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Feasibility Test of a Liquid Film Thickness Sensor on a Flexible Printed Circuit Board Using a Three-Electrode Conductance Method

机译:使用三电极电导法在柔性印刷电路板上液膜厚度传感器的可行性测试

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摘要

Liquid film thickness measurements under temperature-varying conditions in a two-phase flow are of great importance to refining our understanding of two-phase flows. In order to overcome the limitations of the conventional electrical means of measuring the thickness of a liquid film, this study proposes a three-electrode conductance method, with the device fabricated on a flexible printed circuit board (FPCB). The three-electrode conductance method offers the advantage of applicability under conditions with varying temperatures in principle, while the FPCB has the advantage of usability on curved surfaces and in relatively high-temperature conditions in comparison with sensors based on a printed circuit board (PCB). Two types of prototype sensors were fabricated on an FPCB and the feasibility of both was confirmed in a calibration test conducted at different temperatures. With the calibrated sensor, liquid film thickness measurements were conducted via a falling liquid film flow experiment, and the working performance was tested.
机译:在两相流中温度变化的条件下进行液膜厚度测量对于完善我们对两相流的理解非常重要。为了克服传统的测量液膜厚度的电学方法的局限性,本研究提出了一种三电极电导方法,该器件在柔性印刷电路板(FPCB)上制造。与基于印刷电路板(PCB)的传感器相比,三电极电导方法在原理上具有在温度变化的条件下适用的优势,而FPCB在弯曲的表面和相对高温的条件下具有适用性的优势。在FPCB上制造了两种类型的原型传感器,并且在不同温度下进行的校准测试中都证实了这两种类型的可行性。使用校准的传感器,通过下降的液膜流动实验进行液膜厚度测量,并测试工作性能。

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