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Development of a piezoelectric micropump with novel separable design for medical applications

机译:具有新颖可分离设计的压电微型泵的开发,用于医疗应用

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An innovative separable piezoelectric micropump has been developed to provide low-cost liquid delivery for medical applications. The actuator of the proposed micropump can be used repeatedly to reduce costs, and the pump chamber is disposable to prevent contamination as well as infection. The micropump was fabricated on a highly accurate CNC machine. A piezoelectric plate measuring 22 x 40 x 0.7 mm was used as the actuator and the operating voltage was AC 50-80V. Moreover, a unique bossed diaphragm, with a cylindrical protrusion at its center, was designed to not only facilitate contact between the diaphragm and piezoelectric actuator but also to overcome the adhesive force, which is a major challenge facing separable micropumps. According to the results of experiments, the adhesive force caused by residual liquid in the pump chamber may adversely affect the resilience of the diaphragm, leading to an insufficient liquid supply. The results show that the thickness and bossed ratio of the diaphragm have a major effect on the flow profiles. To achieve the optimal performance, a 0.3-mm bossed diaphragm was combined with a pump chamber with a depth of I mm. The flow rate of the proposed optimal separable micropump can be modulated from 1.58 to 6.21 ml/min at frequencies of less than 20 Hz, and the pump head can reach a maximum of 200 mm-H2O. (C) 2015 Elsevier B.V. All rights reserved.
机译:已经开发出创新的可分离压电微型泵,以提供用于医疗应用的低成本液体输送。所提出的微型泵的致动器可以重复使用以降低成本,并且泵室是一次性的,以防止污染和感染。微型泵是在高精度CNC机器上制造的。使用尺寸为22 x 40 x 0.7 mm的压电板作为执行器,工作电压为AC 50-80V。此外,独特的带凸头的隔膜在其中心具有圆柱形突起,其设计不仅可以促进隔膜与压电致动器之间的接触,而且可以克服粘附力,这是可分离微型泵面临的主要挑战。根据实验结果,由泵腔内残留液体引起的粘附力可能会对隔膜的回弹力产生不利影响,从而导致液体供应不足。结果表明,膜片的厚度和凸台比对流量分布有重要影响。为了获得最佳性能,将0.3毫米带凸头的隔膜与深度为1毫米的泵室组合在一起。所建议的最佳可分离微型泵的流量可以在小于20 Hz的频率下从1.58毫升/分钟调节到6.21毫升/分钟,泵头的最大压力可以达到200毫米水柱。 (C)2015 Elsevier B.V.保留所有权利。

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