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Carbon Fiber—Silica Aerogel Composite with Enhanced Structural and Mechanical Properties Based on Water Glass and Ambient Pressure Drying

机译:碳纤维 - 二氧化硅气凝胶复合材料基于水玻璃和环境压力干燥增强的结构和机械性能

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摘要

The article presents the synthesis of silica aerogel from a much cheaper precursor of water glass that was reinforced with short pitch carbon fiber by way of ambient pressure drying. Before being added to the silica gel, the carbon fibers were surface modified to increase adhesion at the interfacial border. We were able to obtain stable structures of the composite with the amount of fibers above 10% by volume. The presence of fibers in the silica matrix resulted in lower synthesis time of the composite, improved adhesion of fibers to the aerogel nanostructure, and increased mechanical and structural parameters. An additional effect of the presence of fibers in excess of 10% by volume was a new function of the nanocomposite—the ability to conduct electric current. The most optimal parameters of the composite, however, were obtained for silica aerogel reinforced with 10 vol.% of carbon fibers. This material indicated relatively low density and good physical parameters. The paper also analyzes the results on the synthesis of fiber-reinforced silica aerogels that have appeared in recent years and compares these to the results gained in presented work.
机译:本文介绍了二氧化硅气凝胶的合成,水玻璃的更便宜的前体,通过环境压力干燥,用短的间距碳纤维加强。在加入硅胶之前,将碳纤维进行表面改性以增加界面边界处的粘附性。我们能够通过高于10%(体积)的纤维量获得复合材料的稳定结构。二氧化硅基质中的纤维的存在导致复合材料的合成时间较低,改善纤维与气凝胶纳米结构的粘附性,以及增加的机械和结构参数。纤维存在超过10%(体积)的额外效果是纳米复合材料的新功能 - 传导电流的能力。然而,对于用10体积的10体积增强的二氧化硅气凝胶,获得了复合材料的最佳参数。碳纤维的百分比。该材料表示相对低的密度和良好的物理参数。本文还分析了近年来出现的纤维增强二氧化硅气凝胶的合成的结果,并将其与所获得的工作中获得的结果进行比较。

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