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Fully Passive-Printed Wireless Wear Sensor

机译:完全被动印刷的无线磨损传感器

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Wear of abradable materials presents a significant challenge across many industries, where the efficiency, efficacy, and safety of important systems rely on the detection and monitoring of component wear. Three design variations demonstrate real-time monitoring of wear by a novel, additively manufactured, embeddable, and fully passive wireless wear sensor. The three sensor designs incorporate closely spaced, narrow interconnects connected to a parallel resistor circuit, with a passive RFID chip for complete remote operation. The first design includes ten closely spaced horizontal interconnects and tracks wear events orthogonal to the interconnects for a resolution of 200 mu m. The second design divides horizontal interconnects into two interdigitated sets of five lines each to achieve a resolution of 125 mu m. The third design features ten interconnects printed vertically and connected to a sloped drain line to achieve a resolution of 50 mu m. We fabricated all three designs with a single-layer print on machinable glass-ceramics and commercial surface-mount resistors. Lab testing showed that the three sensor designs had an overall experimental resolution of 215.3, 127.8, and 57.34 mu m, respectively. We attribute error to a combination of manufacturing challenges related to the printing of orthogonal and acute angled narrow interconnects, RFID sampling rates, and errors from testing. The maximum error in measured voltage steps for each of the three designs is 10%, 6.67%, and 6.78%. This study is limited in sample size due to testing constraints and is presented as proof of concept. Future work should assess the robustness of these designs and processes.
机译:磨损材料的磨损在许多行业中提出了重大挑战,其中重要的系统的效率,功效和安全性依赖于对部件磨损的检测和监测。三种设计变化表明了一种新颖,含量加剧,嵌入式和完全被动无线磨损传感器的实时监控。三个传感器设计采用紧密间隔,窄互连连接到并联电阻电路,具有无源RFID芯片,用于完整的远程操作。第一个设计包括十个紧密间隔的水平互连,并跟踪与互连正交的磨损事件,用于分辨率为200μm。第二种设计将横向互连分成两个互指定的五个线,每个三线均可实现125μm的分辨率。第三种设计具有十个互连垂直印刷并连接到倾斜的漏极线以实现50μm的分辨率。我们在可加工的玻璃陶瓷和商业表面安装电阻上用单层印刷制作了所有三种设计。实验室测试表明,三种传感器设计的总实验分辨率分别为215.3,127.8和57.34 mu m。我们将错误归因于与正交和急性成角度窄互连,RFID采样率的印刷相关的制造挑战的组合,以及从测试中的错误。三种设计中每一个的测量电压步骤中的最大误差为10%,6.67%和6.78%。由于测试限制,该研究的样本大小受到限制,并且被呈现为概念证明。未来的工作应评估这些设计和流程的稳健性。

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