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A passive wireless surface acoustic wave sensor for pillar load measurement

机译:用于柱负荷测量的无源无线曲面声波传感器

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摘要

This paper presents a passive wireless pillar load measurement method based on surface acoustic wave (SAW) technology. A strain transfer mechanical structure was designed, and the strain distribution of an elastic substrate was analyzed using elastic thin plate bending theory. In addition, the relationship between the strain and frequency shift of the SAW resonator (SAWR) was analyzed, and a strain sensitivity numerical analysis using different bonding directions was performed. Results corroborated that the differential structure of resonators, one of which is placed at the edge along the direction of a diameter and the other is placed at the center with an angle of 45° to the diameter, is a suitable form of the SAW load sensors. Moreover, the SAWR parameters were optimized to obtain a high-performance resonator. Furthermore, The SAWRs and strain transfer mechanical structures were manufactured, the pillar load measurement system was set, and the proposed SAW load measurement method was evaluated. Experimental results affirmed that the load sensitivity is 8.64 kHz/kN. The SAW pillar load method is feasible for practical application.
机译:本文介绍了基于表面声波(SAW)技术的被动无线柱负荷测量方法。设计了应变转移机械结构,并使用弹性薄板弯曲理论分析弹性基板的应变分布。另外,分析了SAW谐振器(SAWR)的应变和频移之间的关系,并进行了使用不同粘合方向的应变灵敏度数值分析。结果证实了谐振器的差动结构,其中一个沿着直径方向放置在边缘,另一个在直径为45°的中心处放置在锯旋传感器的合适形式。此外,优化了锯梁参数以获得高性能谐振器。此外,制造了锯和应变转移机械结构,设定了柱负荷测量系统,并评估了所提出的SAW载荷测量方法。实验结果确认负载灵敏度为8.64 kHz / kn。 SAW柱式载荷方法可用于实际应用。

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