Lecturer(s)
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Dlabaja Štěpán, Ing. Ph.D.
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Course content
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The aim of the courses "Advanced 3D modelling techniques 1, 2 and 3" is to introduce students to the possibilities of creating spatial design using modern computer methods used in industrial practice. The course focuses on mastering complicated shapes based on the use of spline curve techniques, working with an interactive touch screen and the use of recognit to convert hand drawing into exact parametric curves, creating 3D volumes from 2D sketches, mastering advanced areas of technical documentation, working with standard components such as screw joint, pin, bearing, gear, rack and pinion. Contents of part 3: 1. Creation using special superstructures and generic modeling 2. Basic primitives and working with them 3. Processing of the general shape 4. Work with a three-dimensional 3D sketch 5. Creation using a contour sketch 6. Fixation of the general shape on the selected section sketch 7. Creating smooth transitions between a smooth surface and a broken edge 8. Combination of generic shape with standard machine construction 9. Creating a model from data obtained from a 3D scanner. 10. Recognition for importing volumes from standard formats STEP, IGES, parasolid... 11. Advanced visualization and presentation options of the 3D modeler. 12. Creating surface features, lights and cameras. Rendering techniques. 13. Basic file formats for 3D data transfer.
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Learning activities and teaching methods
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- Participation in classes
- 26 hours per semester
- Home preparation for classes
- 24 hours per semester
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prerequisite |
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Knowledge |
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Credit from 3DMT2 |
Credit from 3DMT2 |
Skills |
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Skills acquired in 3DMT2 |
Skills acquired in 3DMT2 |
teaching methods |
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Knowledge |
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Demonstration |
Demonstration |
Exercises on PC |
Exercises on PC |
Skills |
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Practice exercises |
Practice exercises |
Exercises on PC |
Exercises on PC |
assessment methods |
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Knowledge |
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Analysis of the student's performance |
Analysis of the student's performance |
Systematic observation of the student |
Systematic observation of the student |
Grade (Using a grade system) |
Grade (Using a grade system) |
Recommended literature
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Ing. Marek Pagáč, Ph.D. Učebnice SolidWorks.. 2017. ISBN 978-80-270-0918-3.
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Lombard M. SolidWorks Surfacing and Complex Shape Modeling. Indianapolis USA, 2008. ISBN 978-0-470-25823-1.
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Lombard M. SolidWorks 2013 Bible. Indianapolis USA, 2013. ISBN 978-1-118-50840-4.
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Lombard M. Surfacing and Complex Shape Modeling. Indianapolis USA, 2008. ISBN 978-0-470-25823-1.
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