Commented University Calendar

Practical Course (Engineering, Design, Materials, Manufacturing)

Instructor:

Thorsten Schüppstuhl, Michael Morlock, Dieter Krause, Claus Emmelmann, Josef Schlattmann, Wolfgang Hintze, Otto von Estorff, Uwe Weltin, Karl Schulte , Gerold Schneider, Jörg Weißmüller und Mitarbeiter

Course Format:

Notice: For participation of this course, online registration at Stud.IP is required. Registration will be open from March 25th to April 4th, 2013. Three experiments with four dates each. Practical laboratory.

Period:

Summer Semester

Language:

German

Recommended Previous Knowledge:

Engineering Design,

Lectures: Mechanics I-III

Lectures: Integrated Product Development I incl. CAD practical training

Materials,

Lectures: Structural Metallic Materials, Metallic Materials for Aircraft Applications, Introduction to Materials Testing

Lectures: Structure and Properties of Polymers, Structure and Properties of Composites, Manufacturing of Polymers and Composites

Manufacturing

Lecture: Production Engineering

Lectures: Forming and Cutting Technology, Methods of production process design

Lectures: Machine Tools and Robotic

Contents:

"Engineering Design“:

Experimental and computational modal analysis

Appropriate design in engineering

Characterization of rubbery-elastic materials

Determination of friction in the thread and head of bolted connections

"Materials“:

Property profiles of steel

Synthesis and properties of actuators for modern fuel injection systems

Processing, properties and structure of thermoplastic polymers and its composites

Tribology in joints

Manufacturing“:

Optimization of welding process parameters for hybrid plasma laser welding

Evaluation of stock removal processes

Analysis of basic laws in production logistics

Analysis of positioning behaviour and trajectory accuracy of industrial robots


Learning Outcomes:

Engineering Design,

Knowledge
Basic knowledge in vibration theory and acoustics

Basic knowledge in CAD and FEM

Competence
Usage of modern measurement equipment

Competence in methodical proceeding
Using FEM and learn its limitations

System authority
Akquisition and evaluation of measurement results

Evaluation of simulation results with verification tests, Understanding of the coordination between experiment and simulation

Human/social authority
Teamwork, Presentation of results

Materials,

Practical use of theoretical Knowledge

In-depth knowledge in special areas of physical metallurgy; practical use of theoreticel knowledge; teamwork

Manufacturing

Knowledge
Basic knowledge in laser material processing and cnc programming and machine operation

Basic knowledge of cutting forces, force measurement (piezoelectrical method), CNC machining and surface finish

Accuracy characteristics of machines and sensor systems

Competence in methodical proceeding
Use of modern measuring techniques

CNC programming and design of experiments

Use of measuring systems and robotic controls

System authority
Evaluation of test results, Evaluation and understanding of interdependence of experimental parameters

Evaluation of a cutting process by means of cutting forces and surface finish, Understanding of the relationships between process parameters, material properties and machine systems

Understanding of the positioning behavior of machines and their empirical acquisition

Human/social authority
Teamwork, Presentation of results

Reading Resources:

Die Versuchsbeschreibungen können über Stud.IP eingesehen werden.

Performance Record:

Notice: For participation of this course registration at Stud.IP is required. Registration will be open from March 25th to April 4th, 2013.

Certificate of successful completion, Testat

Workload:

180 hours total

Contact:

bernd.stritzelberger@tuhh.de

Credit points of this module can be found in the course plan for the corresponding course of study.

Last change: 20 Mar 2013