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Strain sensing properties of cement-based sensors embedded at various stress zones in a bending concrete beam

机译:嵌入在弯曲混凝土梁中不同应力区域的水泥基传感器的应变传感特性

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摘要

CBCC sensor, a kind of cement-based strain sensor, has been developed by utilizing the piezoresistivity of carbon black filled cement-based composite (CBCC1) and the strain sensing property of a free CBCC sensor has been explored. In this paper, CBCC sensors are embedded at three different stress zones in a bending beam, i.e. uniaxial compression, combined compression and shear, and uniaxial tension to investigate the strain sensing properties of embedded CBCC sensors under these stress states. The experimental results show that the precision of embedded CBCC sensors for measuring compressive strain is as good as that of a free CBCC sensor, no matter shear stress exists or not, indicating the precision of embedded CBCC sensors is nearly insensitive to shear stress. The adverse influence of shear stress is reducing the sensing range of embedded CBCC sensors because existing of shear stress will decrease the maximum compressive strain. Embedded CBCC sensors under uniaxial tension show good tensile strain sensing properties before they are crushed.
机译:利用炭黑填充水泥基复合材料(CBCC1)的压阻,开发了一种基于水泥的应变传感器CBCC传感器,并探索了一种免费的CBCC传感器的应变传感特性。本文将CBCC传感器嵌入到弯曲梁的三个不同应力区域,即单轴压缩,组合压缩和剪切以及单轴张力,以研究在这些应力状态下嵌入式CBCC传感器的应变传感特性。实验结果表明,无论是否存在剪切应力,嵌入式CBCC传感器测量压缩应变的精度均与自由CBCC传感器相同,这表明嵌入式CBCC传感器的精度几乎对剪切应力不敏感。剪应力的不利影响减小了嵌入式CBCC传感器的感应范围,因为剪应力的存在会减小最大压缩应变。嵌入式CBCC传感器在被压碎之前表现出良好的拉伸应变感测特性,并且处于单轴拉伸状态。

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