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Thermal Degradation and Char Morphology of HNTs Reinforced Epoxy based Intumescent Fire Retardant Coatings

机译:HNTS增强环氧基型膨胀型阻燃涂层的热降解和Char形态

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This study investigates the effectiveness of halloysite nanotube as filler on improvement in thermal performance of epoxy based intumescent fire retardant coating. Several intumescent fire retardant formulations were developed with and without halloysite nanotube. The thermal performance and char morphology of Intumescent fire retardant formulations was studied. Bunsen burner (ASTM E-119) test revealed that incorporation of HNTs (1.5 wt. %) improved flame retardancy by reducing the temperature of steel substrate up to 99°C when exposed to fire for 1 hour. This study also revealed the physical and chemical mechanisms of action of HNTs in the intumescent systems. Results showed that halloysite improved the growth of the intumescent shield and give better quality of char. HNT formed aluminosilicate network for the phosphocarbonaceous structure by chemical contacts with ammonium polyphosphate. These new chemical species enhanced thermal stabilization of the char at high temperature and offered good structural properties on micro and macro scale. This increased the mechanical strength of the shielding layer during burning and also enhanced the residual weight percentage after thermal degradation as shown in thermal gravimetrical curves.
机译:本研究探讨埃洛石纳米管如在基于环氧树脂的膨胀型防火涂料的热性能改进填料的有效性。一些膨胀型防火配方与不埃洛石纳米管的发展。膨胀型防火配方的热性能和焦炭形态进行了研究。本生灯(ASTM E-119)测试揭示HNTS的那掺入(1.5重量%)改善的阻燃性由当暴露于火1小时减少钢基板的温度高达99℃。这项研究还显示,在膨胀体系HNTS作用的物理和化学机制。结果表明,埃洛提高膨胀屏蔽的增长,给焦炭的质量更好。 HNT通过用多磷酸铵化学触点形成铝硅酸盐网络的phosphocarbonaceous结构。这些新的化学物质增强焦炭的热稳定在高温下和在微观和宏观尺度提供了良好的结构性能。此燃烧时增加所述屏蔽层的机械强度,并且还增强了热降解后的剩余重量百分比如图热gravimetrical曲线。

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