4 papers
Topology-optimization based design of multi-degree-of-freedom compliant mechanisms (mechanisms with multiple pseudo-mobility)
Stephanie Kirmse, Lucio Flavio Campanile, Alexander Hasse
Unlike conventional mechanisms, compliant mechanisms produce the desired deformations by exploiting elastic strain and do not need, therefore, moving parts. The number of degrees o…
Accuracy and precision: a new view on kinematic assessment of solid-state hinges and compliant mechanisms
Lucio Flavio Campanile, Stephanie Kirmse, Alexander Hasse
Compliant mechanisms are alternatives to conventional mechanisms which exploit elastic strain to produce desired deformations instead of using moveable parts. They are designed for…
Vibration Reduction by Stiffness Modulation -- a Theoretical Study
Alexander Nowak, L. Flavio Campanile, Alexander Hasse
Semi-active vibration reduction techniques are defined as techniques in which controlled actions do not operate directly on the system's degrees of freedom (as in the case of activ…
An AI-Assisted Design Method for Topology Optimization Without Pre-Optimized Training Data
Alex Halle, L. Flavio Campanile, Alexander Hasse
Topology optimization is widely used by engineers during the initial product development process to get a first possible geometry design. The state-of-the-art is the iterative calc…