TSV Welding technology of metals and non-metals

Institute of Technology and Business in České Budějovice
summer 2024
Extent and Intensity
2/2/0. 4 credit(s). Type of Completion: zk (examination).
Teacher(s)
Ing. Marcel Beňo, Ph.D. (seminar tutor)
Guaranteed by
Ing. Marcel Beňo, Ph.D.
The Department of Mechanical Engineering – Faculty of Technology – Rector – Institute of Technology and Business in České Budějovice
Supplier department: The Department of Mechanical Engineering – Faculty of Technology – Rector – Institute of Technology and Business in České Budějovice
Timetable of Seminar Groups
TSV/P01: Mon 16:30–18:00 B3, M. Beňo
TSV/ST2: Sun 19. 5. 8:00–9:30 E5, 9:40–11:10 E5, Sat 25. 5. 8:00–9:30 B4, 9:40–11:10 B4, 11:25–12:55 B4, Sun 2. 6. 11:25–12:55 E5, 13:05–14:35 E5, 14:50–16:20 E5, M. Beňo
TSV/S01: Tue 16:30–18:00 E4, M. Beňo
TSV/S02: Tue 18:10–19:40 E6, M. Beňo
Prerequisites
STE_2 Engineering technologies II.
Basic knowledge of engineering technology and materials science.
Course Enrolment Limitations
The course is offered to students of any study field.
Course objectives supported by learning outcomes
The course provides students with lectures and exercises, the theoretical foundations of welding processes of metals and non-metals with various technologies. Students will know the basics of theory and technology of welding procedure. During the semester, the student will be able to try out in practice in school workshops welding of different materials. Acquainted with the various kinds of metals and non-metals welding and soldering. The subject "Technology of welding of metals and non-metals" will follow the welding portion of the subject Engineering Technology II.
Learning outcomes
Student is able to:
- to describe and identify the technologies of welding of metals and non-metals by various technologies
- to describe and identify the technology of bandsaw and non-metal process by various technologies
Syllabus
  • 1.Introduction to welding technology, the division of technologies and their impact on materials;
  • 2.Materials suitable for welding, marking and classification of welds;
  • 3.Flame welding technology;
  • 4.Electric arc welding technology;
  • 5.Heat-affected area (TOO), equilibrium diagram Fe - Fe3C;
  • 6. Weldability of materials;
  • 7.Weldability tests, notch toughness test, pitch test, break age test, non-destructive quality tests for welded connections;
  • 8.Welding under smelter, Resistance welding;
  • 9.Electro particle welding, welding in  protective atmospheres of gases;
  • 10.Progressive technology of welding, electron beam welding;
  • 11.Laser welding;
  • 12.Plasma welding;
  • 13.Soldering technology.
Literature
    required literature
  • KMEC, J., M. GOMBÁR, P. HRUBÝ, J. MIKA, Š. GAŠPAR, Ľ. BIČEJOVÁ a M. KARKOVÁ. Zváranie a spájkovanie. České Budějovice: Vysoká škola technická a ekonomická v Českých Budějovicích, 2015. ISBN 978-80-7468-099-1
  • KMEC, Ján, Daniel KUČERKA and Soňa RUSNÁKOVÁ. Strojírenské technologie II. 1. vyd. České Budějovice: Vysoká škola technická a ekonomická v Českých Budějovicích, 2015, 267 pp. ISBN 978-80-7468-081-6. info
  • KMEC, Ján, Daniel KUČERKA, Miroslav GOMBÁR, Roman HRMO and L'uba BIČEJOVÁ. Delenie materiálov (Cutting of materials). 1. vyd. Košice: Technická univerzita v Košiciach, 2014, 287 pp. ISBN 978-80-553-1872-1. info
    recommended literature
  • BEŇO, Marcel. Validace přídavných materiálů pro svařování jaderných zařízení v JE In Kvalita vo zvárání 2015 - Sborník přednášek, 22.-24.4.2015, Jasná Nízké Tatry, Bratislava: Výskumný ústav zváračský - PI SR, 2015, s. 72-90. ISBN 978-80-88734-72-7.
  • BEŇO, Marcel. Zvýšení životnosti a provozní spolehlivosti heterogenních svarových spojů zařízení jaderné energetiky. Ostrava: Vysoká škola báňská – Technická univerzita Ostrava, 2015, 1. vydání, 69 s. ISBN 978-80-248-3669-0.
  • BEŇO, Marcel. Zvýšení životnosti a provozní spolehlivosti heterogenních svarových spojů zařízení jaderné energetiky. Ostrava: Vysoká škola báňská – Technická univerzita Ostrava, 2015. 755 s.
  • BEŇO, Marcel. Specifické ohodnocení přídavného materiálu pro opravy svarů Cr-Ni ocelí v JE metodou 143 – kvalifikace WPQR. In PROMATTEN 2016 Sborník přednášek, 10.-11.11.2016, Vidly. Ostrava: Flash Steel Power, 2016, s. 58 - 79. ISBN 978-80-905947-2-2.
  • KUČERKA, Daniel, Soňa RUSNÁKOVÁ, Ján KMEC, Miroslav GOMBÁR, Miloslav PILEČEK, Roman HRMO, Martin PODAŘIL, L'uba BIČEJOVÁ and Monika KUČERKOVÁ. Strojárska technológia I : 2. diel (Engineering technology I : part II). 1. vyd. České Budějovice: Vysoká škola technická a ekonomická v Českých Budějovicích, 2014, 189 pp. ISBN 978-80-7468-068-7. info
Forms of Teaching
Lecture
Seminar
Laboratory Exercise
Tutorial
Consultation
Teaching Methods
Frontal Teaching
Project Teaching
Brainstorming
Individual Work– Individual or Individualized Activity
Student Workload
ActivitiesNumber of Hours of Study Workload
Daily StudyCombined Study
Preparation for the Mid-term Test618
Preparation for Seminars, Exercises, Tutorial1620
Preparation for the Final Test2020
Seminar work2020
Attendance on Lectures26 
Attendance on Seminars/Exercises/Tutorial/Excursion2626
Total:114104
Assessment Methods and Assesment Rate
Test – final 70 %
Seminary Work 30 %
Exam conditions
Overall course classification, i.e. points per test (70 - 0) + points from intermediate assessment (30 - 0): 100 -70 successfully passed, 69.99 - 30 possibility of retesting, 29.99 - 0 non-pass.
Language of instruction
Czech
Teacher's information
Attendance in lessons is defined in a separate internal standard of ITB (Evidence of attendance of students at ITB). It is compulsory, except of the lectures, for full-time students to attend 70 % lesson of the subjet in a semester. It is the student's responsibility to contact the teaching staff and to agree with them on the conditions for meeting the subject no later than 14 days after issuing the ISP. If a student fails to do so, their ISP will be disregarded.
The course is also listed under the following terms summer 2021, summer 2022, winter 2022, SUMMER 2023.
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