346-3003/01 – Machining (OBR)

Gurantor departmentDepartment of Machining, Assembly and Engineering MetrologyCredits5
Subject guarantorprof. Ing. Marek Sadílek, Ph.D.Subject version guarantorprof. Ing. Marek Sadílek, Ph.D.
Study levelundergraduate or graduateRequirementCompulsory
Year3Semesterwinter
Study languageCzech
Year of introduction2019/2020Year of cancellation
Intended for the facultiesFSIntended for study typesBachelor
Instruction secured by
LoginNameTuitorTeacher giving lectures
HAJ0058 Ing. Jiří Hajnyš, Ph.D.
JAN0646 Ing. Radim Janeczko
SAD76 prof. Ing. Marek Sadílek, Ph.D.
SMR0032 Ing. Lukáš Smrček
TRE045 Ing. Antonín Trefil, Ph.D.
Extent of instruction for forms of study
Form of studyWay of compl.Extent
Full-time Credit and Examination 2+2
Part-time Credit and Examination 12+0

Subject aims expressed by acquired skills and competences

The subject of machining is to increase the knowledge in the field of individual machining technologies (turning, milling, drilling, grinding, planing, shaping, high precision machining methods and unconventional methods of machining.)

Teaching methods

Lectures
Tutorials

Summary

This subject includes an analysis study of cutting properties of tools and of the machinability of workpiece materials. In another part of the subject is applications of acquired information and regularities for all methods of machining in extreme conditions during the special production of shapes and free formed surface, production of holes, threaded surfaces , etc. An integral part of this course is an analysis of the possibilities and advantages of machining on flexible production systems, robotic technological workplaces and inflexible production lines. The subject also focuses on advanced and progressive machining methods such as high-speed and high-speed machining and the fundamentals of unconventional machining methods.

Compulsory literature:

[1] SHAW, Milton C. Metal Cutting Principles. Oxford, Clarendon Press, 1984. [2] ALTINAS Y.: Manufacturing automation, University of British Columbia. Cambridge University Press 2000. p. 286. ISBN 0 521 65029 1. [3] SANDVIK Coromant, Technical Editorial dept. Modern Metal Cutting – A Practical Handbook. Tofters Tryckery AB, Sweden, 1994, 927 s. ISBN 91–972290–0–3. [4] CHILDS, Thomas; MAEKAWA, Kalsuhiro; OBIKAWA, Toshiyuki; YAMANE, Yasuo. Metal Machining. Theory and Applications. 2000. 338 Euston Road, London NW13BH. ISBN 0-340-69159. [5] KALPAKJIAN, Serope. Manufacturing Engineering and Technology. Third Edition. Addison – Wesley Publishing Company, Reading, Massachusetts, 1995, 1239 p. ISBN 0-201-84552-0. [6] SADÍLEK, M. Unconventional methods of machining – Part II. Additional information Practicals/ Tutorial. VŠB – TU Ostrava, 2022, p. 111. [7] SADÍLEK, M. Unconventional methods of machining - Part I. VŠB – TU Ostrava, 2022, p. 134.

Recommended literature:

[1] TRENT, E.M., WRIGHT, P.K.: Metal Cutting. Butterworth-Heinemann. Fourth Edition. Boston, Oxford, Auckland, Johannesburg, Melbourne, New Delhi, 2000. pp. 446. ISBN 0-7506-7069-X. [2] STEPHENSON, D.A., AGAPIOU, J.S. Metal Cutting Theory and Practice. New York : Marcel Dekker, Inc., 1997. 898 s. ISBN 0-8247-9579-2.

Way of continuous check of knowledge in the course of semester

Exercises: Students' knowledge is continuously verified in exercises through projects (individual projects on a given topic) and tests. Oral exam: students take a test and, upon successful completion, continue with an oral exam, where they draw two questions and, after successfully answering them, obtain the necessary points.

E-learning

Study materials are shared on lms.vsb.cz.

Other requirements

there are no student requirements

Prerequisities

Subject codeAbbreviationTitleRequirement
346-3001 TechO Technology of Machining Compulsory

Co-requisities

Subject has no co-requisities.

Subject syllabus:

Lectures: 1. Introduction – information about subject, The influence of environment on the machining process. 2. Machinability of the workpiece material – machinability testing 3. Cutting tool materials, Tool live - tool live testing 4. The basic characteristics of optimization of cutting conditions. 5. Basics of programming NC / CNC machine tools. 6. High-speed machining. 7. Machining of materials with higher hardness and strength. 8. Methods of clamping cutting tools (tool holders). 9. Threaded surfaces machining. 10. Holes machining, machining of conical surfaces. 11. Free form surfaces machining. 12. Machining on automated flexible production systems and inflexible production lines. 13. Progressive machining methods - electrothermal machining principles (EDM, LBM, IBM, PBM), electrochemical machining (ECM), chemical machining (CM). 14. Progressive machining methods - mechanical principles of machining (AJM, AWJM, USM).

