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Lecturer(s)
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Dlabaja Štěpán, Ing. Ph.D.
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Course content
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In each lesson the student will learn the basics of working in Solidworks in the form of simple examples: Week 1 - Introduction to volumetric modelers; their advantages and disadvantages; Introduction to Solidworks and its user interface Week 2 - Creating 2D sketches; internal relationships and dimensioning Weeks 3 - 4 - Basic Operations: Eject and Remove with Eject Week 5 - 6 - Creating features using profile rotation Weeks 7 - 9 - Creating more complex surfaces; drawing and joining Week 10 - Creating an advanced part model Week 11 - 12 - Technical Documentation Week 13- Export and preparation for 3D printing
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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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| Prerequisites are not set |
| Prerequisites are not set |
| Skills |
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| Prerequisite is basic computer work |
| Prerequisite is basic computer work |
| learning outcomes |
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| Knowledge |
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| Define the basic concepts and functions of SolidWorks (user interface, tools, configurations). |
| Define the basic concepts and functions of SolidWorks (user interface, tools, configurations). |
| Describe the process of creating and editing 2D sketches and using them to create 3D models. |
| Describe the process of creating and editing 2D sketches and using them to create 3D models. |
| Explain the principles of basic operations such as Extrude, Revolve, Sweep and Loft. |
| Explain the principles of basic operations such as Extrude, Revolve, Sweep and Loft. |
| Explain the procedures for using quotations and constraints in 2D sketches for accurate modelling. |
| Explain the procedures for using quotations and constraints in 2D sketches for accurate modelling. |
| Describe the process of exporting and preparing models for 3D printing. |
| Describe the process of exporting and preparing models for 3D printing. |
| Skills |
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| Operate and navigate Solidworks |
| Operate and navigate Solidworks |
| Create a 3D model of a base part from a 2D sketch by extrude and revolve |
| Create a 3D model of a base part from a 2D sketch by extrude and revolve |
| Create a surface by sweep and loft |
| Create a surface by sweep and loft |
| Design parts suitable for CNC machining |
| Design parts suitable for CNC machining |
| Create and export technical documentation for basic parts, including quotations and annotations. |
| Create and export technical documentation for basic parts, including quotations and annotations. |
| 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) |
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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 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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SACHIDANAND, Jha. Rhinoceros 3D Exercises: 200 3D Practice Exercises For RHINOCEROS 3D and Other Feature-Based 3D Modeling Software. Independently Published, 2019. ISBN 9781071167403.
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