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Highly concentrated carbon nanotube admixture for nano-fiber reinforced cementitious materials

机译:用于纳米纤维增强水泥材料的高浓度碳纳米管混合物

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The use of effectively dispersed multiwalled carbon nanotube (MWCNT)/aqueous/surfactant suspensions in cement based materials have been shown to substantially improve their mechanical properties. The produced MWCNT suspensions have a high aqueous content, which corresponds to the mixing water. In the present work, a method for preparing highly concentrated MWCNT suspensions is presented, thus reducing the volume of the resulting admixture that is required in cement based materials. A centrifugal process, that uses two different ultracentrifuge rotors, was employed to reduce the quantity of water in the suspensions. Optical absorbance spectroscopy shows that the ultracentrifugation process increases the concentration of the MWCNT suspensions by a factor of 5. Using the highly concentrated MWCNT suspensions following dilution results in nanocomposites with mechanical properties that are comparable to the performance of samples prepared using the non-concentrated suspensions. These results verify that the ultracentrifugation concentration method successfully preserves the solubility of the MWCNT suspensions without affecting the reinforcing properties of the admixture. In this manner, the ultracentrifugation concentration method may constitute an effective preparation step for large-scale implementation of MWCNT admixtures.
机译:在水泥基材料中使用有效分散的多壁碳纳米管(MWCNT)/水性/表面活性剂悬浮液已显示可显着改善其机械性能。产生的MWCNT悬浮液具有高含水量,其对应于混合水。在本工作中,提出了一种制备高浓度MWCNT悬浮液的方法,从而减少了水泥基材料中所需混合物的体积。采用了使用两个不同的超速离心机转子的离心过程来减少悬浮液中的水量。光学吸收光谱表明超速离心过程使MWCNT悬浮液的浓度增加了5倍。使用高度浓缩的MWCNT悬浮液稀释后得到的纳米复合材料的机械性能与使用非浓缩悬浮液制备的样品的性能相当。这些结果证明,超离心浓缩方法成功地保留了MWCNT悬浮液的溶解度,而没有影响混合物的增强性能。以这种方式,超离心浓缩方法可以构成用于大规模实施MWCNT混合物的有效制备步骤。

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