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Experimental Verification of the Pumping Effect Caused by the Micro-Tapered Hole in a Piezoelectric Atomizer

机译:压电雾化器中微锥孔引起的泵浦效应的实验验证

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摘要

In this study, we examined the use of a dynamic micro-tapered hole as a micro-scale tapered flow tube valveless piezoelectric pump. Firstly, we obtained photographs of a micro-tapered hole by using an environmental scanning electron microscope (ESEM). Then, we explained the pump effect of the micro-tapered hole, and derived the atomization rate equation. Furthermore, we reported an atomization rate measurement experiment that eliminated the atomization caused by a pressure increase, and demonstrated that a change in the volume of a micro-tapered hole could produce atomization. The experimental results indicate that, under the same voltage, the forward atomization rate is much higher than the reverse atomization rate and that the atomization rate increases with the micro-tapered hole volume. The experimental results show that the atomization of the micro-tapered aperture atomizer is caused by its pumping effect. Moreover, the flow resistance and volume of the micro-tapered hole can affect the atomization rate.
机译:在这项研究中,我们研究了使用动态微锥孔作为微型锥形流量管无阀压电泵的使用。首先,我们使用环境扫描电子显微镜(ESEM)获得了微锥孔的照片。然后,我们解释了微锥孔的泵浦效应,并推导了雾化速率方程。此外,我们报道了一项雾化速率测量实验,该实验消除了由于压力升高而引起的雾化,并证明了微锥孔的体积变化会产生雾化。实验结果表明,在相同电压下,正向雾化速率远高于反向雾化速率,并且雾化速率随微锥孔体积的增加而增大。实验结果表明,微锥孔雾化器的雾化是由其泵吸作用引起的。此外,微锥孔的流动阻力和体积会影响雾化速率。

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