MECHANICAL ENGINEERING
Academic Year 2024/2025 - Teacher: Rosario SINATRAExpected Learning Outcomes
The course aims to train engineering students in kinematic and dynamic modeling of the main mechanical systems and machines, the study of the vibrations of mechanical systems with one or more degrees of freedom, the study of robotic mechanical systems.
Computer numerical exercises will be carried out during the course.
Course Structure
Lectures for 21 hours;
Numerical exercises for 39 hours.
If the teaching will be carried out in mixed mode or remotely, it may be necessary to introduce changes with respect to previous statements.
Required Prerequisites
Attendance of Lessons
Detailed Course Content
Applied Mechanics
- Mechanisms and Machines
- Friction
- Efficiency
- Wear
- Gears
- Flexibles
- Belts
- Brakes
Mechanical vibrations
- Free 1 DoF
- Damped 1 DoF
- Forced 1 DoF
- Applications of forced 1 DoF systems
- Free 2 DoF
- Forced 2 DoF
Introduction to Matlab for Mechanical Systems
Exercises
Textbook Information
[1] BELFIORE N., DI BENEDETTO A. PENNESTRÌ E.- Fondamenti di Meccanica Applicata alle Macchine, II edizione, Casa Editrice Ambrosiana.
[2] E. PENNESTRÌ, Dinamica e Tecnica Computazionale, Vol. 1 & 2, CEA.
[3] Course notes of the lessons.
Course Planning
Subjects | Text References | |
---|---|---|
1 | Applied Mechanics | [1], [2], [3] |
2 | Vibrations of Linear Mechanical Systems | [2], [3] |
Learning Assessment
Learning Assessment Procedures
- a written test consisting in the study of a mechanical system with the methods studied during the course;
- an oral test based on knowledge of the contents, the relevance of the answers to the questions asked, the ownership of technical language, the ability to make connections between the contents of the program.
The final evaluation will be determined taking into account the evaluation of the due tests.
Learning assessment may also be carried out on line, should the conditions require it.
Examples of frequently asked questions and / or exercises
The candidate describes the dynamics of a simple mechanical model
The candidate describes a forced and non-forced mass-spring-damper system
The candidate writes the equations of the kinematics of a simple mechanical system (four bar linkage, slider cranck etc.)
The candidate describes the wear
the candidate writes the friction with an example
The candidate describes the eq of E-L and N-E