Course detail

Aventics Pneumobil Racing

FSI-0ZP Acad. year: 2024/2025 Winter semester

The course provides a detailed introduction to basic pneumatic systems and their individual elements. Students will get acquainted with the principle of operation of the racing air-powered vehicle – Pneumobil –  and will have the opportunity to build a scale model of the monopost themselves. Students will acquire knowledge and practical skills that are applied in the design of a simple mechanism powered by a pneumatic system. They will learn how to control the mechanism using the Arduino development board and will have opportunities for CAD modelling and 3D printing skills improvement.

Learning outcomes of the course unit

Prerequisites

Planned learning activities and teaching methods

Assesment methods and criteria linked to learning outcomes

Language of instruction

Czech

Aims

Specification of controlled education, way of implementation and compensation for absences

The study programmes with the given course

Type of course unit

 

Laboratory exercise

26 hours, compulsory

Teacher / Lecturer

Syllabus

1. Introduction to the principle of operation of the racing Pneumobile, test drives.
Assignment of a semester project.
2. SMC Industrial training – basic principles and functions of pneumatic circuits.
3. Workshop SMC Industrial – pneumatic elements and their properties.
4. Workshop SMC Industrial – simple pneumatic circuits – practical demonstrations.
5. Mechanisms and transfers.
6. CAD modelling and 3D printing workshop.
7. Management workshop with the help of the Arduino.
8. – 11. Construction of racing cars – Pneuracer.
12. Application and verification of the acquired knowledge in the student competition.

Exercise

13 hours, compulsory

Teacher / Lecturer

Syllabus


  • Introduction to the international EMERSON Aventics Pneumobile Competition.

  • Introduction to the workplace, the structure of the subject and the safety of work.

  • Basics of used pneumatic elements and physical principles.

  • Pneumatic diagrams, design of pneumatic circuits.

  • Pneumatic system diagnostics, sensor selection, sensor wiring and evaluation.

  • Construction of pneumatic elements, distribution valves, safety valves, pneumatic cylinders.

  • Theory of racing vehicle construction (engine, gearbox, mechanisms).

  • CAD modelling and assembly

  • Basics of programming of the Arduino development board.

  • Application and verification of knowledge on student projects.