Development of Learning Media for Pneumatic Control Systems for Separation and Transportation of Goods Based on Programmable Logic Controller (PLC)
DOI:
https://doi.org/10.31963/elekterika.v21i2.5105Keywords:
Pnuematic System, Programmable Logic Controller (PLC), Human Machine Interface (HMI)Abstract
Pneumatic systems have advantages compared to other systems, pneumatic systems can support quality, productivity and efficiency of work. The research process starts from designing, developing existing tools to testing pneumatic system tools controlled using PLC and HMI. The results show that the design and development process started from adding color sensors and HMI from the system to be created. Then make modeling with the Festo Fluidsim application. After the capitalization is carried out, the hardware assembly is divided into two parts, namely the main and supporting hardware. The main hardware consists of a metal separator system, color separator and robotic arm, while the supporting hardware such as tables, conveyors and control panels. Once the hardware is complete, the PLC and HMI programs are made, the PLC uses MELSOFT Series GX Works2 software and the HMI uses Live Studio software. When the hardware and software are complete, testing and data collection of the tool work are carried out. Tool testing is carried out to determine the required bar pressure with a 100% success rate.References
[1] MELINIAR, N. (2023). Innovation in Design and Design of Automatic Pneumatic Gripper Pick and Place System as a Handling and Sorting Tool for Biscuit Quality on Malkist Production Line.
[2] Priswanto, & Darutri Nugroho, & Yogi Ramadhani & Tegar Herdantyo. 2018. Application of PLC HMI (Human Machine Interface) for Monitoring Objects in Conveyor Systems. Faculty of Engineering, Jenderal Soedirman University.
[3] Basuki, M., & Putra, AW (2014). Probabilistic Risk Assessment Model in the Jakarta Sub-Cluster Shipyard Industry. Analysis of Total Preventive Maintenance in Minimizing Critical Tools Downtime and Increasing Reliability in Finish Mill Machines, 47.
[4] Mulianto, E., & Sutanto. (2002). Design of Pneumatic System/Em with Application on Walking Robot. Jakarta: Bina Nusantara University. Mitsubishi Electric. (2021). GX Developer / GX Works2 Programming Software User Manual.
[5] Raharjo, R. (2018). Preliminary Design of Novolak Resin Chemical Plant from Phenol and Formaldehyde with a Capacity of 12,000 Tons/Year.
[6] SETIADI, A. (2017). DEVELOPMENT OF PNEUMATIC LEARNING MATERIALS AS ANDROID-BASED INTERACTIVE LEARNING MULTIMEDIA AT STATE VOCATIONAL HIGH SCHOOL 4 JAKARTA (Doctoral dissertation, STATE UNIVERSITY OF JAKARTA)
[7] Zainurrofiq, Z. (2019). CONTROL SYSTEM DESIGN WITH PLC LOGIC MODIFICATION TO MINIMIZE DAMAGE TO BELT CONVEYOR OF REMBANG PLTU (Doctoral dissertation, Sultan Agung Islamic University).
[8] Mitsubishi Electric. (2021). Mitsubishi FX3U Series Programmable Logic Controller User Manual.
[9] Isna, R. (2019). Implementation of Festo Fluidsim Simulation to Improve Students' Skills in Electric Motor Installation Subjects in Class XI of SMK N 2 Banda Aceh (Doctoral dissertation, UIN AR-RANIRY).
[10] Priswanto, & Darutri Nugroho, & Yogi Ramadhani & Tegar Herdantyo. 2018. Application of PLC HMI (Human Machine Interface) for Monitoring Objects in Conveyor Systems. Faculty of Engineering, Jenderal SoedirmanUniversity.
Downloads
Published
Issue
Section
License
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.