Rancang Bangun Alat Pencetak Briket Hidrolik dengan Sistem Gerak Rel

Authors

  • Diah Mahmuda Politeknik Negeri Sambas

DOI:

https://doi.org/10.55123/insologi.v1i3.329

Keywords:

Hydraulic, Briquette, Biomassa

Abstract

This study aims to design a hydraulic briquette press with a rail system to produce briquettes from coconut shell waste that is simple and easy to operate. Starting from designing the foundation (rail system), briquette tube table and piston pressing plate, to becoming a pressing tool using CAD software. The foundation was designed using square plate steel with size of 340 mm x 220 mm. The plate thickness of 4 mm and distance of 2 rails of 90 mm. The pressing tube plate consists of 2 tables which has 8 print tubes with a diameter of 22 mm and height 70 mm. The pressing piston plate uses a bolt connection so the piston can be set in line with the printing tube hole when the briquette press is operated. As a result, a hydraulic press with a table movement system in the form of a rail system was successfully built to make briquettes made from coconut shell charcoal with a capacity of 6.24 kg per hour. In one process, this tool produces 16 cylindrical briquettes with a diameter of 22 mm and a length of 50 mm.

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References

Adeleke, A. A., Odusote, J. K., Ikubanni, P. P., Orhadahwe, T. A., Lasode, O. A., Ammasi, A., & Kumar, K. (2021). Ash analyses of bio-coal briquettes produced using blended binder. Scientific Reports, 11(1), 1–10. https://doi.org/10.1038/s41598-020-79510-9

Anggraeni, S., Girsang, G. C. S., Nandiyanto, A. B. D., & Bilad, M. R. (2021). Effects of particle size and composition of sawdust/carbon from rice husk on the briquette performance. Journal of Engineering Science and Technology, 16(3), 2298–2311.

Arachchige, U. S. P. R. (2021). Briquettes Production as an Alternative Fuel. Nature Environment and Pollution Technology, 20(4). https://doi.org/10.46488/nept.2021.v20i04.029

Daniel, K. K., Siagi, Z. O., & Ogola, J. O. (2020). Effect of Formulation, Binder and Compaction Pressure of Rice Husk-Bagasse Briquettes on Thermal and Physical Properties. Journal of Scientific Research and Reports, 26(February), 38–53. https://doi.org/10.9734/jsrr/2020/v26i1030320

Jumiati, E. (2020). Pengaruh Sifat Mekanik Dan Laju Pembakaran Pada Briket Bioarang Kulit Durian Dengan Perekat Tepung Tapioka. JISTech (Journal of Islamic Science and Technology), 5(1), 62–70. http://jurnal.uinsu.ac.id/index.php/jistech

Kelly Orhorhoro, E., Micheal Chukudi, O., Oghenekevwe, O., & Erhire Onogbotsere, M. (2017). Design and Fabrication of an Improved Low Cost Biomass Briquetting Machine Suitable for use in Nigeria. International Journal of Engineering Technology and Sciences, 4(2), 128–138. https://doi.org/10.15282/ijets.8.2017.1.11.1086

Kpalo, S. Y., Zainuddin, M. F., Manaf, L. A., & Roslan, A. M. (2020). Production and characterization of hybrid briquettes from corncobs and oil palm trunk bark under a low pressure densification technique. Sustainability (Switzerland), 12(6). https://doi.org/10.3390/su12062468

Mogy, S. D., Rohman, F., & Muslimin, M. I. (2020). Modifikasi Alat Pencetak Briket Hidrolik Berbahan Ampas Kelapa (pp. 291–296). https://proceeding.unpkediri.ac.id/index.php/inotek/article/view/161/135

Sakkampang, C., & Wongwuttanasatian, T. (2012). Design of briquettizing machine for biomass briquette fuel. Advanced Science Letters, 13(June), 565–569. https://doi.org/10.1166/asl.2012.3787

Sipahutar, R., Bizzy, I., Faizal, M., & Maussa, O. (2017). Bio-coal briquettes made from South Sumatera low rank coal and palm shell charcoal for using in small industries. MATEC Web of Conferences, 101, 1–6. https://doi.org/10.1051/matecconf/201710102019

Sunardi, Djuanda, & Mandra, M. A. S. (2019). Characteristics of charcoal briquettes from agricultural waste with compaction pressure and particle size variation as alternative fuel. International Energy Journal, 19(3), 139–147.

S. R. Ningsih, R. Wulansari, D. Hartama, A. P. Windarto, and A. Wanto, “Analysis of PROMETHEE II Method on Selection of Lecturer Community Service Grant Proposals,” Journal of Physics: Conference Series, vol. 1255, no. 1, pp. 1–6, Aug. 2019.

R. Watrianthos, W. A. Ritonga, A. Rengganis, A. Wanto, and M. Isa Indrawan, “Implementation of PROMETHEE-GAIA Method for Lecturer Performance Evaluation,” Journal of Physics: Conference Series, vol. 1933, no. 1, p. 012067, 2021.

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Published

2022-06-28

How to Cite

Diah Mahmuda. (2022). Rancang Bangun Alat Pencetak Briket Hidrolik dengan Sistem Gerak Rel. INSOLOGI: Jurnal Sains Dan Teknologi, 1(3), 163–168. https://doi.org/10.55123/insologi.v1i3.329

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Articles