Conditions for subject completion

Full-time form (validity from: 2019/2020 Winter semester)
Task nameType of taskMax. number of points
(act. for subtasks)
Min. number of pointsMax. počet pokusů
Credit and Examination Credit and Examination 100 (100) 51
        Credit Credit 35 (35) 18
                Test Written test 10  4
                Program č.1 Laboratory work 10  5
                Program č.2 Laboratory work 15  9
        Examination Examination 65 (65) 33 3
                Test Written examination 15  5
                Ústní zkouška Oral examination 50  28
Mandatory attendence participation: To get a credit, students must develop 2 projects (10b + 15b) + Verification of acquired knowledge: written test (min. 11 points, max. 30 points) After obtaining credit, they can take an exam that consists of a written part (test) and an oral part. Students must achieve at least 6b in the test. so that they can continue to the oral part, where they can get a maximum of 50 b. At least 80% participation in exercises from the total number of weeks in the semester

Show history

Conditions for subject completion and attendance at the exercises within ISP: To get a credit, students must develop 2 projects (10b + 15b) + Verification of acquired knowledge: written test (min. 11 points, max. 30 points) After obtaining credit, they can take an exam that consists of a written part (test) and an oral part. Students must achieve at least 6b in the test. so that they can continue to the oral part, where they can get a maximum of 50 b.

Show history

Occurrence in study plans

Academic yearProgrammeBranch/spec.Spec.ZaměřeníFormStudy language Tut. centreYearWSType of duty
2024/2025 (B0715A270011) Engineering (S10) Additive Technology ATM K Czech Ostrava 3 Compulsory study plan
2024/2025 (B0715A270011) Engineering (S09) Engineering technology STT P Czech Ostrava 3 Compulsory study plan
2024/2025 (B0715A270011) Engineering (S09) Engineering technology STT K Czech Ostrava 3 Compulsory study plan
2024/2025 (B0715A270011) Engineering (S09) Engineering technology STT K Czech Šumperk 3 Compulsory study plan
2024/2025 (B0715A270011) Engineering (S10) Additive Technology ATM P Czech Ostrava 3 Compulsory study plan
2024/2025 (B0715A270011) Engineering (S09) Engineering technology STT P Czech Šumperk 3 Compulsory study plan
2023/2024 (B0715A270011) Engineering (S09) Engineering technology STT P Czech Ostrava 3 Compulsory study plan
2023/2024 (B0715A270011) Engineering (S09) Engineering technology STT K Czech Ostrava 3 Compulsory study plan
2023/2024 (B0715A270011) Engineering (S09) Engineering technology STT P Czech Šumperk 3 Compulsory study plan
2023/2024 (B0715A270011) Engineering (S09) Engineering technology STT K Czech Šumperk 3 Compulsory study plan
2023/2024 (B0715A270011) Engineering (S10) Additive Technology ATM P Czech Ostrava 3 Compulsory study plan
2023/2024 (B0715A270011) Engineering (S10) Additive Technology ATM K Czech Ostrava 3 Compulsory study plan
2022/2023 (B0715A270011) Engineering (S09) Engineering technology STT P Czech Ostrava 3 Compulsory study plan
2022/2023 (B0715A270011) Engineering (S09) Engineering technology STT K Czech Ostrava 3 Compulsory study plan
2022/2023 (B0715A270011) Engineering (S09) Engineering technology STT P Czech Šumperk 3 Compulsory study plan
2022/2023 (B0715A270011) Engineering (S09) Engineering technology STT K Czech Šumperk 3 Compulsory study plan
2022/2023 (B0715A270011) Engineering (S10) Additive Technology ATM P Czech Ostrava 3 Compulsory study plan
2022/2023 (B0715A270011) Engineering (S10) Additive Technology ATM K Czech Ostrava 3 Compulsory study plan
2021/2022 (B0715A270011) Engineering (S09) Engineering technology STT P Czech Ostrava 3 Compulsory study plan
2021/2022 (B0715A270011) Engineering (S09) Engineering technology STT P Czech Šumperk 3 Compulsory study plan
2021/2022 (B0715A270011) Engineering (S09) Engineering technology STT K Czech Ostrava 3 Compulsory study plan
2021/2022 (B0715A270011) Engineering (S09) Engineering technology STT K Czech Šumperk 3 Compulsory study plan
2020/2021 (B0715A270011) Engineering (S09) Engineering technology STT P Czech Šumperk 3 Compulsory study plan
2020/2021 (B0715A270011) Engineering (S09) Engineering technology STT K Czech Šumperk 3 Compulsory study plan
2020/2021 (B0715A270011) Engineering (S09) Engineering technology STT P Czech Ostrava 3 Compulsory study plan
2020/2021 (B0715A270011) Engineering (S09) Engineering technology STT K Czech Ostrava 3 Compulsory study plan
2019/2020 (B0715A270011) Engineering (S09) Engineering technology STT P Czech Ostrava 3 Compulsory study plan
2019/2020 (B0715A270011) Engineering (S09) Engineering technology STT K Czech Ostrava 3 Compulsory study plan
2019/2020 (B0715A270011) Engineering (S09) Engineering technology STT P Czech Šumperk 3 Compulsory study plan
2019/2020 (B0715A270011) Engineering (S09) Engineering technology STT K Czech Šumperk 3 Compulsory study plan

Occurrence in special blocks

Block nameAcademic yearForm of studyStudy language YearWSType of blockBlock owner

Assessment of instruction



2023/2024 Winter
2022/2023 Winter
2021/2022 Winter