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Thermal and electrical properties of glass fiber reinforced o-cresol novolac epoxy composites cured with allylated phenol novolac hardener

机译:烯丙基苯酚酚醛清漆固化剂固化的玻璃纤维增​​强邻甲酚酚醛清漆环氧复合材料的热电性能

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摘要

An allyI group was introduced into a phenol novolac hardener to improve the thermal and electrical properties of glass fiber reinforced o-cresol novolac epoxy composites. Based on ~1H NMR analysis, it was found that the degree of allylation was measured as 12.5% and 15.3% of allylated moieties underwent Claisen rearrangement. Thermal and electrical properties of the prepared composites were investigated by thermal mechanical analysis, dynamic mechanical analysis and dielectric measurements. Their thermal expansion coefficient and glass transition temperature measured by thermal mechanical analysis varied from 20.1 to 18.0 ppm K~(-1) and 132.5 to 170.9 °C, respectively, due to allylation of the phenol novolac hardener. From the storage modulus at the rubbery plateau, it was confirmed that these improvements were mainly caused by an increase in the crosslink density of the matrix resin owing to allyl groups. The electrical properties of the composites, however, showed no noticeable changes by allylation of the phenol novolac hardener.
机译:allyI基团被引入酚醛清漆固化剂中,以改善玻璃纤维增​​强的邻甲酚酚醛清漆环氧复合材料的热性能和电性能。基于〜1H NMR分析,发现烯丙基化度被测量为进行克莱森重排的烯丙基化部分的12.5%和15.3%。通过热力学分析,动态力学分析和介电测量研究了所制备复合材料的热和电性能。由于苯酚酚醛清漆硬化剂的烯丙基化,通过热力学分析测得的它们的热膨胀系数和玻璃化转变温度分别在20.1至18.0ppm K〜(-1)和132.5至170.9℃之间变化。从橡胶高原的储能模量,证实这些改善主要是由于烯丙基导致基质树脂的交联密度增加。然而,通过酚醛清漆固化剂的烯丙基化,复合材料的电性能没有显示出明显的变化。

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