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Residual Stress in a Polymer-glued FBG Temperature-compensated Sensor for Civil Engineering Applications

机译:用于土木工程应用的聚合物粘合FBG温度补偿传感器中的残余应力

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In recent years, embedded fibre-optic sensors as structural health monitoring devices have been widely used in both civil and aerospace engineering applications. Their small physical size and ability to immunize electromagnetic interference make them ideal sensing devices, which provide highly accurate and reliable strain and temperature measurements for structures. This paper presents a new designed temperature-compensated fibre-optic Bragg grating (TCS) strain sensor for imbedding into cement-based materials to measure their mechanical and thermal strains individually or simultaneously. However, the residual stress generated due to the constrained boundary of a steel tube that is used to protect the sensor, will influence the accuracy of measurement. Therefore, a theoretical model that is used to estimate this stress at different temperature conditions is discussed.
机译:近年来,作为结构健康监测设备的嵌入式光纤传感器已广泛应用于土木和航空工程应用。它们的物理尺寸小和抗电磁干扰的能力使其成为理想的传感设备,可为结构提供高度准确和可靠的应变和温度测量。本文提出了一种新设计的温度补偿光纤布拉格光栅(TCS)应变传感器,该传感器可嵌入水泥基材料中,以单独或同时测量其机械应变和热应变。但是,由于钢管的边界受约束而产生的残余应力(用于保护传感器)会影响测量的准确性。因此,讨论了用于估计不同温度条件下的应力的理论模型。

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