Simulated morphological landscape of polymer single crystals by phase field model.
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Summary
The novel phase field model with the "polymer characteristic" was established based on a nonconserved spatiotemporal Ginzburg-Landau equation is related to relate the diffusion equation with the crystal growth faces of polymer single crystals.
- Type
- article
- Published
- 2008-11-20
- Cited by
- 22
- References
- 38
- OpenAlex
- https://openalex.org/W1980506180
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:22073029
Keywords
Field (mathematics), Phase (matter), Materials science, Polymer, Physics
References
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- Modeling and numerical simulations of dendritic crystal growth
- Surface Morphology and Frictional Property of Polyethylene Single Crystals Studied by Scanning Force Microscopy
- Crystallization, Melting, and Morphology of Syndiotactic Polypropylene Fractions. 3. Lamellar Single Crystals and Chain Folding
- Morphology and Melting of Truncated Single Crystals of Linear Polyethylene
- On the growth of two dimensional crystals: 2. Assessment of kinetic theories of crystallization of polymers
- A model for chain folding in polymer crystals: rough growth faces are consistent with the observed growth rates
- Efficient computation of a sharp interface by spreading via phase field methods
- Crystal structure and morphology of syndiotactic polypropylene single crystals
- Phase-field modeling on morphological landscape of isotactic polystyrene single crystals.
- Solution-grown single crystals of perfectly alternating ethylene-carbon monoxide copolymer
- Spatiotemporal growth of faceted and curved single crystals
- Growth dynamics of isotactic polypropylene single crystals during isothermal crystallization from a miscible polymeric solvent.
Cited by
- Phase field modeling of the ring-banded spherulites of crystalline polymers: The role of thermal diffusion
- A phase-field model for simulating various spherulite morphologies of semi-crystalline polymers
- Phase-field-crystal models for condensed matter dynamics on atomic length and diffusive time scales: an overview
- Investigating the role of oriented nucleus in polymer shish-kebab crystal growth via phase-field method.
- Phase-Field Simulation of Polymer Crystallization during Cooling Stage
- Simulation of Stimuli-Responsive Polymer Networks
- Large scale simulation of block copolymers with cell dynamics
- Simulated rhythmic growth of targeted single crystal by polymer phase-field model
- SIMULATED THREE DIMENSIONAL MORPHOLOGICAL LANDSCAPE OF POLYMER SINGLE CRYSTALS BY PHASE-FIELD MODEL: SIMULATED THREE DIMENSIONAL MORPHOLOGICAL LANDSCAPE OF POLYMER SINGLE CRYSTALS BY PHASE-FIELD MODEL
- Theory of Crystals and Interfaces in Polyethylene and Isotactic Polypropylene
- A Phase Field Technique for Modeling and Predicting Flow Induced Crystallization Morphology of Semi-Crystalline Polymers
- Simulation of Polymer Crystal Growth with Various Morphologies Using a Phase-Field Model
- A comprehensive review on polymer single crystals—From fundamental concepts to applications
- Prediction of Flow Effect on Crystal Growth of Semi-Crystalline Polymers Using a Multi-Scale Phase-Field Approach
- Numerical study of the relationship between the spherulitic microstructure and isothermal crystallization kinetics. Part I. 2-D analyses
- Simulation of ice crystal growth by phase field method
- Numerical simulation of phase field model for spherulite growth of semi-crystalline polymers using FD-FV-LB method
- Numerical simulation of spherulite and shish-kebab growth for semi-crystalline polymer melts via phase-field model
- Multiphase-field modeling of non-isothermal polymer crystallization
- 1 SIMULATION OF POLYMER CRYSTAL GROWTH WITH VARIOUS MORPHOLOGIES USING A PHASE-FIELD MODEL
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