National Repository of Grey Literature 128 records found  previous11 - 20nextend  jump to record: Search took 0.01 seconds. 
Industry 4.0 and Industrial Robots in Machinary
Kotrba, Martin ; Vetiška, Jan (referee) ; Knoflíček, Radek (advisor)
The aim of this work is to describe the principles of the Industry 4.0 initiative defaced by the Ministry of Industry and Trade. Creating a search of the current state of industrial robots and manipulators according to their design and application. Design an ideological robotic workplace at BUT premises in kontext with Industry 4.0
End Effectors in Robotics
Hradil, Jan ; Kubela, Tomáš (referee) ; Pochylý, Aleš (advisor)
This bachelor’s thesis provides a summary of end effectors used in industrial robotics. The classification is made from various points of view, but the most important one is according to the industrial application. Regarding previous condition, an analysis of gripper modules is performed. Those units are representatives of the widest application – manipulation. Further on there is shown a possibility of connection between a gripper and a robot in laboratories of Institute of Production Machines, Systems and Robotics and calculation of gripping forces. This thesis contains a summary of the most used industrial robots and manipulators as well.
Design of virtual model robotic workplace
Chromčík, Adam ; Holub, Michal (referee) ; Vetiška, Jan (advisor)
This diploma thesis deals with the design of a virtual model of a robotic workplace. Robot and robotic workplaces are researched. Further, the design and safety phases of these workplaces are discussed. A conceptual model of the robotic workplace with robot IRB 4400/60 is designed, which is placed in the machine laboratory C1 of the Institute of Production Machines, Systems and Robotics at the Faculty of Mechanical Engineering of the Brno University of Technology. The virtual model is created in Process Simulate 13.0. It is designed to manipulate the dice, weld and operate the vertical machine tool.
Control of industrial robot drives by KEBA systems
Opluštil, Aleš ; Pochylý, Aleš (referee) ; Kubela, Tomáš (advisor)
This thesis deals with the evaluation of the use of original drive on the older industrial robot KUKA KR 15/2 with a new control system from KEBA. An original control system is removed from robot controller KR C1 and replaced by KeMotion system, which is in this thesis completely described. It is necessary to choose an appropriate way of connection between electric drives of industrial robot and KeMotion control system and finally realize it by practical way. Based on communication with the control system, these engines had been assessed as appropriate. There is also a section created to the description of the control software and its implementation on KUKA robot and to creating of visualization of model.
Robotization of machine tools
Tabarka, Roman ; Kočiš, Petr (referee) ; Knoflíček, Radek (advisor)
This bachelor thesis focuses on the robotization of machine tools. This work describes the evaluation of the current state in terms of robotization of CNC machine tools. In addition to the assignment, a case study from practice was prepared.
Control of industrial robot drives by KEBA systems
Heinrich, Martin ; Pochylý, Aleš (referee) ; Kubela, Tomáš (advisor)
This diploma thesis deals with the implementation of the KeMotion control system of KEBA company for industrial robot KUKA KR 15/2. It gets to work original robot's drives KUKA with this new system. There was a communication network built up to operate the system itself. It was created between driving system component. Next step was a creation of the connection between control case and a new control system especially robot link up feedback. Later on there was a control programme for PLC created and adjusted including configuration of drives and converter. There was a need to find out the resolver parametr to this settings That one is used to the indirect measurement.
Glass Plates Manipulator
Zach, Jiří ; Kunta, Zdeněk (referee) ; Foller, Bronislav (advisor)
The object of this diploma work is to project a manipulator for the chaffs of glass, which will be mounted to the cutting machine RKP 01. The function of this manipulator will be a transposition of the chaffs of glass from the supply table to the haul. This manipulator check by calculations. RPK is the cutting machine for the circular-shaped cutouts, from which the saucers are made. Everything will be operated automatically, position of a handling moulding will be located by the sense organs and everything will be controlled by the automat, which was already designed by the firma FESTO FEC 30.
Deskription of vacual manipulation end-effectors of industrial robots
Pačíska, Tomáš ; Blecha, Radim (referee) ; Kolíbal, Zdeněk (advisor)
The work contains a competent recherche, sorting and description of different types of passive and active vacuum end-effectors of industrial robots and their's work principle. This work also defines basic parameters of ejectors and components for providing their functionality.
Design of a robotic workplace for the operation of injection molding machines with subsequent assembly and inspection
Musil, Marek ; Vetiška, Jan (referee) ; Bradáč, František (advisor)
The thesis deals with the design of a robotic workplace for the operation of injection moulding machines. It is concerned with the design of the workplace component deployment and the evaluation of the best variant using a multi-criteria assessment. In detail, attention is paid to the end effectors of industrial robots and the assembly workplace, where finishing operations take place. Finally, the risk analysis and technical and economic evaluation of the proposed workplace are carried out.
Robotic workstation for silicon filling of part of “Valve cartridge”
Černý, Jiří ; Tůma, Zdeněk (referee) ; Knoflíček, Radek (advisor)
This diploma thesis is focused on robotized technological workstation (RTW) for production of “Valve cartridge” product. The production workstation, studied in the diploma thesis, is located at IMI Precision Engineering company and is focused on silicon filling. In the introduction a present workstation is evaluated and a present status of industrial robots and robotized workstation is analyzed. In main part of the thesis two solutions for robotic automation are designed, with respect of assigned parameters. The final solution is chosen by method of multicriteria decisional analysis. Project documentation is created for chosen variant including manipulation work cycle and block diagram of RTW control. The thesis includes calculation of capital return. At the final part of the thesis ergonomics and safety of workstation is analyzed; the risks of robotized technological workstation components are also evaluated. Technologists and quality engineer requirements are taken into account during working on the thesis.

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