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Wetting characteristics of bare micro-patterned cyclic olefin copolymer surfaces fabricated by ultra-precision raster milling

机译:超精密光栅铣削加工的裸露微图案化环状烯烃共聚物表面的润湿特性

摘要

The sliding performance of hydrophobic micro-patterned surfaces is one of the major factors determining wettability. However, it is difficult for existing manufacturing methods such as lithography, laser etching, and chemical reaction to fabricate one-step bare hydrophobic micro-patterned surfaces with good sliding performance for mass production. In the present research, one-step fabrication of bare hydrophobic micro-grooved and micro-pillar cyclic olefin copolymer surfaces with high precision in geometries has been achieved by ultra-precision raster milling (UPRM). According to the comparison of the static contact angle with theoretical models, droplet anisotropy, droplet contact line, contact angle hysteresis, and sliding angle measurement from the experiment, it is found that the droplet under the Cassie and Baxter regime gives a good sliding performance on bare micro-directional grooved cyclic olefin copolymer surfaces due to the shape edges induced by the numerically-controlled tool path of the material removal process in mechanical machining. It is believed that the micro-directional grooved surface has great potential for mass production by plastic injection molding in microfluidic applications such as artificial self-cleaning surfaces.
机译:疏水性微图案表面的滑动性能是决定润湿性的主要因素之一。然而,对于现有的制造方法,例如光刻,激光蚀刻和化学反应,难以制造具有良好滑动性能的一步裸露的疏水性微图案化表面以用于批量生产。在本研究中,通过超精密光栅铣削(UPRM)实现了几何形状高精度的裸露疏水微沟槽和微柱状环状烯烃共聚物表面的一步制造。通过实验将静态接触角与理论模型,液滴各向异性,液滴接触线,接触角滞后和滑动角测量结果进行比较,发现在Cassie和Baxter态下,液滴具有良好的滑动性能。由于机械加工中材料去除过程的数控刀具路径所引起的形状边缘,微露的微方向开槽的环状烯烃共聚物表面呈裸露状。据信,在诸如人工自清洁表面之类的微流体应用中,通过塑料注射成型的微方向沟槽表面具有大量生产的潜力。

著录项

  • 作者

    Cheng CT; Zhang G; To S;

  • 作者单位
  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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