Microvalve for Fuel Cells and Miniature Gas Chromatographic System

P. Hesketh, J. S. Bintoro, R. Luharuka
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引用次数: 22

Abstract

Microvalves are important for fluid control in a variety of applications, ranging from miniaturized chemical analysis systems, to precision manufacturing and miniature fuel cells. MEMS technology provides the opportunity to miniaturize valves that work with smaller sample volume, operate rapidly with low power and can potentially be integrated with other components on a single chip. A review of actuators for microvalves is provided, including electrostatic, magnetic, piezoelectric, thermal, shape memory alloy and hydrogel. The design and simulation of a magnetic latching microvalve is provided as a case study. The fabrication by surface micromachining with low temperature, potentially CMOS compatible processing is given.
用于燃料电池和微型气相色谱系统的微阀
从小型化学分析系统到精密制造和微型燃料电池,微阀在各种应用中对流体控制都很重要。MEMS技术提供了小型化阀门的机会,这些阀门可以在更小的样本量下工作,以低功耗快速运行,并且可以在单个芯片上与其他组件集成。综述了微阀致动器的研究现状,包括静电致动器、磁性致动器、压电致动器、热致动器、形状记忆合金致动器和水凝胶致动器。以磁闭锁微阀的设计与仿真为例进行了研究。给出了低温、潜在的CMOS兼容加工的表面微加工方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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