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A Study on Improving the Mechanical Performance of Carbon-Fiber-Reinforced Cement

机译:改善碳纤维增强水泥力学性能的研究

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摘要

This study investigated several approaches for silane-removal from the surface of short carbon fiber bundles, and short carbon fibers uniformly dispersed in cement to produce a novel compound of carbon-fiber-reinforced cement. In order to facilitate the uniform distribution of short carbon fibers in the carbon-fiber-reinforced cement, it is necessary to remove the silane from the carbon fiber’s surface. Short carbon fiber bundles were submerged into a pure water, sodium hydroxide solution, and acetic acid solution, and placed in high-temperature furnace used to remove silane from the carbon fiber surface. The results were observed under a scanning electron microscope to determine the level of silane removal from the surface, and an effective method for removing the silane was developed from among the several approaches. This method employed a pneumatic dispersion device to disperse carbon fibers then mixed in a high-early-strength cement which led to an excellent compressive and impact-resistance performance of carbon-fiber-reinforced cement. Final testing showed that the compressive strength and impact energy increased by 14.1% and 145%, respectively.
机译:这项研究研究了几种从短碳纤维束的表面去除硅烷的方法,短碳纤维均匀地分散在水泥中以生产一种新型的碳纤维增强水泥化合物。为了促进短碳纤维在碳纤维增强水泥中的均匀分布,有必要从碳纤维表面去除硅烷。将短的碳纤维束浸入纯水,氢氧化钠溶液和乙酸溶液中,然后放入用于从碳纤维表面除去硅烷的高温炉中。在扫描电子显微镜下观察结果以确定硅烷从表面上的去除水平,并且从几种方法中开发了一种去除硅烷的有效方法。该方法采用气动分散装置将碳纤维分散,然后将其混合在高强度水泥中,从而使碳纤维增强水泥具有出色的抗压和抗冲击性能。最终测试表明,抗压强度和冲击能分别增加了14.1%和145%。

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