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A 3D microfluidic device fabrication method using thermopress bonding with multiple layers of polystyrene film

机译:使用热压键合多层聚苯乙烯薄膜的3D微流体器件制造方法

摘要

In this article, we present a fabrication method that is capable of making (3D) microfluidic devices with multiple layers of homogeneous polystyrene (PS) film. PS film was chosen as the primary device material because of its advantageous features for microfluidics applications. Thermopress is used as a bonding method because it provides sufficient bonding strength while requiring no heterogeneous bonding materials. By aligning and sequentially stacking multiple layers (3 to 20) of patterned PS film that were achieved by a craft cutter, complicated 3D structured microfluidic devices can be fabricated by multiple steps of thermopress bonding. The smallest feature that can be achieved with this method is approximately 100 μm, which is limited by the resolution of the cutter (25 μm) as well as the thickness of the PS films. Bonding characteristics of PS films are provided in this article, including a PS film bonding strength test, bonding precision assessment, and PS surface wettability manipulation. To demonstrate the capability of this method, the design, fabrication, and testing results of a 3D interacting L-shaped passive mixer are presented.
机译:在本文中,我们提出了一种制造方法,该方法能够制造具有多层均质聚苯乙烯(PS)膜的(3D)微流体器件。 PS膜之所以被选作主要的器件材料,是因为其在微流控应用中的优势。热压用作粘合方法是因为它提供了足够的粘合强度,同时又不需要异质的粘合材料。通过对准并顺序堆叠通过手工切割机获得的图案化PS膜的多层(3至20),可以通过多步热压键合来制造复杂的3D结构的微流体器件。该方法可实现的最小特征约为100μm,这受切割器分辨率(25μm)和PS膜厚度的限制。本文提供了PS膜的粘合特性,包括PS膜粘合强度测试,粘合精度评估和PS表面润湿性操纵。为了演示此方法的功能,介绍了3D交互L形无源混频器的设计,制造和测试结果。

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