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Rheology and Flow Behavior of Suspensions of Nanosized Plate-Like Particles in Polyester Resins at the Startup of Shear Flows; Experimental and Modeling

机译:剪切流开始时聚酯树脂中纳米板状颗粒悬浮液的流变学和流动行为;实验与建模

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Applications of organoclays to polymer resins are potentially of great technical interest. This research targets preparation and characterization of nanocom-posites of organoclays in an unsaturated polyester resin (UP). The nanocomposites with two distinct dispersion levels were compounded in a complex multi-steps mixing process at three concentrations and subsequently their microstructures were characterized by XRD. The solution-state rheological properties of layered silicate/UP were measured in the start-up of steady state in the simple shear mode and analyzed based on our observations of internal structure of nanoparticles dispersion. Strong shear thinning behavior caused by increasing particle alignment induced by the shear field was observed for the suspensions. Effects of nanoparticles loadings and shearing on transient viscosity of the UP resin were examined. The experimental results show that increasing shear time in nanosuspension preparation steps and hence improvements of nanoplate dispersion in the polyester resin give rise to viscosity of the suspensions. A theoretical analysis of the motion of rigid ellipsoidal particles In a Newtonian fluid based on the thermodynamic approach and Jeffery's analysis of the motion of ellipsoid particles with an interaction term was developed to determine the orientation state of disc-shape layers and then, the expression for the extra stress tensor was calculated to predict transient viscosity and normal stress differences. It is found that the thin oblate particles have significant orientation preference in the shearing direction.
机译:有机粘土在聚合物树脂上的应用潜在地具有巨大的技术兴趣。这项研究的目标是在不饱和聚酯树脂(UP)中制备和表征有机粘土纳米复合材料。具有两个不同分散水平的纳米复合材料在复杂的多步混合过程中以三种浓度复合,然后通过XRD对它们的微观结构进行了表征。在简单剪切模式下,在稳态开始时测量层状硅酸盐/ UP的溶液状态流变性质,并基于我们对纳米颗粒分散体内部结构的观察进行分析。对于悬浮液,观察到由剪切场引起的颗粒排列增加引起的强烈的剪切稀化行为。研究了纳米粒子的负载和剪切对UP树脂瞬态粘度的影响。实验结果表明,增加纳米悬浮液制备步骤中的剪切时间,从而改善纳米板在聚酯树脂中的分散性,会提高悬浮液的粘度。基于热力学方法,对牛顿流体中刚性椭球体的运动进行了理论分析,并根据杰弗里对带有相互作用项的椭球体运动的分析,确定了圆盘状层的取向状态,然后给出了计算额外的应力张量以预测瞬态粘度和法向应力差。发现扁扁的细颗粒在剪切方向上具有明显的取向偏好。

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