An experimental investigation of nano clay and functionalized nano graphene oxide effects on ablation of carbon/phenolic nanocomposites

IF 2.3 3区 材料科学 Q3 MATERIALS SCIENCE, COMPOSITES Journal of Composite Materials Pub Date : 2024-08-07 DOI:10.1177/00219983241270999
Seyed Ali Hosseini Kordkheili, HR Jafari
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Abstract

This work aims to study thermal stability and ablative behaviors of Carbon/Phenolic composites containing nano clay, nano graphene oxide and hybrid additives. To this end a detailed explained and illustrated process is involved to synthesize factionalized graphene oxide based on Hummers method. The XRD test result shows a major shift in basal plane reflection to below 2θ = 20° in the provided spectrum, which indicates achievement in the functionalization process. Prepared nanoparticles suspensions are then mixed by resol resin with desire wt% to outcome nanocomposites. An in-depth analysis of SEM images with focus on the dispersion, morphology, and interaction of the nanofillers with the resin matrix reveals that nanoparticles are dispersed properly with no agglomeration. 200 gr/m2 carbon woven fabric is then impregnated with prepared nanocomposites employing an own made prepreg machine to use to construct standard flexural as well as oxy acetylene test specimens. Using bending test, thermogravimetric analysis and oxyacetylene torch test, effects of different percentages of considered nanoparticles on the mechanical properties, thermal stability and ablative of carbon/phenolic composites are assessed and the results are reported. According to the results, adding only 0.1 wt% of nano graphene oxide increases char yield around 5% and remain back surface temperature under 100°C during flame test. Moreover samples with 0.2 wt% of nano clay and hybrid (0.05 wt% nano graphene oxide and 0.1 wt% nano clay) additives provides best reaming amount of solid.
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纳米粘土和功能化纳米氧化石墨烯对碳/酚类纳米复合材料烧蚀效应的实验研究
这项工作旨在研究含有纳米粘土、纳米氧化石墨烯和混合添加剂的碳/酚复合材料的热稳定性和烧蚀行为。为此,对基于 Hummers 方法合成派生氧化石墨烯的过程进行了详细解释和说明。XRD 测试结果表明,在所提供的光谱中,基底面反射主要转移到 2θ = 20° 以下,这表明功能化过程已经完成。然后将制备好的纳米颗粒悬浮液与浓度为 0.5%的可溶性树脂混合,得到纳米复合材料。通过深入分析扫描电镜图像,重点观察纳米填料的分散、形态以及与树脂基体的相互作用,发现纳米粒子分散良好,没有团聚现象。然后用自制的预浸料机将 200 克/平方米的碳纤维织物浸渍在制备好的纳米复合材料中,用于制作标准的弯曲和氧乙炔试样。通过弯曲试验、热重分析和氧乙炔炬试验,评估了不同比例的纳米颗粒对碳/酚醛复合材料的机械性能、热稳定性和烧蚀性的影响,并报告了结果。结果表明,仅添加 0.1 wt% 的纳米氧化石墨烯就能提高约 5%的炭产量,并在火焰测试中将背面温度保持在 100°C 以下。此外,添加了 0.2 wt% 纳米粘土和混合添加剂(0.05 wt% 纳米氧化石墨烯和 0.1 wt% 纳米粘土)的样品可提供最佳的固体铰孔量。
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来源期刊
Journal of Composite Materials
Journal of Composite Materials 工程技术-材料科学:复合
CiteScore
5.40
自引率
6.90%
发文量
274
审稿时长
6.8 months
期刊介绍: Consistently ranked in the top 10 of the Thomson Scientific JCR, the Journal of Composite Materials publishes peer reviewed, original research papers from internationally renowned composite materials specialists from industry, universities and research organizations, featuring new advances in materials, processing, design, analysis, testing, performance and applications. This journal is a member of the Committee on Publication Ethics (COPE).
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