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Multiphysics Twin of Metal Forming
The thesis/project is focusing on developing a multiphysics simulation of metal forming process. The project benefit of collaboration between Computational Eng and Metal Forming Institute.
Keywords: C++, HPC, multiphysics
The aim of the project is to develop a Parametrized MultiPhysics simulation of Metal Forming Process (contact, plasticity, thermo-plasticity and dislocation) for e-Car sheet manufacturing. The simulation will carried on based on MOOSE software (C++ and HPC-RWTH cluster).
The aim of the project is to develop a Parametrized MultiPhysics simulation of Metal Forming Process (contact, plasticity, thermo-plasticity and dislocation) for e-Car sheet manufacturing. The simulation will carried on based on MOOSE software (C++ and HPC-RWTH cluster).
High performance multiphysics simulation play a crucial role in predicting manufacturing process which are impossible to identify with data stream approach.
High performance multiphysics simulation play a crucial role in predicting manufacturing process which are impossible to identify with data stream approach.
Each year the IDEA League offers the students of its partner universities over 180 monthly grants for a short-term research exchange. In general, these grants are awarded based on academic merit. For more information visit http://idealeague.org/student-grant/