首页> 外文期刊>Journal of nanoscience and nanotechnology >Electron Beam Irradiation Crosslinking and Flame Retardant of Ethylene Vinyl Acetate Using Melamine-Formaldehyde Microencapsulated Layered Double Hydroxides
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Electron Beam Irradiation Crosslinking and Flame Retardant of Ethylene Vinyl Acetate Using Melamine-Formaldehyde Microencapsulated Layered Double Hydroxides

机译:使用三聚氰胺 - 甲醛微胶囊化层次的双氢氧化物电子束照射交联和乙烯乙酸乙烯酯的阻燃剂

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摘要

The microcapsule particles were successfully prepared by means of in-situ copolymerization of layered double hydroxides (LDHs) with the melamine resin monomers, improving the compatibility of inorganic flame retardant LDH with polymer. The electron beam irradiation was introduced into the process to enhance the mechanical properties and thermostability of the flame retardant composite material. The flame-retardant composites were prepared by incorporating the microcapsule LDH into ethylene vinyl acetate (EVA). The compatibility of microcapsule particles with EVA, combustion and thermal behaviors were detected in sequence through SEM, TG analyses, LOI, UL-94 level and mechanical tests. It was shown that the irradiated EVA/LDH@MF composite had showed the best performances of flame retardancy and mechanical properties due to microencapsulation and irradiation processes. The uniform dispersion of microencapsulated LDH in the EVA matrix was due to the good compatibility of MF shell with EVA keeping the mechanical properties of EVA matrix. The irradiated EVA/LDH@MF with 200 kGy dose achieved a limiting oxygen index (LOI) of 25.5% and a UL-94 V-1 rating. When the dose rate was 100 kGy, the EVA/LDH@MF composite had the best mechanical properties of EVA composites. The microencapsulation of LDH with MF shell incorporated into EVA three-dimensioned network through electron beam irradiation induced crosslinking to enhance mechanical properties.
机译:通过用三聚氰胺树脂单体的层状双氢氧化物(LDHS)的原位共聚成功制备微胶囊颗粒,提高了与聚合物的无机阻燃剂LDH的相容性。将电子束辐射引入过程中以增强阻燃复合材料的机械性能和热稳定性。通过将微胶囊LDH掺入乙烯乙烯酯(EVA)来制备阻燃复合材料。通过SEM,TG分析,LOI,UL-94水平和机械测试,检测微胶囊颗粒与EVA,燃烧和热行为的相容性。结果表明,由于微胶囊化和照射过程,辐照的EVA / LDH / LDH / LDH / LDH @ MF复合材料显示出阻燃性和机械性能的最佳性能。微胶囊化LDH在EVA基质中的均匀分散是由于MF壳与EVA保持EVA基质的力学性能的良好相容性。具有200kGy剂量的辐照EVA / LDH / LDH / LDH @ MF实现了25.5%的限制氧指数(LOI)和UL-94 V-1等级。当剂量率为100 kgy时,EVA / LDH @ MF复合材料具有EVA复合材料的最佳机械性能。通过电子束照射诱导交联,将LDH与MF壳的微胶囊掺入EVA三维网络中,以增强机械性能。

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