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首页> 外文期刊>Research journal of applied science, engineering and technology >Analysis and Experiment of MEMS Based Microdroplet Ejector by a Piezoelectric Stack Actuator in Microfluidic Application
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Analysis and Experiment of MEMS Based Microdroplet Ejector by a Piezoelectric Stack Actuator in Microfluidic Application

机译:压电堆栈致动器在微流体应用中基于MEMS的微滴喷射器的分析和实验

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摘要

Micro Electro Mechanical Systems (MEMS) are uncovered to an assortment of liquid environments in applications such as chemical and biological sensors and micro fluidic devices. Green interactions between liquids and micro scale structures can lead to volatile performance of MEMS in liquid environments. In this study, the design and fabrication of a multi-material high-performance micro pump is presented. The micro pumps are fabricated using MEMS fabrication techniques, comprised of silicon and Pyrex micromachining and bonding. Manufacturing steps such as three small bulk cylindrical piezoelectric material elements that are integrated with micro-fabricated Silicon-on-lnsulator (SOI) and glass micro machined substrates using eutectic bonding and anodic bonding processes were successfully realized and provide a robust and scalable production technique for the micro pump. Exceptional flow rates of 0.1 mL/min with 1 W power consumption based on piezoelectric stack actuation achieved by appropriate design optimization.
机译:在诸如化学和生物传感器以及微流体设备等应用中,微机电系统(MEMS)被发现存在各种液体环境中。液体和微尺度结构之间的绿色相互作用会导致MEMS在液体环境中的不稳定性能。在这项研究中,提出了一种多材料高性能微型泵的设计和制造。微型泵是使用MEMS制造技术制造的,该技术包括硅,派热克斯微机械加工和键合。通过共晶键合和阳极键合工艺成功实现了制造步骤,例如与微型制造的绝缘体上硅(SOI)和玻璃微机械加工基板集成在一起的三个小体积圆柱形压电材料元件,并提供了可靠且可扩展的生产技术微型泵。适当的设计优化实现了基于压电堆驱动的0.1 mL / min的卓越流速和1 W的功耗。

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