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Influence of magnesium hydroxide on thermal decomposition of intumescent fire-retardant epoxy coatings

机译:氢氧化镁对膨胀型阻燃环氧涂料热分解的影响

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摘要

Intumescent fire-retardant epoxy (IFR-EP) coatings including ammonium polyphosphate (APP), pentaerythritol (PER), melamine (MEL), magnesium hydroxide (MH), epoxy resin (EP) and polyamide resin (PA) were prepared. Thermal decomposition processes of the pure EP-PA, APP, PER, MEL and MH by thermogravimetric analysis (TGA) technique indicate that the decomposition temperature ranges of EP-PA, APP, PER and MEL are properly consistent with the intumescent mechanism of flame retardants. Thermal decomposition of IFR-EP coatings shows that 15 parts per hundred parts of resin MH is more appropriate to be selected in the formulation of IFR-EP coatings. Kinetic analysis of the TGA data based on the Kissinger methods revealed that activation energy could be used as an important parameter to judge the thermal decomposition process. The conversion dependencies of the activation energy plot show the complex effect of MH content on the thermal decomposition process of IFR-EP coatings.
机译:制备了包括聚磷酸铵(APP),季戊四醇(PER),三聚氰胺(MEL),氢氧化镁(MH),环氧树脂(EP)和聚酰胺树脂(PA)的膨胀型阻燃环氧树脂(IFR-EP)涂料。通过热重分析(TGA)技术对纯EP-PA,APP,PER,MEL和MH的热分解过程表明,EP-PA,APP,PER和MEL的分解温度范围与阻燃剂的膨胀机理完全一致。 IFR-EP涂层的热分解表明,每100份树脂MH中有15份更适合在IFR-EP涂层配方中选择。基于基辛格方法的热重分析数据的动力学分析表明,活化能可以作为判断热分解过程的重要参数。活化能图的转换依赖性表明,MH含量对IFR-EP涂层的热分解过程具有复杂的影响。

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