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Dynamic properties of vibrated drops on a superhydrophobic patterned surface

机译:超疏水图案表面上的振动滴的动态特性

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With the development of micro- and nano-technology, superhydrophobic surfaces with higher apparent contact angle and lower sliding angle have considerable technological potential for various applications such as dewetting and dropwise condensation. In this work, the square-shaped pillars rough surfaces were prepared with the polydimethyl-siloxane substrate using photolithography techniques. The dynamic properties of the droplets were studied on the superhydrophobic patterned surface. By adjusting the frequency and the amplitude of the vertical displacement, we observe droplets bounding from the superhydrophobic surface at a certain frequency and amplitude. For a certain size of droplet, the results show that the vibration amplitude which induces a droplet to bounce off from the superhydrophobic surface at the resonant frequency is remarkably smaller than the detaching amplitudes of neighboring frequencies. In order to verify the analysis, the eigenfrequency of the other size of droplet was compared with its resonant frequency. The experimental results were in accordance with the theoretical analysis. Therefore, a novel method is provided to remove the condensation droplets from the solid surface in order to improve the heat transfer performance.
机译:随着微技术和纳米技术的发展,具有较高的表观接触角和较低的滑动角的超疏水表面在各种应用中具有相当大的技术潜力,例如去湿和逐滴冷凝。在这项工作中,使用光刻技术用聚二甲基硅氧烷基材制备了方形柱状粗糙表面。在超疏水图案化表面上研究了液滴的动态特性。通过调整垂直位移的频率和幅度,我们观察到以一定的频率和幅度从超疏水表面上束缚的液滴。对于一定大小的液滴,结果表明,引起液滴在共振频率下从超疏水表面反弹的振动幅度明显小于相邻频率的分离幅度。为了验证分析,将其他大小的液滴的本征频率与其共振频率进行了比较。实验结果与理论分析相符。因此,提供了一种新颖的方法以从固体表面去除冷凝液滴以改善传热性能。

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