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Environmentally friendly fire-resistant epoxy resins based on a new oligophosphonate with high flame retardant efficiency

机译:基于具有高阻燃效率的新寡核酸盐的环保耐火环氧树脂

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Advanced flame retardant epoxy resins, environmentally friendly, with different contents of a new oligophosphonate ( PFR ), were prepared using dicyandiamide as a hardener and 1,1-dimethyl-3-phenylurea as an accelerator. PFR , with a high phosphorus content, was synthesized by polycondensation reaction of phenylphosphonic dichloride with a phosphorus-containing bisphenol, namely bis((6-oxido-6 H -dibenz[ c , e ][1,2]oxaphosphorinyl)-(4-hydroxyaniline)methylene)-1,4-phenylene. The bisphenol was prepared by reacting 9,10-dihydro-oxa-10-phosphaphenanthrene-10-oxide with an imine bisphenol resulting from the condensation of 4-aminophenol with terephthalaldehyde. The structure and morphology of cured epoxy resins were evaluated by Fourier transform infrared spectroscopy and scanning electron microscopy (SEM) analysis, respectively. Differential scanning calorimetry analysis revealed that cured epoxy resins containing PFR possessed slightly higher glass transition temperatures than phosphorus-free cured epoxy resin. Thermogravimetric analysis and limiting oxygen index values indicated that the incorporation of PFR into epoxy resin substantially enhanced the thermal stability and flame retardancy of the char layer at high temperature. The surface morphology of the char residue was studied by SEM measurements. The kinetic processing of thermogravimetric data was carried out using Friedman and Vyazovkin methods. The lifetime prediction analysis established that the fire-resistant phosphorus-containing epoxy resins could be used at a constant temperature of 200 °C up to 620–630 minutes. The new PFR can be successfully used as a very efficient flame retardant for improving the fire-resistance properties of epoxy resins.
机译:使用双氰胺作为固化剂和1,1-二甲基-3-苯基脲,制备高级阻燃环氧树脂,具有不同含量的新的寡核酸盐(PFR)的含量,作为促进剂。通过苯基膦酰基二氯与含磷的双酚的缩聚反应合成PFR,即双酚,即双酚((6-氧尿-6 H-Dibenz [C,E] [1,2]氧磷吡啶基) - (4 - 羟基苯胺)亚甲基)-1,4-亚苯基。通过将9,10-二氢氧-10-磷苯胺蒽-10-氧化物与亚胺双酚反应制备双酚,得到4-氨基苯酚的亚胺双酚与对苯二甲醛的缩合。通过傅里叶变换红外光谱和扫描电子显微镜(SEM)分析评估固化环氧树脂的结构和形态。差分扫描量热法分析显示,含有PFR的固化环氧树脂具有比无磷固化的环氧树脂具有稍高的玻璃化转变温度。热重分析和限制氧指数值表明,PFR掺入环氧树脂中的掺入高温下的热稳定性和火焰延缓性。通过SEM测量研究了Char残留物的表面形态。使用弗里德曼和Vyazovkin方法进行了热重标数据的动力学处理。寿命预测分析确定含有耐火磷的环氧树脂可在200℃的恒定温度下使用,高达620-630分钟。新的PFR可以成功用作非常有效的阻燃剂,以改善环氧树脂的耐火性。

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