Academic year 2018/2019 |
Supervisor: | doc. Ing. Petr Svoboda, Ph.D. | |||
Supervising institute: | ÚK | |||
Teaching language: | English | |||
Aims of the course unit: | ||||
The aim of the course is to introduce the facilities of graphical systems for constructional process support. Students will be made familiarized with widely available graphical system with engineering tools in application for technical documentation of machine parts. They will get basic experience in 3D designing. | ||||
Learning outcomes and competences: | ||||
The course offers all information necessary to manage constructional projects by using computer system AutoCAD and Inventor. The students learn how to compose constructional documentation in an optimal way. They will realize that CAD is only a support used for the constructional process which speeds up the work and makes it more effective, but definitely cannot substitute creative designers work and required technical knowledge. | ||||
Prerequisites: | ||||
Knowledge of the appurtenances of component drawings and assembly units. | ||||
Course contents: | ||||
Introduction to CAD engineering. Overview of different graphics hardware and software systems, CAD in CIM system. Practical application of AutoCAD program system with engineering application tools used in the design and preparation of engineering documents of parts and assembly units. Practising in 3D Inventor program. | ||||
Teaching methods and criteria: | ||||
The course is taught through exercises which are focused on practical topics presented in lectures. | ||||
Assesment methods and criteria linked to learning outcomes: | ||||
Course-unit credit requirements: seminar attendance and projects delivery. | ||||
Controlled participation in lessons: | ||||
Attendance at seminars is required and controlled. Maximum of two authorized absences without compensation of lesson are tolerated. | ||||
Type of course unit: | ||||
Computer-assisted exercise | 13 × 2 hrs. | compulsory | ||
Course curriculum: | ||||
Computer-assisted exercise | 1. Introduction to 3D modeling. The issue of 3D modeling, CAD/CEA/CAM visualization. 2. AutoCAD. Options and settings. 3. AutoCAD. Review and commands. 4. Inventor. Setting and layout. Gauge board. Creation of layout. Dimensioning. Parameterization and changes. 2D attachments. Geometry projection. Extrusion. 5. Creating of 3D geometry. Mirroring, array hole. 6. 3D modeling - cosmetic changes. Fillets, chamfers, rotation. 7. Advanced modeling. Drawing, shell, patterning, material choice. 8. Creating reports. Assembly, welding, adaptability. 9. Metal parts. Styles, surface, profile bending, cutting. 10. Drawing documentation. Basic view, dimensioning, cut, partial cut. 11. Work on the model of specified part. 12. Work on drawing of specified part. 13. Completion of the specified part. Class credit. |
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Literature - recommended: | ||||
1. MUNFORD, Paul. Mastering autodesk inventor 2016 and autodesk inventor lt 2016. 1. Indianapolis, IN: John Wiley, 2015. ISBN 978-111-9059-806. |
The study programmes with the given course: | |||||||||
Programme | Study form | Branch | Spec. | Final classification | Course-unit credits | Obligation | Level | Year | Semester |
B3A-A | full-time study | B-MAI Mathematical Engineering | -- | Cr | 2 | Compulsory | 1 | 1 | W |
B3S-A | full-time study | B-STI Fundamentals of Mechanical Engineering | -- | Cr | 2 | Compulsory | 1 | 1 | W |
B3S-P | full-time study | B-STI Fundamentals of Mechanical Engineering | -- | Cr | 2 | Compulsory-optional | 1 | 1 | W |
Faculty of Mechanical Engineering
Brno University of Technology
Technická 2896/2
616 69 Brno
Czech Republic
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