TiO2-based glass-ceramic coatings: An innovative approach to architectural panel applications

Exterior claddings are used for architectural purposes primarily for practical and esthetic reasons. Panels are subjected to a variety of impacts, including chemical, and ultraviolet radiation, and are intended to survive them. In this study, the color, gloss, chemical and UV resistance, impact resi...

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Autores principales: Şemsi Melih Gülen, Nurullah Çöpoğlu, Yasin Bozkurt Yılmaz, Oğuz Karaahmet, Tamer Cengiz, Hatice Gökdemir, Buğra Çiçek
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Lenguaje:EN
Publicado: Elsevier 2022
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Acceso en línea:https://doaj.org/article/e47355131683440c830b699dd21ea4a3
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spelling oai:doaj.org-article:e47355131683440c830b699dd21ea4a32021-11-24T04:31:13ZTiO2-based glass-ceramic coatings: An innovative approach to architectural panel applications2214-509510.1016/j.cscm.2021.e00805https://doaj.org/article/e47355131683440c830b699dd21ea4a32022-06-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S221450952100320Xhttps://doaj.org/toc/2214-5095Exterior claddings are used for architectural purposes primarily for practical and esthetic reasons. Panels are subjected to a variety of impacts, including chemical, and ultraviolet radiation, and are intended to survive them. In this study, the color, gloss, chemical and UV resistance, impact resistance, and surface tension of glass-ceramic (GC) coated steel panels and other products on the market, such as conventional ceramic wall tiles, glass, and aluminum panels, are compared. Three different types of GC powders were prepared: opaque, semi-transparent, and transparent. Each GC powder was applied to a pre-coated steel substrate. Chemical resistance was excellent in all samples, however, only the GC-coated steel panels and the aluminum panels satisfied the impact resistance criteria. A UV test was performed to ensure that surface characteristics such as gloss, color, and surface tension were stable in the presence of UV light. The aluminum gives alerts the most color shift (∆E ≈ 1.2), whereas the GC-coated steel panels showed just ∆E ≈ 0.2. The gloss values of the samples did not change significantly much. Furthermore, when compared to the other products, GC-coated samples had the lowest weight and the greatest performance.Şemsi Melih GülenNurullah ÇöpoğluYasin Bozkurt YılmazOğuz KaraahmetTamer CengizHatice GökdemirBuğra ÇiçekElsevierarticlePhotocatalytic effectGlass ceramicCoatingUV-resistanceFaçadeExterior claddingMaterials of engineering and construction. Mechanics of materialsTA401-492ENCase Studies in Construction Materials, Vol 16, Iss , Pp e00805- (2022)
institution DOAJ
collection DOAJ
language EN
topic Photocatalytic effect
Glass ceramic
Coating
UV-resistance
Façade
Exterior cladding
Materials of engineering and construction. Mechanics of materials
TA401-492
spellingShingle Photocatalytic effect
Glass ceramic
Coating
UV-resistance
Façade
Exterior cladding
Materials of engineering and construction. Mechanics of materials
TA401-492
Şemsi Melih Gülen
Nurullah Çöpoğlu
Yasin Bozkurt Yılmaz
Oğuz Karaahmet
Tamer Cengiz
Hatice Gökdemir
Buğra Çiçek
TiO2-based glass-ceramic coatings: An innovative approach to architectural panel applications
description Exterior claddings are used for architectural purposes primarily for practical and esthetic reasons. Panels are subjected to a variety of impacts, including chemical, and ultraviolet radiation, and are intended to survive them. In this study, the color, gloss, chemical and UV resistance, impact resistance, and surface tension of glass-ceramic (GC) coated steel panels and other products on the market, such as conventional ceramic wall tiles, glass, and aluminum panels, are compared. Three different types of GC powders were prepared: opaque, semi-transparent, and transparent. Each GC powder was applied to a pre-coated steel substrate. Chemical resistance was excellent in all samples, however, only the GC-coated steel panels and the aluminum panels satisfied the impact resistance criteria. A UV test was performed to ensure that surface characteristics such as gloss, color, and surface tension were stable in the presence of UV light. The aluminum gives alerts the most color shift (∆E ≈ 1.2), whereas the GC-coated steel panels showed just ∆E ≈ 0.2. The gloss values of the samples did not change significantly much. Furthermore, when compared to the other products, GC-coated samples had the lowest weight and the greatest performance.
format article
author Şemsi Melih Gülen
Nurullah Çöpoğlu
Yasin Bozkurt Yılmaz
Oğuz Karaahmet
Tamer Cengiz
Hatice Gökdemir
Buğra Çiçek
author_facet Şemsi Melih Gülen
Nurullah Çöpoğlu
Yasin Bozkurt Yılmaz
Oğuz Karaahmet
Tamer Cengiz
Hatice Gökdemir
Buğra Çiçek
author_sort Şemsi Melih Gülen
title TiO2-based glass-ceramic coatings: An innovative approach to architectural panel applications
title_short TiO2-based glass-ceramic coatings: An innovative approach to architectural panel applications
title_full TiO2-based glass-ceramic coatings: An innovative approach to architectural panel applications
title_fullStr TiO2-based glass-ceramic coatings: An innovative approach to architectural panel applications
title_full_unstemmed TiO2-based glass-ceramic coatings: An innovative approach to architectural panel applications
title_sort tio2-based glass-ceramic coatings: an innovative approach to architectural panel applications
publisher Elsevier
publishDate 2022
url https://doaj.org/article/e47355131683440c830b699dd21ea4a3
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AT nurullahcopoglu tio2basedglassceramiccoatingsaninnovativeapproachtoarchitecturalpanelapplications
AT yasinbozkurtyılmaz tio2basedglassceramiccoatingsaninnovativeapproachtoarchitecturalpanelapplications
AT oguzkaraahmet tio2basedglassceramiccoatingsaninnovativeapproachtoarchitecturalpanelapplications
AT tamercengiz tio2basedglassceramiccoatingsaninnovativeapproachtoarchitecturalpanelapplications
AT haticegokdemir tio2basedglassceramiccoatingsaninnovativeapproachtoarchitecturalpanelapplications
AT bugracicek tio2basedglassceramiccoatingsaninnovativeapproachtoarchitecturalpanelapplications
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