Parveen Shama, Vilela Bruno, Lagido Olinda, Rana Sohel, Fangueiro Raul
Department of Fashion and Textiles, School of Arts and Humanities, University of Huddersfield, Huddersfield HD1 3DH, UK.
Department of Civil Engineering, University of Minho, Campus de Azurém, 4800-058 Guimarães, Portugal.
Nanomaterials (Basel). 2021 Dec 28;12(1):74. doi: 10.3390/nano12010074.
In this work, multi-scale cementitious composites containing short carbon fibers (CFs) and carbon nanofibers (CNFs)/multi-walled carbon nanotubes (MWCNTs) were studied for their tensile stress sensing properties. CF-based composites were prepared by mixing 0.25, 0.5 and 0.75 wt.% CFs (of cement) with water using magnetic stirring and Pluronic F-127 surfactant and adding the mixture to the cement paste. In multi-scale composites, CNFs/MWCNTs (0.1 and 0.15 wt.% of cement) were dispersed in water using Pluronic F-127 and ultrasonication and CFs were then added before mixing with the cement paste. All composites showed a reversible change in the electrical resistivity with tensile loading; the electrical resistivity increased and decreased with the increase and decrease in the tensile load/stress, respectively. Although CF-based composites showed the highest stress sensitivity among all specimens at 0.25% CF content, the fractional change in resistivity (FCR) did not show a linear correlation with the tensile load/stress. On the contrary, multi-scale composites containing CNFs (0.15% CNFs with 0.75% CFs) and MWCNTs (0.1% MWCNTs with 0.5% CFs) showed good stress sensitivity, along with a linear correlation between FCR and tensile load/stress. Stress sensitivities of 6.36 and 11.82%/MPa were obtained for the best CNF and MWCNT-based multi-scale composite sensors, respectively.
在本研究中,对含有短碳纤维(CFs)和碳纳米纤维(CNFs)/多壁碳纳米管(MWCNTs)的多尺度水泥基复合材料的拉伸应力传感性能进行了研究。基于CF的复合材料是通过使用磁力搅拌和普朗尼克F - 127表面活性剂将0.25、0.5和0.75 wt.%(相对于水泥)的CFs与水混合,并将该混合物添加到水泥浆体中制备而成。在多尺度复合材料中,使用普朗尼克F - 127和超声处理将CNFs/MWCNTs(0.1和0.15 wt.%相对于水泥)分散在水中,然后在与水泥浆体混合之前添加CFs。所有复合材料在拉伸加载时均表现出电阻率的可逆变化;电阻率分别随拉伸载荷/应力的增加和减小而增大和减小。尽管基于CF的复合材料在0.25% CF含量时在所有试样中显示出最高的应力敏感性,但电阻率分数变化(FCR)与拉伸载荷/应力并未呈现线性相关。相反,含有CNFs(0.15% CNFs与0.75% CFs)和MWCNTs(0.1% MWCNTs与0.5% CFs)的多尺度复合材料表现出良好的应力敏感性,同时FCR与拉伸载荷/应力之间呈现线性相关。对于最佳的基于CNF和MWCNT的多尺度复合传感器,应力敏感性分别为6.36和11.82%/MPa。