Performance evaluation of a UHF passive RFID tag embedded in a carbon fibre-reinforced polymer

D. Ambrosini, A. Pirondi, L. Vescovi, Fabrizio Arbucci
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Abstract

Data collection during the production process plays a key role in the management and control of goods within the company. In this work, the main focus is on the possibility of embedding radio frequency identification (RFID) technology in carbon-fibre reinforced polymer (CFRP) components to evaluate the readability of commercial Ultra High Frequency system by varying their covers, which is also partly in CFRPS. The samples produced and the tags used derived on previous studies, in which configurations with the tag housed inside were established and studied. Two RFID tags were studied that could withstand the harsh environmental conditions, i.e., high temperatures and pressure. This work was not carried out in an ideal environment to assess the theoretical capabilities of RFID sensors, but to understand and evaluate the readability limits of commercial RFID tags embedded in CFRPs. Therefore, an experimental campaign was undertaken to assess the downstream readability of the curing process of tags in laminated mock-ups. It was observed that the curing process had minimal effect on the readability of the tags. Free-space tests were carried out in proximity of metallic elements to determine the change of the reading distance obtained during the test, keeping the fixed antenna used constant.
嵌入碳纤维增强聚合物中的超高频无源RFID标签的性能评估
生产过程中的数据收集在公司内部的货物管理和控制中起着关键作用。在这项工作中,主要关注的是在碳纤维增强聚合物(CFRP)组件中嵌入射频识别(RFID)技术的可能性,通过改变其覆盖范围来评估商用超高频系统的可读性,这也部分体现在CFRP中。制作的样品和使用的标签源自先前的研究,其中建立和研究了内部放置标签的配置。研究了两种可以承受恶劣环境条件(即高温和高压)的RFID标签。这项工作并不是在一个理想的环境中进行的,以评估RFID传感器的理论能力,而是为了理解和评估嵌入在cfrp中的商用RFID标签的可读性限制。因此,进行了一项实验活动,以评估层压模型中标签固化过程的下游可读性。据观察,固化过程对标签的可读性影响最小。在金属元素附近进行自由空间测试,以确定测试过程中读取距离的变化,并保持使用的固定天线不变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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