Training on the manufacture of fiberglass materials using the vacuum infusion method in Pannampu Village, Makassar
Abstract
Fiberglass material has become a primary choice in the boatbuilding industry due to its superior strength and resistance to corrosion. The lamination process and the vacuum infusion method are the primary techniques in the manufacture of fiberglass boat structures. The combination of these two methods ensures that the glass fibers are evenly distributed and neatly arranged, providing optimal strength and durability to the fiberglass boat. The purpose of community service related to the lamination process, vacuum infusion, and the use of fiberglass is to increase public understanding of this technology and provide training and resources to fishermen, workers, and local industries to utilize it effectively in boat building and other products. The method of this community service activity employs a participatory socialization approach, which involves conducting an initial survey to gauge participants' understanding of the community service theme, followed by the delivery of socialization materials. Following this, discussion sessions were conducted, and post-surveys were administered to assess the differences in their level of understanding before and after the provision of the material. By understanding the lamination and vacuum infusion methods, as well as the application of fiberglass, the fishing community in Pannampu can enhance their skills in producing high-quality local fiberglass boats.
Abstrak
Material fiberglass telah menjadi pilihan utama dalam industri pembuatan kapal karena keunggulan kekuatannya yang tinggi dan ketahanannya terhadap korosi. Proses laminasi dan metode vacuum infusion adalah teknik utama dalam pembuatan struktur kapal fiberglass. Kombinasi kedua metode ini memastikan bahwa serat kaca terdistribusi secara merata dan tersusun dengan rapi, memberikan kekuatan dan ketahanan yang optimal pada kapal fiberglass. Tujuan dari pengabdian kepada masyarakat terkait dengan proses laminasi, vacuum infusion, dan penggunaan fiberglass adalah untuk meningkatkan pemahaman masyarakat tentang teknologi ini serta memberikan pelatihan dan sumber daya kepada nelayan, para pekerja, dan industri lokal untuk memanfaatkannya secara efektif dalam pembuatan kapal dan produk lainnya. Metode kegiatan pengabdian adalah menggunakan pendekatan sosialisasi partisipatif dengan melakukan survei awal yang berkaitan dengan pemahaman peserta tentang tema pengabdian dilanjutkan dengan pemberian materi sosialisasi. Setelah itu, dilakukan sesi diskusi dan dilakukan pascasurvei untuk mengetahui perbedaan tingkat pemahaman mereka sebelum dan sesuai pemberian materi. Dengan memahami metode laminasi dan vacuum infusion serta penerapan fiberglass, masyarakat nelayan di Pannampu dapat meningkatkan keterampilan mereka dalam memproduksi kapal fiberglass lokal yang berkualitas tinggi.
Kata kunci: bahan fiberglass; Pannampu Makassar; pelatihan nelayan; vacuum infusion
Keywords
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Ariani, B., Ariesta, R. C., Prasetya, R., Oktaviani, M., & Hakim, M. H. (2022). Investigation of hull design modifications on fuel consumption and Energy Efficiency Design Index (EEDI). Kapal: Jurnal Ilmu Pengetahuan dan Teknologi Kelautan, 19(3), 133-140.
Asrofi, M., Dwilaksana, D., Sakura, R. R., Junus, S., Sutjahjono, H., Hentihu, M. F. R., Yudhistiro, D., Syuhri, S. N. H., & Taufik. (2023). Peningkatan kualitas produk material komposit fiberglass menggunakan vaccum assisted resin infusion di industri wangi fiberglass Banyuwangi. Medani: Jurnal Pengabdian Masyarakat, 2(3), 73-77.
Atmanegara, R. E. P., Pribadi, T. W., & Arif, M. S. (2016). analisis teknis dan ekonomis pembangunan kapal ikan 30GT konstruksi FRP metode vacuum infusion. Jurnal Teknik ITS, 5(1), 25-30.
Choiron, M. A., Setyarini, P. H., & Nurwahyudy, A. (2024). Fishing vessel safety in indonesia: a study of accident characteristics and prevention strategies. International Journal of Safety & Security Engineering, 14(2), 1-14.
Fang, P., Xu, Y., Gao, Y., Ali, L., & Bai, Y. (2022). Mechanical responses of a fiberglass flexible pipe subject to tension and internal pressure. Thin-Walled Structures, 181(1), 1-11.
Goren, A., & Atas, C. (2008). Manufacturing of polymer matrix composites using vacuum assisted resin infusion molding. Archives of Materials Science and Engineering, 34(2), 117-120.
Hidayat, A., Nugroho, R. S., & Lestari, D. (2020). Analisis dampak lingkungan dari limbah industri komposit di Indonesia. Jurnal Teknik Lingkungan, 21(3), 145-152.
Hindersmann, A. (2019). Confusion about infusion: An overview of infusion processes. Composites Part A: Applied Science and Manufacturing, 126(1), 1-10.
Islam, T., Chaion, M. H., Jalil, M. A., Rafi, A. S., Mushtari, F., Dhar, A. K., & Hossain, S. (2024). Advancements and challenges in natural fiber‐reinforced hybrid composites: A comprehensive review. SPE Polymers, 5(4), 481-506.
