Analisis Kerusakan Sistem Hidrolik Pada Excavator dengan Menggunakan Metode FMEA

Authors

  • AWAL IBNU SIROJ AL MUHDOR INSTITUT TEKNOLOGI NASIONAL YOGYAKARTA

Keywords:

Indonesian

Abstract

The hydraulic system is a vital component of an excavator, responsible for moving key components such as the boom, arm, and bucket. Damage to the hydraulic system can reduce work efficiency and accelerate wear and tear on other components. This study aims to analyze damage to the excavator's hydraulic system using the Failure Mode and Effects Analysis (FMEA) method. The components studied included the hydraulic tank, filter, hydraulic hose, hydraulic pump, main control valve, and hydraulic cylinder. Each component was analyzed based on its severity, occurrence, and detection capability, and then a Risk Priority Number (RPN) was calculated.

The results showed that the damage with the highest RPN value before mitigation was the hydraulic hose (RPN = 192), followed by the hydraulic tank (RPN = 168), and the hydraulic cylinder (RPN = 148). The main causes of damage included corrosion, improper hose installation, oil contamination, and internal component wear due to inadequate lubrication. After mitigation measures such as sensor installation, preventive maintenance adjustments, and improved installation design, the RPN value decreased significantly. The FMEA method has proven effective in identifying and prioritizing failure risks, so it can be used as a reference in excavator hydraulic system maintenance programs.

References

Aditya, J.P., Wijayanto, D. S., and Towip. (2024). Analisis kerusakan pompa hidrolik pada excavator R 330LC-9S (Studi kasus di rental alat berat Yogyakarta).

Administrator. (n.d.). Jenis, Fungsi, dan Cara Kerja dari Alat Berat Excavator. Available at: https://alatberat.bdmi.co.id/jenis-fungsi-cara-kerja-alat-berat-excavator/ (Accessed: June 11, 2025).

Basic Mechanic Course. (2020). Struktur dan cara kerja main control valve Cat 320D. Available at: https://www.basicmechaniccourse.com/2020/09/struktur-dan-cara-kerja-main-control.html (Accessed: June 11, 2025).

Darmawi, K.F. and Darsan, H., (2022). Analisa kerusakan dan perbaikan hydraulic lift cylinder pada wheel loader Caterpillar 950. Jurnal Mekanova: Mekanikal, Inovasi dan Teknologi, Vol. 8 No. 2.

Guangzhou Komai Filter Co., Ltd. (n.d.). Excavator Hydraulic Oil Filter T412538021 P573481 KHJ10950 5I8670X 5I 8670 5I8670. Available at: https://indonesian.komaifilter.com/sale-13419380-excavator-hydraulic-oil-filter-t412538021-p573481-khj10950-5i8670x-5i-8670-5i8670.html (Accessed: June 11, 2025).

Huzij, R., Spano, A. and Bennett, S. (2013). MODERN DIESEL TECHNOLOGY: HEAVY EQUIPMENT SYSTEMS 2ND EDITION. 2nd edn. New York,USA: Delmar, Cengage Learning.

Kurniawan, C. & Surojo, S.T., (2017). Analisis kerusakan O-ring seal pada hydraulic cylinder telescopic boom reach stacker Kalmar DRF 450-60 S5M. Skripsi, Universitas Gadjah Mada.

Komatsu Europe International N.V. (n.d.). PC170LC 11 standard crawler excavator.. Available at: https://www.komatsu.eu/en/excavators/wheeled-excavators/pw148-11/ (Accessed: June 11, 2025).

Komatsu Europe International N.V. (n.d.). PW148 11 Wheeled Excavator. Available at: https://www.komatsu.eu/en/excavators/wheeled-excavators/pw148-11/ (Accessed: June 11, 2025).

Olifanta, N., Pribadyo, and Darsan, H. (2022) Analisis kerusakan sistem hidrolik pada boom silinder unit ekskavator Komatsu PC 200-7 di PT. Wirataco Mitra Mulia.

Quality Technic. (n.d.). Ternyata ini bagian bagian excavator. Available at: https://www.qualitytechnic.com/blog/ternyata-ini-bagian-bagian-excavator (Accessed: June 11, 2025).

Unknown, (2018). Sirkuit hidrolik alat berat. TEKNIK ALAT BERAT. Available at : https://smkteknikalatberat.blogspot.com/2018/04/sirkuit-hidrolik-alat-berat_13.html (Accessed: June 11, 2025).

Zarkasyi, A., Sariyusda, Jufriadi, and Hamdani. (2019). Analisa kerusakan silinder hidrolik pada excavator Hitachi EX 200 LC dengan metode fishbone di PT. Alhas Jaya Group. Jurnal Mesin Sains Terapan, Vol. 3 No. 1.

Published

2025-12-03

How to Cite

AWAL IBNU SIROJ AL MUHDOR. (2025). Analisis Kerusakan Sistem Hidrolik Pada Excavator dengan Menggunakan Metode FMEA. CENDEKIA MEKANIKA, 6(2). Retrieved from https://journal.itny.ac.id/index.php/cendekia/article/view/6063