ASSEGAF, ILHAM (2025) RANCANG BANGUN MESIN VOLUMETRIC CUTTER SAMPEL. S1 thesis, Universitas Mercu Buana Jakarta.
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Abstract
An Arduino-based volumetric sample cutting machine for Mooney viscosity testing was developed to address the need for increased reliability and consistency in the measurement process. The use of manual methods in cutting Mooney viscosity test samples often results in variations in sample dimensions which can affect the accuracy of the test results. Therefore, this machine is designed to change the sample cutting method from manual to automatic, improve the reliability of Mooney viscosity test results, and reduce sample dimensional variations. This volumetric sample cutting machine was built by integrating several components, including: solenoid valve, Arduino Uno, Relay, pneumatic cylinder, Proximity sensor, power supply, volumetric knife, and air regulator. The solenoid valve and pneumatic cylinder play a role in the cutting mechanism, while the Arduino Uno and Relay function as system controllers. A Proximity sensor is used to detect the position of the sample, and a Power Supply provides power for the entire system. Volumetric blades are specially designed to produce samples with consistent volume, and air regulators are used to regulate air pressure in pneumatic cylinders. The results of the machine implementation show that the average sample size is 3.9 cm, close to the company standard of 4 cm. This machine also succeeded in reducing sample cutting time by 13 seconds faster than the manual method, and also the engine response to input is 1.4 seconds. Key Word: Mooney Viscosity, Arduino, Automation, Pneumatic Cylinder, Proximity Sensor Mesin pemotong sampel volumetrik berbasis Arduino untuk pengujian Viskositas Mooney dikembangkan untuk menjawab kebutuhan akan peningkatan keandalan dan konsistensi dalam proses pengukuran. Penggunaan metode manual dalam pemotongan sampel uji Viskositas Mooney sering kali menghasilkan variasi dimensi sampel yang dapat mempengaruhi keakuratan hasil pengujian. Oleh karena itu, mesin ini dirancang untuk mengubah metode pemotongan sampel dari manual menjadi otomatis, meningkatkan keandalan hasil pengujian Viskositas Mooney, serta mengurangi variasi dimensi sampel. Mesin pemotong sampel volumetrik ini dibangun dengan mengintegrasikan beberapa komponen, antara lain: solenoid valve, Arduino Uno, relay, silinder pneumatik, sensor Proximity, power supply, pisau volumetrik, dan air regulator. Solenoid valve dan silinder pneumatik berperan dalam mekanisme pemotongan, sementara Arduino Uno dan relay berfungsi sebagai pengendali sistem. Sensor Proximity digunakan untuk mendeteksi posisi sampel, dan Power Supply menyediakan daya untuk seluruh sistem. Pisau volumetrik dirancang khusus untuk menghasilkan sampel dengan volume yang konsisten, dan air regulator digunakan untuk mengatur tekanan udara pada silinder pneumatik. Hasil implementasi mesin menunjukkan bahwa rata-rata sampel yang dihasilkan memiliki ukuran 3,9 cm, mendekati standar perusahaan yaitu 4 cm. Mesin ini juga berhasil memangkas waktu pemotongan sampel sebanyak 13 detik lebih cepat dibandingkan metode manual, dan juga respon mesin terhadap masukan sebesar1,4 detik. Kata kunci: Mooney Viscosity, Arduino, Automation, silinder pneumatik, Sensor Proximity
Item Type: | Thesis (S1) |
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Call Number CD: | FT/ELK. 25 017 |
NIM/NIDN Creators: | 41421120039 |
Uncontrolled Keywords: | Mooney Viscosity, Arduino, Automation, silinder pneumatik, Sensor Proximity |
Subjects: | 500 Natural Science and Mathematics/Ilmu-ilmu Alam dan Matematika > 530 Physics/Fisika > 533 Pneumatics, Gas Mechanics/Pneumatik, Mekanika Gas 600 Technology/Teknologi > 650 Management, Public Relations, Business and Auxiliary Service/Manajemen, Hubungan Masyarakat, Bisnis dan Ilmu yang Berkaitan > 653 Shorthand/Penulisan Cepat, Penulisan dengan Tangan > 653.3 Machine Systems/Sistem Mesin |
Divisions: | Fakultas Teknik > Teknik Elektro |
Depositing User: | khalimah |
Date Deposited: | 10 Feb 2025 02:21 |
Last Modified: | 10 Feb 2025 02:21 |
URI: | http://repository.mercubuana.ac.id/id/eprint/94038 |
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