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Brownian dynamics simulations of linear polymers under shear flow

机译:剪切流下线性聚合物的布朗动力学模拟

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Brownian dynamics simulations of a polymer chain described by three different models under the influence of a shear flow have been performed. Model A is a freely jointed Kramers chain consisting of beads connected by rigid rods. Model B is a freely jointed chain consisting of finitely extensible nonlinear elastic (FENE) springs. Excluded volume and hydrodynamic interactions are not taken into account in either of these two models. Model C is a chain with rigid bonds, valence, and torsional angle potentials, excluded volume and hydrodynamic interactions. A asymptotic dependencies [#eta#] approx #gamma#~(-1/3) and [#eta#] approx #gamma#~(-2/3) for the intrinsic viscosity [#eta#] at large shear rates #gamma# for models A and B, correspondingly, have been obtained. Asymptotic dependencies for the first normal stress coefficient #PSI#_1 approx #gamma#~(-4/3) do not depend on the particular choice of model. At intermediate shear rates [#eta#] approx #gamma#~(-1/2) is followed for all models. Scaling dependencies of rheological properties on molecular weight have been studied. Results of the simulations show that chains are not fully stretched even at extremely high shear rates but form rather compact anisotropic objects. Correlation functions of the chain end-to-end vector relax quicker with increasing shear rate and reveal evidence of the end-to-end vector flipping between orientations parallel and antiparallel to the flow direction.
机译:在剪切流的影响下,对三种不同模型描述的聚合物链进行了布朗动力学模拟。 A型是自由连接的Kramers链,由通过刚性杆连接的珠子组成。 B型是由有限可扩展的非线性弹性(FENE)弹簧组成的自由连接链。在这两个模型中的任何一个中均未考虑排除的体积和流体动力相互作用。模型C是具有刚性键,化合价和扭转角势的链,不包括体积和流体动力相互作用。在大剪切速率下,特性粘度[#eta#]的渐近依赖性[#eta#]大约#gamma#〜(-1/3)和[#eta#]大约#gamma#〜(-2/3)相应地,获得了模型A和B的γ#。第一正应力系数#PSI#_1大约#gamma#〜(-4/3)的渐近依赖性不依赖于模型的特定选择。在所有模型中,在中等剪切速率[#eta#]下都遵循大约#gamma#〜(-1/2)。已经研究了流变性质对分子量的比例依赖性。模拟结果表明,即使在极高的剪切速率下,链条也无法完全拉伸,而是形成了相当紧凑的各向异性物体。链端对端矢量的相关函数随着剪切速率的增加而更快地松弛,并揭示了端对端矢量在平行于流动方向和反平行于流动方向的方向之间翻转的证据。

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