Lazakis, I., & Ölçer, A. (2016). Selection of the best maintenance approach in the maritime industry under fuzzy multiple attributive group decision-making environment. Proceedings of the Institution of Mechanical Engineers, Part M: Journal of Engineering for the Maritime Environment, 230(2), 297-309.
Lee, H., Jung, K., & Park, H. (2021). Study on structural design and analysis of composite boat hull manufactured by resin infusion simulation. Materials, 14(20), 1-13.
Lee, S. H., Kim, H., & Kwon, S. (2024). Fishing vessel risk and safety analysis: A bibliometric analysis, clusters review and future research directions. Applied Sciences, 14(22), 10439.
Lou, S., Ren, G., Zhang, H., Cheng, B., & Chen, P. (2022). Effect of surface treatment on properties of carbon fiber and glass fiber hybrid reinforced composites. Fibers and Polymers, 23(1), 3225-3231.
Lu, X., Ding, J., Peng, X., Sun, G., Wang, X., Yue, W., Zhou, H., Huang, Z., Zhou, H., & Mai, Y. W. (2024). A Focused review of the draping process and its impact on the resin infusion in liquid composite molding. Thin-Walled Structures, 205(1), 1-12.
Oosterom, S. van, Allen, T., Battley, M., & Bickerton, S. (2019). An objective comparison of common vacuum assisted resin infusion processes. Composites Part A: Applied Science and Manufacturing, 125(1), 1-10.
Purba, S. D. A., Mulyatno, I. P., & Firdhaus, A. (2024). Analisis hull strength kapal ikan 5 GT bahan fiberglass menggunakan metode elemen hingga. Jurnal Teknik Perkapalan, 12(2), 1-8.
Qureshi, J. (2022). A review of recycling methods for fibre reinforced polymer composites. Sustainability, 14(24), 1-15.
Rifqi, M. F., Nastiti, Y. A., & Agustin, S. (2023). Analisa perbandingan biaya perawatan kapal nelayan berbahan kayu dan fiber di daerah Ujungpangkah Kabupaten Gresik. Proceeding Maritime Business Management Conference, 1(1), 1-10.
Romdhani, I., Setiawan, F., & Wicaksono, D. (2024). Manufkatur vacuum resin infusion untuk pembuatan material komposit. JETBUS: Journal of Education Transportation and Business, 1(2), 304-324.
Rubino, F., Nisticò, A., Tucci, F., & Carlone, P. (2020). Marine application of fiber reinforced composites: A review. Journal of Marine Science and Engineering, 8(1), 26.
Salam, A. (2018). Technological adaptation in traditional fisheries: Way to survive. IOP Conference Series: Earth and Environmental Science, 139(1), 1-5.
Shen, R., Liu, T., Liu, H., Zou, X., Gong, Y., & Guo, H. (2024). An enhanced vacuum-assisted resin transfer molding process and its pressure effect on resin infusion behavior and composite Material Performance. Polymers, 16(10), 1-10.
Siswandi, B., Jamal, J., Jupri, J., Asrofi, M., & Pambudi, S. (2021). Studi kelayakan fiberglass sebagai pengganti kayu dalam pembangunan kapal nelayan daerah Bengkalis Pesisir. Borobudur Engineering Review, 1(1), 56-64.
Sunardi, S., Sukandar, S., & Setionohadi, B. (2018). Laminasi Fiberglass untuk Memperbaiki Kapal Ikan Kayu di Kecamatan Lekok, Kabupaten Pasuruan, Jawa Timur. Jurnal Pengabdian Masyarakat J-Dinamika, 3(1), 14-18.
Swan, S., Yuksel, T., Kim, D., & Gurocak, H. (2017). Automation of the vacuum assisted resin transfer molding process for recreational composite yachts. Polymer Composites, 38(11), 2411-2424.
Utami, N., & Cahyo, E. (2022). Sifat mekanik komposit fiberglass melalui uji lentur. Teknika STTKD: Jurnal Teknik, Elektrik, Engine, 8(2), 361-369.
Utomo, S. W. E. (2020). Analisis pengaruh tekanan vacuum pada proses pembuatan komposit carbon fiber menggunakan metode vacuum infusion. Machine: Jurnal Teknik Mesin, 6(2), 6-11.
Wang, T., Huang, K., Guo, L., Zheng, T., & Zeng, F. (2023). An automated vacuum infusion process for manufacturing high-quality fiber-reinforced composites. Composite Structures, 309(1), 1-11.
Xing, M., Li, Z., Zheng, G., Du, Y., Chen, C., & Wang, Y. (2021). Recycling of carbon fiber-reinforced epoxy resin composite via a novel acetic acid swelling technology. Composites Part B: Engineering, 224(1), 1-10.
Yusim, A. K., Said, S. D., Ariany, Z., Ridwan, M., & Baital, M. S. (2019). Penyuluhan metode pembuatan kapal nelayan berbahan kayu dengan teknik laminasi bagi para pekerja di galangan kapal kayu Karangasem, Batang, Jawa Tengah. Jurnal Pengabdian Vokasi, 1(2), 108-111.
DOI: https://doi.org/10.17509/abmas.v25i1.76338
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