期刊文献+

磁力驱动微泵设计及优化

Design and Optimization of Magnetic Force Driving Micro-Pump
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摘要 为提高收缩/扩散管无阀微泵的性能,设计了磁力驱动式无阀微泵,并利用ANSYS软件对微泵的整流部件收缩/扩散管和单腔微泵整体结构进行流体仿真,得到了微泵的结构优化参数。仿真和实验结果表明,流量随着管长、最小宽度、扩张角、泵腔半径的增大存在极大值。磁驱动微泵的流量在驱动电压12 V、驱动频率为25 Hz时达到最大值。 In order to improve the performance of diffuser/nozzle micropump,a valveless micro-pump driven by magnetic force is designed.Fluidic and magnetic simulation is done by ANSYS software to get optimal structural parameter of diffuser/nozzle and single chamber micro-pump.The simulation and experimental results show that the flow rate has a maximun value with the increase of the pipe length,the minimum width,the divergence angle and the pump chamber radius.When the driving voltage is 12 V and the driving frequency is 25 Hz,the magnetic drive micro pump reaches the maximum flow.
出处 《测控技术》 CSCD 2015年第9期5-8,共4页 Measurement & Control Technology
基金 国家自然科学基金资助项目(61376115)
关键词 无阀微泵 收缩/扩散管 磁力驱动 ANSYS仿真 valveless micro-pump diffuser/nozzle magnetic force drive ANSYS simulation
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