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压电泵的结构设计、性能优化及应用的最新研究

Recent Research on Structural Design, Performance Optimization, and Applications of Piezoelectric Pumps.

作者信息

Yan Qiufeng, Liu Zhiling, Wang Le, Sun Wanting, Jiang Mengyao

机构信息

School of Electrical Engineering and Automation, Nantong University, Nantong 226019, China.

School Key Laboratory of Mechanics and Control for Aerospace Structures, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China.

出版信息

Micromachines (Basel). 2025 Apr 16;16(4):474. doi: 10.3390/mi16040474.

Abstract

With the advantages of simple structure, low power consumption, no electromagnetic interference, and fast response, piezoelectric pumps (PPs) have been widely used in the fields of chip cooling, biomedical applications, chemical applications, and fuel supply applications. In recent decades, scholars have proposed various PPs, and this article reviews the recent research results. In this review, according to the "valve" structure, PPs are divided into valve-less piezoelectric pumps (VLPPs), valve-based piezoelectric pumps (VBPPs), and piezoelectric pumps with valve and valve-less state transitions (PPVVSTs). Firstly, the design methods of typical structures were discussed, and comparisons were made in terms of driving frequency, driving voltage, output pressure, flow rate, structure materials, and pump size. The advantages and disadvantages of VLPPs, VBPPs, and PPVVSTs were analyzed. Then, we compared the driving parameters, output performance, structure materials, and pump size of single-chamber piezoelectric pumps (SCPs) and multi-chamber piezoelectric pumps (MCPs) and analyzed the advantages and disadvantages of SCPs and MCPs. Optimization methods proposed in recent years have been summarized to address the issues of the cavitation phenomenon, the liquid back-flow problem, and low output performance in PPs. Subsequently, the application research of PPs and the distribution of academic achievements were discussed. Finally, this review was summarized, and future research hot spots for PPs were proposed. The main contribution of this review is to provide piezoelectric pump (PP) researchers with a certain understanding of the structural design, optimization methods, practical applications, and research distribution of PPs, which can provide theoretical guidance for future research.

摘要

压电泵具有结构简单、功耗低、无电磁干扰、响应速度快等优点,已广泛应用于芯片冷却、生物医学应用、化学应用和燃料供应应用等领域。近几十年来,学者们提出了各种压电泵,本文综述了近期的研究成果。在本综述中,根据“阀门”结构,压电泵分为无阀压电泵(VLPPs)、有阀压电泵(VBPPs)以及具有阀和无阀状态转换的压电泵(PPVVSTs)。首先,讨论了典型结构的设计方法,并在驱动频率、驱动电压、输出压力、流量、结构材料和泵尺寸等方面进行了比较。分析了VLPPs、VBPPs和PPVVSTs的优缺点。然后,比较了单腔压电泵(SCPs)和多腔压电泵(MCPs)的驱动参数、输出性能、结构材料和泵尺寸,并分析了SCPs和MCPs的优缺点。总结了近年来提出的优化方法,以解决压电泵中的气穴现象、液体回流问题和低输出性能问题。随后,讨论了压电泵的应用研究和学术成果分布。最后,对本综述进行了总结,并提出了压电泵未来的研究热点。本综述的主要贡献在于为压电泵研究人员提供对压电泵的结构设计、优化方法、实际应用和研究分布的一定了解,可为未来研究提供理论指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1578/12029924/113cd660787f/micromachines-16-00474-g001.jpg

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