Rafieazad Mehran, Jaffer Jaffer Alkarim, Cui Cong, Duan Xili, Nasiri Ali
Faculty of Engineering and Applied Science, Memorial University of Newfoundland, St. John's, NL A1B 3X5, Canada.
Materials (Basel). 2018 Sep 1;11(9):1577. doi: 10.3390/ma11091577.
Creation of hydrophobic and superhydrophobic surfaces has attracted broad attention as a promising solution for protection of metal surfaces from corrosive environments. This work investigates the capability of nanosecond fiber laser surface texturing followed by a low energy coating in the fabrication of hydrophobic 17-4 PH stainless steel surfaces as an alternative to the ultrashort lasers previously utilized for hydrophobic surfaces production. Laser texturing of the surface followed by applying the hydrophobic coating resulted in steady-state contact angles of up to 145°, while the non-textured coated base metal exhibited the contact angle of 121°. The microstructure and compositional analysis results confirmed that the laser texturing process neither affects the microstructure of the base metal nor causes elemental loss from the melted regions during the ultrafast melting process. However, the electrochemical measurements demonstrated that the water-repelling property of the surface did not contribute to the anticorrosion capability of the substrate. The resultant higher corrosion current density, lower corrosion potential, and higher corrosion rate of the laser textured surfaces were ascribed to the size of fabricated surface micro-grooves, which cannot retain the entrapped air inside the hierarchical structure when fully immersed in a corrosive medium, thus degrading the material's corrosion performance.
制备疏水和超疏水表面作为保护金属表面免受腐蚀环境影响的一种有前景的解决方案,已引起广泛关注。这项工作研究了纳秒光纤激光表面纹理化结合低能量涂层在制备疏水17-4 PH不锈钢表面方面的能力,以此作为先前用于生产疏水表面的超短激光的替代方法。对表面进行激光纹理化后再施加疏水涂层,可使稳态接触角高达145°,而未纹理化的涂覆母材的接触角为121°。微观结构和成分分析结果证实,激光纹理化过程既不影响母材的微观结构,也不会在超快熔化过程中导致熔化区域的元素损失。然而,电化学测量表明,表面的拒水性能对基材的抗腐蚀能力并无贡献。激光纹理化表面产生的较高腐蚀电流密度、较低腐蚀电位和较高腐蚀速率归因于所制备表面微槽的尺寸,当完全浸入腐蚀性介质中时,这些微槽无法在分级结构中保留 entrapped air,从而降低了材料的腐蚀性能。