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A study on electrical and thermal properties of conductive concrete

机译:导电混凝土的电热性能研究

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Traditional concrete is effectively an insulator in the dry state. However, conductive concrete can attain relatively high conductivity by adding a certain amount of electronically conductive components in the regular concrete matrix. The main purpose of this study is to investigate the electrical and thermal properties of conductive concrete with various graphite contents, specimen dimensions and applied voltages. For this purpose, six different mixtures (the control mixtures and five conductive mixtures with steel fibers of 2% by weight of coarse aggregate and graphite as fine aggregate replacement at the levels of 0%, 5%, 10%, 15% and 20% by weight) were prepared and concrete blocks with two types of dimensions were fabricated. Four test voltage levels, 48 V, 60 V, 110 V, and 220 V, were applied for the electrical and thermal tests. Test results show that the compressive strength of specimens decreases as the amount of graphite increases in concrete. The rising applied voltage decreases electrical resistivity and increases heat of concrete. Meanwhile, higher electrical current and temperature have been obtained in small size specimens than the comparable large size specimens. From the results, it can be concluded that the graphite contents, applied voltage levels, and the specimen dimensions play important roles in electrical and thermal properties of concrete. In addition, the superior electrical and thermal properties have been obtained in the mixture adding 2% steel fibers and 10% graphite.
机译:传统混凝土实际上是干燥状态下的绝缘体。但是,通过在常规混凝土基体中添加一定数量的电子导电成分,导电混凝土可以获得相对较高的导电性。这项研究的主要目的是研究具有各种石墨含量,试样尺寸和施加电压的导电混凝土的电气和热性能。为此,使用六种不同的混合物(对照混合物和五种导电混合物,其中钢纤维占粗骨料的2%,石墨作为细骨料的替代品,含量分别为0%,5%,10%,15%和20%按重量计),并制造出两种尺寸的混凝土砌块。电气和热测试应用了四个测试电压电平,分别为48 V,60 V,110 V和220V。试验结果表明,随着混凝土中石墨含量的增加,试样的抗压强度降低。升高的施加电压会降低电阻率并增加混凝土的热量。同时,与可比较的大尺寸样品相比,小尺寸样品获得了更高的电流和温度。从结果可以得出结论,石墨含量,施加的电压水平和试样尺寸在混凝土的电和热性能中起着重要的作用。此外,在添加2%的钢纤维和10%的石墨的混合物中,还获得了优异的电气和热性能。

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