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Furthermore, the multicomponent phase behavior of polymer systems at supercritical conditions has been studied.
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The crystallization behaviors of three types of polymer systems grafted on a flat solid substrate with different grafting densities were investigated by dynamic Monte Carlo simulations.
SR performed the thermomechanical researches of polymer systems.
Based on a brief description of the synthetic methodologies and properties of hyperbranched polymers, a detailed overview of the investigated phase behavior of branched polymer systems is given, followed by a discussion of new potential applications of hyperbranched polymers in the field of chemical engineering.
Different equations have been used to describe the flow behavior of polymer gel system.
The rheological behavior of polymer gel system is non-Newtonian, in which there is a nonlinear relationship between shear stress and shear rate.
Previously, our work was focused on the experimental details of the controlled thermally decrosslinking behavior of a polymer system that contained sterically hindered urea linkages.
We believe that these results add to our understanding of the complex aging behavior of clay-polymer systems.
The impact damage behavior of polymer bonded explosives (PBXs) is critical to the safety of explosive systems.
Cyclic plasticity and creep models are also incorporated to capture anisotropic inelastic behaviors of Polymer and PMC systems.
The behavior of polymer electrolytes in lithium batteries is reviewed in the context of molecular scale models as well as on the system scale.
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