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DESIGN AND FABRICATION OF A ROLLER IMPRINTING DEVICE FOR MICROFLUIDIC DEVICE MANUFACTURING

机译:用于微流控设备制造的辊压式印染设备的设计与制造

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Microfluidic devices are gaining popularity in a variety of applications, ranging from molecular biology to bio-defense. However, the widespread adoption of this technology is constrained by the lack of efficient and cost-effective manufacturing processes. This paper focuses on the roller imprinting process, which is being developed to rapidly and inexpensively fabricate micro-fluidic devices. In this process, a cylindrical roll with raised features on its surface creates imprints by rolling over a fixed workpiece substrate and mechanically deforming it. Roller imprinting aims to replace processes that were developed for laboratory scale prototyping which tend to not be scalable and have high equipment requirements and overheads. We discuss the limitations of PDMS soft lithography in large-scale manufacture of microfluidic devices. We also discuss the design, fabrication, and testing of a simple roller imprinting device. This imprinter has been developed based on the principles of precision machine design and is implemented using a three-axis machine tool for actuation and position measurement. A framework for the micro-machining of precision imprint rolls is also presented.
机译:微流体装置在从分子生物学到生物防御的各种应用中都变得越来越流行。但是,由于缺乏有效和具有成本效益的制造工艺,该技术的广泛采用受到了限制。本文着重介绍辊压印工艺,该工艺正在开发中,以快速,廉价地制造微流体装置。在此过程中,在其表面上具有凸起特征的圆柱辊通过在固定的工件基材上滚动并使其机械变形来产生印记。辊压印的目的是替代为实验室规模的原型开发而开发的流程,这些流程往往无法扩展,并且对设备的要求和开销都很高。我们讨论了PDMS软光刻在微流控设备大规模生产中的局限性。我们还将讨论一种简单的滚筒压印设备的设计,制造和测试。该压印机是根据精密机械设计原理开发的,并使用三轴机床进行驱动和位置测量。还介绍了用于精密压印辊的微加工的框架。

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