Course detail
Aventics Pneumobil Racing
FSI-0ZPAcad. year: 2018/2019
Lectures and excercises will be divided into separate learning blocks dedicated to individual aspects of racing car design. Students will familiarize with a pneumatic circuit, and its components supported by an experienced lecturrs and technicians. Students will acquire a practical experience with PLC systems, CAD systems and FEA simulation. Theoretical knowledge will be supported by series of experiments and testing drives on the pneumatic vehicle.
Students will have the opportunity to test and put their theoretical knowledge in practice. Special focus will be given to effectivity of design, innovative solutions and teamwork. The course will be concluded by a race between two student teams.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Learning outcomes of the course unit
Prerequisites
Co-requisites
Planned learning activities and teaching methods
Assesment methods and criteria linked to learning outcomes
Course curriculum
Work placements
Aims
Specification of controlled education, way of implementation and compensation for absences
Recommended optional programme components
Prerequisites and corequisites
Basic literature
Recommended reading
PARR, Andrew. Hydraulics and Pneumatics. Jordan Hill: Elsevier Science & Technology, 1999. ISBN 9780750644198. (dostupné online) (EN)
Classification of course in study plans
- Programme B3S-P Bachelor's
branch B-STI , 2 year of study, winter semester, elective (voluntary)
branch B-STI , 3 year of study, winter semester, elective (voluntary) - Programme M2I-P Master's
branch M-KSI , 1 year of study, winter semester, elective (voluntary)
- Programme BO1-P Bachelor's
branch B-OBN , 1 year of study, winter semester, elective (voluntary)
Type of course unit
Exercise
Teacher / Lecturer
Syllabus
2. Basic pneumatic components used in racing vehicle, basic physical principles.
3. Pneumatic schemas, design of pneumatic circuits.
4. Design of pneumatic components, pneumatic accumulators, control valves, safety valves, pneumatic cylinders.
5. CAD modelling of components, sheetmetal parts, drawings
6. Structure of assemblies, CAD modelling of assemblies, constraints.
7. Basics of stress-strain analysis of frame structures.
8. PLC control of pneumatic components.
9. Design of PLC program.
10. Wheels, tires, vehicle suspension, steering of vehicles.
11. Drive of pneumobile, gearbox, shifting, synchronization.
12. Diagnostics of pneumatic system, sensors, measurement circuit, evaluation of results.
13. Student’s competition.