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Theory and Design Methodology in Mechatronics

Type of study Doctoral
Language of instruction English
Code 354-0906/03
Abbreviation TaMKM
Course title Theory and Design Methodology in Mechatronics
Credits 10
Coordinating department Department of Robotics
Course coordinator prof. Ing. Zdenko Bobovský, PhD.

Subject syllabus

1. Basic principles and practices of design methodology .
2. Creative methods of solving technical problems - psychological methods. Patterns of development of technical systems. Discrepancies in inventive tasks. Principles elimination of technical contradictions , solving physical contradictions transformations.
3. Functionally cost analysis (FNA ) - Computer Aided TechOptimizer: components, structure, functions, parameters, diagnosis, proper selection and award the formulation of a task. Component analysis and structure analysis function, and parameters.
4. Improving by limiting the number of elements (cost reduction) and the development of additional functions (increasing the number and degree of fulfillment of functions) improving object ( product or process). The formulation of innovative and award task: contradiction , model , needed.
5. Synthesis of technical systems ( created innovative solution algorithm assignment - ARIZ ) . Overcoming the technical contradictions heuristic procedures. Invention Machine - tool for promoting synthesis of technical systems.
6. Overcoming physical contradictions standard procedures. Solving the model problem ties transformations of substances and fields .
7. Solution features selected effects of natural sciences. Internet and his assistant use the phase problem analysis , solution synthesis and verification options.
8. Mechatronic systems and their characteristics in terms of design methods. Use TechOptimizer and Invention Machine in the analysis and design. Transforming Innovation enter into CAD system. Comprehensive line computer promoting innovative technologies.
9. Proper designing of various aspects - Design for " X" ( DFA , DFM , DFQ ...)

Literature

[1] RANTANEN, Kelive; CONLEY, David W. a DOMB, Ellen R. Simplified TRIZ. 1. Taylor & Francis, 2021. ISBN 9781032096339 .
[2] Petrov, Vladimir. TRIZ. Theory of Inventive Problem Solving. 1. Springer Nature Switzerland, 2019. ISBN 9783030042530 .
[3] KOZIOLEK, Sebastian. Advances and Impacts of the Theory of Inventive Problem Solving: The Triz Methodology, Tools and Case Studies. 1. Springer Nature, Springer Nature, 2018, ISBN 9783319965314 .
[4] Gadd,K. TRIZ for Engineers: Enabling Inventive Problem Solving, First Edition, UK: Wiley, 2011, ISBN 978-0-470-74188-7.

Advised literature

[1] VERMA, Jyoti. Matlab Simulation Fundamental: Simulation Model. 1. Independently Published, 2020. ISBN 9798609980045 .
[2] BUŠOV, B.; DOSTÁL, V. Innovation of Pressing with TRIZ Methodology. In 12th International Conference on Mechatronics. Procedia CIRP. 2018. s. 11-18. ISBN: 978-3-319-65960-2 . ISSN: 2212-8271 .
[3] BUŠOV, B.; BARTLOVÁ, M.; BRÜSTLOVÁ, J.; DOBIS, P. APPLICATION OF TRIZ METHODOLOGY IN INNOVATION OF PRESSING. In Proceedings of the 9th International Conference Physics Teaching in Engineering Education. Žilina, Slovakia: University of Žilina, Slovakia, 2017. s. 61-69. ISBN: 978-80-554-1322-8 .
[4] EDER, E. W., HOSNEDL, S. Design Engineering (A Maual for Enhanced Creativity). 1. vyd. London: CRC Press, 2007. 587 s. ISBN 1-4200-4765-5. Goldfire Innovator 4.0, User Guide, Invention Machine Corporation, Boston, 2013