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Wire-based triboelectric resonator for a self-powered crack monitoring system

机译:用于自动裂纹监测系统的基于线的摩擦谐振器

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摘要

In this study, we investigated a wire-type triboelectric resonator (WTER) for monitoring cracks. Vibration of a metal wire on a dielectric film produces a resonant frequency via triboelectric outputs. We found that the tension, linear density, and wire length significantly affect the resonant frequency measured by the WTER. For a 10-cm-long wire, the WTER's sensitivity, as defined by a resonant frequency change for an elongation (i.e., Hz/mm), reached approximately 1,020 Hz/mm; however, this changed to 115 Hz/mm after an elongation of 1.5 mm. When a 40-cm-long wire was used, the sensitivity changed to about 105 Hz/mm, but it was very stable because there was no plastic deformation. We developed a stand-alone, self-powered crack monitoring system by assembling a WTER with an Arduino board (A-WTER); this setup demonstrated monitored frequency value errors of less than 1%. Our A-WTER successfully monitored an elongation of 100 mu m with a resonant frequency change of approximately 30 Hz. We investigated the A-WTER behavior under varying humidity and temperature conditions in order to understand its environmental stability. We found it was highly stable through a broad humidity range (RH 10%-80%) while its thermal stability was controlled by changing the tension and length of the wire.
机译:在这项研究中,我们研究了一种用于监测裂缝的线型摩擦谐振器(WETT)。介电膜上的金属线的振动通过摩擦输出产生谐振频率。我们发现张力,线性密度和线长度显着影响了由WTET测量的谐振频率。对于10厘米长的电线,由伸长率(即Hz / mm)的谐振频率变化限定的旋转频率(即Hz / mm)所限定的敏感性达到约1,020Hz / mm;然而,在1.5毫米的伸长后,这变为115 Hz / mm。当使用40厘米长的线时,敏感性变为约105Hz / mm,但它非常稳定,因为没有塑性变形。我们通过使用Arduino Board(A-Wetter)组装Wetter来开发出独立的自动裂缝监控系统;此设置展示监视频率值误差小于1%。我们的A-Wetter成功地监测了100亩m的伸长率,谐振频率变化约为30 Hz。我们调查了不同湿度和温度条件下的A-WTER行为,以了解其环境稳定性。我们发现通过宽湿度范围(RH 10%-80%)非常稳定,而通过改变电线的张力和长度来控制其热稳定性。

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