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Long-Term Influence of Laser-Processing Parameters on (Super)hydrophobicity Development and Stability of Stainless-Steel Surfaces

机译:激光加工参数对不锈钢表面(超)疏水性发展和稳定性的长期影响

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摘要

Controlling the surface wettability represents an important challenge in the field of surface functionalization. Here, the wettability of a stainless-steel surface is modified by 30-ns pulses of a Nd:YAG marking laser (λ = 1064 nm) with peak fluences within the range 3.3–25.1 J cm−2. The short- (40 days), intermediate- (100 days) and long-term (1 year) superhydrophilic-to-(super)hydrophobic transition of the laser-textured surfaces exposed to the atmospheric air is examined by evaluating its wettability in the context of the following parameters: (i) pulse fluence; (ii) scan line separation; (iii) focal position and (iv) wetting period due to contact angle measurements. The results show that using solely a short-term evaluation can lead to wrong conclusions and that the faster development of the hydrophobicity immediately after laser texturing usually leads to lower final contact angle and vice versa, the slower this transition is, the more superhydrophobic the surface is expected to become (possibly even with self-cleaning ability). Depending on laser fluence, the laser-textured surfaces can develop stable or unstable hydrophobicity. Stable hydrophobicity is achieved, if the threshold fluence of 12 J cm−2 is exceeded. We show that by nanosecond-laser texturing a lotus-leaf-like surface with a contact angle above 150° and roll-off angle below 5° can be achieved.
机译:控制表面润湿性是表面功能化领域中的重要挑战。在此,通过Nd:YAG标记激光(λ= 1064 nm)的30 ns脉冲改变不锈钢表面的润湿性,其峰值注量在3.3–25.1 J cm −2 范围内。通过评估其在空气中的可湿性来检查其短波(40天),中波(100天)和长期(1年)超亲水性向(超)疏水过渡的过程。以下参数的范围:(i)脉冲能量密度; (ii)扫描线分离; (iii)焦点位置和(iv)接触角测量导致的润湿时间。结果表明,仅使用短期评估可能会得出错误的结论,并且在进行激光纹理化处理后立即迅速形成疏水性通常会导致最终接触角降低,反之亦然,这种过渡越慢,表面越具有超疏水性有望成为(甚至具有自我清洁能力的)。取决于激光能量密度,激光纹理化的表面可能会形成稳定或不稳定的疏水性。如果超过12 J cm -2 的阈值通量,则可获得稳定的疏水性。我们显示,通过纳秒激光纹理化荷叶状表面,其接触角大于150°,滚降角小于5°。

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