Hsu Yi-Chu, Le Ngoc-Bich
Department of Mechanical Engineering, Southern Taiwan University, No. 1 Nan-Tai Street, Yung Kang City, 710, Tainan, Taiwan.
Biomed Microdevices. 2008 Oct;10(5):681-92. doi: 10.1007/s10544-008-9179-2.
This study develops a diffuser micropump and characterizes its output flow rates, such as the parabola shape on the frequency domain and the affecting factors. First, an equivalent circuit using electronic-hydraulic analogies was constructed. Flow rate analysis results were then compared to experimental results to verify the applicability of the circuit simulation. The operational frequency was 800 Hz for both cases and maximum flow rates were 0.078 and 0.075 mul/s for simulation and experimental results, respectively. Maximum flow rate difference between simulation and experiment was 3.7%. The circuit was then utilized to analyze inertial effects of transferred fluid and system components on output flow rates. This work also explained why the flow rate spectrum has a parabolic shape. Analysis results demonstrated that without inertial effects, micropump flow rates are linearly proportional to operational frequency; otherwise flow rate spectrum has parabolic shape. The natural frequency of the actuator-membrane structure was identified using the finite element method to verify whether this parameter affects flow rate characteristics. Experimental and simulation results demonstrated that the frequency of the maximum pumping flow rate was 800 Hz and the first mode natural frequency of actuator-membrane structure was 91.4 kHz, suggesting that the structure natural frequencies of the actuator-membrane structure do not play any role in micropump operations.
本研究开发了一种扩散器微泵,并对其输出流速进行了表征,如频域上的抛物线形状及影响因素。首先,构建了一个采用电子 - 液压类比的等效电路。然后将流速分析结果与实验结果进行比较,以验证电路模拟的适用性。两种情况下的工作频率均为800Hz,模拟和实验结果的最大流速分别为0.078和0.075μl/s。模拟与实验之间的最大流速差异为3.7%。接着利用该电路分析传输流体和系统组件对输出流速的惯性效应。这项工作还解释了流速谱为何呈抛物线形状。分析结果表明,若无惯性效应,微泵流速与工作频率呈线性比例关系;否则流速谱呈抛物线形状。使用有限元方法确定了 actuator - 膜结构的固有频率,以验证该参数是否影响流速特性。实验和模拟结果表明,最大泵送流速的频率为800Hz,actuator - 膜结构的一阶模态固有频率为91.4kHz,这表明actuator - 膜结构的结构固有频率在微泵运行中不起任何作用。