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Seebeck Effect in Graphite-Carbon Fiber Cement Based Composite

机译:石墨碳纤维水泥基复合材料中的塞贝克效应

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The Seebeck effect in carbon fiber reinforced cement-based composite (CFRC) is of interest because it enables the cement-based materials to sense its own temperature without attached or embedded sensor. In this study, the Seebeck coefficient of CFRC and graphite-carbon fiber cement based composite were measured. Results show that the addition of graphite can enhance the Seebeck effect of CFRC. When graphite content is 10 wt.%, all types of CFRC show P-type because the hole contribution from carbon fiber dominates the Seebeck effect. When the graphite content is 20 wt.%, the change of thermoelectric power (TEP) from positive to negative occurs with the increasing of graphite to carbon fiber ratio (≥25). This phenomenon indicates that compensation takes place between electron contribution from graphite and hole contribution from carbon fiber. At a high graphite content (30 wt.%), CFRC shows N-type above a certain temperature difference (20-25°C) since the electrons from graphite dominate the Seebeck effect.
机译:碳纤维增强水泥基复合材料(CFRC)的塞贝克效应是感兴趣的,因为它使得基于水泥基材料可以感测其自身的温度而不附着或嵌入式传感器。在该研究中,测量CFRC和石墨 - 碳纤维水泥基复合材料的塞贝克系数。结果表明,添加石墨可以增强CFRC的塞贝克效应。当石墨含量为10重量%时,所有类型的CFRC显示P型,因为碳纤维的孔贡献主导了塞贝克效应。当石墨含量为20重量%时,随着石墨增加到碳纤维比(≥25)的增加,热电功率(Tep)的变化发生在碳纤维比(≥25)。这种现象表明,在碳纤维的石墨和孔贡献中的电子贡献之间进行补偿。在高石墨含量(30重量%)中,CFRC示出了高于一定的温差(20-25℃),因为石墨中的电子占据塞贝克效应。

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