Surface Hardness and Abrasion Threshold of Chemically Strengthened Soda-Lime Silicate Glasses After Steam Processing
Abstract: Chemical strengthening by diffusive ion exchange (IOX) is a common method to improve the mechanical performance of glass products. However, the process of ion-stuffing is often associated with an increase of surface hardness and a decrease of the resistance to abrasive wear during scratching, even when the thickness of the exchanged layer is low. Autoclave steam-treatment presents a way to compensate the enhanced surface brittleness accompanying IOX. It causes a notable shift in the load threshold for microabrasion to more abrasion-resistant glasses. Subject to the specific processing parameters, the softening effect is constrained to a surface layer of less than 500 nm in thickness; therefore, the overall compressive stress profile is not affected and the advantages of IOX strengthening are retained. In turn, ion-stuffing by IOX counteracts severe autoclave corrosion of soda-lime silicate glasses, making them suitable for a combination of both processes. https://www.tib-op.org/ojs/index.php/glass-europe/article/view/435
- Location
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                Deutsche Nationalbibliothek Frankfurt am Main
 
- Extent
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                Online-Ressource
 
- Language
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                Englisch
 
- Bibliographic citation
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                Surface Hardness and Abrasion Threshold of Chemically Strengthened Soda-Lime Silicate Glasses After Steam Processing ; volume:1 ; year:2023
Glass Europe ; 1 (2023)
 
- Creator
 
- DOI
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                        10.52825/glass-europe.v1i.435
 
- URN
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                        urn:nbn:de:101:1-2406241124413.789701635098
 
- Rights
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                        Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
 
- Last update
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                        14.08.2025, 10:46 AM CEST
 
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Deutsche Nationalbibliothek. If you have any questions about the object, please contact the data provider.
Associated
- Sani, Gohar
 - Sajzew, Roman
 - Limbach, René
 - Sawamura, Shigeki
 - Koike, Akio
 - Wondraczek, Lothar