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首页> 外文期刊>Polymer Composites >High Performance Self-Healing Bismaleimide/ Diallylbisphenol A/Poly(phenylene oxide) Microcapsules Composites With Low Temperature Processability
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High Performance Self-Healing Bismaleimide/ Diallylbisphenol A/Poly(phenylene oxide) Microcapsules Composites With Low Temperature Processability

机译:具有低温加工性能的高性能自修复双马来酰亚胺/二烯丙基双酚A /聚苯醚微胶囊复合材料

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摘要

Novel high performance self-healing 4,4-bismaleimido-diphenylmethane (BDM)/diallylbisphenol A(BA)/poly (phenylene oxide) microcapsules filled with epoxy resin (PPOMCs) systems with low temperature processability were developed. The effects of PPOMCs on the reactivity of BDM/BA resin system were investigated; the properties of cured BDM/BA/PPOMCs systems such as fracture toughness, dynamic mechanical property, dielectric property, and self-healing ability were discussed. The morphologies of the cured resin systems were characterized using scanning electronic microscope and light microscopy. Results reveal that the addition of PPOMCs can catalyze the polymerization reaction of BDM/BA resins. BDM/BA systems with appropriate PPOMCs content cured at low temperature possess excellent fracture toughness, high glass transition temperature (T_g), and low dielectric property. The self-healing ability of BDM/BA can be realized by the introduction of PPOMCs owing to the polymerization of the released core materials from PPOMCs. The self-healing efficiency of healed BDM/BA/PPOMCs systems can be influenced by the size and content of PPOMCs and the contact areas between the crack surfaces.
机译:开发了新型的高性能自修复4,4-双马来酰亚胺基-二苯甲烷(BDM)/二烯丙基双酚A(BA)/聚环氧丙烷微胶囊,并填充了具有低温加工性能的环氧树脂(PPOMC)系统。研究了PPOMCs对BDM / BA树脂体系反应性的影响。讨论了固化的BDM / BA / PPOMCs体系的性能,例如断裂韧性,动态力学性能,介电性能和自愈能力。使用扫描电子显微镜和光学显微镜表征了固化树脂体系的形态。结果表明,添加PPOMC可以催化BDM / BA树脂的聚合反应。具有在低温下固化的适当PPOMC含量的BDM / BA系统具有出色的断裂韧性,高玻璃化转变温度(T_g)和低介电性能。由于从PPOMC中释放出的核心材料的聚合,可以通过引入PPOMC来实现BDM / BA的自我修复能力。修复后的BDM / BA / PPOMCs系统的自修复效率会受到PPOMC的大小和含量以及裂纹表面之间的接触面积的影响。

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