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Physicochemical and Piezoresistive properties of smart cementitious composites with graphene nanoplates and graphite plates

机译:石墨烯纳米板和石墨板的智能水泥复合材料的物理化学和压阻性能

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Graphene nanoplate (GNP) and graphite plate (GP) are promising functional nanofillers for smart self sensing cementitious composites. The effects of GNP and GP on physicochemical, mechanical and piezoresistive properties of cementitious composite were investigated in this paper. The results show that cement hydration was accelerated with the increased amounts of GNP and GP because of nucleation effect. The electrical resistivity of GNP-cementitious composites was always lower than the counterpart with GP with the same concentration. On the other hand, percolation occurred for the GNP/cementitious composites at the dosages from 2 to 3% (by weight), while it never happens for the GP/cementitious composites. Moreover, the GNP/cementitious composites reached the maximum mechanical strength when the GNP content was 1.0%, while for the GP/cementitious composites, only minor strength improvement was obtained with a dosage of 0.5% GP. As for the piezoresistivity, the cementitious composites with GNP exhibited higher fractional changes of resistivity. Irreversible resistivity happened for 2-3% GP/cementitious composites subjected to cyclic compression, due to the poor and loose microstructures. The outcomes are expected to provide an insight into the application of GNP/cementitious and GP/cement composites as cement-based sensors for the future structural health monitoring. (c) 2021 Elsevier Ltd. All rights reserved.
机译:石墨烯纳米层(GNP)和石墨板(GP)是智能自感应水泥复合材料的官能纳米填料的官能纳米孔。本文研究了GNP和GP对水泥复合材料的物理化学,机械和压阻性能的影响。结果表明,由于成核效应,通过增加量的GNP和GP加速水泥水化。 GNP-水泥复合材料的电阻率总是低于具有相同浓度GP的对应物。另一方面,在剂量为2至3%(重量)时,对GNP /水泥复合材料发生渗滤液,而GP /水泥复合材料的内部不发生。此外,当GNP含量为1.0%时,GNP /水泥复合材料达到最大机械强度,而对于GP /水泥复合材料,只有0.5%GP的剂量获得少量的强度改善。对于压阻性,具有GNP的水泥复合材料表现出更高的电阻率变化。由于微观结构差和松散宽松,2-3%GP /水泥复合材料发生不可逆的电阻率。预计结果预计会介绍GNP / CELEDINATY和GP /水泥复合材料作为基于水泥的传感器的应用,用于未来的结构健康监测。 (c)2021 elestvier有限公司保留所有权利。

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