RANCANG BANGUN SISTEM KONTROL DAN MONITORING SUHU OLI MESIN HEAT PRESS BERBASIS ARDUINO UNO R3 DI PT. COVAC INDONESIA

BAHRI, FAISAL (2020) RANCANG BANGUN SISTEM KONTROL DAN MONITORING SUHU OLI MESIN HEAT PRESS BERBASIS ARDUINO UNO R3 DI PT. COVAC INDONESIA. S1 thesis, Universitas Mercu Buana Bekasi.

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Abstract

ABSTRAK Salah satu teknologi yang banyak digunakan oleh perusahaan produksi Silicon Rubber yaitu mesin Heat Press. Mesin Heat Press adalah mesin yang bekerja dengan dua unsur utama yaitu panas dan tekanan, yang mana panas tersebut dihasilkan dari heater yang mendapatkan sumber tegangan. Sedangkan tekanan yang didapatkan pada mesin Heat Press dihasilkan oleh sistem hidrolik dengan aktuator silinder. Kinerja mesin tersebut dipengaruhi dari viskositas oli, yang mana pada zat cair, peningkatan temperatur mengurangi kohesi molekuler dan ini diwujudkan dengan berkurangnya viskositas fluida. Viskositas ini tergantung pada perubahan suhu, oleh karena itu, gunakan viskositas oli yang tepat terutama yang tidak banyak perubahan dengan suhu diperlukan sekali sistem hidrolik untuk mendapatkan kinerja yang baik. Berdasarkan pengamatan yang dilakukan di PT. Covac Indonesia, temperatur oli tersebut seringkali kurang diperhatikan sehingga apabila terjadi panas yang berlebih akan mengakibatkan kerusakan pada actuator silinder dan kinerja mesin heat press tidak dapat bekerja dengan maksimal. Pada penelitian ini microcontroller yang digunakan adalah Arduino Uno R3 built in ESP8266 yang terhubung dengan aplikasi Blynk. Berdasarkan hasil penilitian, perancangan, implementasi, dan pengujian dan analisis yang telah dilakukan, maka penulis dapat mengambil kesimpulan bahwa range suhu yang diijinkan adalah di angka CTC 0 0 15  50 (suhu lebih dari 15 C ABSTACT One technology that is widely used by Silicon Rubber production companies is the Heat Press machine. Heat Press machine is a machine that works with two main elements, namely heat and pressure, which heat is generated from a heater that gets a voltage source. While the pressure obtained on the Heat Press machine is generated by a hydraulic system with a cylinder actuator. The performance of the engine is influenced by the oil viscosity, which in liquid substances, an increase in temperature reduces molecular cohesion and this is realized by reducing the viscosity of the fluid. This viscosity depends on changes in temperature, therefore, use the right oil viscosity especially those that do not change much with temperature once a hydraulic system is needed to get good performance. Based on observations made at PT. Covac Indonesia, the oil temperature is often overlooked so that if there is excessive heat it will cause damage to the cylinder actuator and the performance of the heat press machine can not work optimally. In this study the microcontroller used is Arduino Uno R3 built in ESP8266 which is connected to the Blynk application. Based on the results of research, design, implementation, and testing and analysis that has been done, the authors can conclude that the allowable temperature range is in numbers CTC 0 0 15  50 (temperatures over 15 C 0 and less than 50 C 0 ) to be able to carry out the production process. The maximum temperature limit is 50 C 0 when the temperature exceeds the maximum limit, the engine will automatically shut down. The time needed by the system to be able to detect temperatures at an average heat press machine is 0.847 seconds. Keywords: Arduino Uno R3, Hydraulic System, Oil Temperature, Heat Press Machine, Blynk Application

Item Type: Thesis (S1)
Call Number CD: FE/ELK 20 018
NIM/NIDN Creators: 41416310019
Uncontrolled Keywords: Kata Kunci : Arduino Uno R3, Sistem Hidrolik, Suhu Oli, Mesin Heat Press, Aplikasi Blynk
Subjects: 600 Technology/Teknologi > 620 Engineering and Applied Operations/Ilmu Teknik dan operasi Terapan > 621 Applied Physics/Fisika terapan > 621.3 Electrical Engineering, Lighting, Superconductivity, Magnetic Engineering, Applied Optics, Paraphotic Technology, Electronics Communications Engineering, Computers/Teknik Elektro, Pencahayaan, Superkonduktivitas, Teknik Magnetik, Optik Terapan, Tekn
Divisions: Fakultas Teknik > Teknik Elektro
Depositing User: siti maisyaroh
Date Deposited: 07 Jun 2022 03:36
Last Modified: 07 Jun 2022 03:36
URI: http://repository.mercubuana.ac.id/id/eprint/62765

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