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首页> 外文期刊>Sensors and Actuators, A. Physical >A miniature circular pump with a piezoelectric bimorph and a disposable chamber for biomedical applications
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A miniature circular pump with a piezoelectric bimorph and a disposable chamber for biomedical applications

机译:带有压电双压电晶片和一次性腔室的微型圆形泵,用于生物医学应用

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摘要

Piezoelectric miniature pumps provide excellent stability and accuracy, and thus, have been used in fluid handling and medical applications. In the current study, a separable piezoelectric miniature pump was developed by combining a piezoelectric bimorph actuator and a disposable pumping chamber. By employing a single-use disposable pumping chamber the cross-contamination issues caused by repeated uses of the pumping chamber can be easily avoided, making the pump ideal for biological fluid transmission process. The pumping in the proposed miniature pump was indirectly driven by a circular piezoelectric bimorph actuator through a pillar structure that connects the actuator with the covering PET diaphragm of the pumping chamber. The pumping efficiency of the proposed miniature pump was investigated with respect to several parameters, such as the diaphragm thickness, the chamber diameter and the pillar-to-chamber ratio. A maximum flow rate of 9.1 mL/min was achieved by using the proposed pump structure with 10 mm chamber diameter and a pillar-to-chamber ratio of 0.9. (C) 2016 Elsevier B.V. All rights reserved.
机译:压电微型泵具有出色的稳定性和准确性,因此已经在流体处理和医疗应用中使用。在当前的研究中,通过组合压电双压电晶片致动器和一次性泵送腔室,开发了可分离的压电微型泵。通过使用一次性使用的一次性泵送腔室,可以轻松避免由于重复使用泵送腔室而引起的交叉污染问题,从而使该泵成为生物流体传输过程的理想选择。所提出的微型泵中的泵送是由圆形压电双压电晶片执行器通过柱形结构间接驱动的,该柱形结构将执行器与泵送室的覆盖PET隔膜连接起来。相对于膜片厚度,腔室直径和柱腔比等几个参数,研究了所提出的微型泵的泵送效率。通过使用建议的泵结构(腔室直径为10毫米,柱室比为0.9),可实现最大流速9.1 mL / min。 (C)2016 Elsevier B.V.保留所有权利。

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