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基于具有温度稳定性的钛酸钡-铋铁氧体/聚偏二氟乙烯纳米复合压电传感器建立大体积混凝土强度监测方法。

Establishment of a Mass Concrete Strength-Monitoring Method Using Barium Titanate-Bismuth Ferrite/Polyvinylidene Fluoride Nanocomposite Piezoelectric Sensors with Temperature Stability.

作者信息

Lin Guoliang, Lu Dongwang, Cui Bowen, Lin Aoxiang, Liu Minyi, Ye Yongbin

机构信息

Fujian Provincial Key Laboratory of Advanced Technology and Information in Civil Engineering, Fuzhou 350118, China.

College of Ecological Environment and Urban Construction, Fujian University of Technology, Fuzhou 350118, China.

出版信息

Sensors (Basel). 2024 Jul 18;24(14):4653. doi: 10.3390/s24144653.

Abstract

Mass concrete is widely used in large-scale projects, including metro upper cover structures, water conservancy dams, and heavy equipment foundations, among others, necessitating the process of health monitoring in mass concrete construction. The development of reliable and simple strength-monitoring methods for mass concrete is challenging because the inner temperature of mass concrete is high and changes a lot. This study proposes a strength-monitoring approach for mass concrete using barium titanate-bismuth ferrite/polyvinylidene fluoride (BT-BFO/PVDF) nanocomposite piezoelectric sensors, wherein the new sensors are embedded as actuators and sensors in mass concrete. The stress wave generated by the BT-BFO/PVDF piezoelectric sensors is used to monitor the specimen's strength for 28 days. The piezoelectric voltage received by the sensors in mass concrete is analyzed. The experimental results indicate that the signal received by the BT-BFO/PVDF sensors is not easily affected by the internal temperature of mass concrete compared with that of the traditional PVDF piezoelectric sensors. The signal parameters sensitive to concrete strength variation and the change trend of concrete strength are closely related to the piezoelectric voltage. Therefore, the proposed approach using BT-BFO/PVDF nanocomposite piezoelectric sensors is efficient (error < 10%) in mass concrete monitoring. Moreover, the monitoring results do not need temperature compensation. The physical meaning of the obtained strength prediction formula is proposed. An experimental system based on PVDF dynamic strain-sensing characteristics is established.

摘要

大体积混凝土广泛应用于大型工程,包括地铁上盖结构、水利大坝和重型设备基础等,因此大体积混凝土施工过程中的健康监测十分必要。开发可靠且简单的大体积混凝土强度监测方法具有挑战性,因为大体积混凝土内部温度高且变化大。本研究提出一种使用钛酸钡-铋铁氧体/聚偏二氟乙烯(BT-BFO/PVDF)纳米复合压电传感器的大体积混凝土强度监测方法,其中新型传感器作为激励器和传感器嵌入大体积混凝土中。利用BT-BFO/PVDF压电传感器产生的应力波监测试件28天的强度。分析大体积混凝土中传感器接收到的压电电压。实验结果表明,与传统PVDF压电传感器相比,BT-BFO/PVDF传感器接收到的信号不易受大体积混凝土内部温度的影响。对混凝土强度变化敏感的信号参数以及混凝土强度的变化趋势与压电电压密切相关。因此,所提出的使用BT-BFO/PVDF纳米复合压电传感器的方法在大体积混凝土监测中是高效的(误差<10%)。此外,监测结果无需温度补偿。提出了所得强度预测公式的物理意义。建立了基于PVDF动态应变传感特性的实验系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ce6/11280568/c91f291a7e9d/sensors-24-04653-g001.jpg

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