STRESS-INDUCED POLYMER DEFORMATION IN SHEAR FLOWS附视频

被引:0
|
作者
Juan Li
Yi-jing Nie
Yu Ma
胡文兵
机构
[1] DepartmentofPolymerScienceandEngineering,StateKeyLaboratoryofCoordinationChemistry,SchoolofChemistryandChemicalEngineering,NanjingUniversity
关键词
Polymer deformation; Monte Carlo simulation; Shear flow;
D O I
暂无
中图分类号
O631.21 [];
学科分类号
摘要
By means of dynamic Monte Carlo simulation of bulk lattice polymers in Couette shear flow, it was demonstrated that in addition to velocity gradient the constant driving forces acting as the activation aspect of shear stresses can also raise polymer deformation. Moreover, enhancing driving forces in a flow without any velocity gradient can reproduce nonNewtonian fluid behaviors of long-chain polymers. The simulations of Poiseuille shear flow with a gradient of shear stresses show that, the velocity gradient dominates small deformation in the flow layers of low shear stresses, while the shear stress dominates large deformation in the flow layers of high shear stresses. This result implies that the stress-induced deformation could be mainly responsible for the occurrence of non-Newtonian fluid behaviors of real polymers at high shear rates.
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页码:1590 / 1598
页数:9
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