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首页> 外文期刊>Journal of Microelectromechanical Systems >Miniaturized Flowthrough Microdispenser With Piezoceramic Tripod Actuation
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Miniaturized Flowthrough Microdispenser With Piezoceramic Tripod Actuation

机译:压电陶瓷三脚架致动的微型流通微分配器

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In this paper, the further development of a silicon flowthrough microdispenser is described. Previously reported designs of the dispenser used bimorph, and later multilayered, piezoelectric actuator elements for the generation of droplets. The introduction of a multilayered actuator significantly reduced the voltage amplitude needed to dispense droplets. Dispenser properties relevant for chemical analysis systems, e.g., reduced sample volume, internal surface area, and dispersion, were improved by minia turization of the device. In this paper, a new actuator design, the tripod, is presented to enable further dispenser miniaturization and to facilitate device assembly. Tripod actuators were manufactured using a prototyping process, based on micromilling, for multilayer piezoceramic components. A building technique for miniaturized electrical interconnects, based on microstructured flexible printed circuits, is also suggested in line with the prospect of future minia turization. The microfluidic properties of the tripod- actuated dispenser were evaluated. Stable droplet generation in the fre quency range from 0 to 3 kHz was demonstrated, providing a maximum dispensed flow rate of 7.8 μL/ min.
机译:在本文中,描述了硅流通微分配器的进一步发展。分配器的先前报道的设计使用双压电晶片以及后来的多层压电致动器元件来产生液滴。多层致动器的引入大大降低了分配液滴所需的电压幅度。与化学分析系统相关的点胶机特性(例如减少的样品量,内部表面积和分散度)通过设备的小型化得以改善。在本文中,提出了一种新的执行器设计,即三脚架,以使分配器进一步小型化并便于设备组装。使用基于微铣削的原型工艺为多层压电陶瓷组件制造三脚架执行器。还提出了一种基于微结构柔性印刷电路的微型电气互连的构建技术,以符合未来的微型化前景。评估了三脚架分配器的微流体特性。证明了在0至3 kHz的频率范围内稳定的液滴生成,可提供的最大分配流速为7.8μL/ min。

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