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The effect of nozzle layout on droplet ejection of a piezo-electrically actuated micro-atomizer 被引量:2

The effect of nozzle layout on droplet ejection of a piezo-electrically actuated micro-atomizer
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摘要 We study here effects of nozzle layout on the droplet ejection of a micro atomizer, which was fabricated with the arrayed nozzles by the MEMS technology and actuated by a piezoelectric disc. A theoretical model was first built for this piezoelectric-liquid-structure coupling system to characterize the acoustic wave propagation in the liquid chamber, which determined the droplet formation out of nozzles. The modal analysis was carried out numerically to predict resonant frequencies and simulate the corresponding pressure wave field. By comparing the amplitude contours of pressure wave on the liquid-solid interface at nozzle inlets with the designed nozzle layout, behaviors of the device under different vibration modes can be predicted. Experimentally, an impedance analyzer was used to measure the resonant frequencies of the system. Three types of atomizers with different nozzle layouts were fabricated for measuring the effect of nozzle distribution on the ejection performance. The visualization experiment of droplet generation was carried out and volume flow rates of these devices were measured. The good agreement between the experiment and the prediction proved that only the increase of nozzles may not enhance the droplet generation and a design of nozzle distribution from a view-point of frequency is necessary for a resonant related atomizer. We study here effects of nozzle layout on the droplet ejection of a micro atomizer, which was fabricated with the arrayed nozzles by the MEMS technology and actuated by a piezoelectric disc. A theoretical model was first built for this piezoelectric-liquid-structure coupling system to characterize the acoustic wave propagation in the liquid chamber, which determined the droplet formation out of nozzles. The modal analysis was carried out numerically to predict resonant frequencies and simulate the corresponding pressure wave field. By comparing the amplitude contours of pressure wave on the liquid-solid interface at nozzle inlets with the designed nozzle layout, behaviors of the device under different vibration modes can be predicted. Experimentally, an impedance analyzer was used to measure the resonant frequencies of the system. Three types of atomizers with different nozzle layouts were fabricated for measuring the effect of nozzle distribution on the ejection performance. The visualization experiment of droplet generation was carried out and volume flow rates of these devices were measured. The good agreement between the experiment and the prediction proved that only the increase of nozzles may not enhance the droplet generation and a design of nozzle distribution from a view-point of frequency is necessary for a resonant related atomizer.
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2007年第2期163-172,共10页 力学学报(英文版)
基金 the National Natural Science Foundation of China(50405001).
关键词 Nozzle layout . Fluid-solid coupling . Modal analysis . Micro atomizer . MEMS Nozzle layout . Fluid-solid coupling . Modal analysis . Micro atomizer . MEMS
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参考文献13

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同被引文献7

  • 1朱俊华,周兆英,杜桂彬,冯焱颖,林冬.压电驱动阵列微喷的加工及实验研究[J].压电与声光,2006,28(3):360-362. 被引量:1
  • 2NURO R, AINSLEY C, BRIAN D. Ink-jet delivery of particle suspensions by piezoelectric droplet ejectors [J]. Journal of Ap plied Physics, 2005, 97(9):0949031- 0949036.
  • 3SIM W, YOO Y, JOUNG J, et al. Analysis of the micro droplet ejecting performance for industrial inkjet printing head[C]//The 1st IEEE International Conference on Nano/Micro Engineered and Molecular Systems. Zhu hai, China, 2006: 1462- 1465.
  • 4de JONG J, JEURISSEN R, BOREL H, et al. Entrapped air bubbles in piezo-driven inkjet printing: their effect on the droplet velocity [J]. Journal of Phys Fluids, 2006, 16 (8): 2843-2854.
  • 5LIU C G, ZHOU Z Y, WANG X H, et al. Fluid-structure coupling analysis and simulation of a micromachined piezo microjet[J]. Journal of Sensors and Actuators: A, 2004, 114: 460-465.
  • 6HEIJ B B, vander SCHOOT B, BO H, et al. Characterization of a FL droplet denerator for inhalation drug therapy [J]. Journal of Sensorsand Actuators: A, 2000, 85 (4): 430-434.
  • 7冯焱颖,周兆英,叶雄英,王国辉.压电致动微喷的压力波特征分析[J].微纳电子技术,2003,40(7):506-511. 被引量:7

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