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Simulation and basic experiment of picoliter droplet micro-dispensing based on piezoelectric drive

机译:基于压电驱动的微升液滴微滴模拟与基础实验

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Microdroplet dispensing has numerous applications in biotechnology, microelectronic packaging and microassembly. The rapid developments of these fields tend to demand smaller and smaller microdroplets. In order to achieve single picoliter-volume droplets, a piezoelectric micro-dispensing system is developed in this paper. The factors affecting the droplet volume is first investigated theoretically. Then the coupled multi-physics micro-dispensing model has been established. Based on this model, various parameters such as driving voltage, the nozzle diameter and glue viscosity that influence the microdispensing performance are analyzed. The process of microdroplet formation is also simulated accordingly. The simulation results show the minimum volume that of a nozzle with a 20μ;m inner diameter can distribute is about 20pL. Basic microdispensing experiments are executed, verification of micro-dispensing is ultimately performed in the built system.
机译:微滴分配在生物技术,微电子包装和微装配中具有众多应用。这些领域的快速发展趋向于要求越来越小的微滴。为了获得单个皮升体积的液滴,本文开发了一种压电微分配系统。首先从理论上研究影响液滴体积的因素。然后建立了耦合的多物理场微分配模型。基于该模型,分析了影响微点胶性能的各种参数,例如驱动电压,喷嘴直径和胶粘剂粘度。相应地模拟了微滴的形成过程。仿真结果表明,内径为20μm的喷嘴可分配的最小体积约为20pL。执行基本的微点胶实验,最终在内置系统中进行微点胶的验证。

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