Experimental Study on Bionic Groove Structure by Nanosecond Laser

Yanling Wan, Chuanwen Xi, Lining Xu, Jinkai Xu
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引用次数: 2

Abstract

Using nanosecond laser the bionic groove structures were fabricated on the surface of aluminum alloy. The microstructure of the sample surface and surface wettability were observed by scanning electron microscope (SEM) and OCA20 video optical contact angle measuring instrument, respectively. It was found that the change of groove structure and size on the surface of aluminum alloy material was the main reason for the changes of hydrophobic properties. In addition, the increase of oxygen on the surface of the material was also one of the reasons for its increased hydrophobicity. The groove structure with larger width and depth can be achieved by increasing the power of laser. This was because the larger the laser power is, the smaller the scanning speed, and the accumulation of energy and temperature caused by the overlapping of the processing parts was the cause of the increase in the width and depth of the grooves.
纳秒激光仿生沟槽结构实验研究
利用纳秒激光在铝合金表面制备了仿生凹槽结构。利用扫描电子显微镜(SEM)和OCA20视频光学接触角测量仪分别观察样品表面的微观结构和表面润湿性。结果表明,铝合金材料表面沟槽结构和尺寸的变化是其疏水性能变化的主要原因。此外,材料表面氧的增加也是其疏水性增加的原因之一。通过提高激光功率,可以获得更大宽度和深度的沟槽结构。这是因为激光功率越大,扫描速度越小,加工零件重叠引起的能量和温度的积累是导致凹槽宽度和深度增加的原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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