Published August 2024 | Version v1
Journal article

High-speed laser surface structuring for thermal spray coating preparation

  • 1. Laserinstitut Hochschule Mittweida, Hochschule Mittweida University of Applied Sciences, Mittweida, 09648 (Germany)
  • 2. Department of Materials Engineering, Institute of Plasma Physics of the Czech Academy of Sciences, Prague, 182 00 (Czech Republic)
  • 3. New Technologies Research Centre (NTC), University of West Bohemia, Plzen, 301 00 (Czech Republic)
  • 4. Research and Testing Institute Plzen, Plzen, 318 00 (Czech Republic)

Description

The preparation of surfaces for coating processes is indispensable for maximal adhesion and good coating results. These technical surfaces can be treated by chemical, mechanical, or physical procedures. In thermal spray coating, grit blasting is a standard process for surface preparation. This mechanical roughening and activation of the surfaces is fast and easy to handle. On the negative side, the grit gets wasted and the generated pattern is inflexible. Therefore, attempts to substitute grit blasting with a laser application is discussed in this article. Herein, a theoretical evaluation of high-speed laser surface texturing (LST) is performed to find limits and points for the optimization of these processes. To estimate the surface processing rates, continuous wave, nanosecond, and ultrashort pulse laser machined dimples and grooves are investigated, and results of the spray coatings are presented afterward. The steel substrates are coated with Stellite 6 and tungsten. Adhesion tests and coating structures are analyzed. In terms of the optimization of the laser texturing, in situ temperature measurements show the influence of the laser process speed on the thermal load of the substrate. The influence of the number of scanning repetitions on heat accumulation during LST is also analyzed. (© 2024 The Authors. physica status solidi (a) applications and materials science published by Wiley‐VCH GmbH)

Additional details

Identifiers

Publishing Information

Journal Title
Physica Status Solidi. A, Applications and Materials Science (Online)
Journal Volume
221
Journal Issue
15
Journal Page Range
p. 1-11
ISSN
1862-6319
CODEN
PSSABA

Optional Information

Notes
AID: 2300710; Special issue: making light matter