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Rapid Laser Manufacturing of Microfluidic Devices from Glass Substrates

机译:从玻璃基板快速激光制造微流体装置

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摘要

Conventional manufacturing of microfluidic devices from glass substrates is a complex, multi-step process that involves different fabrication techniques and tools. Hence, it is time-consuming and expensive, in particular for the prototyping of microfluidic devices in low quantities. This article describes a laser-based process that enables the rapid manufacturing of enclosed micro-structures by laser micromachining and microwelding of two 1.1-mm-thick borosilicate glass plates. The fabrication process was carried out only with a picosecond laser (Trumpf TruMicro 5×50) that was used for: (a) the generation of microfluidic patterns on glass, (b) the drilling of inlet/outlet ports into the material, and (c) the bonding of two glass plates together in order to enclose the laser-generated microstructures. Using this manufacturing approach, a fully-functional microfluidic device can be fabricated in less than two hours. Initial fluid flow experiments proved that the laser-generated microstructures are completely sealed; thus, they show a potential use in many industrial and scientific areas. This includes geological and petroleum engineering research, where such microfluidic devices can be used to investigate single-phase and multi-phase flow of various fluids (such as brine, oil, and CO2) in porous media.
机译:由玻璃基板的常规微流体装置的制造是复杂的,多步骤的过程,其涉及不同的制造技术和工具。因此,这是耗时且昂贵的,特别是对于少量的微流体装置的原型制作。本文介绍了一种基于激光的工艺,该工艺能够通过激光微加工和微焊接两个1.1毫米厚的硼硅酸盐玻璃板来快速制造封闭的微结构。制造过程仅使用皮秒激光(Trumpf TruMicro 5×50)进行,该激光用于:(a)在玻璃上产生微流体图案;(b)在材料中钻入/出口端口;以及( c)将两个玻璃板粘合在一起,以封闭激光产生的微结构。使用这种制造方法,可以在不到两个小时的时间内制造出全功能的微流体装置。最初的流体流动实验证明,激光产生的微结构是完全密封的。因此,它们在许多工业和科学领域都有潜在的用途。这包括地质和石油工程研究,在此类研究中,此类微流体装置可用于研究多孔介质中各种流体(例如盐水,石油和CO2)的单相和多相流动。

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