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Design and fabrication of a new fiber-cement-piezoelectric composite sensor for measurement of inner stress in concrete structures

机译:新型纤维压电复合传感器的设计与制造,用于测量混凝土结构中的内应力

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Rare suitable sensors are reported till now for the accurate measurement of inner forces at the concrete structures. In this study, a novel sensor is designed and fabricated for the evaluation of inner stress in the concrete structures under dynamical loads. By embedding this sensor in the critical points of the modern concrete structures (e.g. high-rise buildings, large-span bridges, dams, etc.), the heath monitoring of such structures may be easily done. The proposed sensor is a 5 cm x 5 cm x 5 cm cube made of a novel cement-resin-fiber composite matrix. A number of circular piezoelectric sheets with the same polarization alignment are embedded at the center of the cube with the certain distance from each other. The composite material used in the construction of the proposed sensor is in fact a new matrix composed of Portland cement, resin, water, fine silica and polymeric fibers which guarantees the strength, safety and sensitivity of the sensor at high level of stresses. The performance and reliability of the presented sensor has been proved through experimental tests. By considering different range of input force frequency (omega), it was found that the simple exponential law Delta V = 0.8 exp((-0.037 omega))Delta F exists between the amplitude of output sensor (Delta V) and amplitude of input force (Delta F). Compared to optical sensors and other available types of sensors which usually require special fabrication technology, the proposed sensor is low-price and easy to build and install. High sensitivity and precision in the range of 0.5-50 Hz, good compatibility with concrete, high durability, and the generating of strong output signals are other advantages of the proposed sensor. (C) 2018 Politechnika Wroclawska. Published by Elsevier B.V. All rights reserved.
机译:报告稀有合适的传感器,直到现在为混凝土结构的内部力进行准确测量。在该研究中,设计并制造了一种新颖的传感器,用于评估动态负荷下混凝土结构中的内应力。通过将该传感器嵌入现代混凝土结构的关键点(例如高层建筑,大跨度桥梁,大坝等)中,可以容易地完成对这种结构的良性监测。所提出的传感器是5厘米×5cm×5cm立方体,由新型水泥树脂 - 纤维复合基质制成。具有相同偏振对准的许多圆形压电片嵌入在立方体的中心,彼此一定距离。在建议的传感器的结构中使用的复合材料实际上是一种新的矩阵,由波特兰水泥,树脂,水,精细二氧化硅和聚合物纤维组成,可保证传感器在高压应力下的强度,安全性和灵敏度。通过实验测试证明了所呈现的传感器的性能和可靠性。通过考虑不同范围的输入力频率(OMEGA),发现简单的指数法ΔV= 0.8 exp(( - 0.037 omega))ΔF存在于输出传感器(Delta V)和输入力的幅度之间(三角洲F)。与通常需要特殊制造技术的光学传感器和其他可用类型的传感器相比,所提出的传感器是低价且易于构建和安装的。高灵敏度和精度在0.5-50 Hz的范围内,与混凝土的良好兼容性,高耐久性,以及产生强输出信号的产生是所提出的传感器的其他优点。 (c)2018 Politechnika Wroclawska。由elsevier b.v出版。保留所有权利。

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