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  4. Surface smoothing and periodic microstructuring of additively manufactured scalmalloy® by sequential continuous-wave polishing and direct laser interference patterning
 
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2026
Journal Article
Title

Surface smoothing and periodic microstructuring of additively manufactured scalmalloy® by sequential continuous-wave polishing and direct laser interference patterning

Abstract
Laser Powder Bed Fusion is gaining industrial prominence due to its ability to create complex parts with reduced material waste. Scalmalloy® stands out as a possible replacement for titanium, offering high strength and thermal conductivity while maintaining low component weight. Nevertheless, parts produced by this method normally exhibit high surface roughness, characterized by partially melted particles and surface irregularities. In addition, low surface roughness is also a prerequisite for the further fabrication of well-defined microstructures that can enhance surface functions based on mimicking natural examples. This work combines surface smoothing by continuous-wave laser re-melting with the fabrication of periodic textures using Direct Laser Interference Patterning to tailor surface topography. Initial laser polishing trials achieve a substantial reduction of as-built Ra roughness from approximately (Ra) ~14 μm to 1–2 μm but generated subsurface pores. The porosity is mitigated by adjusting laser power and feed rate. The polished samples are subsequently microstructured by DLIP using a picosecond pulsed laser, producing structure depths up to 3.0 μm with a homogeneity of approximately 82%. Finally, the performance of the combined process is analyzed in terms of energy consumption and target surface parameters to improve process sustainability.
Author(s)
Tabares, Ignacio
Technische Universität Dresden
Andral, Ugo
SYLAS Laser Systems
Escudero, Mario
Center for Advanced Aerospace Technologies (CATEC)
Periñán, Antonio
Center for Advanced Aerospace Technologies (CATEC)
Voisiat, Bogdan
Technische Universität Dresden
Brühl, Sonia Patricia
Universidad Tecnológica Nacional Facultad Regional Concepción del Uruguay
Lasagni, Andrés-Fabián  
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
Journal
Surface and coatings technology  
Open Access
File(s)
Download (5.37 MB)
Rights
CC BY 4.0: Creative Commons Attribution
DOI
10.1016/j.surfcoat.2026.133560
10.24406/publica-8697
Additional link
Full text
Language
English
Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS  
Keyword(s)
  • Additive manufacturing

  • Aerospace

  • Direct laser interference patterning

  • Laser polishing

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