High Torque and Increased Wear Redefine Gearbox Longevity in Electric Motors Torsi Tinggi dan Peningkatan Keausan Mendefinisikan Ulang Umur Panjang Gearbox pada Motor Listrik

Main Article Content

Muhammad Dwi Andika Yudistira
A’rasy Fahruddin

Abstract

This study explores the accelerated wear of gearboxes driven by electric motors compared to gearboxes in combustion engines, highlighting the important role of lubrication quality. The continuous operation of sugarcane processing machines requires durable gearboxes, especially under the high torque load of electric motors. By analyzing gearbox wear through standard load tests and various lubricant qualities, the findings reveal that superior lubricants significantly reduce wear. These results not only demonstrate the need for customized gearbox designs for electric motors, but also show that improvements in lubrication practices can extend gearbox life and increase efficiency in industrial applications globally.


Highlights: 


  • Continuous operation vital for production targets.

  • Electric motorbike gearboxes need frequent maintenance.

  • Quality lubrication crucial for gearbox longevity.

Keywords: Gearbox, Grind, Sugar Factory

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Article Details

How to Cite
[1]
M. D. A. Yudistira and A. Fahruddin, “High Torque and Increased Wear Redefine Gearbox Longevity in Electric Motors”, PELS, vol. 7, pp. 651-657, Mar. 2024.
Section
Mechanical Engineering

References

[1] A. T. N. Huda, O. Novareza, and D. P. Andriani, "Analisis Aktivitas Perawatan Mesin HDS di Stasiun Gilingan Menggunakan Maintenance Value Stream Map (MVSM) (Studi Kasus PG. Kebon Agung Malang)," J. Rekayasa dan Manaj. Sist. Ind., vol. 3, no. 2, pp. 311–321, 2015.
[2] D. Diniaty, "Penentuan Jumlah Tenaga Kerja Berdasarkan Waktu Standar Dengan Metode Work Sampling Di Stasiun Repair Overhoul Gearbox (Studi Kasus: PT. IMECO Inter Sarana)," J. Tek. Ind. J. Has. Penelit. dan Karya Ilm. dalam Bid. Tek. Ind., vol. 3, no. 1, pp. 1–6, 2018. doi: 10.24014/jti.v3i1.5557.
[3] H. Sutanto, "Analisis Tegangan Roda Gigi Miring pada Transmisi Kendaraan Roda Empat berdasarkan Agma dan Ansys," J. Nas., vol. 12, no. 1, pp. 17–25, 2017.
[4] T. K. Setiawan, "Analisis Kerusakan Pada Gearbox Overhead Crane 10 TON DI PT. INKA (Persero) Madiun Dengan Metode Oil Used Analysis," Skripsi, pp. 1–63, 2016.
[5] D. P. Pinaldy, "Dimas Putra Pinaldy Program Studi Teknika Diploma IV," pp. 9–12, 2019.
[6] I. Syafa’at, "Tribologi, Daerah Pelumasan Dan Keausan," J. Momentum UNWAHAS, vol. 4, no. 2, pp. 21–26, 2008.
[7] K. Ikhsan et al., "Rancang Bangun Alat Simulator Gearbox Untuk Abstrak," J. Mesin Sains Terap., vol. 2, no. 2, pp. 1–8, 2018.
[8] R. P. Lukodono, R. Soenoko, J. M. Haryono, and I. U. Jurusan Teknik Mesin Fakultas Teknik, "Analisis Penerapan Metode RCM Dan MVSM Untuk Meningkatkan Keandalan Pada Sistem Maintenance (Studi Kasus PG. X)," J. Rekayasa Mesin, vol. 4, no. 1, pp. 43–52, 2013.
[9] M. Agung, Prastia., et al., "Sistem Monitoring Solar Panel Fakultas Teknologi Industri Universitas Islam Indonesia Menggunakan NI-MYRIO dan LabVIEW," 2018.
[10] M. S. Muhammad and M. S. Rifa’i, "SAYUTI-perawatan mesin," Eval. Manaj. Perawatan Mesin Dengan Menggunakan Metod. Reliab. Centered Maint. Pada PT. Z, vol. 2, no. 1, 2013.