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Hydrophobicity Influence on Swimming Performance of Magnetically Driven Miniature Helical Swimmers

机译:疏水性对磁性驱动小型螺旋游泳运动员游泳性能的影响

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摘要

Helical microswimmers have been involved in a wide variety of applications, ranging from in vivo tasks such as targeted drug delivery to in vitro tasks such as transporting micro objects. Over the past decades, a number of studies have been established on the swimming performance of helical microswimmers and geometrical factors influencing their swimming performance. However, limited studies have focused on the influence of the hydrophobicity of swimmers’ surface on their swimming performance. In this paper, we first demonstrated through theoretical analysis that the hydrophobicity of swimmer’s surface material of the swimmer does affect its swimming performance: the swimmer with more hydrophobic surface is exerted less friction drag torque, and should therefore exhibit a higher step-out frequency, indicating that the swimmer with more hydrophobic surface should have better swimming performance. Then a series of experiments were conducted to verify the theoretical analysis. As a result, the main contribution of this paper is to demonstrate that one potential approach to improve the helical microswimmers’ swimming performance could be making its surface more hydrophobic.
机译:螺旋式微游泳机已经涉及到各种各样的应用,从诸如靶向药物递送的体内任务到诸如运输微物体的体外任务。在过去的几十年中,已经对螺旋微游泳器的游泳性能和影响其游泳性能的几何因素进行了许多研究。但是,有限的研究集中在游泳者表面疏水性对他们游泳表现的影响上。在本文中,我们首先通过理论分析证明了游泳者表面材料的疏水性确实会影响游泳者的游泳性能:具有更大疏水性的游泳者所施加的摩擦阻力较小,因此其跳步频率应更高;表明具有更多疏水表面的游泳者应具有更好的游泳性能。然后进行了一系列实验以验证理论分析。因此,本文的主要贡献在于证明改善螺旋微泳者游泳性能的一种潜在方法可能是使其表面更具疏水性。

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