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基于聚合物的卷绕式微流控器件的快速成型

Rapid Prototyping of Polymer-Based Rolled-Up Microfluidic Devices.

作者信息

Arayanarakool Rerngchai, See Hian Hian, Marshall Samuel David, Virik Niven Singh, Wang Heng, Lee Poh Seng, Chen Peter Chao Yu

机构信息

Faculty of Engineering, Department of Mechanical Engineering, National University of Singapore, Singapore 119077, Singapore.

出版信息

Micromachines (Basel). 2018 Oct 13;9(10):516. doi: 10.3390/mi9100516.

Abstract

This work presents the simple and rapid fabrication of a polymer-based microfluidic prototype manufactured by rolling up thin films of polymer. The thin films were fabricated via a casting method and rolled up around a center core with the aid of plasma activation to create a three-dimensional (3D) spiral microchannel, hence reducing the time and cost of manufacture. In this work, rolled-up devices with single or dual fluidic networks fabricated from a single or two films were demonstrated for heat sink or heat exchanger applications, respectively. The experimental results show good heat transfer in the rolled-up system at various flow rates for both heat sink and heat exchanger devices, without any leakages. The rolled-up microfluidic system creates multiple curved channels, allowing for the generation of Dean vortices, which in turn lead to an enhancement of heat and mass transfer and prevention of fouling formation. These benefits enable the devices to be employed for many diverse applications, such as heat-transfer devices, micromixers, and sorters. To our knowledge, this work would be the first report on a microfluidic prototype of 3D spiral microchannel made from rolled-up polymeric thin film. This novel fabrication approach may represent the first step towards the development of a pioneering prototype for roll-to-roll processing, permitting the mass production of polymer-based microchannels from single or multiple thin films.

摘要

这项工作展示了一种基于聚合物的微流体原型的简单快速制造方法,该原型通过卷起聚合物薄膜制成。这些薄膜通过浇铸法制造,并借助等离子体活化围绕中心芯卷起,以创建三维(3D)螺旋微通道,从而减少了制造时间和成本。在这项工作中,分别展示了由单层或两层薄膜制成的具有单流体或双流体网络的卷起式器件,用于散热器或热交换器应用。实验结果表明,对于散热器和热交换器器件,卷起式系统在各种流速下都具有良好的热传递性能,且无任何泄漏。卷起式微流体系统产生多个弯曲通道,允许产生迪恩涡,这反过来又导致传热传质增强并防止污垢形成。这些优点使这些器件能够用于许多不同的应用,如传热装置、微混合器和分选器。据我们所知,这项工作将是关于由卷起的聚合物薄膜制成的3D螺旋微通道微流体原型的首次报道。这种新颖的制造方法可能代表了朝着开发用于卷对卷加工的开创性原型迈出的第一步,允许从单层或多层薄膜大规模生产基于聚合物的微通道。

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