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1. 吉林大学 机械工程与自动化学院,吉林 长春 130025
2. 吉林化工学院机械和电子工程系 吉林,132022
3. 东北师范大学,吉林 长春,130022
收稿日期:2005-10-14,
修回日期:2006-08-18,
纸质出版日期:2006
移动端阅览
孙晓锋, 杨志强, 刘晓论, 李欣欣, 林敬国. 整体开启阀与悬臂梁阀压电泵性能研究[J]. 光学精密工程, 2006,14(4): 648-651
SUN Xiao-feng, YANG Zhi-qiang, LIU Xiao-lun, LI Xin-xin, LIN Jing-guo. Performance research on piezoelectric pumps based on holistic opening valve and cantilever valve[J]. Editorial Office of Optics and Precision Engineering, 2006,14(4): 648-651
孙晓锋, 杨志强, 刘晓论, 李欣欣, 林敬国. 整体开启阀与悬臂梁阀压电泵性能研究[J]. 光学精密工程, 2006,14(4): 648-651 DOI:
SUN Xiao-feng, YANG Zhi-qiang, LIU Xiao-lun, LI Xin-xin, LIN Jing-guo. Performance research on piezoelectric pumps based on holistic opening valve and cantilever valve[J]. Editorial Office of Optics and Precision Engineering, 2006,14(4): 648-651 DOI:
设计了两种形式的被动截止薄膜阀整体开启阀与悬臂梁阀
对两种形式阀的过流特性进行了理论分析
并应用两种形式的阀体制成了双腔串联压电泵的样机。对样机的实验测试表明
整体开启阀压电泵的自吸能力和输出流量都要好于悬臂梁阀压电泵。在200 V交流电压驱动下
前者的最大自吸高度和输出流量分别为430 mm水柱和972 ml/min
而后者为410 mm水柱和480 ml/min。
The flow performance characteristics of two check valves
the holistic opening valve and the cantilever valve
were investigated. The prototype of piezoelectric pump with double series-wound chambers was manufactured in two form valves. The experimental results show that the self-suck ability and output flux of the piezoelectric pump with holistic opening valve are better than the piezoelectric pump with cantilever valve. With the alternating current of 200 V
the maximum self-suck height of the formers is 430 mm water column (the pressure is about 43 kPa)
and the maximum output flux is 972 ml/min
the counterpart value of the latter piezoelectric pump is 410 water column and 480 ml/min
respectively.
GERLACH T, WURMUS H. Working principle and performance of the dynamic micropump [J]. Sensors and Actuators A, 1995,50:135-140.[2] 阚君武,杨志刚,程光明. 压电泵的现状与发展[J]. 光学 精密工程,2002,10 (6):619-625. KAN J W,YANG ZH G,CHENG G M.Research on piezoelectric pump and its development[J]. Optics and Precision Engineering, 2002,10 (6):619-625.(in Chinese)[3] 白韶红. 微型阀和微型泵的原理与应用[J]. 传感器世界,2004,18 (3):29-32. BAI SH H.The principle and application for microvalve and micropump[J].Sensor World, 2004,18 (3):29-32.(in Chinese)[4] 李勇,周兆英,叶雄英. 微型阀和微型泵进展[J]. 仪器仪表学报,1996,17(1):56-60. LI Y,ZHOU ZH Y,YE X Y.An overview of research on microvalves and micropumps .Chinese Journal of Scientific Instrument, 1996,17(1):56-60.(in Chinese)[5] 尹执中,徐宁,庞江涛,等. 热驱动微型泵的实验研究 . 功能材料与器件学报,2000,6 (2):65-70. YIN ZH ZH,XU N,PANG J T,et al.Exprimental study on thermal actuated micropump[J].Journal of Materal and Devices,2000,6 (2):65-70.(in Chinese)[6] 尹执中,庞江涛,胡桅林,等. 悬臂梁式微型阀[J]. 仪表技术与传感器,2000,(3):38-43. YIN ZH ZH,PENG J T,HU W L, et al.Cantilever microvalve[J]. Instrument Technique and Sensor, 2000,(3):38-43.(in Chinese)[7] 阚君武,吴一辉,杨志刚,等. 悬臂梁微型阀特性研究 . 哈尔滨工业大学学报,2005,37(2):190-193. KAN J W,WU Y H,YANG ZH G, et al.Study on the performance of micro-cantilever valve[J].Journal of Harbin Institute of Technology, 2005,37(2):190-193.(in Chinese)[8] 程光明,刘国君,杨志刚,等. 基于悬臂梁阀的微型压电泵的实验研究[J]. 机械科学与技术,2005,24(10):1181-1183. CHENG G M,LIU G J,YANG ZH G, et al.Experimental research on piezoelectric micro-pump using cantilever check valve[J].Mechanical Science and Technology, 2005,24(10):1181-1183.(in Chinese)[9] 杨树臣,程光明,刘国君,等. 微型压电泵系统的设计研究[J]. 光学 精密工程,2005,13(3):319-322. YANG SH CH,CHENG G M, LIU G J, et al.Design of piezoelectric micro-pump . Optics and Precision Engineering, 2005,13(3):319-322.(in Chinese)[10] 曾平,程光明,刘九龙,等. 双腔薄膜阀压电泵的试验研究[J]. 光学 精密工程,2005,13(3):311-316. ZENG P,CHENG G M,LIU J L,et al. Experimental research on double-chambered piezoelectric pump with membrane valves[J].Optics and Precision Engineering, 2005,13(3):311-316.(in Chinese)
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