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Research on Single Vibrator Gas Piezoelectric Pump

机译:单振子气体压电泵的研究

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摘要

A single vibrator gas piezoelectric micro-pump has been presented in this work. The structure is designed and the dynamic modeling and simulation of the check valve which is the main component of pump are investigated. Based the analysis results,a proto type of gas micro-pump is fabricated and measured. The pump is driven by piezoelectric bimorph which has a hole in the middle,and a check valve is adhered to the hole to cut off fluid. The inlet and outlet is located in the two sides of the piezoelectric vibrator,and the on/off action of the check valve corresponding to the variation of the pump chamber is produced by the actuation vibration energy of piezoelectric vibrator. Compare with the traditional piezoelectric pump which inlet and outlet is located in one side and the check valve of it is driven by differential pressure on the two sides,it has lower fluid resistance and preferable unidirectional cut off characteristic. So the gas pumping ability and the response frequency of check valve are enhanced. The measured output flow rate of present design by experiment reaches 840 ml/min when driving voltage and frequency is 50V and 1000Hz.
机译:这项工作提出了单个振动器气体压电微型泵。设计了结构,并研究了作为泵主要部件的止回阀的动态建模和仿真。根据分析结果,制造并测量了原型微型气体泵。泵由压电双压电晶片驱动,压电双压电晶片的中间有一个孔,单向阀粘附在该孔上以切断流体。入口和出口位于压电振动器的两侧,与止回阀相对应的泵室变化的开/关动作是由压电振动器的致动振动能量产生的。与传统的压电泵相比,传统的压电泵的入口和出口位于一侧,而其止回阀由两侧的压差驱动,它具有较低的流体阻力,并具有较好的单向截止特性。因此,提高了抽气能力和单向阀的响应频率。当驱动电压和频率为50V和1000Hz时,本设计通过实验测得的输出流量达到840 ml / min。

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