Pages that link to "Item:Q2237450"
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The following pages link to An FE-DMN method for the multiscale analysis of short fiber reinforced plastic components (Q2237450):
Displaying 14 items.
- Fiber orientation interpolation for the multiscale analysis of short fiber reinforced composite parts (Q1990772) (← links)
- A multiscale high-cycle fatigue-damage model for the stiffness degradation of fiber-reinforced materials based on a mixed variational framework (Q2060090) (← links)
- Interaction-based material network: a general framework for (porous) microstructured materials (Q2072441) (← links)
- An FE-DMN method for the multiscale analysis of thermomechanical composites (Q2133887) (← links)
- Microstructure-guided deep material network for rapid nonlinear material modeling and uncertainty quantification (Q2160409) (← links)
- Generating polycrystalline microstructures with prescribed tensorial texture coefficients (Q2171514) (← links)
- Micromechanics-based material networks revisited from the interaction viewpoint; robust and efficient implementation for multi-phase composites (Q2236305) (← links)
- An algorithm for generating microstructures of fiber‐reinforced composites with long fibers (Q6092245) (← links)
- Influence of flow-fiber coupling during mold-filling on the stress field in short-fiber reinforced composites (Q6101625) (← links)
- Physically informed deep homogenization neural network for unidirectional multiphase/multi-inclusion thermoconductive composites (Q6101900) (← links)
- A monolithic hyper ROM \(\mathrm{FE}^2\) method with clustered training at finite deformations (Q6118589) (← links)
- Micromechanics-informed parametric deep material network for physics behavior prediction of heterogeneous materials with a varying morphology (Q6144640) (← links)
- Deep material network for thermal conductivity problems: application to woven composites (Q6609793) (← links)
- A maximum-entropy length-orientation closure for short-fiber reinforced composites (Q6630900) (← links)