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Wireless Interrogation of High Temperature Surface Acoustic Wave Dynamic Strain Sensor

机译:高温表面声波动态应变传感器的无线询问

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Dynamic strain sensing is necessary for high-temperature harsh-environment applications, including powerplants, oil wells, aerospace, and metal manufacturing. Monitoring dynamic strain is important for structural health monitoring and condition-based maintenance in order to guarantee safety, increase process efficiency, and reduce operation and maintenance costs. Sensing in high-temperature (HT), harsh-environments (HE) comes with challenges including mounting and packaging, sensor stability, and data acquisition and processing. Wireless sensor operation at HT is desirable because it reduces the complexity of the sensor connection, increases reliability, and reduces costs. Surface acoustic wave resonators (SAWRs) are compact, can operate wirelessly and battery-free, and have been shown to operate above 1000°C, making them a potential option for HT HE dynamic strain sensing. This paper presents wirelessly interrogated SAWR dynamic strain sensors operating around 288.8MHz at room temperature and tested up to 400°C. The SAWRs were calibrated with a high-temperature wired commercial strain gauge. The sensors were mounted onto a tapered-type Inconel constant stress beam and the assembly was tested inside a box furnace. The SAWR sensitivity to dynamic strain excitation at 25°C, 100°C, and 400°C was $.439 mumathrm{V}/mu epsilon, 0.363mu mathrm{V}/mu epsilon$, and $.136 mu mathrm{V}/mu epsilon$, respectively. The experimental outcomes verified that inductive coupled wirelessly interrogated SAWRs can be successfully used for dynamic strain sensing up to 400°C.
机译:动态应变传感对于高温恶劣环境应用是必不可少的,包括发电厂,油井,航空航天和金属制造。监视动态应变对于结构健康状况监视和基于状态的维护非常重要,以确保安全性,提高过程效率并降低运行和维护成本。在高温(HT),恶劣环境(HE)中进行传感带来的挑战包括安装和封装,传感器稳定性以及数据采集和处理。希望在HT进行无线传感器操作是因为它降低了传感器连接的复杂性,提高了可靠性并降低了成本。表面声波谐振器(SAWR)紧凑,可以无线操作且无需电池,并且已证明可在1000°C以上的温度下运行,这使其成为HT HE动态应变传感的潜在选择。本文介绍了无线询问的SAWR动态应变传感器,该传感器在室温下工作于288.8MHz左右,并经过了高达400°C的测试。 SAWR用高温有线商用应变仪校准。传感器安装在锥形Inconel恒定应力梁上,并在箱式炉内对组件进行了测试。 SAWR对25°C,100°C和400°C的动态应变激励的灵敏度为 $。439 \ \ mu \ mathrm {V} / \ mu \ epsilon,0.363 \ mu \ mathrm {V} / \ mu \ epsilon $ , 和 $。136 \ mu \ mathrm {V} / \ mu \ epsilon $ , 分别。实验结果证明,电感耦合无线询问SAWR可以成功用于高达400°C的动态应变传感。

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