首页> 外文期刊>International journal of automation technology >Fabrication of Superhydrophobic Stainless Steel Nozzles by Femtosecond Laser Micro-/Nano-Texturing
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Fabrication of Superhydrophobic Stainless Steel Nozzles by Femtosecond Laser Micro-/Nano-Texturing

机译:飞秒激光微/纳米织构法制备超疏水不锈钢喷嘴

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摘要

A dispensing nozzle is an essential mechanical element in inkjet, dot, and bioprinting. To improve the printing resolution, the inner diameter of the nozzle outlet must be as small as possible. A droplet dispensed through a hydrophilic stainless steel outlet expands on the whole outlet surface and along the side surface of the nozzle. This issue can be solved by physical surface modifications. In the present paper, a femtosecond laser micro-ano-texturing method was developed to transform the originally hydrophilic stainless steel surface of a nozzle to a hydrophobic or superhydrophobic one. First, an AISI304 plate was used to demonstrate experimentally that, on its surface, the tailored micro-ano-patterns were reproduced as micro-ano-textures, making the surface superhydrophobic. Second, the technique was applied to the physical surface modification of an AISI304 stainless steel nozzle outlet by optimizing the femtosecond laser machining conditions. A high-speed camera was used to take a snapshot of the dispensed droplet from the surface-modified outlet. Finally, a line-printing experiment was performed to characterize the dispensing behavior of the stainless steel nozzles with and without physical surface modification.
机译:点胶喷嘴是喷墨,点印和生物打印中必不可少的机械元件。为了提高打印分辨率,喷嘴出口的内径必须尽可能小。通过亲水性不锈钢出口分配的液滴在整个出口表面上并沿喷嘴的侧面膨胀。此问题可以通过物理表面修改来解决。在本文中,飞秒激光微/纳米纹理化方法被开发来将喷嘴的最初亲水的不锈钢表面转变为疏水或超疏水的表面。首先,使用AISI304板通过实验证明,在其表面上,定制的微/纳米图案被复制为微/纳米纹理,从而使表面超疏水。其次,通过优化飞秒激光加工条件,将该技术应用于AISI304不锈钢喷嘴出口的物理表面改性。使用高速相机拍摄了表面改性出口分配的液滴的快照。最后,进行了线印刷实验,以表征经过和不经过物理表面改性的不锈钢喷嘴的分配行为。

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