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Improvement of metallic surfaces hydrophobicity and corrosion resistance by direct write and combined direct write-DLIP hierarchical micro-nano structuring

机译:通过直接写入和组合直接写入DLIP分层微纳米结构改善金属表面疏水性和耐腐蚀性

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The use of pulsed laser irradiation techniques has proven to be a clearly effective procedure for the achievement of surface properties modification via micro-/nano-structuration, different conceptual approaches having been the subject of research and extensively reported in the literature. Beyond the broad spectrum of applications developed for the generation of structured surfaces of metallic materials with specific contact, friction and wear functionalities, the application of laser sources to the surface structuration of metal surfaces for the modification of their wettability and corrosion resistance properties is considered. Multi-scaled hierarchical surface microstructures fabricated on characteristic alloys (the concrete case of Ti6A14V alloy is considered as example) by the combination of two complementary laser micro/nano-structuring techniques (Direct Laser Writing and Direct Laser Interference Patterning) are reported. Static contact angle measurements show a clearly hydrophobicity enhancement for both types of processing options and a clear improvement on the corrosion resistance of patterned samples of either type is observed. A discussion of the reported features in view of the applicability of the technique to industrial-scope problems is provided.
机译:使用脉冲激光照射技术的使用已经证明是通过微/纳米结构实现表面性能改性的明显有效方法,不同的概念方法是在文献中的研究主题和广泛报道的不同概念方法。除了用于产生具有特定接触,摩擦和磨损功能的金属材料的结构化表面的广谱应用外,考虑了用于改变其润湿性和耐腐蚀性能的金属表面的表面结构。报道了通过两种互补激光微/纳米结构技术(直接激光写入和直接激光干扰图案化)的组合来制造在特征合金上(Ti6a14V合金的混凝土的混凝土壳体)上制造的多缩放的层级微结构。静态接触角测量显示出对两种类型的加工选择的显然疏水性,并且观察到任何类型的图案化样品的耐腐蚀性的清晰提高。鉴于技术对工业范围问题的适用性,提供了对报告的特征。

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