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Micro-computed tomography for the investigation of stationary liquid-liquid and liquid-gas interfaces in capillaries

机译:微型计算机断层扫描,用于调查毛细血管中固定式液 - 液和液体 - 气体界面

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摘要

For better understanding and optimization of multiphase flow in miniaturized devices, micro-computed tomography (mu CT) is a promising visualization tool, as it is nondestructive, three-dimensional, and offers a high spatial resolution. Today, computed tomography (CT) is a standard imaging technique. However, using CT in microfluidics is still challenging, since X-ray related artifacts, low phase contrast, and limited spatial resolution complicate the exact localization of interfaces. We apply mu CT for the characterization of stationary interfaces in thin capillaries. The entire workflow for imaging stationary interfaces in capillaries, from image acquisition to the analysis of interfaces, is presented. Special emphasis is given to an in-house developed segmentation routine. For demonstration purposes, contact angles of water, liquid polydimethylsiloxane, and air in FEP, glass, and PMMA are determined and the influence of gravity on interface formation is discussed. This work comprises the first steps for a systematic 3D investigation of multiphase flows in capillaries using mu CT.
机译:为了更好地理解和优化小型化器件中的多相流,微计算机断层扫描(MU CT)是一个有前途的可视化工具,因为它是非破坏性的三维的,并且提供了高空间分辨率。如今,计算断层扫描(CT)是标准成像技术。然而,在微流体中使用CT仍然具有挑战性,因为X射线相关的伪像,低相位对比度和有限的空间分辨率使接口的精确定位复杂化。我们应用MU CT用于薄毛细管中的固定界面表征。介绍了从图像采集到接口分析的毛细管中静止接口的整个工作流程。特别强调内部开发的分割程序。为了说明目的,确定水,液体聚二甲基硅氧烷和FEP,玻璃和PMMA中的空气的接触角,并讨论了重力对​​界面形成的影响。该工作包括使用MU CT的毛细管中的多相流动系统3D调查的第一步。

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