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首页> 外文期刊>Journal of materials in civil engineering >Wireless Crack Detection in Concrete Elements Using Conductive Surface Sensors and Radio Frequency Identification Technology
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Wireless Crack Detection in Concrete Elements Using Conductive Surface Sensors and Radio Frequency Identification Technology

机译:使用导电表面传感器和射频识别技术的混凝土构件无线裂缝检测

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摘要

This paper describes the results of an experimental study that uses radio frequency identification (RFID) technology to detect cracking in concrete elements. A RFID-based sensor is used to monitor the change in electrical resistance that occurs in conductive materials applied to the surface of the concrete. When the concrete substrate is strained, the conductive material at the surface is stretched, and its electrical resistance increases. If the concrete substrate is strained to the point where it cracks, the conductive material at the surface also cracks, causing its electrical resistance to increase by orders of magnitude. This paper describes how this increase in electrical resistance attributable to cracking can be detected wirelessly by RFID technology. To experimentally illustrate the application of this technology, an RFID-based sensor and conductive surface materials are used to detect cracking in the restrained ring test. The experimental results indicate that this technology can be easily implemented and successfully used for wireless crack detection in concrete and reinforced concrete members. The technology that is described in this paper is not limited to the laboratory environment and can be easily extended to field applications.
机译:本文介绍了一项使用射频识别(RFID)技术检测混凝土构件裂缝的实验研究结果。基于RFID的传感器用于监视在施加到混凝土表面的导电材料中发生的电阻变化。当混凝土基板变形时,表面上的导电材料被拉伸,并且其电阻增加。如果将混凝土基材拉紧到破裂的程度,则表面的导电材料也会破裂,导致其电阻增加几个数量级。本文介绍了如何通过RFID技术以无线方式检测到由裂纹引起的电阻增加。为了通过实验说明该技术的应用,基于RFID的传感器和导电表面材料被用于检测约束环测试中的裂纹。实验结果表明,该技术可以轻松实现并成功用于混凝土和钢筋混凝土构件的无线裂缝检测。本文中描述的技术不限于实验室环境,并且可以轻松地扩展到现场应用。

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