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  5. Scrutinizing the importance of surface chemistry versus surface roughness for aluminium / sol-gel film adhesion

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Article
English
2021

Scrutinizing the importance of surface chemistry versus surface roughness for aluminium / sol-gel film adhesion

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0 Files

English
2021
Surfaces and Interfaces
Vol 26
DOI: 10.1016/j.surfin.2021.101417

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Herman Terryn
Herman Terryn

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Urša Tiringer
J.P.B. van Dam
Shoshan T. Abrahami
+4 more

Abstract

The sol-gel synthesis process is a versatile method used to produce a wide diversity of materials and is being increasingly used as a surface modification method to alter porosity, wettability, catalytic activity, biocompatibility and corrosion performance of underlying substrates. Silane sol–gel films deposited on aluminium and aluminium alloys have been widely studied as chemical conversion coatings and as coupling agent between the substrate and organic layers. This study set out to investigate the effect of the surface chemical treatment prior to sol-gel application on the interfacial adhesion properties of a hybrid sol-gel film. Different surface pre-treatments, including two abrasive treatments and three chemical surface pre-treatments were used and their effect on surface chemistry and surface roughness was assessed. Surfaces were characterized by scanning electron microscopy, x-ray photoelectron spectroscopy, roughness measurements and static contact angles. Cerium nitrate loaded hybrid sol-gel films were deposited and adhesion on commercially pure aluminium was evaluated using pull-off testing. Statistical analysis revealed that, although highest adhesion values were obtained on rougher surfaces, the strongest correlation exists between the surface hydroxyl fraction and adhesion strength.

How to cite this publication

Urša Tiringer, J.P.B. van Dam, Shoshan T. Abrahami, Herman Terryn, Janez Kovač, Ingrid Milošev, J.M.C. Mol (2021). Scrutinizing the importance of surface chemistry versus surface roughness for aluminium / sol-gel film adhesion. Surfaces and Interfaces, 26, pp. 101417-101417, DOI: 10.1016/j.surfin.2021.101417.

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Publication Details

Type

Article

Year

2021

Authors

7

Datasets

0

Total Files

0

Language

English

Journal

Surfaces and Interfaces

DOI

10.1016/j.surfin.2021.101417

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