Use of Different Process Gases for Manufacturing Isolating Alumina Coatings by Flame Spraying with Cords

Author:

Hauer MichélORCID,Meyer Melanie,Billieres Dominique,Bricquet Cédric,Gerstgrasser Franz,Kiilakoski Jarkko,Lejay Julien,Henkel Knuth-Michael

Abstract

AbstractBesides conventional industrial demands, thermally sprayed coatings are increasingly used for innovative products. Such an application is the additive manufacturing of electrical components in automotive engineering. In particular, heating units are currently manufactured by a combination of various spray technologies. At present, simpler spraying processes like flame spraying are investigated with regard to their suitability as a future cost-effective alternative for fabricating isolating alumina coatings. In the present study, alumina cords were flame-sprayed using compressed air and argon as atomizing gases. The results demonstrate finely dispersed microstructures and a more regular and partially even higher surface and volume resistivity compared to past investigations in the literature as well as conventionally plasma-sprayed coatings despite a significantly reduced coating thickness. The content of alpha phase is clearly higher than for plasma-sprayed coatings, regardless of the atomizing gas used. Moreover, flame-sprayed coatings using argon reveal a higher resistivity in comparison to coatings sprayed with air. While the atomizing gas is found to mainly influence the ideal stand-off distance, the phase composition is not changed severely. In addition to the phase composition and kinematics, it can finally be concluded that humidity plays a major role in the coating properties.

Funder

Projekt DEAL

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Surfaces, Coatings and Films,Condensed Matter Physics

Reference29 articles.

1. L. Pawłowski, The Science and Engineering of Thermal Spray Coatings, 2nd ed. Wiley, London, 2008.

2. M. Hauer, R. Banaschik, and K.-M. Henkel, Innovative Qualitätssicherung Lasergeschweißter Verbindungen Auf Lichtbogengespritzten Schichten Unter Einsatz Alternativer Gasgemische: Innovative Quality Assurance of Laser Welded Joints on Arc-sprayed Coatings using Alternative Gas Mixtures, Tagungsunterlagen Kolloquium Hochgeschwindigkeits-Flammspritzen: Proc. Hvof Spraying, 25. and 26. Oktober 2018, Erding, C. Penszior, Ed., Gemeinschaft Thermisches Spritzen e.V, 2018, p 111–122

3. F.-W. Bach, Moderne Beschichtungsverfahren: [die Beiträge dieses Buches entstammen einer Fortbildungsveranstaltung der Deutschen Gesellschaft für Materialkunde in Kooperation mit dem Institut für Werkstoffkunde der Universität Hannover und dessen Geschäftsbereich Fortis in Witten], Wiley-VCH, 2005 (in ger)

4. K. Bobzin, T. Warda, and M. Brühl, Stellenwert Des Plasmaspritzens Unter Den Thermischen Spritzverfahren: Significance of Plasma Spraying Within Thermal Spray Technology, Tagungsunterlagen Kolloquium Hochgeschwindigkeits-Flammspritzen: Proc. Hvof Spraying, 5. and 6. November 2009, Erding

5. Focal Point: Cold Spraying, Equipment + Applications, C. Penszior, Ed., Gemeinschaft Thermisches Spritzen e.V., 2009, p 37-50

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