RANCANG BANGUN PRONY BRAKE DYNAMOMETER UNTUK PENGUJIAN ENGINE MOBIL HEMAT ENERGI TIM JOGOPATI

Authors

  • Prabuditya Bhisma Wisnu Wardhana Politeknik Negeri Banyuwangi
  • Angga Fahad Musthofa Politeknik Negeri Banyuwangi
  • Agung Fauzi Hanafi
  • Asmar Finali
  • Rochmad Eko P.U.

DOI:

https://doi.org/10.57203/jinggo.v3i2.2025.%25p

Keywords:

rancang bangun, prony brake, dynamometer, engine

Abstract

This research aims to determine the force required by the Prony Brake Dynamometer, understand the manufacturing process, and analyze the test results, to ensure this tool can measure engine performance accurately and efficiently. This research includes the design, manufacture and calibration of the Prony Brake Dynamometer, followed by energy efficient car engine testing. The data obtained is analyzed to evaluate the performance of the dynamometer and engine performance, to ensure that this tool can be used accurately and efficiently in testing. The force required to press the caliper piston to the Disc Brake is 136.2 N. The input power with a current of 2.4 A is obtained of 264 W. braking force Fb from the 2.4 Current variation with Ft 0.3 kg is 0.98 N. The power (P) output of the electric motor using the 2.4 Current variation with F scale of 0.3 m and rpm 1473 is 14.2833 watts. It takes a pressing force of 136.2 N on the brake shoes to test a torque of 10.3 Nm at a rotational speed of 3600 rpm. The output power at a rotational speed of 1473 rpm is 14.28 W with a measured input power of 264 W. Meanwhile, at a rotational speed of 1435 rpm the output power produced is 120.61 W with a measured input power of 572 W.

Keyword : design, prony brake, dynamometer, engine

References

M. I. Fakhri and T. sukarnoto, "Analisis Chasis Mobil Hemat Energi untuk Kontes KMHE Tipe Prototype Team HMM USAKTI," Jurnal Penelitian dan Karya Ilmiah Lembaga Penelitian Universitas TRISAKTI, pp. 330-336, 2023.

D. Belinda, Siswoyo and B. Setiadi, "Rancang Bangun Dynamometer Model Prony Brake untuk Alat Uji Motor Listrik," in Prosiding The 13th Industrial Research Workshop and National Seminar, Bandung, 2022.

F. Yudhanto, S. A. Dhewanto and S. W. Yakti, "Karakterisasi Bahan Kampas Rem Sepeda Motor Dari Komposit Serbuk Kayu Jati," Jurnal Quantum Teknika, pp. 19-27, 2019.

Giancoli, Fisika Edisi Kelima, jakarta: Erlangga, 2001.

"Honda Power Product Indonesia," 18 Juli 2024. [Online]. Available: https://www.hondapowerproducts.co.id/id/produk/mesin-serbaguna/engine-gx160t2-sd.

A. A. Saputra and M. R. Munandar, "Analisis Dinamik Rem Cakram (Disk Brake) atau Rem Piringan pada Sepeda Motor Supra X 125," Teknobiz : Jurnal Ilmiah Program Studi Magister Teknik Mesin, pp. 83-90, 2022.

Sularso and K. Suga, Dasar Perancanaan dan Pemilihan Elemen Mesin, Jakarta: PT. Pradnya Paramita, 2004.

Published

15-07-2025