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Self sensing carbon nanotube (CNT) and nanofiber (CNF) cementitious composites for real time damage assessment in smart structures

机译:自感应碳纳米管(CNT)和纳米纤维(CNF)胶结复合材料用于智能结构中的实时损伤评估

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摘要

The self sensing properties of cementitious composites reinforced with well dispersed carbon nanotubes and carbon nanoflbers were investigated. The electrical resistance of cementitious nanocomposites with w/c = 0.3 reinforced with well dispersed carbon nanotubes (CNTs) and nanoflbers (CNFs) at an amount of 0.1 v/t% and 0.3 wt% of cement was experimentally determined and compared with resistivity results of nanocomposites fabricated with "as received" nanoscale fibers at the same loading. Results indicate that conductivity measurements, besides being a valuable tool in evaluating the smart properties of the nanocomposites, may provide a good correlation between the resistivity values measured and the degree of dispersion of the material in the matrix. The addition of CNTs and CNFs at different loadings was proven to induce a decrease in electrical resistance, with the nanocomposites containing 0.1 wt% CNTs yielding better electrical properties. Furthermore, conductivity measurements under cyclic compressive loading provided an insight in the piezoresistive properties of selected nanocomposites. Results confirm that nanocomposites, reinforced with 0.1 wt% CNTs and CNFs, exhibited an increased change in resistivity, which is indicative of the amplified sensitivity of the material in strain sensing.
机译:研究了分散良好的碳纳米管和碳纳米纤维增强的水泥基复合材料的自感性能。实验确定了w / c = 0.3的水泥纳米复合材料的电阻,该电阻用分散度为0.1 v / t%和0.3 wt%水泥的碳纳米管(CNTs)和纳米纤维(CNFs)增强后的电阻率结果与纳米复合材料在相同的载荷下用“原样”纳米级纤维制成。结果表明,电导率测量不仅是评估纳米复合材料智能特性的有价值的工具,还可以在测得的电阻率值与材料在基质中的分散度之间提供良好的相关性。事实证明,在不同负载下添加CNT和CNF会导致电阻降低,而含有0.1 wt%CNT的纳米复合材料会产生更好的电性能。此外,在循环压缩载荷下的电导率测量提供了对所选纳米复合材料压阻特性的见解。结果证实,用0.1 wt%的CNT和CNF增强的纳米复合材料的电阻率变化增加,这表明该材料在应变传感中的灵敏度得到了放大。

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