Pages that link to "Item:Q2020992"
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The following pages link to A mixed isogeometric analysis approach for the transient swelling of hydrogel (Q2020992):
Displaying 11 items.
- A nonlinear, transient finite element method for coupled solvent diffusion and large deformation of hydrogels (Q340050) (← links)
- Comparing mixed hybrid finite element method with standard FEM in swelling simulations involving extremely large deformations (Q2205148) (← links)
- A solid-shell finite element method for the anisotropic swelling of hydrogels with reinforced fibers (Q2229672) (← links)
- An improved interpolating complex variable element free Galerkin method for the pattern transformation of hydrogel (Q2301612) (← links)
- High-order NURBS elements based isogeometric formulation for swellable soft materials (Q2309385) (← links)
- Transversely isotropic freeze-dried PVA hydrogels: theoretical modelling and experimental characterization (Q2335401) (← links)
- A mixed hybrid finite element framework for the simulation of swelling ionized hydrogels (Q2414276) (← links)
- Distance minimizing based <scp>data‐driven</scp> computational method for the finite deformation of hyperelastic materials (Q6062837) (← links)
- Data-driven computational method for growth-induced deformation problems of soft materials (Q6181794) (← links)
- PINN enhanced extended multiscale finite element method for fast mechanical analysis of heterogeneous materials (Q6576389) (← links)
- A three-fields coupled numerical framework for transient deformation of thermo-sensitive hydrogel (Q6648531) (← links)