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用于热塑性微流体的高压针接口。

High-pressure needle interface for thermoplastic microfluidics.

作者信息

Chen C F, Liu J, Hromada L P, Tsao C W, Chang C C, DeVoe D L

机构信息

Department of Mechanical Engineering, University of Maryland, College Park, MD, USA.

出版信息

Lab Chip. 2009 Jan 7;9(1):50-5. doi: 10.1039/b812812j. Epub 2008 Nov 19.

Abstract

A robust and low dead volume world-to-chip interface for thermoplastic microfluidics has been developed. The high pressure fluidic port employs a stainless steel needle inserted into a mating hole aligned to an embedded microchannel, with an interference fit used to increase pressure resistance. Alternately, a self-tapping threaded needle screwed into a mating hole is also demonstrated. In both cases, the flat bottom needle ports seat directly against the microchannel substrate, ensuring low interfacial dead volumes. Low dispersion is observed for dye bands passing the interfaces. The needle ports offer sufficient pull-out forces for applications such as liquid chromatography that require high internal fluid pressures, with the epoxy-free interfaces compatible with internal microchannel pressures above 40 MPa.

摘要

一种用于热塑性微流体的坚固且死体积小的芯片外接口已被开发出来。高压流体端口采用一根不锈钢针插入与嵌入式微通道对齐的配合孔中,利用过盈配合来提高耐压性。另外,还展示了一种拧入配合孔中的自攻螺纹针。在这两种情况下,平底针端口都直接与微通道基板贴合,确保界面死体积小。观察到染料带通过接口时的分散性很低。针端口为诸如液相色谱等需要高内部流体压力的应用提供了足够的拔出力,无环氧树脂的接口可承受高于40MPa的内部微通道压力。

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