A large number of possible polymer chain conformations exist for a given volume of an amorphous polymer. The prediction of elastic properties of a polymer must therefore consider more than a single combination of chain conformations. A multiscale modeling approach is proposed to predict the bulk elastic properties of polymer materials using a series of molecular models of individual polymer microstates and a statistics-based micromechanical modeling method. The method is applied to polyimide and polycarbonate systems. It is shown that individual microstates can yield a wide range of predicted elastic properties, whereas the consideration of multiple microstates yield predicted properties that agree more closely with experimentally determine...
The mechanical performance of semicrystalline polymers is strongly dependent on their underlying mic...
The mechanical performance of semicrystalline polymers is strongly dependent on their underlying mic...
We outline the first stages in the multiscale modeling of biopolymer materials, starting with the st...
A large number of possible polymer chain conformations exist for a given volume of an amorphous poly...
The multiscale modeling of polymer-based materials has many challenges that not yet been fully addre...
Molecular dynamics simulations and micromechanical modeling are used to predict the bulk-level Young...
AbstractIn this study, a hyperelastic multiscale modeling technique is used to predict elastic prope...
Copyright © 2007 ASME & The Boeing Company. A nonlinear multiscale constitutive modeling framework i...
AbstractIn this study, a hyperelastic multiscale modeling technique is used to predict elastic prope...
A computational parametric study has been performed to establish the effect of Representative Volume...
Polymeric materials have become the reference material for high reliability and performance applicat...
Polymeric materials have become the reference material for high reliability and performance applicat...
The spatial dimensions and the stiffness (characteristic ratio, <i>C</i><sub>∞</sub>) of polymer cha...
A multi-scale constitutive model for the small deformations of semi-crystalline polymers such as hig...
Polymeric materials have become the reference material for high reliability and performance applica-...
The mechanical performance of semicrystalline polymers is strongly dependent on their underlying mic...
The mechanical performance of semicrystalline polymers is strongly dependent on their underlying mic...
We outline the first stages in the multiscale modeling of biopolymer materials, starting with the st...
A large number of possible polymer chain conformations exist for a given volume of an amorphous poly...
The multiscale modeling of polymer-based materials has many challenges that not yet been fully addre...
Molecular dynamics simulations and micromechanical modeling are used to predict the bulk-level Young...
AbstractIn this study, a hyperelastic multiscale modeling technique is used to predict elastic prope...
Copyright © 2007 ASME & The Boeing Company. A nonlinear multiscale constitutive modeling framework i...
AbstractIn this study, a hyperelastic multiscale modeling technique is used to predict elastic prope...
A computational parametric study has been performed to establish the effect of Representative Volume...
Polymeric materials have become the reference material for high reliability and performance applicat...
Polymeric materials have become the reference material for high reliability and performance applicat...
The spatial dimensions and the stiffness (characteristic ratio, <i>C</i><sub>∞</sub>) of polymer cha...
A multi-scale constitutive model for the small deformations of semi-crystalline polymers such as hig...
Polymeric materials have become the reference material for high reliability and performance applica-...
The mechanical performance of semicrystalline polymers is strongly dependent on their underlying mic...
The mechanical performance of semicrystalline polymers is strongly dependent on their underlying mic...
We outline the first stages in the multiscale modeling of biopolymer materials, starting with the st...