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Study of the fire resistant behavior of unfilled and carbon nanofibers reinforced polybenzimidazole coating for structural applications

机译:用于结构应用的未填充碳纳米纤维增强聚苯并咪唑涂料的耐火性能研究

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摘要

With increasing interest in epoxy-based carbon fiber composites for structural applications, it is important to improve the fire resistant properties of these materials. The fire resistant performance of these materials can be improved either by using high performance epoxy resin for manufacturing carbon fiber composite or by protecting the previously used epoxy-based composite with some fire resistant coating. In this context, work is carried out to evaluate the fire resistance performance of recently emerged high performance polybenzimidazole (PBI) when used as a coating material. Furthermore, the effect of carbon nanofibers (CNFs) on fire resistant properties of inherently flame retardant PBI coating was studied. Thermogravimetric analysis of carbon/epoxy composite, unfilled PBI and nano-filled PBI shows that the carbon/epoxy composite maintained its thermal stability up to a temperature of 400°C and afterwards showed a large decrease in mass, while both unfilled PBI and nano-filled PBI have shown thermal stability up to a temperature of 575°C corresponding to only 11% weight loss. Cone calorimeter test results show that unfilled PBI coating did not improve the fire retardant performance of carbon/epoxy composite. Conversely, nano-filled PBI coating has shown a significant improvement in fire retardant performance of the carbon/epoxy composite in terms of increased ignition time, reduced average and peak heat release rate and reduced smoke and carbon monoxide emission. These results indicate that addition of carbon nanofibers to inherently flame retardant coating can significantly be helpful for improving the fire resistance performance of composite materials even with low coating thickness.
机译:随着人们越来越关注用于结构应用的环氧基碳纤维复合材料,重要的是改善这些材料的耐火性能。这些材料的耐火性能可以通过使用高性能环氧树脂制造碳纤维复合材料或通过使用一些耐火涂层保护先前使用的环氧基复合材料来提高。在这种情况下,开展工作以评估最近出现的用作涂料的高性能聚苯并咪唑(PBI)的耐火性能。此外,研究了碳纳米纤维(CNF)对固有阻燃性PBI涂层的耐火性能的影响。碳/环氧复合材料,未填充的PBI和纳米填充的PBI的热重分析表明,碳/环氧复合材料在高达400°C的温度下都保持其热稳定性,随后质量显着下降,而未填充的PBI和纳米填充的PBI填充的PBI在高达575°C的温度下显示出热稳定性,仅相当于11%的重量损失。锥形量热仪测试结果表明,未填充的PBI涂层不能改善碳/环氧树脂复合材料的阻燃性能。相反,在增加点火时间,降低平均和峰值放热率以及减少烟气和一氧化碳排放方面,纳米填充的PBI涂层在碳/环氧复合材料的阻燃性能方面已显示出显着改善。这些结果表明,即使固有的涂层厚度低,向固有的阻燃涂层中添加碳纳米纤维也可以显着帮助改善复合材料的耐火性能。

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