Chen Jian, Gao Wenzhi, Liu Changhai, He Liangguo, Zeng Yishan
School of Mechanical Engineering, Hefei University of Technology, Hefei 230009, China.
Micromachines (Basel). 2021 Apr 29;12(5):500. doi: 10.3390/mi12050500.
This study proposes the improvement of the output performance of a resonant piezoelectric pump by adding proof masses to the free ends of the prongs of a U-shaped piezoelectric resonator. Simulation analyses show that the out-of-phase resonant frequency of the developed resonator can be tuned more efficiently within a more compact structure to the optimal operating frequency of the check valves by adjusting the thickness of the proof masses, which ensures that both the resonator and the check valves can operate at the best condition in a piezoelectric pump. A separable prototype piezoelectric pump composed of the proposed resonator and two diaphragm pumps was designed and fabricated with outline dimensions of 30 mm × 37 mm × 54 mm. Experimental results demonstrate remarkable improvements in the output performance and working efficiency of the piezoelectric pump. With the working fluid of liquid water and under a sinusoidal driving voltage of 298.5 V, the miniature pump can achieve the maximum flow rate of 2258.9 mL/min with the highest volume efficiency of 77.1% and power consumption of 2.12 W under zero backpressure at 311/312 Hz, and the highest backpressure of 157.3 kPa under zero flow rate at 383 Hz.
本研究提出通过在U形压电谐振器叉指的自由端添加配重块来提高谐振压电泵的输出性能。仿真分析表明,通过调整配重块的厚度,所研制的谐振器的异相谐振频率能够在更紧凑的结构内更有效地调谐到止回阀的最佳工作频率,这确保了谐振器和止回阀在压电泵中都能在最佳状态下运行。设计并制作了一个由所提出的谐振器和两个隔膜泵组成的可分离式压电泵原型,其外形尺寸为30 mm×37 mm×54 mm。实验结果表明,压电泵的输出性能和工作效率有显著提高。以液态水作为工作流体,在298.5 V的正弦驱动电压下,该微型泵在311/312 Hz零背压时可实现2258.9 mL/min的最大流量、77.1%的最高容积效率以及2.12 W的功耗,在383 Hz零流量时可实现157.3 kPa的最高背压。