THE EFFECT OF PETUNG BAMBOO FIBER LENGTH ON MECHANICAL STRENGTH AND PHYSICAL PROPERTIES OF RANDOMLY ARRANGEMENTED COMPOSITES
DOI:
https://doi.org/10.34128/je.v11i2.288Keywords:
komposit, serat bambu petung, uji tarik, foto mikroAbstract
Natural fiber composites are increasingly being developed to substitute less environmentally friendly materials such as metal and fiberglass. Petung bamboo has the potential to be a substitute for glass fiber in polymer composite reinforcement because it has good fiber quality. This research aims to determine the effect of random fiber arrangement with variations in fiber length on mechanical strength. The composite was made using the hand lay-up method with fiber length variations of 5 mm, 10 mm, 15 mm, and 20 mm. The volume fraction of petung bamboo fiber is 30% soaked in 5% NaOH for 2 hours. The research results show that specimen C has the highest tensile strength and elastic modulus values of 1.25 Kgf/mm^2 and 1.93 Kgf/mm^2. In contrast, specimen A has the lowest tensile strength and elastic modulus values of 0.76 Kgf/mm ^2 and 1.14 Kgf/mm^2. The rich, void, and fiber pull-out matrix causes the mechanical strength of the composite to be less than optimal. The effect of adding petung bamboo fiber in the composite can increase the mechanical strength as the fiber length increases.
References
K. Serat and B. Aplikasi, “Analis numerik sifat mekanik bahan abs & komposit serat bambu aplikasi pada komponen adjuster seat mobil,” vol. XVI, no. 1, pp. 14–26, 2022.
S. Acak, D. Lurus, R. Manurung, S. Simanjuntak, J. Sembiring, and E. Candra, “Analisa Kekuatan Bahan Komposit Yang Diperkuat Serat Bambu Menggunakan Resin Polyester Dengan Memvariasikan Susunan Serat,” vol. 2, no. 1, pp. 28–35, 2020.
S. Mekanis and B. Betung, “SIFAT MEKANIS BAMBU BETUNG (Dendrocalamus asper),” vol. 1, no. 3, 2013.
S. Bambu and P. Dendrocalamus, “Serat Bambu Petung (Dendrocalamus asper) Teralkalisasi sebagai Penguat Komposit Polimer,” vol. 8, no. 1, pp. 1–8, 2018.
E. Herdian, P. Pratomo, and M. S. Y. Lubis, “SIMULASI MATERIAL KOMPOSIT BERPENGUAT SERAT BAMBU DALAM PEMBUATAN KOMPONEN FRONT SPLITTER PADA MOBIL,” vol. 6, no. 2, 2021.
S. Komariyah, M. Farid, J. Teknik, and F. T. Industri, “Karakterisasi Sifat Fisik dan Sifat Mekanik Komposit Polyurethane / Serbuk Bambu Sebagai Aplikasi Panel Pintu Mobil,” vol. 5, no. 2, pp. 2015–2017, 2016.
J. Teknik, M. Fakultas, T. Universitas, and N. Sebelas, “Pengaruh Perlakuan Alkali terhadap Sifat Tarik Bahan Komposit Serat Rami- Polyester”.
U. G. Mada, “Analisis Sifat Mekanis Komposit Serat Acak Sabut Kelapa dan Rayung dengan Variasi Fraksi Volume FAHMI LATHIIF, Dr. Lilik Dwi Setyana, S.T.,M.T,” 2021.
A. Tanaman and S. Offichinarun, “PENGARUH ARAH SERAT PADA SERAT AMPAS TEBU POLYMER COMPOSITES”.
G. Illya and I. Bali, “Studi perbandingan sifat mekanik serat bambu,” vol. 5, no. 2, pp. 383–390, 2021.
K. Kimia, D. A. N. Anatomi, T. Jenis, and B. Dari, “Komponen kimia dan anatomi tiga jenis bambu dari seram, maluku,” vol. 28, no. 2, pp. 76–83, 2008.
H. Niswah, “Pengaruh Perlakuan Alkali NaOH terhadap Kekuatan Tarik dan Lentur pada Buku Bambu Betung,” no. Senastitan Iv, pp. 1–8, 2024.
H. Bisaria, M. K. Gupta, P. Shandilya, and R. K. Srivastava, “Effect of Fibre Length on Mechanical Properties of Randomly Oriented Short Effect of fibre length on mechanical properties of randomly oriented short jute fibre reinforced epoxy composite,” no. December, 2015, doi: 10.1016/j.matpr.2015.07.031.
“PENGARUH KONSENTRASI LARUTAN KOH TERHADAP KEKUATAN TARIK DAN STRUKTUR MIKRO KOMPOSIT HIBRID SERAT RAMI DAN SERAT BAMBU,” pp. 111–118.
M. I. F. Rochim and K. Malang, “Analisa Kekuatan Tarik dan Foto Makro Patahan Komposit Serat Eceng Gondok Berpenguat ZnO,” vol. 13, no. September, pp. 35–40, 2022.
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