Laura Echeverry-Cardona, Rafael Cabanzo, Jorge Quintero-Orozco, Harvi Alirio Castillo-Cuero, Laura Victoria Rodríguez-Restrepo, Elisabeth Restrepo-Parra
Laboratorio de Física del Plasma, Universidad Nacional de Colombia, Sede Manizales, Manizales 170001, Colombia.
Laboratorio de Espectroscopía Atómica y Molecular (LEAM), Centro de Materiales y Nanociencias (CMN), Parque Tecnológico Guatiguará, Universidad Industrial de Santander, Bucaramanga 681012, Colombia.
Materials (Basel). 2022 Dec 17;15(24):9035. doi: 10.3390/ma15249035.
Nowadays, nanomaterials in cement pastes are among the most important topics in the cement industry because they can be used for several applications. For this reason, this work presents a study about the influence of changing the molarity of dispersed multiple wall carbon nanotubes (MWCNTs) and varying the number of storage days on the mechanical properties of the cement paste. To achieve this objective, dispersions of 0.35% MWCNTs, varying the molarity of the surfactant as 10 mM, 20 mM, 40 mM, 60 mM, 80 mM, and 100 mM, were performed. The mixture of materials was developed using the sonication process; furthermore, materials were analyzed using UV-Vis, Z-potential, and Raman spectroscopy techniques. Materials with a molarity of 10 mM exhibited the best results, allowing them to also be stored for four weeks. Regarding the mechanical properties, an increase in the elastic modulus was observed when MWCNTs were included in the cement paste for all storage times. The elastic modulus and the maximum stress increased as the storage time increased.
如今,水泥浆体中的纳米材料是水泥行业最重要的课题之一,因为它们可用于多种应用。因此,本文开展了一项研究,探讨改变分散的多壁碳纳米管(MWCNT)的摩尔浓度以及改变储存天数对水泥浆体力学性能的影响。为实现这一目标,制备了浓度为0.35%的MWCNT分散体,将表面活性剂的摩尔浓度分别设定为10 mM、20 mM、40 mM、60 mM、80 mM和100 mM。材料混合物采用超声处理工艺制备;此外,还使用紫外可见光谱、Z电位和拉曼光谱技术对材料进行了分析。摩尔浓度为10 mM的材料表现出最佳效果,并且可以储存四周。关于力学性能,在所有储存时间内,当水泥浆体中加入MWCNT时,弹性模量均有所增加。弹性模量和最大应力随储存时间的增加而增大。