...
【24h】

Injection-molded plastic plate with hydrophobic surface by nanoperiodic structure applied in uniaxial direction

机译:单轴方向纳米周期结构的疏水表面注塑成型塑料板

获取原文
获取原文并翻译 | 示例
           

摘要

The purpose of this research is to establish a processing method for a wide-area nanometer scale periodic structure on the surface of a plastic plate in order to improve its hydrophobicity. We also evaluated the effect of a nanoperiodic structure applied in the uniaxial direction. Plastic plates of acrylonitrile-ethylene-styrene with dimensions of 100x100mm(2) with a nanoperiodic structure on their surfaces were fabricated using a femtosecond laser and an injection molding technique. In the injection molding, the maximum transfer ratio for the depth reached as high as 0.79. When the nanoperiodic structure was applied in the uniaxial direction, the apparent contact angles did not decrease with respect to the direction of the ridges. As a result, the apparent contact angle increased by 20.4 degrees, from 77.2 degrees to 97.6 degrees which is equivalent to 26%. In the six-month duration test, the sliding angle was initially decreased by applying the nanoperiodic structure. Additionally, the sliding angle was maintained between 20 degrees and 38.3 degrees during the duration test, which was lower than the angle for the flat plate at 42.7 degrees. It can be considered that the depth was sufficient to maintain the sliding angle. In this condition, the contact angle hysteresis did not differ with or without the nanoperiodic structure on the surfaces, an effect that could be caused by surface dirt. In summary, the plastic plate was well drained and the characteristics were maintained for several months by forming the nanoperiodic structure on the surface.
机译:这项研究的目的是建立一种处理塑料板表面上的大面积纳米级周期性结构的方法,以提高其疏水性。我们还评估了在单轴方向上应用纳米周期结构的效果。使用飞秒激光和注塑技术制造了表面尺寸为纳米周期的尺寸为100x100mm(2)的丙烯腈-乙烯-苯乙烯塑料板。在注射成型中,深度的最大传递比高达0.79。当沿单轴方向施加纳米周期结构时,相对于脊的方向,表观接触角没有减小。结果,视在接触角增加了20.4度,从77.2度增加到97.6度,相当于26%。在六个月的持续时间测试中,通过应用纳米周期结构,最初减小了滑动角。另外,在持续时间测试期间,滑动角保持在20度至38.3度之间,低于平板的角度为42.7度。可以认为该深度足以维持滑动角。在这种条件下,表面上有纳米周期结构或没有纳米周期结构时,接触角滞后都不会不同,这可能是表面污垢引起的。总之,通过在表面上形成纳米周期结构,可以很好地排水塑料板并保持其特性数月。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号