Code: E311068 Vibration of Vehicles
Lecturer: doc. Ing. Václav Bauma CSc. Weekly load: 3P+1C Completion: A, EX
Department: 12105 Credits: 5 Semester: S
Description:
Vibrations of single-degree-of-freedom mechanical system. Vibrations of multi-degree-of-freedom undamped mechanical system. Approximate methods of discretization of the continuum. Finite elements method. Bending vibrations. Whirling of the shafts. Vibrations of multi-degree-of-freedom damped mechanical system. Torsional vibrations. Flexible machine mounting. Tuning of the systems. Introduction into nonlinear vibrations. Controlled vibration suppresion.
Contents:
1. Vibrations of single-degree-of-freedom mechanical system
2. Vibrations of multi-degree-of-freedom undamped mechanical system
3. Approximate methods of discretization of the continuum
4. Finite elements method
5. Bending vibrations, Whirling of the shafts
6. Vibrations of multi-degree-of-freedom damped mechanical system
7. Torsional vibrations
8. Flexible machine mounting
9. Tuning of the systems
10. Introduction into nonlinear vibrations
11. Controlled vibration suppresion
Seminar contents:
1. Vibrations of multi-degree-of-freedom undamped mechanical system
2. Finite elements method - direct derivation of stiffness matrix
3. Finite elements method - plane frame
4. Bending vibrations, Whirling of the shafts
5. Torsional vibrations
6. Flexible machine mounting
Recommended literature:
Thomson, W.T., Dahleh, M. D.: Theory of Vibration with Applications. Prentice-Hall, Englewood Cliffs 1998.
Innmann D. J.: Engineering Vibrations. Prentice-Hall, Englewood Cliffs 1996
Keywords:
Vibrations of mechanical systém, Finite elements method, Bending vibrations, Whirling of the shafts, Torsional vibrations, Flexible machine mounting, Tuning of the systems

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