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Basics of simulation of forming processes

Language of instruction čeština
Code 652-2306
Abbreviation ZSTP
Course title Basics of simulation of forming processes
Coordinating department Department of Metallurgical Technologies
Course coordinator Ing. Petr Opěla, Ph.D.

Anotace

The course introduces students to the issue of forming process simulations in a clear way and practically introduces students to the phase of the simulation preparing (preprocessing) of basic forming processes.

Povinná literatura

[1] FABÍK, R. Modelling of Forming Processes. Electronic study aid. Available from: https://www.vsb.cz/e-vyuka/en. Ostrava, 2013. 74 p.
[2] DHATT, G., G. TOUZOT and E. LEFRANÇOIS. Finite Element Method. John Wiley & Sons, Inc., 2012. Available from doi: 10.1002/9781118569764.
[3] BACCOUCH, M. Finite Element Methods and Their Applications. IntechOpen, 2021, 316 p. Available from doi: 10.5772/intechopen.83274.
[4] WAGONER, R.H. and J.L. CHENOT. Metal Forming Analysis. Cambridge: Cambridge University Press, 2001. ISBN 0-521-64267-1.
[5] KOBAYASHI, S., S. OH and T. ALTAN. Metal Forming and the Finite-Element Method. Oxford: Oxford University Press, 1989. ISBN 0-19-504402-9 .

Doporučená literatura

[1] DYJA, H., et al, Modelowanie procesów kucia swobodnego. Częstochowa: Wydawnictwo wipmifs, 2004, ISBN 83-87745-52-9 .
[2] LENARD, J.G., M. PIETRZYK and L. CSER. Mathematical and Physical Simulation of the Properties of Hot Rolled Products. Elsevier Science Ltd, 1999. ISBN 0-08-042701-4.
[3] VUONG, A.-V. (ed.). Adaptive Hierarchical Isogeometric Finite Element Methods. Wiesbaden: Vieweg+Teubner Verlag. Chapter 3, Mathematical Modelling and Finite Element Analysis. Available from doi: 10.1007/978-3-8348-2445-5.
[4] CENGEL, Y.A. and A.J.‎ GHAJAR. Heat and Mass transfer: Fundamentals and Applications. Columbus: McGraw-Hill Education, 2014. ISBN 978-00-733-9818-1 .
[5] GINZBURG, V.B. Steel-rolling technology: theory and practice. Boca Raton: CRC/Taylor & Francis, 1989. ISBN 0-8247-8124-4.