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Flammability of self-extinguishing kenaf/ABS nanoclays composite for aircraft secondary structure

机译:用于飞机二级结构的自熄性keNaf / ABS纳米粘土复合材料的易燃性

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This study investigates the flammability properties of kenaf fiber reinforced acrylonitrile butadiene styrene (ABS) with nanoclays composites. Natural fiber is one of the potential materials to be used with thermoplastic as a composite due to its attractive properties such as lightweight and strong. In this paper, flammability properties of this material are evaluated through Underwriters Laboratory 94 Horizontal Burning (UL94 HB), which has been conducted for both controlled and uncontrolled conditions, smoke density and limiting oxygen index tests (LOI). These flammability tests are in compliance with the Federal Aviation Regulation (FAR) requirement. The results from UL94 HB and smoke density tests show that the presence of nanoclays with effective composition of kenaf fiber reinforced ABS has enhanced the burning characteristics of the material by hindering propagation of flame spread over the surface of the material through char formation. Consequently, this decreases the burning rate and produces low amount of smoke during burning. On contrary, through LOI test, this material requires less oxygen to burn when exposed to fire, which hinders the enhancement of burning characteristics. This is due to burning mechanism exhibited by nanoclays that catalyzes barrier formation and flame propagation rate over the surface of the biocomposite material. Overall, these experimental results suggest that this biocomposite material is capable of self-extinguishing and possesses effective fire extinction. The observed novel synergism from the result obtained is promising to be implemented in secondary structures of aircraft with significant benefits such as cost-effective, lightweight and biodegradable self-extinguishing biocomposite.
机译:本研究探讨麻纤维的可燃性性能增强丙烯腈 - 丁二烯 - 苯乙烯(ABS)与纳米粘土复合材料。天然纤维是与热塑性作为复合使用,由于其有吸引力的性质,如轻质和强的电势的材料之一。在本文中,这种材料的可燃性特性通过保险商实验室94水平燃烧(HB UL94),其已为两个受控的和非受控的条件下,烟雾密度和极限氧指数试验(LOI)进行评价。这些可燃性试验均符合美国联邦航空条例(FAR)的要求。从UL94 HB和烟气密度试验的结果表明,纳米粘土增强的存在下用麻纤维的有效组合物ABS已经通过炭的形成阻碍火焰蔓延的传播的材料的表面上增强该材料的燃烧特性。因此,这降低了燃烧速度和燃烧过程中产生的烟雾的低量。相反地​​,通过LOI测试,这种材料需要较少的氧气,当暴露于火,这阻碍了燃烧性能的提高燃烧。这是由于燃烧由纳米粘土表现出机构,该生物复合材料的表面上催化屏障形成和火焰传播速度。总之,这些实验结果表明,这种生物复合材料能自行熄灭的,并具有有效的灭火。从结果所观察到的协同作用新颖获得是有前途的飞机的二级结构,以实现与显著的好处,如成本效益的,重量轻和可生物降解的自熄生物复合材料。

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