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A Resonant Piezoelectric Diaphragm Pump Transferring Gas with Compact Structure

机译:结构紧凑的共振压电隔膜泵输送气体

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In order to improve the output capacity of a piezoelectric pump when transferring gas, this paper presents a compact resonant piezoelectric diaphragm pump (hereinafter referred to as the piezoelectric diaphragm pump), which is driven by a rectangular piezoelectric vibrator. The compact structure can effectively release the vibrating constraints of the vibrator, and enlarge its center output displacement, so as to increase the volume change rate of the pump chamber. Based on the structure and the working principle of this piezoelectric diaphragm pump, a dynamic model for the diaphragm system is established in this paper, and an analysis on factors affecting the resonant frequency of the system is then conducted. We tested on the prototype under the driving voltage of 260 Vpp. The results show that the diaphragm system reaches resonance under the driving frequency of 265 Hz, which is very close to the fundamental frequency of check valve. Compared with the rectangular piezoelectric vibrator?¢????s amplitude, the diaphragm?¢????s amplitude is double amplified. At this time, the piezoelectric diaphragm pump achieves the maximum gas flow rate as 186.8 mL/min and the maximum output pressure as 56.7 kPa.
机译:为了提高压电泵在输送气体时的输出能力,提出了一种紧凑的共振压电隔膜泵(以下称为压电隔膜泵),它由矩形压电振动器驱动。紧凑的结构可以有效地释放振动器的振动约束,并增大其中心输出位移,从而增加泵室的容积变化率。根据该压电隔膜泵的结构和工作原理,建立了隔膜系统的动力学模型,并对影响系统共振频率的因素进行了分析。我们在260 Vpp的驱动电压下对原型进行了测试。结果表明,膜片系统在265 Hz的驱动频率下达到共振,该频率非常接近止回阀的基本频率。与矩形压电振动器的振幅相比,振动膜的振幅被放大了两倍。此时,压电隔膜泵的最大气体流量为186.8 mL / min,最大输出压力为56.7 kPa。

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