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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Simulation and optimization of a piezoelectric micropump for medical applications
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Simulation and optimization of a piezoelectric micropump for medical applications

机译:用于医疗应用的压电微型泵的仿真和优化

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We designed a valveless micropump excited by a piezoelectric actuator for medical applications. The complete electric-fluid-solid coupling model is built upon using ANSYS software (Canonsburg, PA) to investigate the behaviors of the micropump. The effects of the geometrical dimensions on the micropump characteristics and its efficiency are analyzed. The simulation results show that there is an optimal thickness of the piezoelectric layer to obtain a large pump flow, and that this optimal thickness is affected by the material and the thickness of the pump membrane. To enhance the performance of the micropump, some important diffuser parameters, such as the diffuser length, the diffuser angle, and the neck width, should be optimized. However, the variations of the diffuser's geometrical dimensions do not affect the optimal thickness of the piezoelectric layer.
机译:我们设计了一种用于医疗应用的由压电致动器激励的无阀微型泵。使用ANSYS软件(宾夕法尼亚州Canonsburg)建立完整的电-液-固耦合模型,以研究微泵的性能。分析了几何尺寸对微型泵特性及其效率的影响。仿真结果表明,压电层具有最佳厚度以获得较大的泵流量,并且该最佳厚度受材料和泵膜厚度的影响。为了增强微型泵的性能,应优化一些重要的扩散器参数,例如扩散器长度,扩散器角度和颈部宽度。但是,扩散器的几何尺寸的变化不会影响压电层的最佳厚度。

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