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Flame retardant polyoxymethylene with aluminium hydroxide/melamineovolac resin synergistic system

机译:阻燃剂聚甲醛与氢氧化铝/三聚氰胺/酚醛树脂协同体系

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摘要

Polyoxymethylene (POM), having the lowest limiting oxygen index (LOI) (only ~ 15%), is well known as the most difficult to be flame retarded plastic among ail the polymers. In this paper, a novel synergistic flame retardant system composed of aluminium hydroxide (ATH), melamine (ME) and novolac resin was designed and successfully applied to flame retard POM. ATH took effects through heat absorption and water release. Both ME and novolac could react with the decomposition product of POM, formaldehyde, thus improving the flame retardancy. Particularly, novolac resin and ME played the roles of macromo-Iecular charring agent and gas source, enhancing the flame retarding actions in the condensed and gaseous phases, respectively. This ternary synergistic system exhibited fine flame retardancy for POM (UL94 V-1 rating for 1.6 mm bar), and the obtained flame retardant POM also showed good processability and mechanical properties due to the lubrication, compatibilization and aid-dispersion effects of novolac resin.
机译:具有最低的极限氧指数(LOI)(仅为约15%)的聚甲醛(POM)是众所周知的在所有聚合物中最难阻燃的塑料。本文设计了一种由氢氧化铝(ATH),三聚氰胺(ME)和线型酚醛清漆树脂组成的新型协同阻燃体系,并将其成功应用于阻燃POM。 ATH通过吸热和放水发挥作用。 ME和线型酚醛清漆均可与POM的分解产物甲醛反应,从而提高了阻燃性。尤其是,线型酚醛清漆树脂和ME起到大分子炭化剂和气源的作用,分别增强了在冷凝和气相中的阻燃作用。该三元协同体系对POM表现出良好的阻燃性(UL94 V-1等级为1.6 mm bar),并且由于酚醛清漆树脂的润滑,增容和助分散作用,所得的阻燃性POM还显示出良好的加工性能和机械性能。

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