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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Microstructural evolutions of LDPE/PA6 blends by rheological and rheo-optical analyses: Influence of flow and compatibilizer on break-up and coalescence processes
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Microstructural evolutions of LDPE/PA6 blends by rheological and rheo-optical analyses: Influence of flow and compatibilizer on break-up and coalescence processes

机译:流变和流变光学分析对LDPE / PA6共混物的微观结构演变:流动和增容剂对分解和聚结过程的影响

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In this paper we investigate the relationships between flow and morphology in immiscible diluted non-Newtonian (LDPE and PA6) blends. Both theological and rheo-optical techniques have been used. The effect of a steady shear flow on the blend microstructure has been studied at various shear rates. Moreover, the effects of a compatibilizing agent on rheology and morphology have been analysed. The compatibilizer causes decrease of average drop sizes and stabilization of the blend morphology during a steady shear flow. An attempt to relate the evolution of the volume-average radius with flow has been carried out by following the approach generally pursued for Newtonian polymer blends. The rescaling of both the capillary number and the viscosity ratio by using the shear-rate-dependent viscosity of blend constituents allows to roughly estimate the shear rate wherein severe drop break-up phenomena occur for the uncompatibilized system. Conversely, quantitative discrepancies between experimental data and theoretical expectations have been found for compatibilized blend. The coarsening behaviour in the early stages of an annealing process at rest has been studied, and simple model has been proposed to describe the volume average drop radius growth rate. The coalescence suppression detected for the compatibilized blend could be due to the shielding effect related to the presence of the copolymer layers at the interface between the phases. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在本文中,我们研究了不混溶的稀释非牛顿(LDPE和PA6)混合物中流动与形态之间的关系。神学和流变光学技术都已被使用。在各种剪切速率下,均研究了稳定剪切流对共混物微观结构的影响。此外,已经分析了相容剂对流变学和形态的影响。增容剂在稳定剪切流期间引起平均液滴尺寸的减小和共混物形态的稳定。通过遵循通常用于牛顿聚合物共混物的方法,已经进行了将体积平均半径的演变与流动相关联的尝试。通过使用依赖于共混物成分的剪切速率的粘度来重新确定毛细管数和粘度比,可以粗略估计剪切速率,其中对于不相容的系统会出现严重的液滴破裂现象。相反,已发现相容性混合物的实验数据与理论预期值之间存在定量差异。研究了退火过程的静止状态下的粗化行为,并提出了简单的模型来描述体积平均液滴半径增长率。对于相容的共混物检测到的聚结抑制作用可能是由于与相之间界面处共聚物层的存在有关的屏蔽作用。 (c)2006 Elsevier Ltd.保留所有权利。

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