Review of Research on Conductive Cement-Based Material

Te Li, Laire Tier
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Abstract

The conductivity of cement-based materials is usually poor, and this material is not a common conductive material. However, with the rapid development of Internet of Things technology in recent years, the rise of smart cities has brought more and more opportunities and needs, and conductive cement-based materials have emerged. Conductive cement-based material is a new type of composite material. The conductive material is added to the cement-based material to reduce its resistance and enhance the conductive properties of the material. The material can not only be applied to the construction of smart cities, such as smart street lamps and smart roads but also can be widely used in buildings, public transportation, and other fields. In the study of conductive cement-based materials, the size and shape of conductive materials have a direct impact on the electrical conductivity of cement-based materials. This is because the dispersion of the conductive material has a significant effect on the conductivity, and the size and shape of the conductive material can determine its dispersion. Secondly, in the application environment of cement-based materials, factors such as humidity and cracks may affect electrical conductivity. Therefore, to ensure the stability and reliability of conductive cement-based materials, a large number of experimental studies are needed to optimize the dispersion and shape of conductive materials and to understand the performance of materials in different environments. The research of conductive cement-based materials is of great significance to the construction of smart cities in the future. This conductive material has great application prospects, which can not only improve the intelligent level of urban infrastructure but also bring more social and economic benefits.
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导电水泥基材料的研究进展
水泥基材料的导电性通常较差,这种材料并不是常见的导电材料。然而,随着近年来物联网技术的快速发展,智慧城市的兴起带来了越来越多的机会和需求,导电水泥基材料应运而生。导电水泥基材料是一种新型复合材料。在水泥基材料中加入导电材料,降低其电阻,增强材料的导电性能。该材料不仅可以应用于智慧城市的建设,如智慧路灯、智慧道路等,还可以广泛应用于建筑、公共交通等领域。在导电水泥基材料的研究中,导电材料的尺寸和形状对水泥基材料的导电性有直接的影响。这是因为导电材料的分散性对电导率有显著的影响,而导电材料的尺寸和形状可以决定其分散性。其次,在水泥基材料的应用环境中,湿度、裂缝等因素可能会影响其导电性。因此,为了保证导电水泥基材料的稳定性和可靠性,需要进行大量的实验研究,优化导电材料的分散和形状,了解材料在不同环境下的性能。导电水泥基材料的研究对未来智慧城市的建设具有重要意义。这种导电材料具有很大的应用前景,不仅可以提高城市基础设施的智能化水平,还可以带来更多的社会效益和经济效益。
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