Research projects
Current projects
- Research Training Groups GRK 2868 D³ - Data-driven Design of Resilient Metamaterials
- Research Training Groups GRK 2430 I-FEV- Interactive Fiber-Elastomer Composites
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Collaborative Research Center Transregio 285 Method development for mechanical joinability in versatile process chains
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Texture-dependent crack growth in a wrought magnesium alloy under VHCF conditions
Completed projects
- Synthesis, structure and deformation behavior of superhard and simultaneously damage-tolerant PVD thin-film systems based on nanostructured nitride high-entropy alloys
- Analysis of the correlation between the fatigue behavior of remote laser-cut fiber-reinforced plastic composites and the process control
- Characterization of the influence of laser-cut surfaces on the fatigue behavior of Ti-6Al-4V-ELI
- Influence of production-related microstructure and geometry inhomogeneities on the fatigue behavior of two steel grades, taking into account the batch influence
- Strength and deformation of high-entropy alloys containing precious metals
- Influence of dislocation sliding behavior and prehistory dependence on the fatigue behavior in the VHCF range (DFG-funded in normal procedure)
- Development of new titanium alloys to improve anchorage and fracture healing in systemically diseased bone ((01) M01)
- Investigations into crack growth in the threshold value range of K at very high numbers of load cycles (VHCF range) on the nickel-based superalloy CMSX-4 and on pure nickel, taking into account the grain size and structure (research grants)
- Investigations into the fatigue behavior of aluminum welded joints in the range of very high numbers of load cycles (VHCF range) (grants)
- Development of a service life prediction concept in the VHCF range on the basis of covariate microstructural characteristics (priority programs)
- Characterization and simulation of VHCF damage development based on resonance behavior using the example of a metastable austenitic steel (priority programs)
- Characterization of very early and very slow fatigue crack growth in Al alloys at very low stresses (research grants)