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Piezoelectric behaviour of hybrid engineered cementitious composites containing shape-memory alloy, steel, and carbon fibres under compressive stress cycles

机译:压缩应力循环下含有形状记忆合金,钢和碳纤维的杂种工程水泥复合材料的压电行为

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Fibre hybridisation can improve the performance of Engineered cementitious composites (ECCs). This study examines piezoresistivity, fresh properties, and mechanical behaviour of hybrid ECCs developed through the combination of polyvinyl alcohol (PVA) with shape memory alloy fibres (SMAFs), steel fibres (SFs), and carbon fibres (CFs) individually. The distribution of CFs and the formation of conductive networks within hybrid ECCs containing CFs were also analysed using scanning electron microscopy. Compared to other composites containing CFs, the hybrid ECC with 0.6% CFs exhibited the best piezoresistive behaviour under compressive stress cycles since it showed the highest correlation coefficient between fractional change in resistivity (FCR) and strain, a narrower 98% prediction interval, and less noisy electrical signals. SEM images of this composite revealed that CFs were in contact in large scale and formed cross-linked clusters, indicating that the CF dosage was above the percolation threshold. In contrast to the composites containing CFs, hybrid ECCs with SMAFs and SFs exhibited an irreversible increase in resistivity, especially in wet condition, due to the polarisation effect. However, the hybrid usage of SMAFs or SFs with PVA significantly enhanced the flexural performance of ECC, whereas its impact on the first-cracking strength of ECCs was insignificant. In contrast, CFs enhanced the first-cracking strength at all CFs contents studied here and increased the flexural strength of composites at CFs content of 0.1% and 0.2%., beyond which the ultimate flexural strength decreased. (C) 2020 Elsevier Ltd. All rights reserved.
机译:纤维杂交可以改善工程化水泥复合材料(ECC)的性能。本研究检测通过聚乙烯醇(PVA)与形状记忆合金纤维(SMAF),钢纤维(SFS),碳纤维(CFS)的组合而开发的杂化ECC的压阻率,新鲜性质和机械性能。还使用扫描电子显微镜分析CFS和在含CFS的杂交ECC中形成导电网络的分布。与含有CFS的其他复合材料相比,具有0.6%CFS的杂化ECC在压缩应力循环下表现出最佳的压阻性行为,因为它在电阻率(FCR)和应变的分数变化之间显示出最高的相关系数,较窄的98%预测间隔,更少嘈杂的电信号。该复合材料的SEM图像显示CF在大规模和形成交联簇中接触,表明CF剂量高于渗透阈值。与含有CFS的复合材料相反,由于极化效应,具有SMAF和SFS的杂化ECC和SFS的电阻率不可逆转地增加,特别是在潮湿条件下。然而,SMAFS或SFS与PVA的杂化使用显着提高了ECC的抗弯性能,而其对ECC的第一开裂强度的影响是微不足道的。相反,CFS在此研究的所有CFS内容物中增强了第一开裂强度,并在CFS含量下增加了复合材料的弯曲强度,0.1%和0.2%。超出了最终的抗弯强度降低。 (c)2020 elestvier有限公司保留所有权利。

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