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Piezoresistivity performance of cementitious composites containing activated carbon powder, nano zinc oxide and carbon fibre

机译:含有活性炭粉末,纳米氧化锌和碳纤维的水泥复合材料的压阻性性能

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Intrinsic self-sensing cement-based structures or sensors have a great potential for structural health monitoring applications, which can be achieved by incorporating conductive functional fillers into the cementitious composites. This study examined the mechanical, electrical and piezoresistivity of two types of cementitious composites, one with mono activated carbon powder (ACP)/nano zinc oxide (ZnO) and other carrying a hybrid of both carbon fibre (CF) and ACP/nano ZnO. The performance of mono fillers were investigated by fabricating the cementitious composites with different content of ACP (0.5%, 1%, 2% and 4% by weight of binder) and nano ZnO (0.05%, 0.1%, 0.3% and 0.5% by weight of binder). Moreover, the hybrid effect was studied by incorporating CF at 0.7 wt% with the additional ACP/nano ZnO at various concentration. The result showed that ACP/nano ZnO could improve the mechanical properties of cementitious composites. In terms of piezoresistivity behaviour, composites containing 2 wt% of ACP have favourable performance parameters with a sensitivity of 3.571%/MPa and linearity of 7.849%. Composites containing 4 wt% of ACP can achieve repeatability at 0.952%, which indicate a good reproducibility of the piezoresistivity. Although the developed cementitious composites cannot achieve a sensitivity as high as carbon fibre reinforced cementitious composites (CFRCCs), the linearity of the piezoresistive response of the composites containing hybrid ACP/CF and nano ZnO/CF has improved compared to CFRCCs. (C) 2021 Elsevier Ltd. All rights reserved.
机译:本征自感应的基于水泥基结构或传感器具有巨大的结构健康监测应用的潜力,这可以通过将导电功能填料掺入水泥复合材料中来实现。本研究检测了两种类型的水泥复合材料的机械,电气和压阻性,一种用单氧化碳碳粉(ACP)/纳米氧化锌(ZnO)和其他携带碳纤维(CF)和ACP /纳米ZnO的杂交物。通过制造具有不同含量的ACP含量(0.5%,1%,2%和4%重量的粘合剂)和纳米ZnO(0.05%,0.1%,0.3%和0.5%,研究了单水合复合材料的性能粘合剂的重量)。此外,通过以各种浓度的附加ACP /纳米ZnO掺入0.7wt%的CF来研究杂化效果。结果表明,ACP /纳米ZnO可以改善水泥复合材料的机械性能。在压阻性行为方面,含有2wt%的ACP的复合材料具有良好的性能参数,灵敏度为3.571%/ MPa和线性度为7.849%。含有4wt%的ACP的复合材料可以以0.952%实现重复性,表明压阻性的良好再现性。虽然所发育的水泥复合材料不能达到与碳纤维增强水泥复合材料(CFRCC)高的敏感性,但与CFRCS相比,含有杂合ACP / CF和纳米ZnO / CF的复合材料的压阻响应的线性。 (c)2021 elestvier有限公司保留所有权利。

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