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Improved Encapsulation Method of Sensing Element for Cement-Based Piezoelectric Sensor
作者姓名:杨晓明  李宗津  李忠献
作者单位:School of Civil Engineering Tianjin University,Department of Civil Engineering The Hong Kong University of Science and Technology,School of Civil Engineering Tianjin University,Tianjin 300072 China KLN Hong Kong China Tianjin 300072 China
基金项目:Supported by Hong Kong Research Grant Council to HKUSTunder grant HKUST6212/O2E,National Science Fund forDistinguished Young Scholars of China(No.50425824).
摘    要:A novel cement-based piezoelectric sensor wasdeveloped recently1—3]. It can be used in civil engi-neering structure for measuring the dynamic load in-duced by wind, earthquake, etc. The sensor wasmade by jointing two cement paste cubes with a piezo-electric ceramic plate using encapsulation material de-veloped specially for the sensor4]. When calibratedby Material Test System(MTS), the sensor showed agood frequency independency and linear relationshipbetween input loading and output volta…

关 键 词:封装技术  压电传感器  并联模型  传感元件
收稿时间:2006-01-12

Improved Encapsulation Method of Sensing Element for Cement-Based Piezoelectric Sensor
YANG Xiaoming,LI Zongjin,LI Zhongxian.Improved Encapsulation Method of Sensing Element for Cement-Based Piezoelectric Sensor[J].Transactions of Tianjin University,2006,12(5):346-349.
Authors:YANG Xiaoming  LI Zongjin  LI Zhongxian
Abstract:An improved encapsulation method of a sensing element for a cement-based piezoelectric sensor used in civil engineering structure was developed and some tests were carried out for validating this method. The cement-based piezoelectric sensor of this kind is mainly used in concrete structure due to its compatibility with concrete, and the encapsulation method of its sensing element is important to the effectiveness and accuracy of the transfer of the stress from concrete to the sensing element. The sensor's measurement error of the previous encapsulation method, which was induced by the area of the encapsulation material and the inherent difference of Young's modulus between cement and encapsulation material, was analyzed theoretically using parallel model. In the improved method, the error is minimized by decreasing the area of the encapsulation material and changing the configuration of the cement and piezoelectric material in the sensor. Two sensors made by the previous and improved methods were embedded in two prisms respectively and the prisms were compressed on Material Test System. Through the comparison of the measurement errors of the two sensors, the improved method was evaluated. The test results show that the improved encapsulation method is effective and feasible.
Keywords:improved encapsulation method  cement-based  piezoelectric sensor  parallel model
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