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Processes and structures for generation of hydrophobic surfaces for large-scale and industrial operations

Kamps, S. and Ensinger, W. and Eder, F. and Berndt, A. and Zeininger, H. (2009):
Processes and structures for generation of hydrophobic surfaces for large-scale and industrial operations.
In: Applied Surface Science, Elsevier Science Publishing Company, pp. S92-S95, 256, (3, Sup), [Online-Edition: http://www.sciencedirect.com/science/article/B6THY-4W99VT7-1...],
[Article]

Abstract

Common industrial processing procedures have been used to introduce surface structures into hydrophobic surfaces. In this paper, four different concepts (stamping, spraying, grinding and sandblasting) are evaluated regarding their applicability for large-scale production. In comparison to surfaces with equal hydrophobic properties the mechanical stability was improved.

Item Type: Article
Erschienen: 2009
Creators: Kamps, S. and Ensinger, W. and Eder, F. and Berndt, A. and Zeininger, H.
Title: Processes and structures for generation of hydrophobic surfaces for large-scale and industrial operations
Language: English
Abstract:

Common industrial processing procedures have been used to introduce surface structures into hydrophobic surfaces. In this paper, four different concepts (stamping, spraying, grinding and sandblasting) are evaluated regarding their applicability for large-scale production. In comparison to surfaces with equal hydrophobic properties the mechanical stability was improved.

Journal or Publication Title: Applied Surface Science
Volume: 256
Number: 3, Sup
Publisher: Elsevier Science Publishing Company
Uncontrolled Keywords: Contact angle, Hydrophobic surface, Roughness, Structuring, Thin film
Divisions: 11 Department of Materials and Earth Sciences > Material Science > Material Analytics
11 Department of Materials and Earth Sciences > Material Science
11 Department of Materials and Earth Sciences
Date Deposited: 23 Nov 2009 16:47
Official URL: http://www.sciencedirect.com/science/article/B6THY-4W99VT7-1...
Additional Information:

EMRS Fall Meeting 2008 Current trends in nanostructured polymer and sol-gel thin films

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