Uji kinerja Alat Uji Tarik Berbasis digital Kapasitas 500 N
Abstract
Tujuan penelitian untuk mengetahui unjuk kerja alat uji tarik komposit, bentuk benda uji yang akan diuji adalah komposit fragmentasi. Bahan yang digunakan sebagai bahan uji adalah komposit yang menggunakan matriks resin yukalac 157 dan sabut kelapa, sebelum membuat benda uji, metode perlakuan serat dengan asap cair terlebih dahulu dilakukan dalam 2 tahap (1) perendaman serat dengan asap cair dengan variasi 1, 2, dan 3 jam (2) kemudian serat dipanaskan dalam oven pada suhu 40 derajat selama 30 menit. Hasil penelitian menunjukkan bahwa pahat mampu menarik spesimen komposit fragmentasi telah mencapai 284 N, sedangkan perlakuan asap cair pada serat sabut kelapa berpengaruh terhadap peningkatan kekuatan komposit fragmentasi, kuat tarik maksimum terjadi pada serat perlakuan P2J sebesar 39,313 MPa. Dari hasil penelitian tersebut dapat direkomendasikan sebagai alat uji fragmentasi spesimen komposit.Downloads
References
P. G. Baskaran et al., “Characterization of New Natural Cellulosic Fiber from the Bark of Dichrostachys Cinerea Characterization of New Natural Cellulosic Fiber from the Bark of,” J. Nat. Fibers, vol. 00, no. 00, pp. 1–7, 2017.
P. Senthamaraikannan, M. R. Sanjay, K. S. Bhat, N. H. Padmaraj, and M. Jawaid, “Characterization of natural cellulosic fiber from bark of Albizia amara,” J. Nat. Fibers, vol. 00, no. 00, pp. 1–8, 2018.
M. Muslimin, K. Kamil, S. A. S, and W. I. N. G., “Effects of Liquid Smoke on the Chemical Composition and Thermal Properties of Sago Fiber,” J. SOUTHWEST JIAOTONG Univ., vol. 54, no. 1, pp. 1–11, 2019.
A. usman Mukhlis Muslimin, Kifli Umar, “Pengaruh Perlakuan Sabut Kelapa dengan Asap Cair Terhadap Sifat Mekanik Komposit,” in Seminar Nasional Inovasi Teknologi, 2021, vol. 07010, pp. 197–200.
S. Nasional, I. Teknologi, M. Muslimin, T. Mesin, F. Teknik, and U. Khairun, “Effect Of Liquid Smoke on The Morphology and Compatibility of Sago Fiber-Matrix,” pp. 47–51, 2022.
M. Muslimin, S. A. S, W. I. N. G, and K. Kamil, “Liquid Smoke Potential Solution on Texture and Bonding Sago Fiber- Matrix Liquid Smoke Potential Solution on Texture and Bonding Sago Fiber-Matrix,” vol. 494, 2019.
I. N. G. W. Mukhlis Muslimin, Kusno Kamil, “Cross-sectional texture of sago fiber due to liquid smoke treatment,” 2021, pp. 1–3.
M. B. and mukhlis muslimin Palungan, “Tension Strength and Fiber Morphology of Agave Cantala Roxb Leaves due to Liquid Smoke Immersion Treatment,” Adv. Mater. Sci. Eng., vol. 2022, no. 2022, p. 8, 2022.
E. W. Gaba, B. O. Asimeng, E. E. Kaufmann, S. K. Katu, E. J. Foster, and E. K. Tiburu, “Mechanical and structural characterization of pineapple leaf fiber,” Fibers, vol. 9, no. 8, pp. 1–11, 2021.
M. B. Palungan et al., “Mechanical Properties of King Pineapple Fiber ( Agave Cantula Roxb ) As A Result of Fumigation Treatment,” vol. 9, no. August, pp. 560–563, 2015.
M. Mukhlis, W. Hardi, and R. Mustafa, “The Effect of Treatment of Coconut Fiber with Liquid Smoke on Mechanical Properties of Composite,” E3S Web Conf., vol. 328, p. 07010, 2021.
I. Renreng, R. Soenoko, Pratikto, and Y. S. Irawan, “Effect of turmeric (Curcumae longae) treatment on morphology and chemical properties of Akaa (Corypha) single fiber,” J. Eng. Sci. Technol., vol. 12, no. 8, pp. 2229–2237, 2017.
I. Renreng, R. Soenoko, pratikto, and Y. Surya Irawan, “Effect Of Turmeric (Curcuma) Solution Treatment Toward The Interfacial Shear Stress And Wettabilty Of A Single Fiber Akaa (Corypha) On Epoxy Matrix,” Int. J. Appl. Eng. Res. ISSN, vol. 10, no. 10, pp. 973–4562, 2015.
M. Muslimin, kusno Kamil, S. A. S. Budi, and I. Wardana, “Effect of liquid smoke on surface morphology and tensile strength of Sago Fiber,” J. Mech. Eng. Sci., vol. 13, no. 4, pp. 6165–6177, 2019.
F. Lin, X. Du, W. Li, J. Jiang, and N. Chen, “Interfacial properties of high failure strain polyimide fiber/epoxy composites analyzed by a modified single fiber fragmentation test,” Appl. Surf. Sci., vol. 513, no. February, p. 145869, 2020.
M. Mukhlis, L. A. Latif, M. A. Suyuti, T. Mesin, F. Teknik, and U. Khairun, “Rancang Bangun Alat Uji Tarik Serat Berbasis Digital,” vol. 8, no. 1, pp. 39–44, 2022.
Copyright (c) 2022 LONTAR Jurnal Teknik Mesin Undana (LJTMU )
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.