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Nonlinear rheological behavior associated with structural transitions in block copolymer solutions via nonequilibrium molecular dynamics

机译:通过非平衡分子动力学与嵌段共聚物溶液中结构转变相关的非线性流变行为

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摘要

The nonequilibrium molecular dynamics computer simulation method was used to study microsegregated block copolymer systems in a selective solvent under a shear flow field.Two polymer concentrations were considered,0.3 and 0.4,corresponding to the body centered cubic spherical and ehxagonal cylindrical zero-shear phases,respectively.As the shear rate increased,both systems exhibited two-stage shear thinning,a peak in the scalar pressure,and normal stress differences.Microscopic connections were investigated yb calcualting the gyration and bond orientation tensors and the interaction energies per particle.At high shear rates,polymer chains elongate and orient along the direction of shear,and this is accompanied by the breaking-up of domains.The structure-rheoolgo9y relation was discussed with regard to the morphological changes reported in our last study for the same systems.In particular,the structurally relevant critical values of the shear rate were found to delimit different behaviors of the shear rate-dedendencies obtained in this work.
机译:使用非平衡分子动力学计算机模拟方法研究剪切流场下选择性溶剂中的微分离嵌段共聚物体系。考虑到两种聚合物浓度分别为0.3和0.4,分别对应于体心立方球形和六边形圆柱体的零剪切相,随着剪切速率的增加,两个系统都表现出两阶段剪切变薄,标量压力达到峰值以及法向应力差的情况。对微观连接进行了研究,从而计算了旋转和键取向张量以及每个粒子的相互作用能。剪切速率,聚合物链伸长并沿着剪切方向取向,这伴随着结构域的破裂。关于我们在上次研究中针对同一系统报道的形态变化,讨论了结构-流变关系。特别是,发现剪切速率的结构相关临界值界定了不同的行为s在这项工作中获得的剪切速率。

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