首页> 外国专利> METHOD FOR FABRICATING SOLID BODY HAVING SUPERHYDROPHOBIC SURFACE STRUCTURE AND SUPERHYDROPHOBIC TUBE USING THE SAME METHOD

METHOD FOR FABRICATING SOLID BODY HAVING SUPERHYDROPHOBIC SURFACE STRUCTURE AND SUPERHYDROPHOBIC TUBE USING THE SAME METHOD

机译:采用相同方法制造具有超疏水表面结构和超疏水管的固体的方法

摘要

The present invention relates to a method for manufacturing a solid body having a superhydrophobic surface structure formed by using a surface treatment of a metal body, a replication process, and a polymer sticking phenomenon to increase efficiency of fluid transfer and prevent foreign materials from being accumulated in the tube, and a superhydrophobic fluid transfer tube using the method. The superhydrophobic fluid transfer tube includes a fluid guider and a solid body provided on a fluid contact surface of the fluid guider and has micrometer-scaled unevenness and nanometer-scaled protrusions. In the method, a plurality of nanometer-scaled holes are formed on a surface of a metal body through an anodizing process, a replica is formed by immersing the metal body provided with the nanometer-scaled holes in a non-wetting polymer material and solidifying the non-wetting polymer material, the solid body having the superhydrophobic surface is formed by removing the metal body and an anode oxide from the replica, and the solid body is provided to a fluid contact surface of a fluid guider for guiding a fluid.
机译:本发明涉及具有通过对金属体进行表面处理而形成的具有超疏水性表面结构的固体的制造方法,复制工艺和聚合物粘附现象以提高流体输送效率并防止异物积聚的方法。在该管中,并使用该方法进行超疏水性流体转移。超疏水性流体输送管包括流体导向器和设置在流体导向器的流体接触表面上的固体,并且具有微米级的不平度和纳米级的突起。在该方法中,通过阳极氧化工艺在金属体的表面上形成多个纳米级的孔,通过将具有纳米级的孔的金属体浸入非润湿的聚合物材料中并固化来形成复制体。作为非润湿性高分子材料,通过从复制体上除去金属体和阳极氧化物而形成具有超疏水性的​​表面的固体,并将该固体设置在用于引导流体的流体引导器的流体接触面上。

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