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Flame retardancy and thermal properties of novel UV-curing epoxy acrylate coatings modified by phosphorus-containing hyperbranched macromonomer

机译:含磷超支化大分子单体改性的新型紫外线固化环氧丙烯酸酯涂料的阻燃性和热性能

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摘要

A novel phosphorus-containing hyperbranched macromonomer (PHM), successfully synthesized via Michael addition polymerization of tri(acryloyloxyethyl) phosphate (TAEP) with n-butylamine (BA), was blended with epoxy acrylate resin (EA) to prepare UV curable flame retardant coatings. The study of thermal degradation of these coatings revealed that PHM can catalyze the degradation of EA, contributing to the formation of thermally stable char layer. The residues of EA3 (which contains 45 wt.% PHM) at various temperatures were analyzed by X-ray photoelectron spectroscopy (XPS) and the results displayed that the formation of phosphorus-carbon structure can well protect the carbonaceous char from thermal-oxidative degradation at 800 C. Besides, the investigation of the flammability illustrated that the addition of PHM increased the limiting oxygen index (LOI) value and reduced the peak heat rate release (HRR) and total heat release (THR).
机译:将三(丙烯酰氧基乙基)磷酸酯(TAEP)与正丁胺(BA)通过迈克尔加成聚合成功合成的新型含磷超支化大分子单体(PHM)与环氧丙烯酸酯树脂(EA)共混以制备可紫外固化的阻燃涂料。这些涂层的热降解研究表明,PHM可以催化EA的降解,有助于形成热稳定的炭层。通过X射线光电子能谱(XPS)分析了EA3(含有45 wt。%PHM)的残留物,结果表明磷碳结构的形成可以很好地保护碳质炭免于热氧化降解。此外,对可燃性的研究表明,添加PHM可提高极限氧指数(LOI)值,并降低峰值热速率释放量(HRR)和总热释放量(THR)。

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