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Deposition and Characterization of Thin Films on Metallic SubstratesA CVD method was successfully developed to produce conversion coatings on aluminum alloys surfaces with reproducible results with a variety of precursors. A well defined protocol to prepare the precursor solutions formulated in a previous research was extended to other additives. It was demonstrated that solutions prepared following such a protocol could be used to systematically generate protective coatings onto aluminum surfaces. Experiments with a variety of formulations revealed that a refined deposition protocol yields reproducible conversion coatings of controlled composition. A preliminary correlation between solution formulations and successful precursors was derived. Coatings were tested for adhesion properties enhancement for commercial paints. A standard testing method was followed and clear trends were identified. Only one precursors was tested systematically. Anticipated work on other precursors should allow a better characterization of the effect of intermetallics on the production of conversion/protective coatings on metals and ceramics. The significance of this work was the practical demonstration that chemical vapor deposition (CVD) techniques can be used to systematically generate protective/conversion coating on non-ferrous surfaces. In order to become an effective approach to replace chromate-based pre- treatment processes, namely in the aerospace or automobile industry, the process parameters must be defined more precisely. Moreover, the feasibility of scale-up designs necessitates a more comprehensive characterization of the fluid flow, transport phenomena, and chemical kinetics interacting in the process. Kinetic characterization showed a significantly different effect of magnesium-based precursors when compared to iron-based precursors. Future work will concentrate on refining the process through computer simulations and further experimental studies on the effect of other transition metals to induce deposition of conversion/protective films on aluminum and other metallic substrates.
Document ID
20050071106
Acquisition Source
Headquarters
Document Type
Other
Authors
Gatica, Jorge E.
(Cleveland State Univ. Cleveland, OH, United States)
Date Acquired
September 7, 2013
Publication Date
January 1, 2005
Subject Category
Nonmetallic Materials
Report/Patent Number
CSU-0220-0620-10-GATIC20
Report Number: CSU-0220-0620-10-GATIC20
Funding Number(s)
CONTRACT_GRANT: NCC3-1095
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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