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The influence of Formaldehyde/Phenol Ratio on Properties of Foamable Phenolic Resin and Phenolic Foam

机译:甲醛/酚比对可发泡酚醛树脂和酚醛泡沫性能的影响

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The foamable phenolic resin was prepared by gradual copolymerization of formaldehyde, paraformaldehyde and phenol using sodium hydroxide (NaOH) as catalyst, by way of adding NaOH, paraformaldehyde in different steps. The environmental protection vesicant, foam stabilizer and mixed acid curing agent were mixed with the foamable phenolic resin to prepare flame-retardant insulation phenolic foam. The influence of the formaldehyde/phenol molar ratio on the activity, toxic residue of foamable phenolic resin was investigated. Besides, the foam cell structure, insulation and flame-retardant properties of the phenolic foam were also studied. The results showed that as the molar ratio of formaldehyde to phenol was 2.0, the free phenol content was 2.3% and hydroxymethyl content was 34.83%, the thermal conductivity was 0.046w/mk, oxygen index was 54.3% and carbon monoxide (CO) peak production was as high as 1.8584 kg/kg, which was suitable to be used as insulation and flame-retardant materials in buildings.
机译:的发泡性酚醛树脂是由甲醛,多聚甲醛,并使用氢氧化钠(NaOH)作为催化剂苯酚的逐渐共聚制备,通过在不同的步骤加入NaOH,多聚甲醛的方法。环保发泡剂,泡沫稳定剂和混酸固化剂,具有发泡性酚醛树脂,以制备阻燃绝缘酚醛泡沫混合。上活性的甲醛/酚的摩尔比的影响,发泡性酚醛树脂的毒性残余物进行了研究。此外,酚醛泡沫体的泡沫孔结构,绝缘性和阻燃性也进行了研究。结果表明,如甲醛与酚的摩尔比为2.0,游离酚含量为2.3%和羟甲基的含量为34.83%时,热传导率为0.046瓦特/ MK,氧指数为54.3%和一氧化碳(CO)峰产量高达1.8584公斤/ kg,是适合于被用作绝缘和阻燃材料在建筑上。

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