In this study, we investigate the thermo-mechanical relaxation and crystallization behavior of polyethylene using mesoscale molecular dynamics simulations. Our models specifically mimic constraints that occur in real-life polymer processing: After strong uniaxial stretching of the melt, we quench and release the polymer chains at different loading conditions. These conditions allow for free or hindered shrinkage, respectively. We present the shrinkage and swelling behavior as well as the crystallization kinetics over up to 600 ns simulation time. We are able to precisely evaluate how the interplay of chain length, temperature, local entanglements and orientation of chain segments influences crystallization and relaxation behavior. From our ...
11 págs.; 8 figs.; 1 tab.; 1 app.Coarse-grained molecular dynamics simulations studies on supercoole...
We have performed molecular dynamics simulations to study the mechanism of crystallization from an u...
Understanding the flow induced crystallisation (FIC) process is necessary due to its technological r...
In this study, we investigate the thermo-mechanical relaxation and crystallization behavior of polye...
This study investigates the initial stage of the thermo-mechanical crystallization behavior for uni-...
International audienceAbstract Molecular dynamics simulations are employed to study the crystallinit...
We present coarse-grained molecular dynamics simulations of linear polyethylene (PE) melts, ranging ...
Linear low-density polyethylene (LLDPE) chains with different levels of branch content (BC), ranging...
12 pags.; 10 figs.; 5 tabs.© 2015 American Chemical Society. Long molecular dynamics simulations of ...
Large scale molecular dynamics simulations were carried out to study the kinetics of polymer melt cr...
This study reveals important features of polymer crystal formation at high-driving forces in entangl...
The crystallization of polymers is not, despite its importance in science and engineering, entirely ...
Long molecular dynamics simulations of the melt dynamics, glass transition and nonisothermal crystal...
Polymer dynamics creates distinctive viscoelastic behavior as a result of a coupled interplay of mot...
We present simulation results of flow-induced crystallization of a dense polymeric liquid subjected ...
11 págs.; 8 figs.; 1 tab.; 1 app.Coarse-grained molecular dynamics simulations studies on supercoole...
We have performed molecular dynamics simulations to study the mechanism of crystallization from an u...
Understanding the flow induced crystallisation (FIC) process is necessary due to its technological r...
In this study, we investigate the thermo-mechanical relaxation and crystallization behavior of polye...
This study investigates the initial stage of the thermo-mechanical crystallization behavior for uni-...
International audienceAbstract Molecular dynamics simulations are employed to study the crystallinit...
We present coarse-grained molecular dynamics simulations of linear polyethylene (PE) melts, ranging ...
Linear low-density polyethylene (LLDPE) chains with different levels of branch content (BC), ranging...
12 pags.; 10 figs.; 5 tabs.© 2015 American Chemical Society. Long molecular dynamics simulations of ...
Large scale molecular dynamics simulations were carried out to study the kinetics of polymer melt cr...
This study reveals important features of polymer crystal formation at high-driving forces in entangl...
The crystallization of polymers is not, despite its importance in science and engineering, entirely ...
Long molecular dynamics simulations of the melt dynamics, glass transition and nonisothermal crystal...
Polymer dynamics creates distinctive viscoelastic behavior as a result of a coupled interplay of mot...
We present simulation results of flow-induced crystallization of a dense polymeric liquid subjected ...
11 págs.; 8 figs.; 1 tab.; 1 app.Coarse-grained molecular dynamics simulations studies on supercoole...
We have performed molecular dynamics simulations to study the mechanism of crystallization from an u...
Understanding the flow induced crystallisation (FIC) process is necessary due to its technological r...