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Drag reduction through self-texturing compliant bionic materials

机译:通过符合自纹理的仿生材料减少阻力

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摘要

Compliant fish skin is effectively in reducing drag, thus the design and application of compliant bionic materials may be a good choice for drag reduction. Here we consider the drag reduction of compliant bionic materials. First, ZnO and PDMS mesh modified with n-octadecane were prepared, the drag reduction of self-texturing compliant n-octadecane were studied. The results show that the mesh modified by ZnO and PDMS possess excellent lipophilic and hydrophobic, thus n-octadecane at solid, semisolid and liquid state all have good adhesion with modified mesh. The states of n-octadecane changed with temperature, thus, the surface contact angle and adhesive force all varies obviously at different state. The contact angle decreases with temperature, the adhesive force shows a lower value at semisolid state. Furthermore, the drag testing results show that the compliant n-octadecane film is more effectively in drag reduction than superhydrophobic ZnO/PDMS film, indicating that the drag reduction mechanism of n-octadecane is significantly different with superhydrophobic film. Further research shows that the water flow leads to self-texturing of semisolid state n-octadecane, which is similar with compliant fish skin. Therefore, the compliant bionic materials of semisolid state n-octadecane with regular bulge plays a major role in the drag reduction.
机译:顺应性的鱼皮可有效减少阻力,因此顺应性仿生材料的设计和应用可能是降低阻力的理想选择。在这里,我们考虑了顺应性仿生材料的减阻作用。首先,制备了用正十八烷改性的ZnO和PDMS网,研究了自织构顺应性正十八烷的减阻作用。结果表明,ZnO和PDMS改性的网孔具有良好的亲脂性和疏水性,因此固态,半固态和液态的n-十八烷均具有良好的附着力。正十八烷的状态随温度而变化,因此,在不同状态下,表面接触角和粘附力均发生明显变化。接触角随温度降低,在半固态时粘合力显示较低的值。此外,减阻测试结果表明,顺式正十八烷膜的减阻作用比超疏水性ZnO / PDMS膜更有效,表明正十八烷的减阻机理与超疏水性膜明显不同。进一步的研究表明,水流导致半固态正十八烷的自织构化,与顺应性鱼皮相似。因此,具有规则凸起的半固态正十八烷的顺应性仿生材料在减阻中起主要作用。

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