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The degradation behavior of the hydrogel is influenced by hydrogel composition, crosslinking methods and degradation environment.
A hyperelastic constitutive model is selected to best fit the multi-axial behavior of the hydrogel.
The thermal behavior of the hydrogel was evaluated using TGA, the swelling behavior of the hydrogel was evaluated in Dulbecco's Modified Eagle's medium (DMEM), and the mechanical properties were determined through dynamic mechanical analysis.
We used the corrected model to describe the swelling behavior of the hydrogel and the volume transition temperature.
A parameter study is then conducted by steady-state simulations to ascertain the impact of various solvent parameters on the responsive swelling behavior of the hydrogel.
A novel family of stimuli-responsive smart hydrogel is developed in this study for K+-induced self-regulated controlled-release, which is featured with isothermally K+-induced pulse-release mode at a certain temperature due to the isothermally K+-induced shrinking behavior of the hydrogel by recognizing the increase of K+ concentration in the environment.
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It was found that the swelling properties and the elastic behavior of the hydrogels drastically change at Tprep=−8 °C.
Swelling behavior of the hydrogels was investigated in aqueous organic solvent mixtures as functions of solvent species and the concentration.
The swelling properties of the composite samples were also investigated to study the effect of CaP incorporation on the behavior of the hydrogels.
Based on the selected viscoelastic model, a graphical simulation tool is used to analyze the results and to predict the viscoelastic behavior of the hydrogels in specific environment.
The swelling and thermal behavior of the hydrogels, as well as their mechanical properties were studied by means of swelling tests, differential scanning calorimetry and tensile experiments.
More suggestions(16)
behavior of the material
behavior of the plate
behavior of the government
behavior of the reflection
behavior of the network
behavior of the larva
behavior of the function
behavior of the copper II
behavior of the inequality
behavior of the system
behavior of the trend
behavior of the tunnel
behavior of the node
behavior of the static-aware
behavior of the device
behavior of the model
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