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A study of the evolution of mechanical properties and structural heterogeneity of polymer networks formed by photopolymerizations of multifunctional (meth)acrylates

机译:多官能(甲基)丙烯酸酯光聚合形成聚合物网络的力学性能和结构异质性演变的研究

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A study of the mechanical properties and the structural heterogeneity of crosslinked polymers formed by photopolymerization of multifunctional monomers is described. By using living radical polymerizations, networks with no trapped carbon radicals have been synthesized. These crosslinked networks, which have no trapped free radicals can be heated without inducing further reaction and crosslinking. This feature makes the living radical polymerizations very useful in the characterization of structure and properties during and after the polymerization. In this work, living radical polymerizations have been used to study the mechanical properties of networks formed by home-and copolymerization of diethyleneglycol dimethacrylate (DEGDMA) and poly(ethyleneglycol 600) dimethacrylate (PEG600DMA) with n-octyl methacrylate (OcMA) using dynamic mechanical analysis. Further, an acrylate copolymer system consisting of n-heptyl acrylate (HepA) and diethylene glycol diacrylate (DEGDA) has also been examined. The glass transition temperature of the copolymers was characterized as a function of composition as well as size of crosslinking agent in these copolymers. By performing frequency scan experiments, the distribution of relaxation times of the crosslinked polymers were characterized. From such analyses, the structural heterogeneity as measured by the width of the distribution of relaxation times of the networks was characterized as a function of the comonomer composition in the copolymers. Evidence that the dependence of the glass transition temperature on the crosslinking density is not straightforward is presented. Also, the results indicate that the structural heterogeneity of the materials increases as the crosslinking density of the copolymer is increased. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 27]
机译:描述了对通过多官能单体的光聚合形成的交联聚合物的机械性能和结构异质性的研究。通过使用活性自由基聚合,已经合成了没有被捕获的碳自由基的网络。这些没有捕获的自由基的交联网络可以被加热而不引起进一步的反应和交联。该特征使得活性自由基聚合在聚合期间和聚合之后的结构和性质的表征中非常有用。在这项工作中,活性自由基聚合已用于研究通过动态机械方法将二甲基丙烯酸二乙二醇酯(DEGDMA)和聚乙二醇600二甲基丙烯酸酯(PEG600DMA)与甲基丙烯酸正辛酯(OcMA)进行本位和共聚反应而形成的网络的机械性能。分析。另外,还研究了由丙烯酸正庚酯(HepA)和二甘醇二丙烯酸酯(DEGDA)组成的丙烯酸酯共聚物体系。共聚物的玻璃化转变温度表征为这些共聚物中的组成以及交联剂的尺寸的函数。通过进行频率扫描实验,表征了交联聚合物的弛豫时间分布。从这样的分析中,通过网络的弛豫时间的分布宽度来测量的结构异质性被表征为共聚物中共聚单体组成的函数。提出了玻璃化转变温度对交联密度的依赖性不是直接的证据。而且,结果表明,随着共聚物的交联密度增加,材料的结构异质性增加。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:27]

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