Analisa Pengaruh Tingkat Kontaminasi Oli Terhadap Kinerja Sistem Hidrolik Alat Berat Scissorlift Genie Gs-1930 E-Drive

Authors

  • Fatmah Nuril Universitas Gresik
  • Achmad Haqqul Yaqin Universitas Gresik
  • Lisa Puspita Ariyanto Universitas Gresik
  • Merlyanalinda Universitas Gresik

DOI:

https://doi.org/10.52158/jamere.v6i2.1604

Keywords:

Hydraulic Oil Contamination, Hydraulic System, Genie GS-1930 E-Drive Scissor Lift, Condition-Based Maintenance, Preventive Maintenance

Abstract

The hydraulic system of the Genie GS-1930 E-Drive Scissor Lift plays a crucial role in the platform lifting process and is significantly influenced by hydraulic oil quality. Oil contamination can lead to reduced system efficiency, elevated operating temperatures, and sluggish actuator response. This study aims to analyze the impact of oil contamination levels on hydraulic system performance using a field-observation-based Condition-Based Maintenance (CBM) approach. A quantitative descriptive method was employed, involving the visual assessment of oil conditions (color, clarity, and viscosity) alongside measurements of system pressure, oil temperature, and actuator response time. Data collection was conducted over a four-week period on a single Scissor Lift unit operating at PT. X. The study results are expected to demonstrate that increased oil contamination negatively affects hydraulic system performance. Furthermore, changes in the oil's visual characteristics can serve as early indicators to support more effective and cost-efficient preventive maintenance

References

[1] N. Asri and E. S. L. Octaviana, “Aktivitas Olahraga Di Masa Pandemi COVID-19 Terhadap Tingkat Stres Mahasiswa Pendidikan Olahraga Universitas Islam Kalimantan Muhammad Arsyad Al Banjari Banjarmasin,” Hal. Olahraga Nusant. J. Ilmu Keolahragaan, vol. 4, no. 1, pp. 53–65, 2021.

[2] D. A. Duque-Sarmiento and D. A. Baño-Morales, “Assessment of hydraulic oil properties during operation of a mini loader,” Lubricants, vol. 12, no. 9, p. 320, 2024.

[3] S. Tian et al., “Effect of the countersunk hole depth on tensile-tensile fatigue behavior of riveted specimens of AA2024-T3 alloy,” Eng. Fail. Anal., vol. 115, p. 104639, 2020.

[4] F. Ng, J. A. Harding, and J. Glass, “Improving hydraulic excavator performance through in line hydraulic oil contamination monitoring,” Mech. Syst. Signal Process., vol. 83, pp. 176–193, 2017.

[5] J. Lesmana and Z. Zhakendry, “Analisa Pengaruh Kontaminasi oli Dalam Sirkulasi Oli Hydraulic Power Unit Pada Train Loading Station (TLS 101) di Tambang Air Laya Tanjung Enim,” J. Ilm. Tek. dan Sains, vol. 2, no. 3, pp. 157–162, 2025.

[6] H.-G. Jeon, J.-K. Kim, S.-J. Na, M.-S. Kim, and S.-H. Hong, “Application of condition monitoring for hydraulic oil using tuning fork sensor: A study case on hydraulic system of earth moving machinery,” Materials (Basel)., vol. 15, no. 21, p. 7657, 2022.

[7] S. S. Kalligeros, “Predictive Maintenance of Hydraulic Lifts through Lubricating Oil Analysis,” Machines, vol. 2, no. 1. pp. 1–12, 2014. doi: 10.3390/machines2010001.

[8] R. A. W. Dari, “Analisa Optimalisasi Tekanan Minyak Lumas Terhadap Kinerja Mesin Induk di KM. Kendhaga Nusantara 04.” Politeknik Pelayaran Surabaya, 2025.

[9] X. Ai et al., “Flavor physics at the CEPC: a general perspective,” Chinese Phys. C, vol. 49, no. 10, p. 103003, 2025.

[10] S. Lütke Notarp, “ISO 4406: Hydraulic fluid power–Fluids–Method for coding the level of contamination by solid particles,” ISO Copyr. Off. Genf, 1999.

[11] M. Oscarsson, “A hydropneumatic suspension parameter study on heavy multi-axle vehicle handling.” 2015.

[12] I. Ikhwanuddin, M. A. Jatmiko, A. N. F. Irwan, F. Hidayah, and J. Marbun, “Inovasi Sistem Electronic Nose untuk Monitoring Kualitas Oli dan Deteksi Dini Kerusakan Ring Piston pada Mesin Kapal Nelayan (Studi Kasus: Kampung Nelayan Desa Kronjo),” INSOLOGI J. Sains dan Teknol., vol. 4, no. 4, pp. 735–748, 2025.

Published

2026-08-01

Issue

Section

Articles

How to Cite

Analisa Pengaruh Tingkat Kontaminasi Oli Terhadap Kinerja Sistem Hidrolik Alat Berat Scissorlift Genie Gs-1930 E-Drive. (2026). Journal of Applied Mechanical Engineering and Renewable Energy, 6(2), 53-56. https://doi.org/10.52158/jamere.v6i2.1604