Filled elastomers exhibit complex non-linear material behavior, which is captured by a physically-motivated material model. We investigate strategies to efficiently integrate this model into multibody simulation for highly-dynamic systems.
Material modeling using physics-augmented neural networks
Physics-augmented neural networks (PANNs) fulfill physical conditions by design and can therefore offer an alternative approach to classic material models.
Formulation of a new approach for the diagonalization of mass matrices
Transient simulations often use explicit time integration, which in combination with diagonal mass matrices allows enormous savings in simulation time.
Design and evaluation of a novel dynamic ankle-foot orthosis using silicone/SMA materials
This research focuses on designing, modeling, simulating, manufacturing, and testing a novel ankle-foot orthosis (AFO) that ensures ease of use, freedom of movement, and high performance for rehabilitation, particularly for individuals with pathological gait disorders.
In the winter semester 24/25, Prof. Juhre delivered the lecture "Continuum Mechanics" at the Vietnamese German University (VGU) in Ho Chi Minh City. It is part of the new Master's program "Materials Science," which was established in cooperation with the VGU.