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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Viscous flow through microfabricated axisymmetric contraction/expansion geometries
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Viscous flow through microfabricated axisymmetric contraction/expansion geometries

机译:粘性流经通过微制造的轴对称收缩/膨胀几何形状

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摘要

We employ a state-of-the-art microfabrication technique (selective laser-induced etching) to fabricate a set of axisymmetric microfluidic geometries featuring a 4:1 contraction followed by a 1:4 downstream expansion in the radial dimension. Three devices are fabricated: the first has a sudden contraction followed by a sudden expansion, the second features hyperbolic contraction and expansion profiles, and the third has a numerically optimized contraction/expansion profile intended to provide a constant extensional/compressional rate along the axis. We use micro-particle image velocimetry to study the creeping flow of a Newtonian fluid through the three devices and we compare the obtained velocity profiles with finite-volume numerical predictions, with good agreement. This work demonstrates the capability of this new microfabrication technique for producing accurate non-planar microfluidic geometries with complex shapes and with sufficient clarity for optical probes. The axisymmetric microfluidic geometries examined have potential to be used for the study of the extensional properties and non-linear dynamics of viscoelastic flows, and to investigate the transport and deformation dynamics of bubbles, drops, cells, and fibers. Graphic abstract
机译:我们采用最先进的微制造技术(选择性激光诱导的蚀刻),以制造一组轴对称微流体几何形状,其特征在于4:1收缩,然后在径向尺寸下进行1:4下游膨胀。制造了三个装置:第一个具有突然收缩,然后突然膨胀,第二个特征是双曲缩小和膨胀型材,并且第三个具有数值优化的收缩/膨胀型材,旨在提供沿轴线的恒定的延伸/压缩率。我们使用微粒图像测速器来研究牛顿流体通过三个设备的爬行流,并比较所获得的速度曲线,具有有限的数值预测,具有良好的一致性。这项工作证明了这种新的微制造技术的能力,用于生产具有复杂形状的精确非平面微流体几何形状,并且具有足够的光学探针清晰度。检查的轴对称微流体几何形状具有用于研究粘弹性流动的延伸性能和非线性动力学的潜力,并研究气泡,滴,细胞和纤维的运输和变形动态。图形摘要

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