<?xml version="1.0" encoding="ISO-8859-1" standalone="yes" ?>
<document>
<title>Fundamental Principles of Automotive Engineering</title>
<cid>FT14</cid>
<sapsubmodule>P242-0047</sapsubmodule>
<bkey>fz2</bkey>
<ctypes>
<hours>3</hours>
<type>V</type>
</ctypes>
<cp>3</cp>
<semester>3</semester>
<mandatory>yes</mandatory>
<language>German</language>
<exam>Written exam 120 min.</exam>
<curriculum>
<curriculum_entry>
<cid>DFBME-313</cid>
<branch>Mechanical Engineering</branch>
<semester>3</semester>
<mandatory_tag>mandatory course</mandatory_tag>
</curriculum_entry>
<curriculum_entry>
<cid>DFBME-313</cid>
<branch>Mechanical Engineering</branch>
<semester>3</semester>
<mandatory_tag>mandatory course</mandatory_tag>
</curriculum_entry>
<curriculum_entry>
<cid>FT14</cid>
<branch>Automotive Engineering</branch>
<semester>3</semester>
<mandatory_tag>mandatory course</mandatory_tag>
</curriculum_entry>
<curriculum_entry>
<cid>FT14</cid>
<branch>Automotive Engineering</branch>
<semester>3</semester>
<mandatory_tag>mandatory course</mandatory_tag>
</curriculum_entry>
<curriculum_entry>
<cid>FT14</cid>
<branch>Automotive Engineering</branch>
<semester>3</semester>
<mandatory_tag>mandatory course</mandatory_tag>
</curriculum_entry>
<curriculum_entry>
<cid>FT14</cid>
<branch>Automotive Engineering</branch>
<semester>3</semester>
<mandatory_tag>mandatory course</mandatory_tag>
</curriculum_entry>
</curriculum>
<workload>
45 class hours (= 33.75 clock hours) over a 15-week period.The total student study time is 90 hours (equivalent to 3 ECTS credits).There are therefore 56.25 hours available for class preparation and follow-up work and exam preparation.</workload>
<prerequisites>
</prerequisites>
<prerequisitesfor>
<prerequisitefor>
<pfcid>FT16.1</pfcid>
<pftitle>Vehicle Superstructures and Lightweight Construction</pftitle>
</prerequisitefor>
</prerequisitesfor>
<convenor>Prof. Dr. Jürgen Griebsch</convenor>
<convenor-person-key>jgr</convenor-person-key>
<lecturers>
<lecturer>Prof. Dr.-Ing. Hans-Joachim Weber</lecturer>
<lecturer-person-key>hjw</lecturer-person-key>
</lecturers>
<objectives>In this course, students will receive an overview of the most important manufacturing processes and the machine tools used for these processes. 
They will be able to:
- roughly compare the manufacturing processes suitable for the production of a component 
- recognize the specific properties.
</objectives>
<content>1. Manufacturing processes
1.1 Primary processing (e.g. casting)
1.1.1 Casting
1.1.2 Sintering
1.2 Forming
1.2.1 Extrusion
1.2.2 Deep drawing
1.3 Machining
1.3.1 Turning
1.3.2 Milling
1.3.3 Grinding
2. Machine tools
2.1 Forming machines
2.1.1 Hammers
2.1.2 Presses
2.2 Machine tools for machinig with geometrically defined tools
2.2.1 Lathes
2.2.2 Drilling machines
2.2.3 Milling machines
2.3 Machine tools for machinig with geometrically undefined tools 
2.3.1 Cylindrical grinding machines
2.3.2 Surface grinding machines
2.3.3 Form grinding machines
2.3.4 Dressing systems
2.3.5 Balancing machines</content>
<media>Lecture script and experiment documentation</media>
<literature>- Fritz Schulze; Fertigungstechnik, VDI-Verlag, Düsseldorf 1998
- Spur, Stöferle; Grundlagen der Fertigungstechnik, Carl Hauser Verlag, München
- Hirsch, Andreas; Werkzeugmaschinen Grundlagen
- Tschätsch, Heinz; Praxis der Umformtechnik, Verlag Teubner
- Tschätsch, Heinz; Praxis der Zerspantechnik, Verlab Teubner</literature>
<offered>
</offered>
<moduldb-query>Sat Sep 12 04:03:04 CEST 2026, CKEY=fgdf, BKEY=fz2, CID=[?], LANGUAGE=en, DATE=12.09.2026</moduldb-query>
</document>
