Surface preparation of aluminum by atmospheric-pressure plasma jet for suspension plasma sprayed ceramic coatings

Surface preparation is a key step preceding the deposition of suspension plasma spray (SPS) coatings, a type of thermal spray coatings. This work evaluates the effect of surface preparation by atmospheric-pressure plasma jet (APPJ) treatment on the adhesion of SPS-deposited Al2O3 ceramic coatings on...

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Published inSurface & coatings technology Vol. 476; p. 130175
Main Authors Rahman, Masiar, Profili, Jacopo, Stafford, Luc, Moreau, Christian
Format Journal Article
LanguageEnglish
Published Elsevier B.V 30.01.2024
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Abstract Surface preparation is a key step preceding the deposition of suspension plasma spray (SPS) coatings, a type of thermal spray coatings. This work evaluates the effect of surface preparation by atmospheric-pressure plasma jet (APPJ) treatment on the adhesion of SPS-deposited Al2O3 ceramic coatings on aluminum (Al-2024) substrates. For comparison, the substrate surfaces were also prepared by grit-blasting. Surface roughness (R) parameters and surface morphology of both grit-blasted and APPJ-treated substrates were characterized by confocal microscopy and scanning electron microscopy (SEM). In addition, surface chemistry was evaluated by attenuated total reflectance-Fourier transform infrared spectroscopy (ATR-FTIR). Based on morphological analyses, the grit-blasted surfaces exhibit typical random peaks and valleys, whereas those subjected to APPJ treatment show self-organized patterns with multilayered and multiscale features. ATR-FTIR spectroscopy analyses also demonstrated a significant difference in surface chemistry for both surface preparation types. After the characterization of both types of prepared substrates, SPS coating was deposited on the substrates under two spray conditions. One spray condition demonstrated poor adherence of the coatings for both types of the prepared substrates; the other spray condition produced coatings with good adherence. The microstructures of the coating were evaluated for both spray conditions. The Adhesion strength of the coating was evaluated for the condition, which produced a coating with good adhesion. ASTM-C-633 pull test protocol was followed for the adhesion evaluation, and the pull test revealed significant adhesion improvements when the surface was prepared by APPJ. Improved adhesion strength was linked to the surface morphology and also to the surface chemistry of the surface prepared by APPJ. In addition, splat morphology was investigated on both grit-blasted and APPJ-treated substrates to correlate the improved adhesion. •Surface preparation of aluminum was performed for suspension plasma sprayed ceramic coatings.•Atmospheric pressure plasma jet (APPJ) was used for surface preparation, with grit-blasting being the benchmark technique.•Adhesion studies of the coatings were performed on both prepared surfaces.•Surface chemistry analysis result of the as-received sample is added in the revised manuscript•Significant adhesion was observed for the coating deposited on the APPJ-prepared surface.•Improved adhesion was correlated with differences in surface morphology, surface chemistry, and splat morphology.
AbstractList Surface preparation is a key step preceding the deposition of suspension plasma spray (SPS) coatings, a type of thermal spray coatings. This work evaluates the effect of surface preparation by atmospheric-pressure plasma jet (APPJ) treatment on the adhesion of SPS-deposited Al2O3 ceramic coatings on aluminum (Al-2024) substrates. For comparison, the substrate surfaces were also prepared by grit-blasting. Surface roughness (R) parameters and surface morphology of both grit-blasted and APPJ-treated substrates were characterized by confocal microscopy and scanning electron microscopy (SEM). In addition, surface chemistry was evaluated by attenuated total reflectance-Fourier transform infrared spectroscopy (ATR-FTIR). Based on morphological analyses, the grit-blasted surfaces exhibit typical random peaks and valleys, whereas those subjected to APPJ treatment show self-organized patterns with multilayered and multiscale features. ATR-FTIR spectroscopy analyses also demonstrated a significant difference in surface chemistry for both surface preparation types. After the characterization of both types of prepared substrates, SPS coating was deposited on the substrates under two spray conditions. One spray condition demonstrated poor adherence of the coatings for both types of the prepared substrates; the other spray condition produced coatings with good adherence. The microstructures of the coating were evaluated for both spray conditions. The Adhesion strength of the coating was evaluated for the condition, which produced a coating with good adhesion. ASTM-C-633 pull test protocol was followed for the adhesion evaluation, and the pull test revealed significant adhesion improvements when the surface was prepared by APPJ. Improved adhesion strength was linked to the surface morphology and also to the surface chemistry of the surface prepared by APPJ. In addition, splat morphology was investigated on both grit-blasted and APPJ-treated substrates to correlate the improved adhesion. •Surface preparation of aluminum was performed for suspension plasma sprayed ceramic coatings.•Atmospheric pressure plasma jet (APPJ) was used for surface preparation, with grit-blasting being the benchmark technique.•Adhesion studies of the coatings were performed on both prepared surfaces.•Surface chemistry analysis result of the as-received sample is added in the revised manuscript•Significant adhesion was observed for the coating deposited on the APPJ-prepared surface.•Improved adhesion was correlated with differences in surface morphology, surface chemistry, and splat morphology.
ArticleNumber 130175
Author Rahman, Masiar
Profili, Jacopo
Moreau, Christian
Stafford, Luc
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  givenname: Masiar
  surname: Rahman
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  givenname: Christian
  surname: Moreau
  fullname: Moreau, Christian
  email: christian.moreau@concordia.ca
  organization: Department of Mechanical, Industrial and Aerospace Engineering, Concordia University, 1455 de Maisonneuve Blvd. W, Montréal, Québec H3G 1M8, Canada
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Keywords Atmospheric pressure plasma jet
Suspension plasma spray
Ceramic coating
Adhesion
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Surface chemistry
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Snippet Surface preparation is a key step preceding the deposition of suspension plasma spray (SPS) coatings, a type of thermal spray coatings. This work evaluates the...
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elsevier
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SubjectTerms Adhesion
Atmospheric pressure plasma jet
Ceramic coating
Surface chemistry
Surface preparation
Suspension plasma spray
Title Surface preparation of aluminum by atmospheric-pressure plasma jet for suspension plasma sprayed ceramic coatings
URI https://dx.doi.org/10.1016/j.surfcoat.2023.130175
Volume 476
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