Optimasi Parameter Vacuum Assisted Resin Infusion (VARI) Produk Bilah Turbin Angin Terhadap Uji Bending
DOI:
https://doi.org/10.31000/mbjtm.v9i1.13418Kata Kunci:
Vacuum Assisted Resin Infusion, Bending Test, Composite, Polyester Resin, Fiber, Catalyst.Abstrak
This research aims to optimize the parameters of the Vacuum Assisted Resin Infusion (VARI) method in the production of composite specimens and wind turbine blade products to enhance mechanical strength, particularly bending strength. The research was conducted with variations in parameters including fiber volume (10% and 20%), vacuum pressure (0.6 bar and 0.8 bar), and catalyst (1% and 2%). The variations were tested using bending tests and loading tests, and then the Taguchi method was used to identify the parameter combinations that produced the best performance. The bending test results show that a 20% fiber volume variation yields the highest average bending test result of 198.20 MPa, compared to a 10% fiber volume which only reaches 112.20 MPa. A vacuum pressure of 0.6 bar yields a bending test result of 198.20 MPa, which is better compared to a vacuum pressure of 0.8 bar with an average bending test result of 112.20 MPa. The 1% catalyst variation produced the highest bending test value of 198.20 Mpa, higher than the 2% catalyst variation, which yielded a bending test value of 125.13 Mpa. The conclusion of this study is that the optimal combination for producing the best bending test is using a fiber volume of 20%, a vacuum pressure of 0.6 bar, and a catalyst of 1%. This research provides important insights into the development of lighter, stronger, and more environmentally friendly composite materials, which can be used as an alternative to metals in various industrial applications, including the manufacturing of wind turbine blade products.
Referensi
Abdurohman, K., & Marta, A. (2018). Kajian eksperimental tensile properties komposit poliester berpenguat serat karbon searah hasil manufaktur vacuum infusion sebagai material struktur Lsu. Jurnal Teknologi Dirgantara, 14(1), 61-72.
Afifi, S. R., Setyanto, R. H., & Priadythama, I. (2024). Perancangan Core Meja pada Kursi Kuliah PPTI II Berbasis Serbuk Kayu Jati. Blend Sains Jurnal Teknik, 3(1), 38-53.
Aizul Haq, M., Naubnome, V., Fauji, N., Karawang, S., HSRonggo Waluyo, J., Karawang, K., & Barat, J. (2022). PENGARUH FRAKSI VOLUME TERHADAP KEKUATAN TARIK DAN BENDING KOMPOSIT SERAT SERABUT KELAPA BERMATRIKS POLIESTER. 15(2).
Alandro, D., Nugraha, A. D., Maulana, I. A., Nugroho, A. D., Erlangga, W., & Muflikhun, M. A. (2024). Comprehensive assessment of hybrid GFRP-graphite filler using modified complex Arcan fixture: Experimental and simulation approach. Composites Part A: Applied Science and Manufacturing, 180, 108094.
Arifadhillah, N. (2022). Analisa Perlakuan Alkali (NAOH) Pada Serat Terhadap Kekuatan Impact Dan Bending Komposit Bermatrik Epoxy (Doctoral dissertation, Universitas Islam Riau).
Fatah, K. M. A., & Wisnaningsih, W. (2020, November). OPTIMASI PARAMETER PROSES PENJEMURAN GABAH DENGAN MENGGUNAKAN METODE TAGUCHI. In Prosiding Seminar Nasional Penelitian dan Pengabdian kepada Masyarakat (Vol. 1, No. 1, pp. 123-132).
Hamad, A. J. (2017). Size and shape effect of specimen on the compressive strength of HPLWFC reinforced with glass fibres. Journal of King Saud University-Engineering Sciences, 29(4), 373-380.
