Self-healing effect of silica-based coatings induced by scratches of modified steel substrate

This paper presents the self-healing properties of sol-gel SiO2 coatings doped with CeO2 nano-powders to incite this effect. The built-in ability to self-repair damage was investigated after intentionally introducing scratches during the scratch test. The changes in the morphology of the coating-substrate system were examined by scanning electron microscopy (SEM), transmission electron microscope (TEM) and confocal microscopy. X-ray powder diffraction was used to study the phase composition of the CeO2 nano-powders. A progressive scratch test, multi-scratch test, and electrochemical impedance spectroscopy (EIS) were used to analyze the functional changes in the newly obtained silica coatings. Introducing the CeO2 sol-gel nanoparticles into the coating influences its wear behavior in the multi-scratch test, enabling the formation of the transfer film that lowers the friction coefficient when scratched. Cerium nano-powder dopants also increase the adhesion and wear protection of coatings on steel substrates. Modifying the SiO2 coatings by CeO2 nano-powders enables the most effective long-term protection of the surface of pressure vessel steel type P265GH against corrosion. The research was partially supported by the National Science Centre, Poland under the OPUS + LAP project ‘Research on the influence of self-healing, organic-inorganic sol-gel layers on the corrosion resistance and fatigue of steel in the VHCF range’ UMO-2020/39/I/ST5/03493.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-24
DOI
https://doi.org/10.5281/zenodo.22944276
Primary Topic
High-Temperature Coating Behaviors
Type
preprint
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preprint

Self-healing effect of silica-based coatings induced by scratches of modified steel substrate

Marek Smaga, Bartosz Babiarczuk, Andrzej Marek Żak, Maciej Sowa et al.
Zenodo (CERN European Organization for Nuclear Research)
High-Temperature Coating Behaviors
preprint

Self-healing effect of silica-based coatings induced by scratches of modified steel substrate

Marek Smaga, Bartosz Babiarczuk, Andrzej Marek Żak, Maciej Sowa, Jolanta Gąsiorek, Viktoria Hoppe, Wioletta Seremak, Wojciech Simka, Justyna Krzak, Shirin Falakboland
preprint en

Abstract

This paper presents the self-healing properties of sol-gel SiO2 coatings doped with CeO2 nano-powders to incite this effect. The built-in ability to self-repair damage was investigated after intentionally introducing scratches during the scratch test. The changes in the morphology of the coating-substrate system were examined by scanning electron microscopy (SEM), transmission electron microscope (TEM) and confocal microscopy. X-ray powder diffraction was used to study the phase composition of the CeO2 nano-powders. A progressive scratch test, multi-scratch test, and electrochemical impedance spectroscopy (EIS) were used to analyze the functional changes in the newly obtained silica coatings. Introducing the CeO2 sol-gel nanoparticles into the coating influences its wear behavior in the multi-scratch test, enabling the formation of the transfer film that lowers the friction coefficient when scratched. Cerium nano-powder dopants also increase the adhesion and wear protection of coatings on steel substrates. Modifying the SiO2 coatings by CeO2 nano-powders enables the most effective long-term protection of the surface of pressure vessel steel type P265GH against corrosion. The research was partially supported by the National Science Centre, Poland under the OPUS + LAP project ‘Research on the influence of self-healing, organic-inorganic sol-gel layers on the corrosion resistance and fatigue of steel in the VHCF range’ UMO-2020/39/I/ST5/03493.

Zenodo (CERN European Organization for Nuclear Research)
Silesian University of Technology (PL), Wrocław University of Science and Technology (PL), University of Kaiserslautern (DE), Rheinland-Pfälzische Technische Universität Kaiserslautern-Landau (DE)
High-Temperature Coating Behaviors
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