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首页> 外文期刊>Journal of Applied Polymer Science >Reactive surfactants in heterophase polymerization. XVII. Influence of the surfactant on the mechanical properties and hydration of the films
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Reactive surfactants in heterophase polymerization. XVII. Influence of the surfactant on the mechanical properties and hydration of the films

机译:异相聚合中的反应性表面活性剂。十七。表面活性剂对薄膜力学性能和水化的影响

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In the context of a European union-supported network on "Reactive Surfactants for Heterophase Polymerization," different polymerizable surfactants (surfmers) have been synthesized and engaged in the emulsion polymerization of styrene, butyl acrylate, and acrylic acid. The thermomechanical properties of films cast from these different latices are reported in this article. The evolution of the mechanical properties with temperature and the effect of water molecules on these properties are studied. We observed that the studied surfactants do not influence the properties of the dry films. However, some differences due to grafting of reactive surfactants appeared when the films were wet. The amount of water uptake is drastically decreased when only reactive surfactants are present in the film. Concerning the mechanical behavior of the wet films, a decrease of the plastic flow stress is observed for all the samples whatever the nature of the surfactant (reactive or conventional). Hence, calorimetric measurements and dynamic mechanical analysis are used to identify the possible mechanisms that induce the change in the mechanical behavior of the latex films. In the case of reactive surfactant grafted to the polymer, the very low value of water uptake is accompanied by a plasticization of the polymer. In contrast, no plasticizing effect is observed in the case of nonreactive surfactant, even if the amount of water is very large. Finally, the tensile behavior of the styrene-butyl acrylate copolymer versus temperature is analyzed in the frame of the quasi point defects (qpd) model. Both rubber elasticity and chain orientation effects are taken into account to describe the behavior laws at large extensions (i.e., is an element of approximate to 1.2). (C) 2002 Wiley Periodicals Inc. [References: 20]
机译:在欧盟支持的“用于异相聚合的反应性表面活性剂”网络的背景下,已经合成了不同的可聚合表面活性剂(表面活性剂),并将其用于苯乙烯,丙烯酸丁酯和丙烯酸的乳液聚合。本文报道了由这些不同胶乳流延的薄膜的热机械性能。研究了机械性能随温度的变化以及水分子对这些性能的影响。我们观察到所研究的表面活性剂不会影响干膜的性能。然而,当膜湿时,由于反应性表面活性剂的接枝而出现一些差异。当膜中仅存在反应性表面活性剂时,吸水量急剧减少。关于湿膜的机械性能,无论表面活性剂的性质如何(反应性或常规),所有样品均观察到塑性流动应力的降低。因此,量热测量和动态力学分析被用于识别引起乳胶膜机械性能变化的可能机理。在将反应性表面活性剂接枝到聚合物的情况下,非常低的吸水率伴随着聚合物的增塑。相反,在非反应性表面活性剂的情况下,即使水的量非常大,也没有观察到增塑作用。最后,在准点缺陷(qpd)模型的框架内分析了苯乙烯-丙烯酸丁酯共聚物的拉伸行为与温度的关系。考虑橡胶的弹性和链取向的影响来描述大延伸时的行为定律(即,是大约1.2的元素)。 (C)2002 Wiley Periodicals Inc. [参考:20]

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