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Theory and experiment of the valveless piezoelectric pump using tubes with combinated shape of ‘Y’ and cone

机译:组合使用“ Y”形和圆锥形管的无阀压电泵的理论和实验

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Considering the advantages and disadvantages of several typical no-moving-part valves which are applied in the areas of biology, medical treatment and sanitation, a new type of valveless piezoelectric pump, using tubes with combinated shape of ‘Y’ and cone, is developed based on the novel type of tube, which aims to stress the overall advantages and overcomes other drawbacks. Theoretical analysis is applied to local resistance coefficient of the Y-shape tubes. According to the local resistance coefficient of the diffuser tubes, the local resistance coefficient of the combinated y-cone shape tubes is deduced. The commercial finite element software CFX is employed to simulate the fluid flowing state in the valveless piezoelectric pump using tubes with combinated shape of ‘Y’ and cone. A valveless piezoelectric pump using tubes with combinated shape of ‘Y’ and cone was fabricated, and the flow test of the device which serves to verify the essential characteristics being a pump was carried out. The experimental results show that the maximum flow rate of the valveless pump using tubes with combinated shape of ‘Y’ and cone is 43.9 ml/min under 100V, 15Hz power supply.
机译:考虑到在生物学,医疗和卫生地区应用于生物学,医疗和卫生地区的几个典型的无移动部门的优缺点,开发了一种新型的无阀芯压电泵,使用具有与“Y”和锥体的与圆锥形状的管子的管子。基于新型管,旨在强调整体优势并克服其他缺点。理论分析应用于Y形管的局部电阻系数。根据漫射管的局部电阻系数,推导出结合的Y锥形管的局部电阻系数。商业有限元件CFX用于使用具有“Y”和锥体的组合形状的管来模拟Virveless压电泵中的流体流动状态。制造了一种具有与“Y”和锥形的带子形状的管的无阀芯压电泵,并进行了用于验证泵的基本特性的装置的流动试验。实验结果表明,在100V,15Hz电源下,使用具有“Y”和锥形的带有圆形形状的管的最大流量。

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