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Preparation and characterization of siliconized epoxy-1,2-bis(maleimido)ethane intercrosslinked matrix materials

机译:硅化环氧-1,2-双(马来酰亚胺)乙烷互连基质材料的制备及表征

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Novel intercrosslinked networks of siliconized epoxy-1,2-bis(maleimido)ethane matrix systems are developed. The siliconization of epoxy resin is carried out by using 5-15% hydroxyl-terminated poly(dimethylsiloxane) with gamma-aminopropyltriethoxysilane as a crosslinking agent and dibutyltin dilaurate as a catalyst. The siliconized epoxy systems are further modified with 5-15% 1,2-bis(maleimido)ethane and cured by using diaminodiphenylmethane. The prepared neat resin castings are characterized for their mechanical properties. Mechanical studies indicate that the introduction of siloxane into these epoxy resins improves the toughness with a reduction in the stress-strain values, whereas incorporation of bismaleimide (BMI) into the epoxy resin improves the stress-strain properties with a lowering of the toughness. The introduction of both siloxane and BMI into the epoxy resin influences the mechanical properties according to their content percentages. Differential scanning calorimetry (DSC), thermogravimetry, and heat distortion temperature analyses are also carried out to assess the thermal behavior of the matrix materials that are developed. DSC thermograms of the BMI modified epoxy systems show unimodal reaction exotherms. The glass-transition temperature, thermal degradation temperature, and heat distortion temperature of the cured BMI modified epoxy and siliconized epoxy systems increase with increasing BMI content. The water absorption behavior of the matrix materials is also studied. (C) 2003 Wiley Periodicals, Inc. [References: 27]
机译:开发了新的硅化环氧-1,2-双(马来酰亚胺)乙烷基质系统的硅化环氧化网络。通过使用5-15%羟基封端的聚(二甲基硅氧烷)用γ-氨基丙基三乙氧基硅烷作为交联剂和作为催化剂的二丁基锡的二丁基锡进行硅化。硅化环氧系统用5-15%1,2-双(马来酰亚胺)乙烷进一步改性,并通过使用二氨基二苯基甲烷固化。制备的纯树脂铸件的特征在于它们的机械性能。机械研究表明,将硅氧烷引入这些环氧树脂中的韧性随着应力 - 应变值的降低而改善了韧性,而将双聚物(BMI)掺入环氧树脂中改善了韧性降低的应力 - 应变性能。将硅氧烷和BMI引入环氧树脂的引入根据其含量百分比影响机械性能。还进行了差分扫描量热法(DSC),热重量和热失真温度分析,以评估开发的基质材料的热行为。 BMI改性环氧系统的DSC热图显示出单峰反应放热。玻璃化转变温度,热降解温度和固化BMI改性环氧树脂和硅化环氧系统的热变形温度随着BMI含量的增加而增加。还研究了基质材料的吸水性。 (c)2003 Wiley期刊,Inc。[参考:27]

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