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Internal pressure characteristics and performance features of the piezoelectric micropumps with the diffuserozzle and electromagnetic resistance

机译:带有扩散器/喷嘴和电磁电阻的压电微型泵的内部压力特性和性能特征

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A numerical analysis was conducted about the internal pressure characteristics and performance features of piezoelectric micropumps with the diffuserozzle and electromagnetic resistance, respectively, used for flow control. In this numerical analysis the transient pressure in the chamber of the micropumps with the diffuserozzle and electromagnetic resistance, respectively, was investigated and the influence of the pressure characteristics on the performance of the pumps was analyzed. The motion of the diaphragm, which functions as the actuator for the pumps, was implemented using the Prescribed Deformation Model together with the UDF (User Defined Function) and the Spring Based Smoothing Method. This numerical analysis found that the pressure in the chamber of the diffuserozzle-based micropump was about 10 times greater than that of the micropump with electromagnetic resistance when the pumping flow rates of the two different pumps are the same, and the shut-off pressure value of the diffuserozzle-based pump was more than 10 times greater than that of the electromagnetic resistance pump. This study showed that the internal pressure value of the pumping chamber of the piezoelectric micropump plays an important role in determining the shut-off pressure value of the pump.
机译:对分别具有扩散器/喷嘴和电磁电阻的压电微型泵的内部压力特性和性能特征进行了数值分析。在此数值分析中,分别研究了具有扩散器/喷嘴和电磁电阻的微型泵腔内的瞬态压力,并分析了压力特性对泵性能的影响。膜片的运动是泵的执行器,它是使用规定的变形模型,UDF(用户定义的函数)和基于弹簧的平滑方法来实现的。该数值分析发现,当两个不同泵的泵送流量相同且关闭时,基于扩散器/喷嘴的微型泵的腔室压力是具有电磁电阻的微型泵的腔室压力的约10倍。扩散器/喷嘴泵的最大压力值是电磁电阻泵的10倍以上。这项研究表明,压电微型泵的泵腔内部压力值在确定泵的截止压力值方面起着重要作用。

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