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A Novel Approach in Liquid-Level Sensing by Trapped-Energy-Mode Thickness Vibrators

机译:捕获节能厚度振动器液位检测的一种新方法

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A novel approach is presented for detecting a small-scale variation in liquid level using an energy-trapping phenomenon in piezoelectric thickness-mode vibrators. In a piezoelectric plate operating in a trapped-energy mode, an evanescent field is created in the surrounding region of the plate. When this region is dipped in a liquid, a small leakage of vibration energy occurs. Because the amount of leakage varies depending on dipping depth, small variations in liquid level are detected by observing the changes in the electric characteristics of the vibrators, such as quality factor and the electric conductance G. Preliminary experiments have shown that almost linear variations in G against dipping depth can be obtained within a few-millimeter range.
机译:提出了一种新方法,用于使用压电厚度模式振动器中的节能现象检测液位的小规模变化。在以捕获能量模式操作的压电板中,在板的周围区域中产生渐逝场。当该区域浸入液体中时,发生较小的振动能泄漏。因为泄漏量根据浸渍深度而变化,所以通过观察振动器的电特性的变化,例如质量因子和电导G.初步实验表明G的初步实验表明G的几乎线性变化来检测液位的小变化抗浸渍深度可以在几毫米范围内获得。

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