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Research on a 0-3 cement-based piezoelectric sensor with excellent mechanical-electrical response and good durability

机译:具有良好的机械电响应和良好的耐久性的0-3水泥基压电传感器的研究

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摘要

In this study, a novel cementbased piezoelectric sensor was prepared with 0-3 cementbased piezoelectric composites as the sensing element and a mixture consisting of epoxy resin and cement as the encapsulation part, and its mechanical-electrical response measurement was carried out by dynamic load. To realize effective load transmission from the structural material to the sensing element, and to better evaluate and improve the sensor durability, the optimum encapsulation system and sensing element location were explored, and the durability of the cement-based piezoelectric sensor under complicated conditions was studied in detail. Results indicated that the sensor possessed excellent linear performance, with the regression confidence exceeding 0.99 in a large range of 0.31-2.34 MPa, when the ratio of cement to epoxy resin was 3:1 and the sensing element was put in a position near the underside of the encapsulation material. The phase shift between the output voltage and input load was nearly zero and the sensor could respond to pulse load quickly. Environmental conditions including fatigue load and water had a negligible effect on the linearity and sensitivity (slope of fitting line) of the sensor, and in the intended temperature range of 0-40 °C the sensor showed good linearity, almost independent of temperature; nevertheless, the output voltage increased with increasing temperature and the sensitivity reached 1811 mV MPa-1 at 40 °C. Generally, the sensor prepared in this research had excellent mechanical-electrical response and good durability.
机译:本研究以0-3水泥基压电复合材料为传感元件,以环氧树脂和水泥的混合物为封装材料,制备了新型水泥基压电传感器,并通过动态载荷对其机械电响应进行了测量。为了实现从结构材料到传感元件的有效载荷传递,并更好地评估和提高传感器的耐用性,探索了最佳的封装系统和传感元件位置,并研究了复杂条件下水泥基压电传感器的耐用性详细。结果表明,当水泥与环氧树脂的比例为3:1且将传感元件放置在底面附近时,该传感器具有出色的线性性能,在0.31-2.34 MPa的大范围内回归置信度超过0.99。封装材料。输出电压和输入负载之间的相移几乎为零,并且传感器可以快速响应脉冲负载。包括疲劳载荷和水在内的环境条件对传感器的线性度和灵敏度(装配线的斜率)的影响可忽略不计,并且在0-40°C的预期温度范围内,传感器表现出良好的线性度,几乎与温度无关。但是,输出电压随温度升高而增加,在40°C时灵敏度达到1811 mV MPa-1。通常,本研究中准备的传感器具有出色的机械电响应和良好的耐久性。

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