A molecular dynamics study of the stress–optical behavior of a linear short-chain polyethylene melt under shear

被引:0
作者
Chunggi Baig
Brian J. Edwards
David J. Keffer
机构
[1] University of Tennessee,Department of Chemical Engineering
来源
Rheologica Acta | 2007年 / 46卷
关键词
Birefringence; Stress–optical rule; Shear; Nonequilibrium molecular dynamics; Linear polyethylene melt;
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摘要
In this study, we present details of the stress–optical behavior of a linear polyethylene melt under shear using a realistic potential model. We demonstrate the existence of the critical shear stress, above which the stress–optical rule (SOR) begins to be invalid. The critical shear stress of the SOR of this melt turns out to be 5.5 MPa, which is fairly higher than 3.2 MPa at which shear thinning starts, indicating that the SOR is valid up to a point well beyond the incipient point of shear thinning. Furthermore, contrary to conventional wisdom, the breakdown of the SOR turns out not to be correlated with the saturation of chain extension and orientation: It occurs at shear rates well before maximum chain extension is obtained. In addition to the stress and birefringence tensors, we also compare two important coarse-grained second-rank tensors, the conformation and orientation tensors. The birefringence, conformation, and orientation tensors display nonlinear relationships to each other at high values of the shear stress, and the deviation from linearity begins at approximately the critical shear stress for breakdown of the SOR.
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页码:1171 / 1186
页数:15
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共 94 条
[1]  
Baig C(2005)Rheological and structural studies of liquid decane, hexadecane, and tetracosane under planar elongational flow using nonequilibrium molecular dynamics simulations J Chem Phys 122 184906-10029
[2]  
Edwards BJ(2006)Rheological and structural studies of linear polyethylene melts under planar elongational flow using nonequilibrium molecular dynamics simulations J Chem Phys 124 084902-262
[3]  
Keffer DJ(2002)Molecular weight dependence of segmental alignment in a sheared polymer melt: a deuterium nuclear magnetic resonance investigation J Chem Phys 116 10020-1220
[4]  
Cochran HD(1996)Multiple time step nonequilibrium molecular dynamics simulation of the rheological properties of liquid n-decane J Chem Phys 104 255-174
[5]  
Baig C(1996)Molecular dynamics simulations of the rheology of normal decane, hexadecane, and tetracosane J Chem Phys 105 1214-1209
[6]  
Edwards BJ(1991)Calculation of the refractive indices of molecular crystals J Appl Cryst 24 171-1697
[7]  
Keffer DJ(1994)Monomer-level description of stress and birefringence relaxation in polymer melts Macromolecules 27 1201-794
[8]  
Cochran HD(1985)Canonical dynamics: equilibrium phase–space distributions Phys Rev A 31 1695-5675
[9]  
Harmandaris VA(1976)Clausius–Mossotti formula for anisotropic dielectrics J Chem Phys 66 791-6245
[10]  
Cormier RJ(1991)Birefringence of amorphous polymers. 1. Dynamic measurement on polystyrene Macromolecules 24 5670-397