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引用次数: 6

摘要

本文报道了一种新型MEMS微滤波器的设计、制造和测试,该微滤波器由弯曲板波(FPW)装置开发,其中滤膜内产生的声力可以释放颗粒并将其从堵塞的孔隙中清除。MEMS器件已经被证明是有效的绝对过滤,但堵塞使它们在大多数应用中不切实际。之前还展示了弯曲板波(FPW)装置在泵送液体中移动颗粒的能力。认识到FPW泵送是微过滤器的自清洁机制,为减少过滤器污垢提供了令人兴奋的可能性,允许过滤更大量的流体并延长过滤器的使用寿命。过滤后的流体和收集的大颗粒都可以作为有用的输出。声学粒子操纵现在已经被证明可以释放2和10 /spl μ m直径的球体,并将它们从4 /spl μ m和8 /spl μ m /m过滤器中曾经堵塞的孔隙中清除。用去离子水和聚苯乙烯球进行了实验。
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MEMS microfilter with acoustic cleaning
This paper reports the design, fabrication, and testing of a new MEMS microfilter developed from a flexural plate wave (FPW) device in which acoustic forces generated within the filter membrane act to free particles and sweep them away from clogged pores. MEMS devices have already been shown to be effective for absolute filtration, but clogging has made them impractical for most applications. Also previously shown was the ability of flexural plate wave (FPW) devices to move particles in a pumped liquid. Recognizing the FPW pumping as a self-cleaning mechanism for microfilters presents exciting possibilities for reduced filter fouling, allowing larger volumes of fluid to be filtered and extending filter lifetime. Both the filtered fluid and the collected large particles could be the useful output. Acoustic particle manipulation has now been shown to free 2 and 10 /spl mu/m diameter spheres and sweep them away from once-blocked pores in both 4 /spl mu/m and 8 /spl mu/m filters. Experiments were performed with deionized (DI) water and polystyrene spheres.
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