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Preparation of Melamine Formaldehyde Resin Modified with Pentaerythritol and its Flame Retardant Effect in Polypropylene

机译:用季戊四醇改性三聚氰胺甲醛树脂的制备及其在聚丙烯中的阻燃效应

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摘要

A new triazine charring agent, melamine formaldehyde resin modified with pentaerythritol (named as MF-MPOL), was synthesized through hydroxymethylation, condensation and etherification by using melamine, paraformaldehyde and pentaerythritol as raw materials, and characterized by solid-state ~(13)C NMR and FT-IR. The intumescent flame retardant (IFR) consisting of MF-MPOL with ammonium polyphosphate has good flame retardancy in polypropylene (PP). The analysis of the residues obtained in cone calorimetry test showed that the IFR played a role of flame retardancy mainly in condensed phase. In other words, the porous and dense - continuous intumescent char layer formed during the burning process results in flame retardant effect by insulation of heat, oxygen and preventing the underlying PP from degradation and volatilization of pyrolytic products.
机译:通过使用三聚氰胺,多甲醛和季戊四醇作为原料,通过羟甲基化,缩合和醚化改性的新的三嗪甲醛树脂(命名为MF-MPOL),通过羟甲基,缩合和醚化,通过固态〜(13)C,其特征NMR和FT-IR。由多磷酸铵的MF-MPOL组成的膨胀阻燃剂(IFR)在聚丙烯(PP)中具有良好的阻燃性。对锥形量热法检测中获得的残基的分析表明,IFR主要在冷凝阶段发挥了阻燃性的作用。换句话说,在燃烧过程中形成的多孔和致密连续膨胀焦炭层通过热量,氧气绝缘而导致阻燃效果,防止潜在的PP免于降解和挥发热解产物。

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