A macroscopic model for the description of low- and high-speed fiber spinning of crystallizing polymers is proposed. The model incorporates air drag, air cooling, gravity, surface tension and the viscoelastic rheological behavior of the melt. The crystallization dynamics are formulated through a set of rate equations, which describe the quiescent nucleation and growth of spherulites, as well as the flow-induced nucleation and longitudinal growth of fibrils. The influence of the crystallization, as well as the glass transition, on the rheological response is accounted for through a viscous stress contribution. The proposed model realistically describes the velocity, temperature, stress, apparent viscosity and crystallinity profile along the ...
A novel approach for the simulation of the development of crystallinity and birefringence on the spi...
A novel approach for the simulation of the development of crystallinity and birefringence on the spi...
The one‐dimensional equations governing the formation of viscoelastic fibers using Giesekus constitu...
A macroscopic model for the description of low- and high-speed fiber spinning of crystallizing polym...
A macroscopic model for the description of low- and high-speed fiber spinning of crystallizing polym...
A macroscopic model for the description of low- and high-speed fiber spinning of crystallizing polym...
A macroscopic model for the description of low- and high-speed fiber spinning of crystallizing polym...
A macroscopic model for the description of low- and high-speed fiber spinning of crystallizing polym...
Amacroscopic model for the description of low- and high-speed fiber spinning of crystallizing polyme...
In this dissertation a model of melt spinning (by Doufas, McHugh and Miller) has been investigated. ...
A mathematical model was developed to describe the high speed melt spinning behavior of nylon-6. Thi...
A mathematical model was developed to describe the high speed melt spinning behavior of crystallizab...
269 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2000.We suggest that our model can...
269 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2000.We suggest that our model can...
Abstract Flow-induced crystallisation in the course of melt spinning changes properties of as-spun f...
A novel approach for the simulation of the development of crystallinity and birefringence on the spi...
A novel approach for the simulation of the development of crystallinity and birefringence on the spi...
The one‐dimensional equations governing the formation of viscoelastic fibers using Giesekus constitu...
A macroscopic model for the description of low- and high-speed fiber spinning of crystallizing polym...
A macroscopic model for the description of low- and high-speed fiber spinning of crystallizing polym...
A macroscopic model for the description of low- and high-speed fiber spinning of crystallizing polym...
A macroscopic model for the description of low- and high-speed fiber spinning of crystallizing polym...
A macroscopic model for the description of low- and high-speed fiber spinning of crystallizing polym...
Amacroscopic model for the description of low- and high-speed fiber spinning of crystallizing polyme...
In this dissertation a model of melt spinning (by Doufas, McHugh and Miller) has been investigated. ...
A mathematical model was developed to describe the high speed melt spinning behavior of nylon-6. Thi...
A mathematical model was developed to describe the high speed melt spinning behavior of crystallizab...
269 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2000.We suggest that our model can...
269 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2000.We suggest that our model can...
Abstract Flow-induced crystallisation in the course of melt spinning changes properties of as-spun f...
A novel approach for the simulation of the development of crystallinity and birefringence on the spi...
A novel approach for the simulation of the development of crystallinity and birefringence on the spi...
The one‐dimensional equations governing the formation of viscoelastic fibers using Giesekus constitu...