• CN:11-2187/TH
  • ISSN:0577-6686

›› 2003, Vol. 39 ›› Issue (5): 107-110.

• 论文 • 上一篇    下一篇

压电泵的研究——泵阀滞后性

张建辉;王大康;王守印;小贯晃义   

  1. 北京工业大学机电学院;中国科学院长春精密光学研究所;日本山形大学工学部
  • 发布日期:2003-05-15

RESEARCH ON PIEZOELECTRIC PUMP—LAGGING OF VALVE

Zhang Jianhui;Wang Dakang;Wang Shouyin;Qnuki Akyoshi   

  1. Beijing University of Technology Changchun Institute of Optics,Fine Mechanics and Physics, Chinese Academy of Sciences Yamagata University
  • Published:2003-05-15

摘要: 就有阀压电泵增频流量骤减现象进行了分析与研究。发现了现有提高频率使压电振子振幅减小为增频流量骤减现象主要成因的说法是一种错误解释,并通过试验证明了现有理论的非正确性。提出了解释增频流量骤减现象成因的泵阀滞后性模型,同时开发了观察这种现象的具体新方法及观测新装置,并利用这一新装置观察到了泵阀滞后现象。提出了可以评价、考察有阀压电泵的泵阀的量化值——滞后系数,并把其作为泵阀优化设计的具体目标。

关键词: 泵, 泵阀滞后性, 阀, 压电泵, 优化设计

Abstract: The piezoelectric pump with valve regarding the phenomenon of abrupt output-decreasing with frequency-increasing (ODFI) is analyzed and researched. The research finds that it is wrong that the increase of the frequency results in the decrease of the amplitude of piezo vibrator is the leading cause for the phenomena of abrupt output-decreasing with frequency-increasing (ODFI). And the experiment has testified that the existing theory is incorrect. The model of lagging of valve that can be used to explained the cause for the phe-nomena of abrupt output-decreasing with frequency increasing is forward. With frequency increasing is forward. Meanwhile it mentions a new method to observe and develops new observa-tion device used to observe the phenomena of ODFI. It intro-duces the quantized valve--lagging coefficient, which can be used to evaluate and review the valve, and makes it as the goal function of optimal design of valve.

Key words: Lagging of valve, Optimal design, Piezoelectric pump, Pump, Valve

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