Hastuti, S., Budiono, H. S., Ivadiyanto, D. I., & Nahar, M. N. (2021). Peningkatan Sifat Mekanik Komposit Serat Alam Limbah Sabut Kelapa (Cocofiber) yang Biodegradable. Reka Buana: Jurnal Ilmiah Teknik Sipil dan Teknik Kimia, 6(1), 30-37.
Hestiawan, H., & Jamasri, K. (2017). Pengaruh Penambahan Katalis Terhadap Sifat Mekanis Resin Poliester Tak Jenuh. Teknosia, 3(1), 1-7.
Hidayat, A. R., & Widyantoro, W. (2024). Analisis Sifat Mekanik Komposit Berbahan Serat Bulu Ayam. Journal of Cross Knowledge, 2(1), 331-340.
Istanta, D. (2020). Analisis Pengaruh Texture Serat Terhadap Sifat Fisik Dan Mekanik Aramid Epoksi Prepreg. Jurnal: Industri Elektro dan Penerbangan, 3(1).
Muhajir, M., Mizar, M. A., Sudjimat, D. A., & Mesin-ft, J. P. T. (2016). Analisis kekuatan tarik bahan komposit matriks resin berpenguat serat alam dengan berbagai varian tata letak. Jurnal Teknik Mesin, 24(2), 1-8.
Mukmin, K. (2019). Pengaruh Arah Serat Ijuk Terhadap Kekuatan Tarik Dan Bending Material Komposit Serat Ijuk-Epoxy. Semarang: Universitas Negeri Semarang.
Nuraini, A., Abadi, C. S., & Fachruddin, F. (2019, October). Analisis perbandingan bilah turbin angin jenis taper dengan taperless pada turbin angin skala mikro di PT. Lentera Bumi Nusantara. In Seminar Nasional Teknik Mesin (Vol. 9, No. 1, pp. 138-146).
Partuti, T., Si, S., Si, M., & Yustanti, D. E. (n.d.). PENGARUH FRAKSI VOLUME SERAT DAN PERSENTASE KATALIS TERHADAP SIFAT MEKANIK KOMPOSIT POLYESTER BERPENGUAT SERAT IJUK DENGAN METODE VACUUM BAG SKRIPS
Pradana, A. J., Nugroho, G., & Musyafa, A. (2013). Rancang Bangun Turbin Angin Vertikal Jenis Savonius dengan Variasi Profil Kurva Blade untuk Memperoleh Daya Maksimum. Jurnal Teknik POMITS, 7(7), 1-6.
Prayoga, F. R., & Haripriadi, B. D. (2024). Analisa Pengaruh Parameter Pengelasan SMAW Terhadap Kekuatan Sambungan pada Baja ST37. TEKTONIK: Jurnal Ilmu Teknik, 2(1), 70-78.
Rahmawaty, S. A., Parmita, A. W. Y. P., & Laksono, A. D. (2021). Analisa Kekuatan Tarik dan Tekuk pada Komposit Fiberglas-
Unduhan
File Tambahan
Diterbitkan
Terbitan
Bagian
Lisensi
Authors who publish with this journal agree to the following terms:
- Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution License that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.
- Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgement of its initial publication in this journal.
- Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work (See The Effect of Open Access).
Motor Bakar : Jurnal Teknik Mesin have CC BY-NC or an equivalent license as the optimal license for the publication, distribution, use, and reuse of scholarly work.
In developing strategy and setting priorities, Motor Bakar : Jurnal Teknik Mesin recognize that free access is better than priced access, libre access is better than free access, and libre under CC BY-NC or the equivalent is better than libre under more restrictive open licenses. We should achieve what we can when we can. We should not delay achieving free in order to achieve libre, and we should not stop with free when we can achieve libre.
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International (CC BY-NC 4.0) License
YOU ARE FREE TO:
- Share — copy and redistribute the material in any medium or format
- Adapt — remix, transform, and build upon the material for any purpose, even commercially.
- The licensor cannot revoke these freedoms as long as you follow the license terms