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Experimental Study on Residual Bending Strength of Corroded Reinforced Concrete Beam Based on Micromagnetic Sensor

机译:基于微磁传感器的锈蚀钢筋混凝土梁残余抗弯强度试验研究

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摘要

This paper presents a nondestructive test method to evaluate the residual bending strength of corroded reinforced concrete beam by analyzing the self-magnetic flux leakage (SMFL) signals. The automatic scanning device was equipped with a micromagnetic sensor and sensor-based experimental details were introduced. Next, the theoretical formula of the normal component HS(z) of the SMFL signal that originated from the corroded region was derived based on the magnetic dipole model and the experimental results were discussed. The results indicate that the experimental data of HS(z) are consistent with the theoretical calculations, both location and extent of the steel bars corrosion can be qualitatively determined by using HS(z). The gradient K of HS(z) is approximately linearly related to the loss rate, S, of the bending strength, which can be used to evaluate the residual bending strength of the corroded reinforced concrete beam. This work lays the foundation for evaluating the residual bending strength of corroded reinforced concrete beams using the SMFL signal; the micromagnetic sensor is further applied to the civil engineering.
机译:本文提出了一种无损测试方法,通过分析自磁通量泄漏(SMFL)信号来评估锈蚀钢筋混凝土梁的残余抗弯强度。自动扫描装置配备了微磁传感器,并介绍了基于传感器的实验细节。接下来,基于磁偶极子模型推导了源自腐蚀区域的SMFL信号的正态分量HS(z)的理论公式,并讨论了实验结果。结果表明,HS(z)的实验数据与理论计算吻合,可以通过HS(z)定性确定钢筋腐蚀的位置和程度。 HS(z)的梯度K与抗弯强度的损失率S近似线性相关,可用于评估锈蚀钢筋混凝土梁的残余抗弯强度。这项工作为使用SMFL信号评估锈蚀钢筋混凝土梁的残余抗弯强度奠定了基础。微磁传感器进一步应用于土木工程。

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