Effects of graphite on electrically conductive cementitious composite properties: A review

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Abstract

Electrically conductive cementitious composites (ECCCs) have been widely used to com-plete functional and smart construction projects. Graphite, due to its low cost and wide availability, is a promising electrically conductive filler to generate electrically conductive networks in cement matrixes. Cement-based materials provide an ideal balance of safety, environmental protection, strength, durability, and economy. Today, graphite is commonly applied in traditional cementitious materials. This paper reviews previous studies regarding the effects and correlations of the use of graphite-based materials as conductive fillers on the properties of traditional cementitious materi-als. The dispersion, workability, cement hydration, mechanical strength, durability, and electrically conductive mechanisms of cementitious composites modified with graphite are summarized. Graphite composite modification methods and testing methods for the electrical conductivity of ECCCs are also summarized.

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Luo, T., & Wang, Q. (2021, September 1). Effects of graphite on electrically conductive cementitious composite properties: A review. Materials. MDPI AG. https://doi.org/10.3390/ma14174798

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