Academic year 2018/2019 |
Supervisor: | Ing. Radim Blecha, Ph.D. | |||
Supervising institute: | ÚVSSR | |||
Teaching language: | Czech | |||
Aims of the course unit: | ||||
The aim of the course is to make students familiar with a parametric system ProEngineer and VDP (Visual Decision Platform), theirs use in the design process from proposing an industrial design with support of Virtual Reality, over a draft design and detailed construction, to working out a production documentation. | ||||
Learning outcomes and competences: | ||||
Students will have an overview of parametric systems and VDP (Visual Decision Platform)master the work in Proengineer and IC:IDO. | ||||
Prerequisites: | ||||
Basic knowledge of machine design. | ||||
Course contents: | ||||
The course makes students familiar with parametric voluminous simulation with the help of structural members. It deals with practical application of computer technology required for mastering basic methods of creation of parts, assemblies and drawing documentation with implementation create models into virtual reality. | ||||
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: | ||||
The course-unit credit is awarded on condition of having attended the exercises 100% and worked out a project for a given topic. | ||||
Controlled participation in lessons: | ||||
Participation in the exercises is compulsory. Justified absence can be compensated by personal consultation with the lecturer or selfwork. | ||||
Type of course unit: | ||||
Guided consultation | 1 × 17 hrs. | compulsory | ||
Controlled Self-study | 1 × 35 hrs. | compulsory | ||
Course curriculum: | ||||
Guided consultation | 1. Introduction to parametric modeling 2. Introduction to immersion virtual reality technology (IVR) 3. Generation of basic parts in CREO 4. Generation of advanced parts in CREO 5. Generation of assemblies in CREO 6. Generation of technical drawings in CREO 7. Individual work 8. Individual work 9. Introduction to VDP IC:IDO 10. Implementation of 3D models into the IVR environment 11. Individual work 12. Basics of model presentation in IVR environment 13. Work presentation and credit |
|||
Controlled Self-study | 1. Introduction to parametric modeling 2. Introduction to immersion virtual reality technology (IVR) 3. Generation of basic parts in CREO 4. Generation of advanced parts in CREO 5. Generation of assemblies in CREO 6. Generation of technical drawings in CREO 7. Individual work 8. Individual work 9. Introduction to VDP IC:IDO 10. Implementation of 3D models into the IVR environment 11. Individual work 12. Basics of model presentation in IVR environment 13. Work presentation and credit |
|||
Literature - fundamental: | ||||
1. CREO - Parts design (Online Help) | ||||
2. CREO - Assembly create (Online Help) | ||||
3. CREO - Drawing (Online Help) | ||||
4. Manuál IC.IDO Visual Decision Platform 9.1. Stuttgart, 2012. | ||||
5. Burdea, G.; Coiffet, P.: Virtual Reality Technology. Willey, New York: 1994. |
The study programmes with the given course: | |||||||||
Programme | Study form | Branch | Spec. | Final classification | Course-unit credits | Obligation | Level | Year | Semester |
M2I-K | combined study | M-VSR Production Machines, Systems and Robots | P linked to branch B-SSZ | GCr | 4 | Compulsory | 2 | 1 | W |
M2I-K | combined study | M-VSR Production Machines, Systems and Robots | -- | GCr | 4 | Compulsory | 2 | 1 | W |
Faculty of Mechanical Engineering
Brno University of Technology
Technická 2896/2
616 69 Brno
Czech Republic
+420 541 14n nnn
+420 726 81n nnn – GSM Telef. O2
+420 604 07n nnn – GSM T-mobile
Operator: nnnn = 1111