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Studies on bismaleimide co-cured Novolac epoxy-diallyl bisphenol-A system

机译:双马来酰亚胺共固化酚醛环氧二烯丙基双酚A体系的研究

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摘要

The novolac epoxy (EPN)-2-2'-diallyl bisphenol-A (DABA) system was modified by reactive blending with bisphenol-A bismaleimide (BMI) to improve its high temperature properties. Molar concentration of BMI in the stochiometric (1:1) blend of EPN and DABA was varied and the cure conditions were optimized for these systems by DSC, DMA and rheological Studies. The glass composites processed using these ternary blends were characterized for their thermal, mechanical and dynamic mechanical properties. The incorporation of BMI into the epoxy-phenol system yielded a matrix system with improved glass transition temperature and comparable mechanical properties. The increase in BMI molar concentration beyond 1.0 resulted in deterioration in the mechanical properties and fracture toughness. But the high temperature performance of the composites, determined from their inter-laminar shear strength retention, showed systematic improvement with concentration of BMI in the system. The toughening of the system using polyether sulphone improved its mechanical properties with a marginal penalty on its glass transition temperature. The dependence of properties of composites on the type, orientation and stacking sequence of the laminates was investigated. The influence of the nature of the bismaleimide on the properties of the ternary reactive blend and its glass laminates was also examined. On changing the BMI, it was seen that the rigidity of the molecular backbone of the bismaleimide contributed to the high temperature properties of the ternary blend, while BMI with better flexibility has improved the mechanical properties of the resultant composite systems.
机译:酚醛清漆环氧树脂(EPN)-2-2'-二烯丙基双酚A(DABA)体系通过与双酚A双马来酰亚胺(BMI)反应共混来改进,以改善其高温性能。 EPN和DABA的化学计量(1:1)混合物中BMI的摩尔浓度变化,并且通过DSC,DMA和流变学研究针对这些系统优化了固化条件。使用这些三元共混物加工的玻璃复合材料的热,机械和动态机械性能得以表征。将BMI掺入环氧-苯酚体系可制得具有改善的玻璃化转变温度和相当的机械性能的基质体系。 BMI摩尔浓度的增加超过1.0导致机械性能和断裂韧性劣化。但是,由其层间剪切强度保持率确定的复合材料的高温性能显示出系统中BMI浓度的系统改善。使用聚醚砜对系统进行增韧,改善了其机械性能,但对玻璃化转变温度的影响很小。研究了复合材料的性能对层压板的类型,取向和堆叠顺序的依赖性。还研究了双马来酰亚胺的性质对三元反应性共混物及其玻璃层压板的性能的影响。在改变BMI时,发现双马来酰亚胺分子主链的刚性有助于三元共混物的高温性能,而具有更好柔韧性的BMI则改善了所得复合体系的机械性能。

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