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Lecturer(s)
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Staněk Michal, prof. Ing. Ph.D.
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Course content
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- Preparation of polymer blends (thermoplastic, thermosetting, rubber compounds). - Machines for batch processing of polymers. - Machines for continuous processing of polymers. - Processing lines, sorting machines. - Energy analysis and energy balance of machines and processing lines. - Balance process, the balance of p, v, T machines.
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Learning activities and teaching methods
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Methods for working with texts (Textbook, book), Individual work of students
- Preparation for examination
- 90 hours per semester
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| prerequisite |
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| Knowledge |
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| Knowledge of polymers and metals, machine parts, corresponding technologies and further related branches is required. |
| Knowledge of polymers and metals, machine parts, corresponding technologies and further related branches is required. |
| learning outcomes |
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| explain and describe in detail the main production technologies for polymer processing with regard to the machinery used |
| explain and describe in detail the main production technologies for polymer processing with regard to the machinery used |
| demonstrate an in-depth knowledge of the design of machinery and equipment for the processing industry |
| demonstrate an in-depth knowledge of the design of machinery and equipment for the processing industry |
| explain and describe the classification of machinery and equipment into different production lines |
| explain and describe the classification of machinery and equipment into different production lines |
| describe the methodology for selecting the appropriate machines and peripherals for a specific production |
| describe the methodology for selecting the appropriate machines and peripherals for a specific production |
| describe the different parts of production machinery and equipment |
| describe the different parts of production machinery and equipment |
| Skills |
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| perform capacity and design calculations of the designed production equipment and lines |
| perform capacity and design calculations of the designed production equipment and lines |
| carry out inspection of the designed machine parts from the point of view of mechanical stress |
| carry out inspection of the designed machine parts from the point of view of mechanical stress |
| use in-depth knowledge to design production lines and their individual parts |
| use in-depth knowledge to design production lines and their individual parts |
| design a suitable production machine based on the specified parameters |
| design a suitable production machine based on the specified parameters |
| differentiate the individual machine components with regard to the production to be carried out |
| differentiate the individual machine components with regard to the production to be carried out |
| teaching methods |
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| Knowledge |
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| Methods for working with texts (Textbook, book) |
| Methods for working with texts (Textbook, book) |
| Individual work of students |
| Individual work of students |
| Skills |
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| Individual work of students |
| Individual work of students |
| Practice exercises |
| Practice exercises |
| assessment methods |
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| Knowledge |
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| Oral examination |
| Oral examination |
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Recommended literature
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Beaumont, J.R. Successful Injection Molding. Munich, 2002. ISBN 3.44619433-9.
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Johannaber, F. Injection Molding Machines. Munich. ISBN 3-446-17733-7.
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Maňas, M., Helštýn, J. Výrobní stroje a zařízení. Brno : VUT, 1990.
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Maňas, M. Výrobní stroje a zařízení I. Vyd. 1.. Zlín: UTB ve Zlíně, 2007. ISBN 978-80-7318-596-1.
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Michaeli, W. Extrusion Dies for Plastics and Rubber. Munich, 1992. ISBN 3-449-16190-2.
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Osswald, T. Polymer Processing. Munich, 2006. ISBN 3-446-40381-9.
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RAUWENDAAL, Chris J., Paul J. GRAMANN, Bruce Allen DAVIS a Tim A. OSSWALD. Extrusion of polymers: theory and practice. 2011. ISBN 978-1-56990-459-6.
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Tomis, F., Rulík, F. Gumárenské a plastikářské stroje. Praha: SNTL, 1981.
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