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基于电磁感应原理的混合材料内部位移跟踪装置研究

Research on Displacement Tracking Device Inside Hybrid Materials Based on Electromagnetic Induction Principle.

作者信息

Sun Xiansheng, Wang Yixuan, Chen Yu, Cao Mingyue, Zhou Changhong

机构信息

China First Highway Engineering Co., Ltd., Beijing 100024, China.

Department of Architecture and Civil Engineering, City University of Hong Kong, Hong Kong SAR 999077, China.

出版信息

Sensors (Basel). 2025 Aug 19;25(16):5143. doi: 10.3390/s25165143.

Abstract

Magnetic induction imaging technology, as a non-invasive detection method based on the principle of electromagnetic induction, has a wide range of applications in the field of materials science and engineering with the advantages of no radiation and fast imaging. However, it has not been improved to address the problems of high contact measurement interference and low spatial resolution of traditional strain detection methods in bulk materials engineering. For this reason, this study proposes a magnetic induction detection technique incorporating metal particle assistance and designs a hardware detection system based on an eight-coil sensor to improve the sensitivity and accuracy of strain detection. Through finite element simulation and an image reconstruction algorithm, the conductivity distribution reconstruction was realized. Taking asphalt concrete as the research object, particle-reinforced composite specimens with added metal particles were prepared. On this basis, a hardware detection system with eight-coil sensors was designed and constructed, and the functionality and stability of the system were verified. Using finite element analysis technology, two-dimensional and three-dimensional simulation models were established to focus on analyzing the effects of different coil turns and excitation parameters on the induced voltage signal. The method proposed in this study provides a new technical approach for non-contact strain detection in road engineering and can also be applied to other composite materials.

摘要

磁感应成像技术作为一种基于电磁感应原理的非侵入式检测方法,具有无辐射、成像速度快等优点,在材料科学与工程领域有着广泛应用。然而,在块状材料工程中,它尚未得到改进以解决传统应变检测方法接触式测量干扰大、空间分辨率低的问题。为此,本研究提出一种结合金属颗粒辅助的磁感应检测技术,并设计了基于八线圈传感器的硬件检测系统,以提高应变检测的灵敏度和准确性。通过有限元模拟和图像重建算法,实现了电导率分布重建。以沥青混凝土为研究对象,制备了添加金属颗粒的颗粒增强复合材料试样。在此基础上,设计并构建了具有八线圈传感器的硬件检测系统,验证了系统的功能和稳定性。利用有限元分析技术,建立二维和三维模拟模型,重点分析不同线圈匝数和激励参数对感应电压信号的影响。本研究提出的方法为道路工程中的非接触应变检测提供了一种新的技术途径,也可应用于其他复合材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be0c/12390128/5df7c0fb6c3b/sensors-25-05143-g001.jpg

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