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Maleimide end- capped polyether telechelics as novel toughening agents for unsaturated polyester resin

机译:马来酰亚胺端盖聚醚遥遥克拉,作为非饱和聚酯树脂的新型增韧剂

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This paper deals with a study on toughening of an unsaturated polyester resin (UPR) using maleimide end-capped oligomers of polypropylene glycol (M-PPG), polytetramethyene oxide (M-PTMO), and polyethylene glycol (M-PEG) of varying molecular weights. These macro bismaleimides with large spacing between the functional groups were synthesized from the corresponding polyols (hydroxy telechelics) by reaction with (4-Maleimido) benzoyl chloride (MBC). These derivatives were characterised by chemical and spectral methods. These were then blended and co-cured with a UP resin based on copoly-propylene glycol (terephthalate -maleate) and relying on maleic acid-styrene copolymerisation for curing. The impacts of the nature, concentration and molecular weight of the telechelic additive on the physical and mechanical properties of the resultant unsaturated polyester resin (UPR) blends have been examined. Addition of the telechelics improved the mechanical characteristics of the crosslinked systems significantly. The improvement in fracture properties for a telecheilc was directly correlatable to a decrease in overall crosslink density estimated exprimentally as well as theoretically. The additive's backbone structure dictated the Tg and related properties of the blend. The properties were found to be the best for the blend toughened with M-PPG with a molecular weight 2000 g/mol, at 2.5 parts per hundred parts.The morphological features at this concentration as reflected in scanning electron microscopic analyses showed descrete poly ether particles microphase separation in the UPR matrix that acted as a crack path arrester.
机译:本文涉及使用聚丙二醇(M-PPG),聚四酯氧化烯(M-PTMO)和不同分子的聚乙二醇(M-PEG)的马来酰亚胺端盖低聚物来研究不饱和聚酯树脂(UPR)的研究。改变分子的聚乙二醇(M-PEG)重量。通过与(4-马来酰亚胺)苯甲酰氯(MBC)反应,通过与(4-马来酰亚胺)苯甲酰(MBC)反应来合成具有官能团之间具有大的间隔的宏观双聚酰胺。这些衍生物的特征在于化学和光谱方法。然后将它们混合并用基于共丙二醇(对苯二甲酸丙二醇)的Up树脂共固化并依赖于马来酸 - 苯乙烯共聚进行固化。研究了遥染剂的性质,浓度和分子量对所得不饱和聚酯树脂(UPR)共混物的物理和力学性能的影响。加入电动仪的添加显着改善了交联系统的机械特性。 Telecheilc的裂缝性能的改善直接相关,其对整体交联密度的降低估计在实质上以及理论上。添加剂的骨干结构决定了混合物的TG和相关性质。发现性质是用M-PPG的混合物最佳,其中分子量为2000g / mol,每百份2.5份。在扫描电子显微镜分析中反映的这种浓度的形态特征显示出描述的聚醚粒子用作裂缝路径避雷器的UPR矩阵中的微相分离。

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