An algorithm able to mimic crystal lengthening, branching, widening and thickening was developed in order to build spherulites similar to those observed in polyethylene. The ranges of volume crystallinity and crystal width-to-thickness ratio attainable were <40% and 8-35, respectively. An on-lattice Monte Carlo-based algorithm was used to generate penetrant trajectories in the built spherulites. Diffusivity was assessed from the mean-square displacement of the penetrant molecules, normalized with respect to the mean-square displacement of the penetrant molecules in a crystal-free system, and compared with the geometrical impedance factor calculated from the Fricke theory using morphological data samples in the simulated spherulites. The ...
We discuss the formation of polycrystalline microstructures within the framework of phase field theo...
We report the results of computer simulations of epitaxial growth in the presence of a large Schwoeb...
Polymeric materials are divided broadly into two categories, amorphous and crystalline polymers. Pol...
none4An algorithm able to mimic crystal lengthening, branching, widening and thickening was develope...
The diffusion of small-molecule penetrants in polyethylene is hindered by impenetrable crystals and ...
Several novel computer simulation models were developed for predicting electrical, mechanical, therm...
International audienceThis study was devoted to the formation of a spherulitic pattern in a confined...
International audienceThis paper is devoted to the formation of a spherulitic pattern in polymers th...
Semicrystalline polymer materials play an essential role in the industry, such as the polyetherether...
Les propriétés mécaniques des polymères semi-cristallins sont étroitement reliées à la microstructur...
Based upon kinetic Monte Carlo simulations of crystallization in a simple polymer model we present a...
A finite difference-based 3D phase-field model is developed to investigate the spherulite growth at ...
The establishment of a coupled numerical model that enables us to simulate spherulite formations and...
The permeation of small molecules through polymer materials has been investigated both experimentall...
Spherulitic growth and the microstructure of crystalline polymers is proved to correspond to space f...
We discuss the formation of polycrystalline microstructures within the framework of phase field theo...
We report the results of computer simulations of epitaxial growth in the presence of a large Schwoeb...
Polymeric materials are divided broadly into two categories, amorphous and crystalline polymers. Pol...
none4An algorithm able to mimic crystal lengthening, branching, widening and thickening was develope...
The diffusion of small-molecule penetrants in polyethylene is hindered by impenetrable crystals and ...
Several novel computer simulation models were developed for predicting electrical, mechanical, therm...
International audienceThis study was devoted to the formation of a spherulitic pattern in a confined...
International audienceThis paper is devoted to the formation of a spherulitic pattern in polymers th...
Semicrystalline polymer materials play an essential role in the industry, such as the polyetherether...
Les propriétés mécaniques des polymères semi-cristallins sont étroitement reliées à la microstructur...
Based upon kinetic Monte Carlo simulations of crystallization in a simple polymer model we present a...
A finite difference-based 3D phase-field model is developed to investigate the spherulite growth at ...
The establishment of a coupled numerical model that enables us to simulate spherulite formations and...
The permeation of small molecules through polymer materials has been investigated both experimentall...
Spherulitic growth and the microstructure of crystalline polymers is proved to correspond to space f...
We discuss the formation of polycrystalline microstructures within the framework of phase field theo...
We report the results of computer simulations of epitaxial growth in the presence of a large Schwoeb...
Polymeric materials are divided broadly into two categories, amorphous and crystalline polymers. Pol...