Pages that link to "Item:Q1749958"
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The following pages link to Finite element method for coupled diffusion-deformation theory in polymeric gel based on slip-link model (Q1749958):
Displaying 13 items.
- A fully coupled model for diffusion-induced deformation in polymers (Q268907) (← links)
- The effect of large deformation and material nonlinearity on gel indentation (Q399547) (← links)
- A thermodynamic model of physical gels (Q645791) (← links)
- A theory of coupled diffusion and large deformation in polymeric gels (Q1025200) (← links)
- Constitutive modeling for polymer hydrogels: a new perspective and applications to anisotropic hydrogels in free swelling (Q1657751) (← links)
- Modeling deformation of auxetic and non-auxetic polymer gels (Q1985030) (← links)
- Modelling and simulation of coupled fluid transport and time-dependent fracture in fibre-reinforced hydrogel composites (Q2072731) (← links)
- A NURBS-based inverse analysis of swelling induced morphing of thin stimuli-responsive polymer gels (Q2145114) (← links)
- Deep neural networks for large deformation of photo-thermo-pH responsive cationic gels (Q2240322) (← links)
- Large deformation analysis of a gel using the complex variable element-free Galerkin method (Q2308223) (← links)
- Computational modeling of the large deformation and flow of viscoelastic polymers (Q2414270) (← links)
- A three-dimensional element-free framework for coupled mechanical-diffusion induced nonlinear deformation of polymeric gels using the IMLS-Ritz method (Q2631478) (← links)
- A nonlinear visco-poroelasticity model for transversely isotropic gels (Q6173256) (← links)