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o-Phenylenediamine-derived phosphorus-based cyclic flame retardant for epoxy and polyurethane systems

机译:邻苯二胺衍生的环氧树脂和聚氨酯体系的基于磷的环状阻燃剂

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The present study attempts the synthesis of a cyclic multifunctional flame-retardant (FR) moiety from o-phenylenediamine (OPDA) as the starting material. OPDA was reacted with phenylphosphonic dichloride and further with the 3-monochloro-1,2-propanediol to obtain the final product (FRPOL) which was then incorporated into epoxy and polyurethane coating systems. The structure of the synthesized molecule was confirmed using hydroxyl value, Fourier transform infrared spectroscopy and nuclear magnetic resonance spectroscopy. The cured coating films were characterized for thermal, mechanical and flame-retardant properties. Thermogravimetric analysis and differential scanning calorimetry were used to carry out the thermal degradation studies and to know the glass transition temperatures (T-g), respectively. The thermal and mechanical properties were excellent after the incorporation of the synthesized molecule into the coating systems. The limiting oxygen index (LOI) and UL-94 vertical burning tests were carried out to check the flame retardancy of the cured coating films. The polyurethane with FR had the maximum LOI value of 32 while the epoxy with 45% concentration of FR had a maximum LOI value of 26 among all the coating formulations. The formulations with FRPOL displayed self-extinguishing behavior with no dripping in UL-94 test.
机译:本研究试图将来自O-苯二胺(OPDA)的环状多功能阻燃剂(FR)部分合成为原料。 OPDA与苯基膦酰基二氯化物反应,进一步与3-单氯-1,2-丙二醇一起获得最终产物(FRPOL),然后将其掺入环氧树脂和聚氨酯涂料体系中。使用羟值,傅里叶变换红外光谱和核磁共振光谱证实合成分子的结构。固化涂膜的特征在于热,机械和阻燃性。使用热重分析和差示扫描量热法用于进行热降解研究,并分别知道玻璃化转变温度(T-G)。在合成的分子掺入涂料体系之后,热和机械性能优异。进行限制氧指数(LOI)和UL-94立式燃烧试验,以检查固化涂膜的阻燃性。具有Fr的聚氨酯具有32的最大LOI值,而具有45%浓度FR的环氧树脂在所有涂料配方中的最大LOI值为26。具有FRPOL的配方显示出自熄性行为,UL-94测试中没有滴水。

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