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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Phase behavior and rheology in water and in model paint formulations thickened with HM-EHEC:influence of the chemical structure and the distribution of hydrophobic tails
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Phase behavior and rheology in water and in model paint formulations thickened with HM-EHEC:influence of the chemical structure and the distribution of hydrophobic tails

机译:在水中和用HM-EHEC增稠的模型涂料配方中的相行为和流变性:化学结构的影响和疏水性尾部的分布

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The phase behavior and rheology of aqueous solutions of hydrophobically modified ethyl(hydroxyethyl) cellulose have been investigated.Effects of variations in the chemical structure of the hydrophobic tails grafted to the polymer backbone were followed.When the length of the polymer hydrophobic tails was increased the effects caused by association between different polymer chains became more pronounced.This was manifested by an increased tendency of the solution to phase separate,a higher viscosity,and a more elastic rheological response.The higher elasticity and viscosity was ascribed to slower polymer dynamics following from stronger hydrophobic associations.A separation of chemically different polymer chains into two coexisting phases was strongly promoted by modification with long hydrophobic tails.It was found that one of the coexisting phases contained highly substituted polymer chains,while in the other phase,less substituted polymer chains were found.It is proposed that this type of phase separation occurs because the highly substituted polymer chains have a pronounced tendency to form a network.Model paint formulations prepared with the different polymers showed that an increasing length of the polymer hydrophobic tails slowed down the dynamics of the formulation.this was manifested as a higher thickening efficiency (a smaller amount of polymer material was needed to obtain the desired viscosity),and a more pronounced shear-thinning behavior of formulations comprising polymers with long hydrophobic tails.Compared ot the simpler systems,which only contained polymer and water,the model paint formulations were less prone to phase separation.It is suggested that, in the paint formulation,surfactants,latex particles,pigment,and fillers increase the number of possible association sites for the polymer hydrophobic tails.2000 Elsevier Science Ltd.All rights reserved.
机译:研究了疏水改性的乙基(羟乙基)纤维素水溶液的相行为和流变学特性,研究了接枝到聚合物主链上的疏水尾的化学结构变化的影响,当聚合物疏水尾的长度增加时,由不同的聚合物链之间的缔合引起的作用变得更加明显。这表现为溶液相分离的趋势增加,粘度更高和弹性流变响应更高。较高的弹性和粘度归因于随后的聚合物动力学变慢。更强的疏水缔合作用。通过长疏水尾部的修饰,强烈促进了化学不同的聚合物链分离为两个共存相。发现共存相之一包含高度取代的聚合物链,而在另一相中包含较少取代的聚合物链被发现。建议发生相分离是因为高度取代的聚合物链具有明显的形成网络的趋势。用不同聚合物制备的模型涂料配方表明,聚合物疏水尾的长度增加会减慢配方的动力学,这表现为较高的增稠效率(需要较少量的聚合物材料才能获得所需的粘度),以及包含具有长疏水尾的聚合物的配方的剪切稀化行为更为明显。与仅包含聚合物和水的简单体系相比,模型涂料配方不易发生相分离。建议在涂料配方中,表面活性剂,胶乳颗粒,颜料和填料会增加聚合物疏水尾部可能的缔合位点数量。2000Elsevier Science Ltd.保留所有权利。保留。

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