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Fabrication of a Pneumatic Microparticle Concentrator

机译:气动微粒浓缩器的制造

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摘要

We developed a microfluidic platform employing (normally open) pneumatic valves for particle concentration. The device features a three-dimensional network with a curved fluidic channel and three pneumatic valves (a sieve valve (Vs) that concentrates particles and two ON/OFF rubber-seal pneumatic valves that block the working fluid). Double-sided replication employing polydimethylsiloxane (PDMS) was used to fabricate the network, channel, and chamber. Particles were blocked by deformation of the Vs diaphragm, and then accumulated in the curved microfluidic channel. The working fluid was discharged via operation of the two ON/OFF valves. After concentration, particles were released to an outlet port. The Vs pressure required to block solid particles varying in diameter was determined based on the height of the curved microchannel and a finite element method (FEM) simulation of Vs diaphragm displacement. Our method was verified according to the temporal response of the fluid flow rate controlled by the pneumatic valves. Furthermore, all particles with various diameters were successfully blocked, accumulated, and released. The operating pressure, time required for concentration, and concentration ratio were dependent on the particle diameter. The estimated concentration percentage of 24.9 µm diameter polystyrene particles was about 3.82% for 20 min of operation.
机译:我们开发了一种使用(常开)气动阀进行颗粒浓缩的微流体平台。该设备具有一个三维网络,带有弯曲的流体通道和三个气动阀(一个筛网阀(Vs),用于浓缩颗粒)和两个ON / OFF橡胶密封气动阀,用于阻塞工作流体。使用聚二甲基硅氧烷(PDMS)进行的双面复制用于制造网络,通道和腔室。粒子被Vs隔膜变形而阻塞,然后聚集在弯曲的微流体通道中。通过两个开/关阀的操作排出工作流体。浓缩后,颗粒被释放到出口。根据弯曲的微通道的高度和Vs膜片位移的有限元方法(FEM)模拟,确定阻挡直径变化的固体颗粒所需的Vs压力。根据气动阀控制的流体流量的时间响应,对我们的方法进行了验证。此外,具有各种直径的所有颗粒都被成功地阻塞,积累和释放。操作压力,浓缩所需的时间和浓度比取决于粒径。在操作20分钟后,估计直径为24.9 µm的聚苯乙烯颗粒的浓度百分比约为3.82%。

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