School of Engineering \ Mechanical Engineering
Course Credit
ECTS Credit
Course Type
Instructional Language
Programs that can take the course
Fundamentals of system dynamics and vibration, Undamped, damped and forced vibrations of single degree of freedom systems, Critical speeds of shafts, Vibration isolation, Resonance, Lagrangian mechanics, Undamped, damped and forced vibrations of multi-degree of freedom systems, Dry friction (Coulomb) damping, Introduction to vibration of continuous systems
Textbook and / or References
S. S. Rao, Mechanical Vibrations (in SI units, 6th Edition), Pearson. - Y. Ercan, Modeling and Dynamics of Engineering Systems, Birsen Publishing House. - S.G. Kelly, Fundamentals of Mechanical Vibrations, Mc Graw Hill.
Introduction to mathematical models and approaches for the study of basic and advanced mechanical vibrations. Modeling of vibration behavior of single degree of freedom and multi-degree of freedom systems.
1. Introduction to mathematical models and approaches for the study of basic and advanced mechanical vibrations.
2. Modeling of vibration behavior of single degree of freedom and multi-degree of freedom systems.
Week 1: Modeling of single degree of freedom systems and equivalent systems (4 hours)
Week 2: Damped and undamped vibration of single degree of freedom systems (4 hours)
Week 3: Free and forced vibration of single degree of freedom systems (4 hours)
Week 4: Vibration isolation (4 hours)
Week 5: Critical speeds of shafts (4 hours)
Week 6: Lagrange mechanics (4 hours)
Week 7: Modeling of multi degree of freedom systems (4 hours)
Week 8: Damped and undamped vibration of multi degree of freedom systems (4 hours)
Week 9: Free and forced vibration of multi degree of freedom systems (4 hours)
Week 10: Dry friction (Coulomb) damping (4 hours)
Week 11: Introduction to vibration of continuous systems (4 hours)
Week 12: Matlab and finite element based program applications related to vibration (4 hours)
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