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Curing of styrene-free unsaturated polyester alkyd and development of novel related clay nanocomposites

机译:无苯乙烯不饱和聚酯醇酸树脂的固化及新型相关粘土纳米复合材料的开发

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Thermoset unsaturated polyesters (UP) are usually obtained by crosslinking of alkyd chains dissolved in an unsaturated reactive monomeric diluent, usually styrene. Recently we found that UP-alkyd chains (without styrene) are intrinsically cured into a crosslinked matrix in the presence of peroxide. The thermal, mechanical, dynamic mechanical and chemorheological properties and the network molecular structure of the crosslinked UP-alkyd are a function of the peroxide content used. All properties change considerably upon the addition of small amounts of peroxide (between 1 and 2%Wt.) and change to a lesser extent upon employing higher peroxide concentrations (up to 6%wt.). Due to co-occurrence of crosslinking and scission events, the crosslinked system contains both gel and sol fractions. The sol fraction demonstrates a plasticizing effect on the crosslinked network, affecting the thermal and mechanical properties of the crosslinked polymer. The new materials developed in this work are interesting for utilization in innovative styrene-free UP-alkyd/organo-clay nanocomposites. It was found that inducing high shear levels for prolonged durations promotes the intercalation and exfoliation of the silicate layers, resulting in a better dispersion of clay particles. Crosslinking of the UP-alkyd/organo-clay nanocomposites alters their nanostructure, particularly affected by the peroxide content used. Thus, depending on the content employed, either an exfoliated or a combined intercalated/exfoliated structure may be realized.
机译:热固性不饱和聚酯(UP)通常是通过使溶解在不饱和反应性单体稀释剂(通常是苯乙烯)中的醇酸链交联而获得的。最近,我们发现在过氧化物的存在下,UP烷基链(不含苯乙烯)本质上被固化成交联的基质。交联的UP-烷基的热,机械,动态机械和化学流变性质以及网络分子结构是所用过氧化物含量的函数。在添加少量过氧化物(介于1%和2%(重量)之间)时,所有性能都会发生显着变化,而在使用更高浓度的过氧化物(至多6%wt。)时,其性能变化较小。由于同时发生交联和断裂事件,所以交联体系同时包含凝胶和溶胶组分。溶胶级分显示出对交联网络的增塑作用,影响了交联聚合物的热和机械性能。这项工作中开发的新材料对于在创新的不含苯乙烯的UP-烷基/有机粘土纳米复合材料中的应用很有趣。已经发现,在较高的持续时间内引起高剪切水平会促进硅酸盐层的插层和剥落,从而导致粘土颗粒更好的分散。 UP烷基/有机粘土纳米复合材料的交联会改变其纳米结构,特别是受所用过氧化物含量的影响。因此,取决于所采用的含量,可以实现剥离的或组合的嵌入/剥离的结构。

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