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Experimental Research on the Fabrication and Wettability of Micro- and Nano-scale Surface Textures Produced on Stainless Steel Using an Ultrafast Laser

机译:超快激光在不锈钢表面产生微米级和纳米级表面织构的实验研究

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摘要

Micro- and nano-scale surface textures on a stainless steel sample fabricated by ultrafast laser radiation have been seen to be influenced by the irradiating energy which is determined by laser power, scanning velocity and number of times of repeat scanning. The experimental results showed that one typical periodic submicron ripple, whose periodicity changed with scanning velocity, was obtained when the irradiating energy was lower than the critical damage laser energy value. Another typical multiscale complex structure consisted of micron protrusions, submicron dimples and submicron short ripples, which were obtained when the irradiating energy was higher than the critical damage laser energy value. Wettability experiments revealed that the apparent contact angles on the surfaces of original stainless steel sample, the periodic submicron ripples and the multi-scale textures were 114°, 148° and 162°, respectively. The results showed that two kinds of micro- and nano-scale surface textures on the stainless steel sample surface induced by the ultrafast laser radiation all had super-hydrophobic properties, with the multi-scale texture being more super-hydrophobic property than the periodic submicron rippled surface.
机译:已经发现,通过超快激光辐射在不锈钢样品上形成的微米级和纳米级表面织构受辐照能的影响,辐照能由激光功率,扫描速度和重复扫描次数决定。实验结果表明,当辐照能量低于临界损伤激光能量值时,可获得一个典型的周期性亚微米波纹,其周期性随扫描速度而变化。另一种典型的多尺度复杂结构由微米级突起,亚微米级凹痕和亚微米级短波纹组成,当辐射能量高于临界损伤激光能量值时,即可获得这些痕迹。润湿性实验表明,原始不锈钢样品表面的表观接触角,周期性亚微米波纹和多尺度织构分别为114°,148°和162°。结果表明,超快激光辐射在不锈钢样品表面产生的两种微米级和纳米级表面织构都具有超疏水性,其中多尺度织构比周期性亚微米类具有更高的超疏水性。波纹的表面。

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