Course detail
Calculations and Simulation in Design of Machine Tools
FSI-GOKAcad. year: 2022/2023
The content of the course is to gain knowledge of the design of machine tools. In this course, students learn the software which serves as a support for the development and construction of machhine tools.
Language of instruction
Number of ECTS credits
Mode of study
Learning outcomes of the course unit
Prerequisites
Co-requisites
Planned learning activities and teaching methods
Assesment methods and criteria linked to learning outcomes
Course curriculum
Work placements
Aims
Specification of controlled education, way of implementation and compensation for absences
Recommended optional programme components
Prerequisites and corequisites
Basic literature
J. Tlustý, Manufacturing processes and equipment. Prentice-Hall, Inc., 1999, p. 928. (EN)
MAREK, Jiří, et al. Konstrukce CNC obráběcích strojů III. 1. Praha: MM publishing, s.r.o., 2014. MM speciál. ISBN 978-80-260-6780-1. (CS)
MAREK, Jiří. Konstrukce CNC obráběcích strojů IV. Praha: MM publishing, s.r.o., 2018. MM speciál. ISBN 978-80-906310-8-3. (CS)
Weck Manfred, & Brecher Christian. (2006). Werkzeugmaschinen Konstruktion und Berechnung (p. 585). Berlin: Springer-Verlag Berlin. (DE)
Recommended reading
MAREK, Jiří. Konstrukce CNC obráběcích strojů IV. Praha: MM publishing, s.r.o., 2018. MM speciál. ISBN 978-80-906310-8-3. (CS)
Elearning
Classification of course in study plans
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
2. The requirements for Machine Tools
3. Machine tool spindles - turning
4. Machine tool spindles - milling
5. The feed axis Machine Tools
6. Rotary axis machine tools
7. Fundamentals of simulation modeling
8. Basics in ADAMS
9. Propulsion systems in the construction of machine tools
10. The proposal kinematics in ADAMS
11. Materials in the construction of machine tools
12. Tool systems
13. Industry 4.0
Computer-assisted exercise
Teacher / Lecturer
Syllabus
2. Calculations in MITCALC software
3. Basic calculations of spindle - machining
4. Design of spindle drive
5. Design of spindle and its bearing
6. Calculation of optimal bearing distance
7. Design of headstock
8. Linear axis design with guidance
9. Fundamentals of ADAMS
10. Simulation verification of drives in ADAMS
11. Simulation of the whole construction node in ADAMS
12. Processing documentation of the proposed machine node
13. Presentation of semester work
Elearning