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Course info
KTO / ANC1
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Course description
Department/Unit / Abbreviation
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KTO
/
ANC1
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Academic Year
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2014/2015
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Academic Year
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2014/2015
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Title
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Automation of NC Programming
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Form of course completion
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Exam
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Form of course completion
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Exam
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Accredited / Credits
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Yes,
4
Cred.
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Type of completion
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Combined
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Type of completion
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Combined
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Time requirements
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Lecture
2
[Hours/Week]
Tutorial
2
[Hours/Week]
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Course credit prior to examination
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Yes
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Course credit prior to examination
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Yes
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Automatic acceptance of credit before examination
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Yes in the case of a previous evaluation 4 nebo nic.
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Included in study average
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YES
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Language of instruction
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Czech
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Occ/max
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Automatic acceptance of credit before examination
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Yes in the case of a previous evaluation 4 nebo nic.
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Summer semester
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1 / -
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0 / -
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3 / -
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Included in study average
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YES
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Winter semester
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0 / -
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0 / -
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0 / -
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Repeated registration
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NO
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Repeated registration
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NO
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Timetable
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Yes
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Semester taught
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Summer semester
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Semester taught
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Summer semester
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Minimum (B + C) students
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7
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Optional course |
Yes
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Optional course
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Yes
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Language of instruction
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Czech
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Internship duration
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0
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No. of hours of on-premise lessons |
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Evaluation scale |
1|2|3|4 |
Periodicity |
každý rok
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Evaluation scale for credit before examination |
S|N |
Periodicita upřesnění |
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Fundamental theoretical course |
No
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Fundamental course |
No
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Fundamental theoretical course |
No
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Evaluation scale |
1|2|3|4 |
Evaluation scale for credit before examination |
S|N |
Substituted course
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None
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Preclusive courses
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KTO/PNCS
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Prerequisite courses
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N/A
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Informally recommended courses
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KTO/ZNC
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Courses depending on this Course
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N/A
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Histogram of students' grades over the years:
Graphic PNG
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XLS
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Course objectives:
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To teach students how to set up and create NC technology and NC data for machining parts using selected CAM systems
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Requirements on student
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Class credit:
Processing and defence of a semester work
Exam range and content:
1. Written part
NC program processing (in taught NC program language)
2. Oral part
Make out two examinational questions
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Content
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1. New trends in CNC control systems
2. Parametric programming - meaning and framework of parametric program
3. Dialog programming - partition, meaning, symbolic programming languages - DIALOG
4. Programming systems partition, characteristic, programming systems advantage and disadvantage
5. Kovoprog - characteristic and system development, description of function set, lathe turning
6. Kovoprog - milling module
7. Kovoprog - macro framework
8. Data transfer - DNC network, their characteristic and partition
9. SolidCAM - system characteristic, interfaces between other CAD/CAM systems
10. SolidCAM - programming of rotating parts - lathe turning
11. SolidCAM - programming of non-rotating parts - milling
12. SolidCAM - multi axes machining, scribing and user modules of system design
13. Technical economic aspects of NC machines use and manually or dialog programming
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Activities
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Fields of study
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Guarantors and lecturers
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-
Guarantors:
Doc. Ing. Jiří Česánek, Ph.D. (100%),
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Lecturer:
Doc. Ing. Jiří Česánek, Ph.D. (100%),
Ing. Zdeněk Hájíček, Ph.D. (100%),
Ing. Jan Hnátík, Ph.D. (100%),
Prof. Ing. Miroslav Zetek, Ph.D. (100%),
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Tutorial lecturer:
Doc. Ing. Jiří Česánek, Ph.D. (100%),
Ing. Zdeněk Hájíček, Ph.D. (100%),
Ing. Jan Hnátík, Ph.D. (100%),
Josef Narovec (100%),
Prof. Ing. Miroslav Zetek, Ph.D. (100%),
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Literature
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Recommended:
Žára, Jiří; Beneš, Bedřich; Sochor, Jiří; Felkel, Petr. Moderní počítačová grafika. 2., přeprac. a rozš. vyd. Brno : Computer Press, 2004. ISBN 80-251-0454-0.
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Recommended:
Jandečka, Karel; Kožmín, Pavel; Česánek, Jiří. Programování NC strojů. V Plzni : Západočeská univerzita, 2000. ISBN 80-7082-692-4.
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On-line library catalogues
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Time requirements
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All forms of study
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Activities
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Time requirements for activity [h]
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Practical training (number of hours)
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52
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Undergraduate study programme term essay (20-40)
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20
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Preparation for an examination (30-60)
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40
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Total
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112
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Prerequisites - other information about course preconditions |
Basic knowledge in machining technology, NC programming and mathematics middle school level |
Competences acquired |
Students are able to: - use CAM systems to create two or three dimensional NC technology for parts with complicated shapes. - Apply CAM system commands to real components - Modify model data to be compatible with a particular CAM system - Create NC data using a postprocessor |
Teaching methods |
- Lecture
- Seminar
- Practicum
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Assessment methods |
- Seminar work
- Combined exam
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