首页> 外文期刊>Journal of Polymer Research >Preparation, characterization and its flame retardance performance of microencapsulated ammonium polyphosphate/bridged polysesquisiloxane polyurethane composites
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Preparation, characterization and its flame retardance performance of microencapsulated ammonium polyphosphate/bridged polysesquisiloxane polyurethane composites

机译:微囊化聚磷酸铵/桥联聚倍半硅氧烷聚氨酯复合材料的制备,表征及其阻燃性能

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摘要

A core shell material consisting of ammonium polyphosphate as core and 4,4-oxydianiline-formaldehyde resin as shell was prepared through a situ microencapsulation technology. The monomer of the polyurethane (PU) was modified to form bridged polysesquisiloxane. The purpose of modification is to improve the thermal stability of polyurethane matrix through the formation of networks. The degree of the networks was evaluated by solid state Si-29-nuclear magnetic resonance. The structure and hydrophobic property of microencapsulated flame retardant were characterized using X-ray photoelectron spectroscopy and water solubility. The results indicated that the microencapsulation of APP with 4,4'-oxydianiline-formaldehyde resin (OF resin) resulted in improved hydrophobicity. The thermal properties of final flame retardant were systematically analyzed through thermogravimetric analysis. Limiting oxygen index and UL-94 test were used to classfied the flame retardant properties of varying the composition of APP and OFAPP in silanol-terminated polyurethane composites. Pure PU exhibited an LOI of 17 % and failed the UL-94 test. The LOI values of the 40 % OFAPP-added composites can reach 41 % and pass V-0 level. The results revealed that the microcapsulation of commercial flame retardant can improve the flame retardance of the composites.
机译:通过原位微囊化技术制备了以多磷酸铵为核,4,4-氧二苯胺-甲醛树脂为壳的核壳材料。聚氨酯(PU)的单体被改性以形成桥连的聚倍半硅氧烷。改性的目的是通过网络的形成来改善聚氨酯基质的热稳定性。通过固态Si-29-核磁共振评估网络的程度。用X射线光电子能谱和水溶性表征了微囊阻燃剂的结构和疏水性能。结果表明,用4,4'-氧化二苯胺-甲醛树脂(OF树脂)对APP进行微囊封装可改善疏水性。通过热重分析系统地分析了最终阻燃剂的热性能。采用极限氧指数和UL-94试验对硅烷醇封端的聚氨酯复合材料中APP和OFAPP组成的阻燃性能进行了分类。纯PU的LOI为17%,未通过UL-94测试。添加了40%OFAPP的复合材料的LOI值可以达到41%,并通过V-0等级。结果表明,商用阻燃剂的微囊化可以提高复合材料的阻燃性。

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