4.7 Article

Triangular laser-induced submicron textures for functionalising stainless steel surfaces

Journal

APPLIED SURFACE SCIENCE
Volume 440, Issue -, Pages 162-169

Publisher

ELSEVIER
DOI: 10.1016/j.apsusc.2018.01.086

Keywords

LIPSS; Femtosecond laser; Large area; Uniformity; Wettability; Light scattering

Funding

  1. European Commission [675063]
  2. H2020 FoF programme, projects on Modular laser based additive manufacturing platform for large scale industrial applications (MAESTRO)
  3. H2020 FoF programme, High-Impact Injection Moulding Platform for mass-production of 3D and/or large microstructured surfaces with Antimicrobial, Self-cleaning, Antiscratch, Anti-squeak and Aesthetic functionalities (HIMALAIA)

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Processing technologies that engineer surfaces with sub-micron topographies are of a growing interest to a range of optical, hydrophobic and microbiological applications. One of the promising technologies for creating such topographies employs ultra-short laser pulses to produce laser-induced periodic surface structures (LIPSS) that often result in non-regular, quasi-periodic nanoripples and nanopillars. In this research near infrared ultra-short pulses of 310 fs with a circular polarisation was used to texture ferritic stainless steel workpieces. A single-step process was designed to generate low spatial frequency LIPSS (LSFL) over relatively large areas. Apart from highly regular and homogeneous parallel lines with approximately 900 nm periodicity, extraordinarily uniform triangular-LSFL in hexagonal arrangements was created. The generation of such LSFL was found to be highly repeatable but very sensitive to the used laser processing settings. Therefore, the sensitivity of triangular-LSFL formation to the used laser processing settings, i.e. pulse to pulse distance, pulse fluence and focal plane offsets, were investigated in regard to the resulting morphologies and functional properties, i.e. structural colors and super-hydrophobicity. Finally, the capability of this technology for producing uniform triangular-shaped LSFL on relatively large surface areas of stainless steel plates was studied. (C) 2018 Elsevier B.V. All rights reserved.

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