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Effect of Dolomite Clay on Thermal Performance and Char Morphology of Expandable Graphite Based Intumescent Fire Retardant Coatings

机译:白云岩粘土对可膨胀石墨基于膨胀型膨胀型阻燃涂料的热性能和CHAR形态的影响

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Dolomite Clay was introduced in a traditional intumescent flame retardant system which contains ammonium polyphosphate/expandable graphite/melamine (APP-EG-MEL) to evaluate its effects on char morphology and fire performance. The effect of dolomite clay on the fire-resistance and thermal properties of expandable graphite based Intumescent fire retardant coatings has been investigated by using Bunsen burner fire test and thermal gravimetric (TG) techniques. The current study describes the effects of Dolomite Clay on the heat shielding performance of intumescent passive fireproofing coatings during fire testing. The fire performance of dolomite clay reinforced intumescent coating formulations were evaluated by Bunsen burner fire test according to ASTM E-119. Results showed that the dolomite reinforcement in IFRC formulation significantly reduced the steel substrate temperature up to 180 °C after 1 hour of fire exposure. The coating degradation was studied using thermogravimetric analysis (TGA). The physical morphology and alignment of intumescent char residue were studied by field emission scanning electron microscopy (FESEM). TGA analysis revealed that IFD (8) containing 8 wt. % of dolomite clay enhanced residual weight by 37.30%. It is suggested that Dolomite clay can enhance the fire performance and can significantly affect the formation of dense and continuous char if incorporated as a filler in conventional intumescent fire resistive systems.
机译:在传统的膨胀型阻燃系统中引入了白云石粘土,该系统含有多磷酸铵/可膨胀石墨/三聚氰胺(APP-EG-MEL),以评估其对CHAR形态和火灾性能的影响。通过使用Bunsen燃烧器火灾试验和热重度(TG)技术研究了白云石粘土对可膨胀石墨基于膨胀型膨胀型阻燃剂涂层的耐火性和热性能的影响。目前的研究描述了白云石粘土对消防期间膨胀型无源防火涂层的热屏蔽性能的影响。根据ASTM E-119,通过Bunsen燃烧器防火试验评估白云石粘土增强膨胀型膨胀型膨胀型膨胀型膨胀型的火灾性能。结果表明,1小时火灾暴露后,IFRC制剂中的白云石增强显着降低了高达180°C的钢基材温度。使用热重分析(TGA)研究涂层劣化。通过现场发射扫描电子显微镜(FESEM)研究了膨胀型炭残余物的物理形态和对准。 TGA分析显示,IFD(8)含有8重量%。白云石粘土的百分比增强了剩余体重37.30%。建议白云石粘土可以增强火灾性能,并且如果在常规膨胀型防火系统中掺入填料,可以显着影响致密和连续炭的形成。

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