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PENERAPAN METODE RELIABILITY CENTERED MAINTENANCE ( RCM ) PADA MESIN CAKE BREAKER CONVEYOR DI PABRIK KELAPA SAWIT ( PKS ) Sunaryo Sunaryo; Legisnal Hakim; Ari Andriyas Puji; Denur Denur
Jurnal Teknik Industri Terintegrasi Vol. 4 No. 2 (2021): November 2021
Publisher : Research Center University of Pahlawan Tuanku Tambusai

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31004/jutin.v4i2.3220

Abstract

Oil palm plantations and their processing units are expected to grow rapidly, advances in science and technology are very fast along with sophisticated equipment created to simplify and speed up a production process in a palm oil factory, one of which is the Cake Breaker Conveyor (CBC) which functions to break/separate oil palm kernels. core of the shell in oil palm kernel processing. Problems that often occur in the process of separating pulp with palm kernel are in the transfer Cake Breaker Conveyor (CBC). This study tries to propose a machine maintenance system using the application of the RCM (Realibility Centered Maintenance) method on the CBC Cake Breaker Conveyor machine, where the RCM (Realibility Centered Maintenance) method is an identification technique with the intention of saving costs and maintenance to minimize the risk and impact of failure. in facilities and equipment utilities. From the test results the Mean Time to Failure (MTTF) value of the CBC engine clutch (Cake Breaker Conveyor) is 1,803 Hours. While the calculation results of the Mean Time to Repair (MTTR) value of the CBC engine clutch (Cake Breaker Conveyor) is 4:00 Hours Types of Preventive Maintenance and Time Based Maintenance For the optimal maintenance interval for the CBC (Cake Breaker Conveyor) engine clutch is 19 days. Keywords : Cake Breaker Conveyor, Realibility Centered Maintenance, Palm Oil Mill
Pembuatan dan Pengujian Pembangkit Listrik Tenaga MikroHidro (PLTMH) Turbin Turgo Erwanto, Eka; Ridwan, Abrar; Sunaryo, Sunaryo
Jurnal Teknik Mesin Vol 17 No 2 (2024): Jurnal Teknik Mesin
Publisher : Politeknik Negeri Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30630/jtm.17.2.1470

Abstract

The construction and testing of a micro-hydro power plant (PLTMH) is one of the uses of water power sourced from irrigation channels of waste water from turbines located on the underground floor of the Koto Panjang PLTA, Kampar Regency. The construction and testing of a micro-hydro power plant by utilizing a small water discharge with the height of the irrigation channel as an energy source to rotate the turbine and generator. This study aims to increase lighting on the underground floor of the PLTA because on the lowest floor there are several points that do not yet have lighting, therefore the researcher made a micro-hydro power plant and tested how much power is obtained from the small water discharge. The study was conducted by measuring the water discharge so that it can be known how much voltage will be produced from the PLTMH that was made. The method used in this study is an experimental method, namely by making a micro-hydro power plant and testing it at that location. A micro-hydro power plant with a water discharge of 0.010 m3/s using a 12 Volt DC generator and an average turbine rotation of 243.0 Rpm can produce a voltage of 3,830 Volts. It can power one 3.8 Volt LED lamp with 2600 mAh.
PROSES PEMBUATAN PLTB HORIZONTAL Rian Saputra, Kiki; Sunaryo, Sunaryo; Hakim, Legisnal
Manutech : Jurnal Teknologi Manufaktur Vol. 16 No. 02 (2024): Manutech: Jurnal Teknologi Manufaktur
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33504/manutech.v16i02.402

Abstract

The increase in electrical energy demand occurs due to high population growth, but this is not balanced with the increase in the supply of electrical energy, the installed power capacity remains the same, while community needs continue to increase. PLTMH (Microhydro Power Plant) and PLTB (Wind Power Plant) are power plants with renewable energy sources. This is seen from an economic and security perspective. Because currently fossil energy reserves are decreasing while the need for fuel consumption continues to increase, this has an impact on the energy crisis. PLTB has the main advantage because of its renewable nature. This means that exploitation of this energy source will not reduce wind resources like the use of fossil fuels. Based on considerations for the fulfillment of electrical energy, an economical, safe and reliable generator was built.