Steinbeis Transfer Center Computational Engineering

Services

  • Expert reports
  • Applied research and development
  • Consulting
  • Training courses and seminars

Key Areas

  • Load capacity and operational stability reports based on defined policies
  • FEM calculations (finite element methods) for components and installations
  • Damage analysis of metallic and ceramic tools and plastics
  • FEM calculations with non-linear material behavior (e.g., rubber) or with non-linear change in geometry (e.g., sheet bending)

Project Examples

  • Stability analysis for a flight simulator - 2013
  • Fatigue strength analysis for a components gripper system - 2012
  • Evaluation and optimization of injection molding components and welded constructions for assembly systems in the automotive sector – as of 2002
  • Stability analysis for installations on rail vehicles according to DIN 6700 standards – as of 2007
  • Development of tool models for rubber materials with non-linear, time-dependent behavioral patterns and simulation with FEM – as of 2002
  • Optimization of press and sintering parameters for SMC rings – as of 2006
  • Fatigue strength analysis of thermo-mechanically loaded coolers in foodstuff manufacturing – 2008
  • FEM simulation of radial and axial ventilators subjected to high rotational speeds; suggestions on improvement – as of 2002
  • A concept for examination of rotating shears in a steel factory using strain gauges – 2007
  • Load capacity and operational stability reports for the electric hub screw jack at the new Ülzen floodgate – 2005
  • Life cycle calculation for a hydraulic train element at rated pressures up to 1200 bar – 2005
  • Technical materials examination of damage to a bellows coupling – 2004
  • Tension analysis using FEM via the bolt-on behavior of truck fuses – 2003
  • Simulation of tension distribution in porous ceramic using FEM and life cycle estimation – 1999
  • Failure criteria for reinforced plastic materials – 1997
  • Determination of the minimum bend radius for grooved aluminum sheets through non-linear simulation using FEM – 1994
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http://www.stw.de/su/533

Contact

Schwäbisch-Hall-Str. 86, D-28816 Stuhr
Phone: +49 421 6994-414
E-mail: SU0533@stw.de
Schillerstr. 7, D-66280 Sulzbach
Management: Prof. Dr.-Ing. Uwe Reinert
(Stand: 01/09/2019)

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