Course detail
CAD
FSI-3CD Acad. year: 2024/2025 Winter semester
The course introduces students to the possibilities of design in CAD systems. Students will gain practical experience in 2D drawing and 3D modelling in an Inventor CAD systems. They become familiar with the creation of parts and assemblies, adaptivity, parameter setting, visualisation, volume and surface modelling and drafting.
The course is designed for beginners who have no experience with CAD systems.
Supervisor
Department
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
Programme B-FIN-P: Physical Engineering and Nanotechnology, Bachelor's
branch ---: no specialisation, 2 credits, compulsory-optional
Programme B-PDS-P: Industrial Design, Bachelor's
branch ---: no specialisation, 2 credits, compulsory
Programme B-KSI-P: Mechanical Engineering Design, Bachelor's
branch ---: no specialisation, 2 credits, compulsory-optional
Programme B-MAI-P: Mathematical Engineering, Bachelor's
branch ---: no specialisation, 2 credits, compulsory
Programme B-ENE-P: Energy, Bachelor's
branch ---: no specialisation, 2 credits, compulsory
Programme B-PRP-P: Professional Pilot, Bachelor's
branch ---: no specialisation, 2 credits, elective
Programme C-AKR-P: , Lifelong learning
branch CZS: , 2 credits, elective
Programme B-ZSI-P: Fundamentals of Mechanical Engineering, Bachelor's
branch MTI: Materials Engineering, 2 credits, elective
Programme B-ZSI-P: Fundamentals of Mechanical Engineering, Bachelor's
branch STI: Fundamentals of Mechanical Engineering, 2 credits, compulsory-optional
Type of course unit
Computer-assisted exercise
26 hours, compulsory
Teacher / Lecturer
Syllabus
- Introduction to 3D modelling.
- Basic functions and settings, sketch creation, dimensioning, parameterization and editing.
- Creating of 3D geometry, extrusion and rotation.
- 3D modelling – cosmetic changes. Fillets, chamfers, rotation.
- Advanced modelling – drawing, shell, patterning, material choice.
- Assembly, welding, adaptability.
- Sheet metal modelling – styles, surface, profile bending, cutting.
- Drawing documentation – basic view, dimensioning, cut, partial cut.
- Visualization and animation