The following pages link to Thomas Böhlke (Q177615):
Displaying 18 items.
- Isotropic orientation distributions of cubic crystals (Q5955245) (← links)
- The evolution of Hooke's law due to texture development in FCC polycrystals. (Q5957546) (← links)
- Influence of flow-fiber coupling during mold-filling on the stress field in short-fiber reinforced composites (Q6101625) (← links)
- On the micromechanics of deep material networks (Q6115410) (← links)
- A micro‐mechanically motivated phenomenological yield function for cubic crystal aggregates (Q6149501) (← links)
- The averaging bias ‐ A standard miscalculation, which extensively underestimates real CO<sub>2</sub> emissions (Q6149672) (← links)
- On the phase space of fourth-order fiber-orientation tensors (Q6157835) (← links)
- Mathematical modeling of the elastic properties of cubic crystals at small scales based on the toupin-Mindlin anisotropic first strain gradient elasticity (Q6168740) (← links)
- Characterizing digital microstructures by the Minkowski‐based quadratic normal tensor (Q6182028) (← links)
- On quasi-Newton methods in fast Fourier transform-based micromechanics (Q6497745) (← links)
- Modeling and Simulation of Chemo-Elasto-Plastically Coupled Battery Active Particles (Q6513480) (← links)
- A multiphase-field approach to small strain crystal plasticity accounting for balance equations on singular surfaces (Q6540756) (← links)
- Computing the effective response of heterogeneous materials with thermomechanically coupled constituents by an implicit fast Fourier transform-based approach (Q6553297) (← links)
- Anderson-accelerated polarization schemes for fast Fourier transform-based computational homogenization (Q6553942) (← links)
- Dynamic mechanical analysis of pure and fiber-reinforced thermoset- and thermoplastic-based polymers and free volume-based viscoelastic modeling (Q6560613) (← links)
- On the averaging and closure of fiber orientation tensors in virtual process chains (Q6608109) (← links)
- Generating microstructures of long fiber reinforced composites by the fused sequential addition and migration method (Q6648575) (← links)
- Mathematical thermo-mechanical analysis on flame-solid interaction: steady laminar stagnation flow flame stabilized at a plane wall coupled with thermo-elasticity model (Q6669236) (← links)