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Robotizacija procesa brizganja plastike in pakiranja končnih izdelkov
ID DOLENC, URBAN (Author), ID Fajfar, Iztok (Mentor) More about this mentor... This link opens in a new window

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Abstract
To delo obravnava avtomatizacijo proizvodnih procesov s pomočjo robotskih sistemov. Cilj naloge je bil razviti rešitev za robotizacijo procesa brizganja plastike in pakiranja delov ohišij servo motorjev. Sistem vključuje uporabo treh robotov: enega 6-osnega robota proizvajalca ABB in dveh robotov tipa SCARA proizvajalca Epson. Robotski sistemi so zasnovani za izvajanje različnih nalog, kot so manipulacija kontaktnih pinov, brizganje kosov ter pakiranje končnih izdelkov. Naloga se osredotoča na optimizacijo časa cikla in programiranje robotskih sistemov. Delo podrobno opisuje strukturo industrijske celice, ki vključuje komponente, kot so brizgalni stroj, štanca in optična kontrola, ter delovanje posameznih robotov v kontekstu teh procesov. Robotski programi so bili razviti v dveh različnih programskih okoljih: RobotStudio za ABB robota in Epson RC+ za robote Epson, kjer sta uporabljena jezika RAPID in SPEL+. Med izvajanjem naloge so bile identificirane določene omejitve, ki so se pojavljale predvsem v procesu pakiranja kosov v končno embalažo, in smo jih reševali z vodenjem sile robota.

Language:Slovenian
Keywords:Vodenje sile robota, Epson RC+, RobotStudio, brizganje plastike, robotizacija
Work type:Master's thesis/paper
Organization:FE - Faculty of Electrical Engineering
Year:2024
PID:20.500.12556/RUL-164404 This link opens in a new window
Publication date in RUL:24.10.2024
Views:58
Downloads:26
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Secondary language

Language:English
Title:Robotisation of the Plastic Injection Molding Process and Final Product Packaging
Abstract:
The thesis focuses on automating industrial processes using robotic systems. The primary objective of the research was to develop a robotic solution for the plastic injection molding and packaging of servo motor housing parts. The system integrates three robots: one 6-axis ABB robot and two SCARA robots by Epson. Each robot is responsible for specific tasks, including handling contact pins, removing molded parts from the injection machine, and packaging the final products. The thesis focuses on optimizing cycle time and programming robotic systems. It provides a detailed description of the industrial cell structure, which includes components such as the injection molding machine, stamping unit, and optical inspection system, as well as the functioning of individual robots within the context of these processes. The robotic programs were developed in two different programming environments: RobotStudio for the ABB robot and Epson RC+ for the Epson robots, utilizing the RAPID and SPEL+ languages, respectively. During the execution of the project, certain limitations were identified, particularly in the process of packaging parts into the final containers, which were addressed by implementing force control of the robot.

Keywords:Robot force control, Epson RC+, RobotStudio, plastic injection molding, robotic automation

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