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Unité de recherche
INNOSUISSE
Numéro de projet
14697.1;6 PFIW-IW
Titre du projet
Innovative Method for high quality and highly adherent metal coating onto aluminium surfaces
Titre du projet anglais
Innovative Method for high quality and highly adherent metal coating onto aluminium surfaces

Textes relatifs à ce projet

 AllemandFrançaisItalienAnglais
Description succincte
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Résumé des résultats (Abstract)
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Textes saisis


CatégorieTexte
Description succincte
(Allemand)
Innovative Method for high quality and highly adherent metal coating onto aluminium surfaces
Description succincte
(Anglais)
Innovative Method for high quality and highly adherent metal coating onto aluminium surfaces
Résumé des résultats (Abstract)
(Allemand)
This project aims to develop a novel method for replacing the conventional zincate process used in industry for coating of aluminium. The process should improve dramatically the adhesion between the aluminium and the metallic top coating. Instead of removing the Al2O3, the method is based on the nanostructuration of aluminium with porous alumina where metal (nickel) will anchor in the pores and overgrow onto it. The challenges of the project is to define correct anodisation parameters for tuned porosity of the under-layer in combination with innovative plating conditions to fill the nanopores to achieve a coating interface fracture toughness to 4MPam0.5.
Résumé des résultats (Abstract)
(Anglais)
This project aims to develop a novel method for replacing the conventional zincate process used in industry for coating of aluminium. The process should improve dramatically the adhesion between the aluminium and the metallic top coating. Instead of removing the Al2O3, the method is based on the nanostructuration of aluminium with porous alumina where metal (nickel) will anchor in the pores and overgrow onto it. The challenges of the project is to define correct anodisation parameters for tuned porosity of the under-layer in combination with innovative plating conditions to fill the nanopores to achieve a coating interface fracture toughness to 4MPam0.5.