Yan Qiufeng, Liu Zhiling, Sun Wanting, Jiang Mengyao
School of Electrical Engineering and Automation, Nantong University, Nantong 226019, China.
School Key Laboratory of Mechanics and Control for Aerospace Structures, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China.
Micromachines (Basel). 2025 Apr 29;16(5):527. doi: 10.3390/mi16050527.
In previous studies, a valveless piezoelectric pump with arc-shaped tubes (VPPAST) based on the Coriolis Effect was proposed. To promote the application of VPPAST in the field of navigation and guidance, it is vital to further explore the influences of the layout and structural parameters of arc-shaped tubes on the flow rate. Accordingly, in this study, the analysis of flow characteristics of fluid in arc-shaped tubes was conducted, and the velocity difference between the clockwise and counterclockwise flow of the liquid was reduced. Eventually, the flow equations of three layout modes of arc-shaped tubes were established. VPPAST with anomalous-direction arc-shaped tubes, single-arc-shaped tube, and same-direction arc-shaped tubes were produced using 3D printing technology. In addition, the valveless piezoelectric pump with the anomalous-direction arc-shaped tubes (VLPPADA) with different parameter flow tubes were also fabricated. Based on the resultant flow rates of each piezoelectric pump, it was demonstrated that the flow rate of the VLPPADA was the highest under the same driving conditions, and the flow rate can be determined as 1.72 mL/min when the driving voltage was set as 160 V at 14 Hz. It indicated that the pump flow rate of VLPPADA was directly proportional to the base radius and width of the arc-shaped tube.
在以往的研究中,提出了一种基于科里奥利效应的带弧形管的无阀压电泵(VPPAST)。为了促进VPPAST在导航与制导领域的应用,进一步探究弧形管的布局和结构参数对流量的影响至关重要。因此,在本研究中,对弧形管内流体的流动特性进行了分析,减小了液体顺时针和逆时针流动的速度差。最终,建立了弧形管三种布局模式的流动方程。利用3D打印技术制作了带异向弧形管、单弧形管和同向弧形管的VPPAST。此外,还制作了具有不同参数流管的带异向弧形管的无阀压电泵(VLPPADA)。基于每个压电泵的合成流量表明,在相同驱动条件下,VLPPADA的流量最高,当驱动电压在14Hz设定为160V时,流量可确定为1.72mL/min。这表明VLPPADA的泵流量与弧形管的基半径和宽度成正比。