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Study of fire retardant performance of composite coated with clay containing hybrid carbon nanofiber paper

机译:含杂化碳纳米纤维纸的粘土复合涂料的阻燃性能研究

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In this study, hybrid nanopapers consisting of carbon nanofiber and pristine montmorillonite clay (MMT, Cloisite Na~(+)) were fabricated through the papermaking process. The as-prepared hybrid nanopapers were then coated onto the surface of glass fiber reinforced polymer matrix composites through resin transfer molding process. Characterization results using scanning electron microscopy and energy dispersion analysis of X-ray showed that the nanopapers had porous and highly entangled structures and the resin completely penetrated the nanopaper. The thermo-gravimetry analysis test results revealed that the addition of MMT clay nanoparticles significantly enhanced the thermal stability of the nanopaper. The fire retardant performance of composite samples was evaluated by cone calorimeter test under a radiating heat flux of 50 KW/m~(2). The peak heat release rate was found to decrease dramatically for the CNF-MMT samples. For comparison with the CNF-MMT hybrid nanopaper, a sample coated with the CNF-organic MMT clay (OMT, Cloisite 20A) hybrid nanopaper was also evaluated with cone calorimeter test. The results showed that with the same weight ratio in the nanopaper, the MMT clay was more effective than the OMT in reducing the heat release rate. The combustion behaviors of these samples were examined by microscale combustion calorimetry test. The HRR obtained from the MCC test decreased with the increase of the MMT in the nanopaper, which was consistent with the cone calorimeter test results.
机译:在这项研究中,通过造纸工艺制备了由碳纳米纤维和原始蒙脱土(MMT,Cloisite Na〜(+))组成的杂化纳米纸。然后通过树脂传递模塑工艺将所制备的杂化纳米纸涂布到玻璃纤维增​​强的聚合物基复合材料的表面上。使用扫描电子显微镜和X射线能量色散分析的表征结果表明,纳米纸具有多孔且高度纠缠的结构,并且树脂完全渗透了纳米纸。热重分析测试结果表明,MMT粘土纳米颗粒的添加显着增强了纳米纸的热稳定性。通过锥形量热仪在辐射热通量为50 KW / m〜(2)的条件下对复合材料的阻燃性能进行了评价。发现CNF-MMT样品的峰值放热速率显着降低。为了与CNF-MMT杂化纳米纸进行比较,还用锥量热仪测试对涂有CNF-有机MMT粘土(OMT,Cloisite 20A)杂化纳米纸的样品进行了评估。结果表明,在纳米纸中相同的重量比下,MMT粘土在降低放热速率方面比OMT更有效。这些样品的燃烧行为通过微型燃烧量热法测试进行了检查。从MCC测试获得的HRR随着纳米纸中MMT的增加而降低,这与锥形量热仪测试结果一致。

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