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One-Step Process for Superhydrophobic Metallic Surfaces by Wire Electrical Discharge Machining

机译:金属丝放电加工的超疏水金属表面一步法

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We present a direct one-step method to fabricate dual-scale superhydrophobic metallic surfaces using wire electrical discharge machining (WEDM). A dual-scale structure was spontaneously formed by the nature of exfoliation characteristic of Al 7075 alloy surface during WEDM process. A primary microscale sinusoidal pattern was formed via a programmed WEDM process, with the wavelength in the range of 200 to 500 μm. Notably, a secondary roughness in the form of microcraters (average roughness, Ra: 4.16 to 0.41 μm) was generated during the exfoliation process without additional chemical treatment. The low surface energy of Al 7075 alloy (γ = 30.65 mJ/m~2) together with the presence of dual-scale structures appears to contribute to the observed superhydrophobicity with a static contact angle of 156° and a hysteresis less than 3°. To explain the wetting characteristics on dual-scale structures, we used a simple theoretical model. It was found that Cassie state is likely to present on the secondary roughness in all fabricated surfaces. On the other hand, either Wenzel or Cassie state can present on the primary roughness depending on the characteristic length of sinusoidal pattern. In an optimal condition of the serial cutting steps with applied powers of ~30 and ~8 kW, respectively, a stable, superhydrophobic metallic surface was created with a sinusoidal pattern of 500 //m wavelength.
机译:我们提出了一种直接的一步法,利用电火花线切割加工(WEDM)来制造双尺度超疏水金属表面。在电火花加工过程中,Al 7075合金表面的剥落特性自然形成了双尺度结构。通过程序化的WEDM工艺形成微尺度正弦波图形,波长范围为200至500μm。值得注意的是,在剥落过程中,无需额外的化学处理即可产生微凹坑形式的次要粗糙度(平均粗糙度,Ra:4.16至0.41μm)。 Al 7075合金的低表面能(γ= 30.65 mJ / m〜2)以及双尺度结构的存在似乎有助于观察到的超疏水性,静态接触角为156°,磁滞小于3°。为了解释双尺度结构的润湿特性,我们使用了一个简单的理论模型。已经发现,在所有制造的表面的二次粗糙度上都可能出现卡西状态。另一方面,取决于正弦曲线图案的特征长度,Wenzel态或Cassie态均可出现在主粗糙度上。在分别施加〜30和〜8 kW的功率的连续切割步骤的最佳条件下,可以形成波长为500 // m的正弦图案的稳定的超疏水金属表面。

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