Tape Casting as a Multi Purpose Shaping Technology for Different Applications in Energy Issues

Author:

Schafbauer Wolfgang1,Schulze-Küppers Falk1,Baumann Stefan1,Meulenberg Wilhelm A.1,Menzler Norbert H.1,Buchkremer Hans Peter1,Stöver D.1

Affiliation:

1. Forschungszentrum Jülich GmbH

Abstract

Tape casting is widely used in industrial scale for production of multilayer ceramic capacitors or substrates for different applications. In 2009, it was successfully introduced as standard shaping technology for 3 (BSCF) are shown. The entire scope from the preparation of the used powders, the different manufacturing steps and their optimization potential up to the final tape-cast product will be discussed. The influence of the use of pore forming agents, heat treatment or other parameters during processing will be described in detail. Finally, the option of sequential tape casting of different materials for graded structures as a future step in shaping technology will be presented for different applications.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference12 articles.

1. Mistler, R., RE, Tape casting: Past, present, potential. American Ceramic Society bulletin, 1998. 77(10): pp.82-86.

2. Mistler, R.E., et al. Evaluation of an Environmentally Friendly Plasticizer For Polyvinyl Butyral For Use in Tape Casting. in 31st International Cocoa Beach Conference of the American Ceramic Society. 2007. Daytona Beach.

3. Schafbauer, W., et al. Tape casting of anode substrate for SOFCs. in 8th European Solid Oxide Fuel Cell Forum. 2008. Lucerne, Switzerland.

4. Meulenberg, W.A., et al., Manufacturing routes and state-of-the-art of the planar Julich anode-supported concept for solid oxide fuel cells, in Ceramic transactions. 2002. pp.99-108.

5. Schafbauer, W., Entwicklung und Herstellung von foliengegossenen, anodengestützten Festoxidbrennstoffzellen. Schriften des Forschungszentrums Jülich Reihe Energie & Umwelt. Vol. 66. 2010, Jülich. 168.

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