首页> 外文期刊>Journal of micro and nano manufacturing >Fabrication and Wettability Analysis of Hydrophobic Stainless Steel Surfaces With Microscale Structures From Nanosecond Laser Machining
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Fabrication and Wettability Analysis of Hydrophobic Stainless Steel Surfaces With Microscale Structures From Nanosecond Laser Machining

机译:纳秒激光加工微观结构的疏水不锈钢表面的制造和润湿性分析

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In this work, nanosecond laser machining is used to fabricate hydrophobic 17-4 PH stainless steel surfaces with microscale and submicron structures. Four surface structures were designed, with microscale channels and pillars (100 μm pitch size) of uniform heights (100 μm) or alternating heights (between 100 μm and 50 μm). During fabrication, the high-power laser beams also created submicron features on top of the microscale ones, leading to hierarchical, multiscale surface structures. Detailed wettability analysis was conducted on the fabricated samples. Measured static contact angles of water on these surfaces are over 130 deg without any coating, compared to ~70 deg on the original steel surface before laser machining. Slightly lower contact angle hysteresis was also observed on the laser machined surfaces. Overall, these results agree with a simple Cassie-Baxter model for wetting that assumes only fractional surface area contact between the droplet and the surface. This work demonstrates that steel surfaces machined with relatively inexpensive nanosecond laser can achieve excellent hydrophobicity even with simple microstructural designs.
机译:在这项工作中,纳秒激光加工用于制造具有微观和亚微米结构的疏水性17-4 pH不锈钢表面。设计了四个表面结构,具有微观通道和柱状(100μm)或交替高度(100μm和50μm)的柱子(100μm间距)。在制造过程中,高功率激光束也在微观尺寸顶部创建亚微米特征,导致分层,多尺度表面结构。在制造的样品上进行了详细的润湿性分析。与在激光加工之前的原始钢表面上相比,在这些表面上的测量静电接触角度超过130°,而没有任何涂层。在激光加工表面上也观察到稍微较低的接触角滞后。总体而言,这些结果与简单的卡西 - Baxter模型遵守用于润湿,该模型仅在液滴和表面之间仅采用分数表面区域接触。这项工作表明,使用相对便宜的纳秒激光加工的钢表面即使具有简单的微观结构设计,也可以实现优异的疏水性。

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