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Modeling of a Passive-Valve Piezoelectric Micro-Pump: A Parametric Study

机译:无源阀压电微泵的建模:参数研究

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摘要

Piezoelectric micro-pumps offer many applications and could provide considerable flow rates in miniature systems. This study parametrically investigates the effects of major parameters, namely the length, width and attack angle of valves, piezoelectric length, and applied voltage. The results show that these parameters significantly affect the performance of the designed micro-pump. Even though increasing the piezoelectric length and operating voltage raise the flow rate, the modification of valve dimensions is more efficient since these parameters do not rely on any external power. According to the obtained results, as the length of the working valves increases, the provided flow rate becomes larger. There is an optimum condition for the width and attack angle of the valves. This optimum width is not dependent on the flow rate. With the use of the attack angle and the length of the valves as design parameters, the studied design shows promising results.
机译:压电微泵提供许多应用,可以在微型系统中提供相当大的流速。本研究参数化了主要参数的影响,即阀门,压电长度和施加电压的长度,宽度和攻击角。结果表明,这些参数显着影响设计的微泵的性能。即使增加压电长度和工作电压提高流量,阀尺寸的变化也更有效,因为这些参数不依赖于任何外部电源。根据所得结果,随着工作阀的长度增加,所提供的流速变大。阀门的宽度和攻击角存在最佳条件。这种最佳宽度不依赖于流速。通过使用攻击角度和阀门的长度作为设计参数,所研究的设计显示了有希望的结果。

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