevlar fiber made using the vacuum bag method. Tests were conducted using 9 mm caliber bullets (MU-1TJ) at a distance of 25 meters according to NIJ standards. The results of the firing test showed that composites with a higher Kevlar fiber content had better resistance than composites with a higher proportion of Hibiscus Tiliaceus fiber. This study proves that variations in fiber composition affect the strength of composite structures produced by the vacuum bag method.
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[1] Niskanen, S. (2009). OpenRocket: Software untuk Desain dan Simulasi Roket. Open Source Projec Azissyukhron, M & Hidayat, S, 2018, Perbandingan Kekuatan Material Hasil Metode Hand Lay-up dan Metode Vacuum Bag Pada Material Sandwich Composite, Vol. 9 (2018): Industrial Research Workshop and National Seminar, Bandung, https://doi.org/10.35313/irwns.v9i0.1072
[2] Rabbani, GN, 2022, Simulasi Kelelahan (Fatigue) Pada Rangka E-Motorbike Berbasis Ansys Workbench,
Magelang : Universitas Tidar.
[3] Wiranegara, CB, 2022, Pemanfaatan Serat Alam Dan Serat Sintetis Sebagai Material Bilah Horizontal Axis Wind Turbine, Vol 3, No 1, Magelang,
https://jurnal.untidar.ac.id/index.php/senaster/article/view/5546/2974
[4 ] Yulius O. Bani, Daud P. Mangesa, Jefri S. Bale, Pembuatan Dan Pengujian Alat Fabrikasi Komposit Vacuum Bag Dengan Menggunakan Metode VDI 2221.
[5] Zahrah, Lutfianisa. 2015. “Analisa Kemampuan Rompi Anti Peluru yang Terbuat dari Komposit HGM dalam Menyerap Energi Akibat Impact Proyektil”. Teknik Mesin FTI-ITS. Surabaya.
[6] D’Orazio, L., Esposito Corcione, C., & Frigione, M. (2023). Ballistic penetration damage for hybrid carbon/Kevlar/UHMWPE fiber laminated composites. Composites Part B: Engineering, 256, 110736. https://doi.org/10.1016/j.compositesb.2023.110736
[7] Zhang, Y., Wang, H., & Guo, J. (2024). Thickness effect on ballistic impact behavior of hybrid carbon/Kevlar composites. Composites Science and Technology, 244, 110997. https://doi.org/10.1016/j.compscitech.2024.110997
[8] Lee, C., & Park, J. (2022). Study on impact properties of carbon/Kevlar fiber hybrid composites. Polymer Composites, 43(8), 4687–4698. https://doi.org/10.1002/pc.28367
[9] National Institute of Justice. (2023, October). Ballistic Resistance of Body Armor, NIJ Standard 0101.07 (NCJ Number 307346). U.S. Department of Justice, Office of Justice Programs. Retrieved from https://nij.ojp.gov/library/publications/ballistic-resistance-body-armor-nij-standard-010107
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