Teach­ing events

  • Basic lecture in the summer semester in cooperation with the LUF
  • Overview of the most important basic processes in manufacturing technology, including cutting, forming, joining and coating processes
  • Presentation of the key features of the process groups and component-specific selection of manufacturing processes
  • Basic lecture in the winter semester
  • Introduction to common industrial joining processes
  • Introduction to common materials and their properties relevant to various joining processes
  • Teaching the basics of selecting suitable joining processes for specific joining tasks in line with applications and requirements

  • In-depth lecture in the summer semester
  • Overview of the economically and technologically relevant mechanical joining processes for connecting metallic and non-metallic materials and for producing mixed construction methods
  • Process technology of mechanical joining processes
  • Quality assurance
  • Specific application examples
  • In-depth lecture in the summer semester
  • Overview of the economically and technologically relevant thermal joining processes for joining metallic materials
  • Treatment of process engineering fundamentals, the interactions between material, manufacturing and joining properties
  • Specific application examples
  • In-depth lecture in the summer semester
  • Comprehensive overview of industrial adhesive bonding manufacturing processes
  • Fundamentals of adhesive-compatible design and calculation methods for the design of adhesive bonds
  • Presentation of adhesive-specific parameters influencing the mechanical and physical property profile of adhesive bonds
  • In-depth lecture in the summer semester
  • Comprehensive overview of modern lightweight construction materials and their areas of application
  • Consideration of material-specific characteristics when joining combinations of materials of the same type and different types
  • Basic lecture in the summer semester
  • Influence of corrosion and wear on materials and consideration of associated functional changes in components
  • Teaching of the basics of coating processes that can be used to secure and improve functional properties
  • Consideration of the technical and economic advantages and disadvantages based on specific application examples
  • Part of the bachelor's basic module ‘Lightweight Materials’ in the specialisation ‘Lightweight Construction with Hybrid Systems’
  • Application-oriented overview of structural lightweight materials
  • Consideration of alloy composition, heat treatment and forming options
  • Application examples
  • Part of the master's core module ‘Vehicle Structure’ in the specialisation ‘Vehicle Technology’
  • Comprehensive overview of vehicle engineering materials, their suitability for joining and the joining processes used
  • Consideration of possibilities and limitations as well as selection, comparison and characterisation of vehicle engineering application-specific joining processes
  • Application examples
  • Compulsory module for the Bachelor's specialisations ‘Manufacturing Technology and Lightweight Construction with Hybrid Systems’
  • Fundamentals of experimental parameter determination and methods for modelling and calculation in LS-Dyna
  • Simulative representation of application examples from forming technology
  • Determination of input parameters for the simulation model from the experiment
  • Construction of a model similar to a real component, load simulation and comparison with experimental tests  
business-card image

Dr.-Ing. David Hein

Werkstoff- und Fügetechnik

head of technical laboratory and experimental area

Write email +49 5251 60-5278