Intelligent Manufacturing College, Guangdong Technology College, Zhaoqing, Guangdong 526100, China.
Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China.
Rev Sci Instrum. 2023 Mar 1;94(3):031502. doi: 10.1063/5.0135700.
Due to the advantages of small size, low power consumption and price, no wear, and reliable performances of valve-less piezoelectric pumps, which academics have studied and gained excellent consequences for, valve-less pumps are applied in the following fields: fuel supply, chemical analysis, biological fields, drug injection, lubrication, irrigation of experiment fields, etc. In addition, they will broaden the application scope in micro-drive fields and cooling systems in the future. During this work, first, the valve structures and output capabilities of the passive valve and active valve piezoelectric pumps are discussed. Second, the various forms of symmetrical structure, asymmetrical structure, and drive variant structure valve-less pumps are introduced, the working processes are illustrated, and the advantages and disadvantages of pump characteristics with the flow rate and pressure are analyzed under different driving conditions. In this process, some optimization methods with theoretical and simulation analysis are explained. Third, the applications of valve-less pumps are analyzed. Finally, the conclusions and future development of valve-less piezoelectric pumps are given. This work attempts to provide some guidance for enhancing output performances and applications.
由于无阀压电泵具有体积小、功耗低、价格低、无磨损、性能可靠等优点,学术界对其进行了研究并取得了优异的成果,因此无阀泵被应用于以下领域:燃料供应、化学分析、生物领域、药物注射、润滑、实验场地灌溉等。此外,它们在未来将拓宽在微驱动领域和冷却系统中的应用范围。在这项工作中,首先讨论了无源阀和有源阀压电泵的阀结构和输出能力。其次,介绍了各种形式的对称结构、非对称结构和驱动变体结构的无阀泵,说明了其工作过程,并分析了在不同驱动条件下,流量和压力对泵特性优缺点的影响。在此过程中,解释了一些具有理论和仿真分析的优化方法。第三,分析了无阀泵的应用。最后,给出了无阀压电泵的结论和未来发展。这项工作试图为提高输出性能和应用提供一些指导。