【2h】

Self-assembled artificial cilia

机译:自组装人造纤毛

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摘要

Due to their small dimensions, microfluidic devices operate in the low Reynolds number regime. In this case, the hydrodynamics is governed by the viscosity rather than inertia and special elements have to be introduced into the system for mixing and pumping of fluids. Here we report on the realization of an effective pumping device that mimics a ciliated surface and imitates its motion to generate fluid flow. The artificial biomimetic cilia are constructed as long chains of spherical superparamagnetic particles, which self-assemble in an external magnetic field. Magnetic field is also used to actuate the cilia in a simple nonreciprocal manner, resulting in a fluid flow. We prove the concept by measuring the velocity of a cilia-pumped fluid as a function of height above the ciliated surface and investigate the influence of the beating asymmetry on the pumping performance. A numerical simulation was carried out that successfully reproduced the experimentally obtained data.
机译:由于其尺寸小,微流体装置在低雷诺数条件下运行。在这种情况下,流体动力学是由粘度而不是惯性控制的,并且必须将特殊元素引入系统中以混合和泵送流体。在这里,我们报告了一种有效的泵送设备的实现,该设备可模仿纤毛表面并模仿其运动以产生流体。人造仿生纤毛被构造为球形超顺磁性颗粒的长链,它们在外部磁场中自组装。磁场也以简单的不可逆方式用于驱动纤毛,从而导致流体流动。我们通过测量纤毛泵送流体的速度与纤毛表面上方高度的函数来证明这一概念,并研究打浆不对称性对泵送性能的影响。进行了数值模拟,成功地再现了实验获得的数据。

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