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A structural model of hydrophobically modified urethane-ethoxylate (HEUR) associative polymers in shear flows

机译:剪切流中疏水改性氨基甲酸酯-乙氧基化物(HEUR)缔合聚合物的结构模型

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This paper describes the rheological behavior of a HEUR (hydrophobic ethoxylated urethane) associative polymer with C16H33 end groups at 2.0 wt % concentration in aqueous solution. Under normal steady shear, this solution exhibits Newtonian behavior at low shear rates and, as the shear rate is increased, passes through a shear-thickening region before exhibiting a sharp decrease in viscosity. Here we report superposition-of-oscillation experiments on steady-shear flows to examine the state of the network structure under different shear conditions. The technique involves applying a steady shear deformation to the fluid, and once the steady state is achieved, a small amplitude oscillation is imposed on the sample to measure the linear viscoelastic properties. We observe that within the shear-thickening region, the plateau modulus is larger than in the Newtonian region, suggesting that shear-thickening is the result of a shear-induced increase in the density of mechanically active chains, which may be due to incorporation of free micelles or higher aggregates into the network structure. In the shear-thinning region, the Maxwell relaxation time decreases with increasing shear stress or shear rate. Thus shear thinning is a consequence of a shear-enhanced exit rate of the hydrophobic end groups from the micellar junctions of the network. This is the first experimental evidence for shear enhancement of the relaxation rate of an associative polymer network. [References: 46]
机译:本文描述了具有C16H33端基的HEUR(疏水性乙氧基化氨基甲酸酯)缔合聚合物在水溶液中浓度为2.0 wt%时的流变行为。在正常的恒定剪切力下,该溶液在低剪切速率下表现出牛顿特性,并且随着剪切速率的增加,在粘度急剧降低之前先通过剪切增稠区。在这里,我们报告稳态剪切流的振动叠加实验,以检查不同剪切条件下网络结构的状态。该技术涉及对流体施加稳定的剪切变形,一旦达到稳定状态,就会在样品上施加一个小的振幅振荡,以测量线性粘弹性。我们观察到,在剪切增稠区域内,平台模量大于牛顿区,表明剪切增稠是剪切诱导的机械活性链密度增加的结果,这可能是由于掺入了游离胶束或更高的聚集体进入网络结构。在剪切稀化区域,麦克斯韦弛豫时间随着剪切应力或剪切速率的增加而减小。因此,剪切稀化是疏水端基从网络的胶束连接处剪切增强的出口速率的结果。这是剪切增强缔合聚合物网络松弛速率的第一个实验证据。 [参考:46]

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