Pulsatory Mixing of Laminar Flow Using Bubble-Driven Micro-Pumps

B. Hayes, Austin C. Hayes, M. Rolleston, Alexander Ferreira, J. Krisher
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引用次数: 7

Abstract

Y-shaped microfluidic channels have been built with Computer Numerical Control (CNC) and laser cutting manufacturing techniques. Fluid is delivered to each port via external syringe pumps. Each Y-shaped channel contains thermal inkjet (TIJ) resistors built using conventional microfabrication techniques. The resistors vaporize water and generate drive bubbles. This work focuses on utilizing TIJ technology as an active mixing technique in microfluidics. By varying the electrical firing frequency of the resistors, fluid was successfully mixed with an effective mixing length equal to the length of the TIJ resistor. As such, we demonstrate the use of TIJ resistors as a scalable, active mixing approach in microfluidics. A metric to characterize the extent of mixing using TIJ resistors was proposed and utilized. In addition, the fundamental framework of TIJ bubble dynamics with respects to mixing was assessed.
利用气泡驱动微泵进行层流脉动混合
利用计算机数控和激光切割制造技术建立了y型微流体通道。液体通过外部注射泵输送到每个端口。每个y形通道包含使用传统微加工技术构建的热喷墨(TIJ)电阻器。电阻器使水蒸发并产生驱动气泡。本研究的重点是利用TIJ技术作为微流体中的一种主动混合技术。通过改变电阻器的放电频率,流体成功混合,有效混合长度等于TIJ电阻器的长度。因此,我们展示了TIJ电阻器作为微流体中可扩展的主动混合方法的使用。提出并应用了一种表征TIJ电阻混合程度的度量。此外,还评估了TIJ气泡混合动力学的基本框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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