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Tunable Hierarchical Nanostructures on Micro-Conical Arrays of Laser Textured TC4 Substrate by Hydrothermal Treatment for Enhanced Anti-Icing Property

机译:通过水热处理对激光纹理TC4衬底微锥形阵列的可调谐分层纳米结构,用于增强抗糖霜性能

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In this work, an anti-icing structured surface was fabricated by combining laser ablation with hydrothermal treatment. A micro-patterned surface on a Ti alloy (TC4) substrate was easily fabricated by a highly effective nanosecond pulsed laser ablation. It was observed that titania (TiO2) nanostructures were formed by hydrothermal treatment in aqueous alkali on the laser ablated TC4 substrate to obtain the micro/nano-hierarchical structures. The growth mechanism of the tunable nanoarrays was discussed by the adjustment of hydrothermal temperature. The as-prepared samples exhibited excellent superhydrophobicity with contact angles greater than 160°. It was found that optimized hydrothermal treatment on laser-processed TC4 substrates could further enhance surface anti-icing property. The results showed that the delay time (DT) had been extended by achieving over 90 min for the water droplets to freeze on the as-prepared structured surfaces, providing great potential in various anti-icing applications.
机译:在这项工作中,通过将激光烧蚀与水热处理组合来制造抗结冰的结构表面。通过高效的纳秒脉冲激光烧蚀容易制造Ti合金(TC4)基板上的微图案化表面。观察到二氧化钛(TiO 2)纳米结构通过在激光烧蚀TC4基底上的碱水溶液中的水热处理形成,以获得微/纳米层次结构。通过调节水热温度讨论可调谐纳米阵列的生长机制。制备的样品表现出优异的超疏水性,接触角大于160°。发现激光加工的TC4基材上的优化水热处理可以进一步增强表面抗糖霜。结果表明,延迟时间(DT)通过在水滴上实现超过90分钟来延长,以在制备的结构表面上冻结,在各种防冰应用中提供巨大的潜力。

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