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Logo of the University of Kaiserslautern-Landau in the form of the 4 letters RPTU. The U is divided into two parts at the bottom.Logo of the University of Kaiserslautern-Landau in the form of the 4 letters RPTU. The U is divided into two parts at the bottom.
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Logo of the University of Kaiserslautern-Landau in the form of the 4 letters RPTU. The U is divided into two parts at the bottom.Logo of the University of Kaiserslautern-Landau in the form of the 4 letters RPTU. The U is divided into two parts at the bottom.
Workgroup Materials Testing
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  • Working Group
    • Working Group
    • Working Group
    • Prof. Dr.-Ing. Eberhard Kerscher
    • Marieluise Demuth
    • M. Sc. Stella Diederichs
    • M. Sc. Nafiseh Ghavidel
    • M. Sc. Bali Nagya Regmi
    • M. Sc. Adrian Triebe
    • M. Sc. Nabeel Ahamed Kaja
    • M. Eng. Phanuphak Seensattayawong
    • Anja Hebestreit
    • Daniel Ludwig
    • External Doctoral Candidates
      • M.Sc. Burak Ceylan
      • Dipl.-Ing. Adalbert Mwombeni
    • Former Colleagues
      • M. Sc. Ava Azadi Chegeni
      • Dipl.-Ing. Daniel Grell
      • M. Sc. Daniel Spriestersbach
      • Dr.-Ing. Eric Dabrock
      • M. Sc. Jan Metternich
      • Dr.-Ing. Lucia Morales-Rivas
      • Dr.-Ing. Luisa Böhme
      • M. Sc. Matthias Pascal Uhrig
      • Dr.-Ing. Marcel Angst
      • M. Sc. Markus Burmeister
      • Dr.-Ing. Stefan Averbeck
  • Lecture
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    • Ongoing Projects
      • Optimization of fatigue properties of additive manufactured AlSi10Mg components through cryogenic finishing
      • Analysis of fine grain formation in local multidimensional stress fields during cyclic tension-compression and superimposed compression-threshold alternating torsion loading, FOR 5701
      • Very High Cycle Fatigue of Nanobainitic Steels
      • Collaborative Research Center / Transregio (TRR) 375
      • Ultrasonic compression hardening
      • Surface evolution of carbon steels during cyclic loading testing measured by optical-based methods
      • Improving Fatigue Performance of Commercially Pure Titanium through Thermomechanical Treatment
      • Collaborative Research Centre 926 (Third Funding Period)
      • Structure and mechanical properties of an Mg-Zn-Zr alloy subjected to the High Pressure Torsion Extrusion
      • VHCF of high strength steels
    • Completed Projects
      • DFG Priority Program 1594
      • Collaborative Research Centre 926
      • Superfine-Grained Steels
      • DFG Priority Program 1466
      • Nanobainitic Steels
      • Bulk Metallic Glasses
      • White Etching Cracks
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Workgroup Materials Testing
  1. Mechanical and Process Engineering
  2. AWP
  3. Research
  4. Ongoing Projects
Optimization of fatigue properties of additive manufactured AlSi10Mg components through cryogenic finishing
Analysis of fine grain formation in local multidimensional stress fields during cyclic tension-compression and superimposed compression-threshold alternating torsion loading, FOR 5701
Very High Cycle Fatigue of Nanobainitic Steels
Collaborative Research Center / Transregio (TRR) 375
Ultrasonic compression hardening
Surface evolution of carbon steels during cyclic loading testing measured by optical-based methods
Improving Fatigue Performance of Commercially Pure Titanium through Thermomechanical Treatment
Collaborative Research Centre 926 (Third Funding Period)
Structure and mechanical properties of an Mg-Zn-Zr alloy subjected to the High Pressure Torsion Extrusion
VHCF of high strength steels
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Department of Mechanical and Process Engineering

RPTU in Kaiserslautern

RPTU Kaiserslautern-Landau
Paul-Ehrlich-Straße
Building 44
67663 Kaiserslautern

 

 

 

49.42364, 7.75608

Last modified: 01. August 2024
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