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Carbon-Based Aeronautical Epoxy Nanocomposites: Effectiveness of Atomic Force Microscopy (AFM) in Investigating the Dispersion of Different Carbonaceous Nanoparticles

机译:碳基航空环氧树脂纳米复合材料:原子力显微镜(AFM)在调查不同碳纳米粒子的分散性中的有效性。

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摘要

The capability of Atomic Force Microscopy (AFM) to characterize composite material interfaces can help in the design of new carbon-based nanocomposites by providing useful information on the structure–property relationship. In this paper, the potentiality of AFM is explored to investigate the dispersion and the morphological features of aeronautical epoxy resins loaded with several carbon nanostructured fillers. Fourier Transform Infrared Spectroscopy (FTIR) and thermal investigations of the formulated samples have also been performed. The FTIR results show that, among the examined nanoparticles, exfoliated graphite (EG) with a predominantly two-dimensional (2D) shape favors the hardening process of the epoxy matrix, increasing its reaction rate. As evidenced by the FTIR signal related to the epoxy stretching frequency (907 cm−1), the accelerating effect of the EG sample increases as the filler concentration increases. This effect, already observable for curing treatment of 60 min conducted at the low temperature of 125 °C, suggests a very fast opening of epoxy groups at the beginning of the cross-linking process. For all the analyzed samples, the percentage of the curing degree (DC) goes beyond 90%, reaching up to 100% for the EG-based nanocomposites. Besides, the addition of the exfoliated graphite enhances the thermostability of the samples up to about 370 °C, even in the case of very low EG percentages (0.05% by weight).
机译:原子力显微镜(AFM)表征复合材料界面的能力可通过提供有关结构-性质关系的有用信息,帮助设计新的碳基纳米复合材料。本文探讨了原子力显微镜的潜力,以研究载有几种碳纳米结构填料的航空环氧树脂的分散性和形态特征。傅里叶变换红外光谱(FTIR)和配制样品的热研究也已进行。 FTIR结果表明,在所检查的纳米颗粒中,主要具有二维(2D)形状的片状石墨(EG)有利于环氧基质的硬化过程,从而提高了其反应速率。如与环氧树脂拉伸频率(907 cm -1 )相关的FTIR信号所证明,随着填料浓度的增加,EG样品的加速作用也随之增强。对于在125°C的低温下进行60分钟的固化处理,这种效果已经可以观察到,表明在交联过程开始时环氧基的打开非常快。对于所有分析的样品,固化度(DC)的百分比均超过90%,而基于EG的纳米复合材料则达到100%。此外,即使在极低的EG百分含量(0.05%(重量))的情况下,添加片状石墨也可以提高样品的热稳定性,最高可达约370°C。

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