Course MV-AWOK-86180-K-4
Joining Technologies in Vehicle Technology (2V, 3.0 LP)
Course Type
SWS | Type | Course Form | CP (Effort) | Presence-Time / Self-Study | |
---|---|---|---|---|---|
2 | V | Lecture | 3.0 CP | 28 h | 62 h |
(2V) | 3.0 CP | 28 h | 62 h |
Basedata
Contents
- Requirements for joining technologies in modern vehicle construction
- Classification of joining technologies
- Mechanical joining technologies, welding and brazing processes, fundamentals of adhesive bonding, hybrid joining technologies
- Joining of metals, polymers and fiber-reinforced materials
- Fatigue behavior and durability
- Joining technologies for repair
- Disassembling and recycling
Competencies / intended learning achievements
Students will be able to
- reproduce the systematics and application areas of contemporary industrial joining technologies
- select material-specific lightweight joining technologies for vehicle construction
- to name requirements for joining technologies for modern vehicle construction
- classify joining techniques into mechanical joining techniques, welding and brazing techniques, basic adhesive bonding techniques and hybrid joining technologies
- to assess the fatigue behavior and durability of joining technologies
- select joining technologies for repair
- to name methods for disassembling and recycling
Literature
- J. Epker: „Nutzfahrzeuge und Technik“, sv corporate media, München (2006)
- Koewius, G. Gross, G. Angehm: „Aluminium-Konstruktionen des Nutzfahrzeugbaus”, Aluminium-Verlag, Düsseldorf (1990)
- G. Buchfink: „Faszination Blech“, Vogel, Würzburg (2005)
Materials
PowerPoint presentation, blackboard, flipchart. For further information and course materials please consider the corresponding OLAT-course.
Registration
Requirements for attendance (informal)
None
Requirements for attendance (formal)
None
References to Course [MV-AWOK-86180-K-4]
Module | Name | Context | |
---|---|---|---|
[MV-AWOK-35-M-4] | Joining Technologies in Vehicle Technology | P: Obligatory | 2V, 3.0 LP |
Notes on the module handbook of the department Mechanical and Process Engineering
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