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An investigation on post-fire behavior of hybrid nanocomposites under bending loads

机译:弯曲载荷下杂化纳米复合材料的击后行为研究

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This work focuses on residual bending properties of hybrid nanocomposites after intense heat conditions. Carbon fiber/epoxy-nanoclay and carbon fiber/epoxy-graphene nanosheets were manufactured. The nanoparticles employed were Cloisite 30B nanoclay and surface modified graphene nanosheets. The epoxy system was RemLam M/HY956. For short beam samples exposed to 800 KW/m~2 heat flux, for a various period of time up to 120 s, the addition of nanoparticles (nanoclay and graphene nanosheets) increased the unburned thickness from 0.16 mm (original) to 2.63 mm and 2.74 mm, respectively. When the two-dimensional (plates) samples were tested, the improvement on heat performance was reduced. The unburned thickness improved close to 10% with the presence of nanoclay. The addition of graphene nanosheets leads to a decrease in unburned thickness of 12.8%. This result can be due to the good thermal protection properties of the graphene nanosheets. Using SEM analysis, it was observed that when the hybrid nanocomposites were subjected to a large heat flux, nanoparticles remained trapped inside the char layers. Finally, the proposed model seems to overestimate the residual bending response by 8%.
机译:这项工作的重点是在高温条件下,杂化纳米复合材料的残余弯曲性能。制备了碳纤维/环氧纳米粘土和碳纤维/环氧石墨烯纳米片。所使用的纳米颗粒是Cloisite 30B纳米粘土和表面改性的石墨烯纳米片。环氧体系是RemLam M / HY956。对于暴露于800 KW / m〜2热通量的短光束样品,在长达120 s的不同时间段内,添加纳米颗粒(纳米粘土和石墨烯纳米片)使未燃烧厚度从0.16 mm(原始)增加到2.63 mm,并且分别为2.74毫米。当测试二维(板)样品时,热性能的改善降低了。在存在纳米粘土的情况下,未燃烧的厚度提高了近10%。石墨烯纳米片的添加导致未燃烧厚度降低12.8%。该结果可以归因于石墨烯纳米片的良好的热防护性能。使用SEM分析,观察到当杂化纳米复合材料经受大的热通量时,纳米颗粒仍然被截留在炭层内。最后,提出的模型似乎高估了残余弯曲响应8%。

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