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Effect of functionality on unentangled star polymers at equilibrium and under shear flow

机译:平衡和剪切流下官能度对无缠结星形聚合物的影响

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The properties of unentangled star polymers with arm length N-f = 20 beads and functionality f (3 <= f <= 60) are investigated at equilibrium and under shear flow by coarse-grained molecular dynamics simulations. At equilibrium, the star polymer shows a crossover from a linear, freely penetrable, extremely soft object to a spherical, slightly hard object with an impenetrable center with increasing f. The results confirm that the arm relaxation is essentially independent of f and stars of large f form a liquid-like structure. In shear flow, the polymer deformation and alignment are calculated as well as the shear-induced rotational dynamics as function of shear rate. These properties are found to exhibit qualitative changes at an f-independent shear rate (gamma)over dot(p), which is a consequence of competition between chain relaxation and imposed flow. Shear thinning is characterized by shear viscosity and normal stress differences. With increasing f, the critical shear rate for the onset of shear thinning decreases from (gamma)over dot(p) for f = 3 to a smaller value. Our results also show that shear thinning of stars of large f arise from the collapse of liquid-like structures at low shear rates ((gamma)over dot(p) (gamma)over dot(p)), where chains have no deformation; at high shear rates ((gamma)over dot(p) (gamma)over dot(p)), shear thinning is mainly attributed to the chain stretching and orientation as linear polymers. Published by AIP Publishing.
机译:通过粗粒化分子动力学模拟研究了臂长为N-f = 20的珠子和官能度为f(3 <= f <= 60)的无缠结星形聚合物的性质。在平衡状态下,星形聚合物显示出从线性的,可自由穿透的,极其柔软的物体到球形的,稍微坚硬的物体(随f增大,其中心无法穿透)的过渡。结果证实,臂的松弛基本上与f无关,并且较大的f的恒星形成类似液体的结构。在剪切流中,计算聚合物变形和排列以及剪切诱导的旋转动力学作为剪切速率的函数。发现这些性质在点(p)上的f-独立剪切速率γ上表现出质的变化,这是链弛豫与施加的流动之间竞争的结果。剪切稀化的特征在于剪切粘度和法向应力差。随着f的增加,剪切稀化开始的临界剪切速率从f = 3的点(p)的γ减小到较小的值。我们的研究结果还表明,大f的恒星的剪切稀化是由低剪切速率下的类液体结构的坍塌引起的(γ超过点(p)γ超过点(p)),其中链没有形变;在高剪切速率下(点上的γ点上的γ),剪切稀化主要归因于作为线性聚合物的链拉伸和取向。由AIP Publishing发布。

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