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Smart multifunctional cement mortar containing graphite nanoplatelet

机译:含石墨纳米片的智能多功能水泥砂浆

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摘要

The piezoresistivity-based strain sensing ability of cementitious composites containing graphite nanoplatelet (GNP) is investigated in this paper. GNP offers the advantages of ease of processing, excellent mechanical and electrical properties at a very low cost compared to carbon nanotubes and carbon nano-fibers. Cement mortar with 0%, 1.2%, 2.4%, 3.6% and 4.8% of GNP (by volume of composite) were cast. The electrical resistance of the specimens was measured by both the two- and four-probe methods using direct current (DC). The effect of polarization was characterized and the percolation threshold was experimentally found to be between 2.4% and 3.6% of GNP based on both accelerated and normal drying specimens. The assumption of Ohmic material was tested with varying current and found to be valid for current > 0.01mA and 0.5mA for four- and two-probe methods respectively. The piezoresistive effect was demonstrated by comparing the gage factors of mortars with GNP vs plain mortar under cyclic loading in compression at 3 strain levels. At low strains, the high gage factor is believed to stem from both the effect of the imperfect interfaces around the GNP and the piezoresistivity of the GNP; at higher strains, the gage factor is likely to be attributed to the piezoresistivity of the GNP and it is still 1-2 orders of magnitude larger than the gage factor arising from geometric changes.
机译:本文研究了基于石墨电阻率的含石墨纳米片的胶凝复合材料的应变传感能力。与碳纳米管和碳纳米纤维相比,GNP具有易于加工,优异的机械和电性能且成本非常低的优点。浇铸了GNP为0%,1.2%,2.4%,3.6%和4.8%(按复合材料的体积计)的水泥砂浆。使用直流电(DC)通过两种和四种探针方法测量样品的电阻。表征了极化的影响,并且根据加速和正常干燥样品,实验发现渗透阈在GNP的2.4%至3.6%之间。在不同的电流下测试了欧姆材料的假设,发现对于四探针法和两探针法,电流分别大于0.01mA和0.5mA是有效的。通过比较循环应力下在3个应变水平下的GNP砂浆与普通砂浆的应变系数,证明了压阻效应。在低应变下,高应变系数被认为是由GNP周围不完善的界面和GNP的压阻引起的。在较高应变下,应变系数很可能归因于GNP的压阻率,但仍比几何变化引起的应变系数大1-2个数量级。

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