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Piezoresistive sensing of cementitious composites reinforced with shape memory alloy, steel, and carbon fibres

机译:用形状记忆合金,钢和碳纤维加固水泥复合材料的压阻性感

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The piezoresistive behaviour of self-compacting cementitious composites incorporating superelastic nickel-titanium shape memory alloy fibres (SMAFs), steel fibres (SFs), and carbon fibres (CFs) is presented. Piezoresistivity in the cementitious composites allows sensing stress and strain under cyclic compression. The matrix of composites consists of cement, fly ash, ground-granulated blast-furnace slag, and silica fume as the binder and both fine aggregate. Six fibre volume fractions ranging from 0.25% to 1.50% at intervals of 0.25% are considered for SMAFs and SFs while CFs are added at low volume fractions ranging from 0.1% to 0.6% at intervals of 0.1%. First, fresh and mechanical properties of the developed composites are discussed. Then, the piezoresistive sensitivity, repeatability, and gauge factor are analysed under cyclic compressive stress with an amplitude of 10 MPa. Results show noticeable polarisation in composites with SMAFs and SFs, compared to CF reinforced composites. A maximum gauge factor of 935 and the highest correlation coefficient between fractional change in resistivity and compressive strain are obtained for the composite containing 0.6% CFs. (C) 2020 Elsevier Ltd. All rights reserved.
机译:提出了一种具有超弹性镍钛形状记忆合金纤维(SMAF),钢纤维(SFS)和碳纤维(CFS)的自压制水泥复合材料的压阻性能。水泥复合材料中的压阻性允许在循环压缩下感测应力和应变。复合材料的基质由水泥,粉煤灰,地粒状的高炉炉渣和二氧化硅烟管组成,以及粘合剂和两种细骨料。对于SMAFs和SFS,六个纤维体积级分在0.25%的间隔下为0.25%的间隔,而SFS在低体积分数下以0.1%的间隔加入0.1%至0.6%的CF。首先,讨论了开发复合材料的新鲜和力学性能。然后,在循环压缩应力下分析压阻性灵敏度,可重复性和量因子,其幅度为10MPa。结果与CF加固复合材料相比,在具有SMAFS和SFS的复合材料中显示出明显的偏振。获得含有0.6%CFS的复合材料的最大规格因子935和分数变化与压缩菌株的分数变化之间的最高相关系数。 (c)2020 elestvier有限公司保留所有权利。

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