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首页> 外文期刊>Bulletin of materials science >Electron-beam curing of epoxy resins: effect of alcohols on cationic polymerization
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Electron-beam curing of epoxy resins: effect of alcohols on cationic polymerization

机译:环氧树脂的电子束固化:醇对阳离子聚合的影响

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摘要

Electron-beam (e-beam) induced polymerization of epoxy resins proceeds via cationic mechanism in presence of suitable photoinitiator. Despite good thermal properties and significant processing advantages, epoxy-based composites manufactured using e-beam curing suffer from low compressive strength, poor interlaminar shear strength, and low fracture toughness. A detailed understanding of the reaction mechanism involving e-beam induced polymerization is required to properly address the shortcomings associated with ebeam curable resin systems. This work investigated the effect of hydroxyl containing materials on the reaction mechanism of e-beam induced cationic polymerization of phenyl glycidyl ether (PGE). The alcohols were found to play important roles in polymerization. Compared to hydroxyl group of aliphatic alcohol, phenolic hydroxyl group is significantly less reactive with the oxonium active centre, generated during e-beam induced polymerization of epoxy resin system.
机译:在合适的光引发剂的存在下,电子束(e-beam)引发的环氧树脂聚合反应通过阳离子机理进行。尽管具有良好的热性能和显着的加工优势,但使用电子束固化制造的环氧基复合材料仍具有较低的抗压强度,较差的层间剪切强度和较低的断裂韧性。需要正确理解涉及电子束诱导聚合的反应机理,以正确解决与电子束可固化树脂体系相关的缺点。这项工作研究了含羟基物质对电子束诱导的苯基缩水甘油醚(PGE)阳离子聚合反应机理的影响。发现这些醇在聚合中起重要作用。与脂族醇的羟基相比,酚醛羟基与电子体系诱导的环氧树脂体系聚合过程中产生的氧鎓活性中心的反应性显着降低。

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