Vibration of vehicles
Type | Compulsory |
Semester | Summer |
Contact hours | 52 (3 + 1) |
Number of credits | 5 |
Type of termination | Assessment + Exam |
Form | Lectures + exercises |
Lecturers | Doc. Dr. Ing. Václav Bauma |
Anotation |
TARGET
Educate the basics of mechanical vibrations of vehicles
CONTENT
- Vibration of mechanical systems with one degree of freedom
Dynamic and characteristic equations
Free and forced, undamped and damped vibrations - Vibration of discrete mechanical systems with N degrees of freedom
Dynamic and characteristic equations
Free and forced, undamped and damped vibrations. Modal analysis - Methods of continuum discretization. Method of finite elements
FEM. Mathematical and engineering formulation. Shape functions, transformation matrices, local and global stiffness and mass matrices - Excitation by unbalanced rotating mass and unbalanced mechanisms
Excitation of vibration of mechanical systems by unbalanced dynamic forces
Balancing of slider-crank mechanisms - Torsional, bending vibrations. Rotor dynamics.
Modelling of torsional, beam and rotor mechanical systems
Design and optimization of parameters of vibrational mechanical systems - Machine mounting
Modelling of machine mounting
Design of parameters of machine mounting - Controlled vibration suppression
Vibration suprression by isolation, absorption and compensation. Actuators.
Synthesis of controlled vibration suppression - Introduction into nonlinear vibrations
Nonlinear elements in mechanical vibration systems
New dynamic phenomena of nonlinear vibrations
Study materials
- Lecturing material and hand-outs
- Thomson, W.T., Dahleh, M.D.: Theory of Vibrations with Applications, Prentice Hall, Englewood Cliffs 1998
Inmann, D.J.: Engineering Vibrations, Prentice Hall, Englewood Cliffs 1996 (basic textbooks)






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Gabriela Achtenová
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IT Bandung | Head of Mechanical
Design Research Group
Andi Isra Mahyuddin
aim@ftmd.itb.ac.id
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Yann Marco
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