Journal Article PreJuSER-51697

http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png
New environmental barrier coating system on carbon-fiber reinforced silicon carbide composites

 ;  ;

2005
Springer Boston, Mass.

Journal of thermal spray technology 14, 268 - 272 () [10.1361/10599630523854]

This record in other databases:    

Please use a persistent id in citations: doi:

Abstract: Carbon-fiber-reinforced silicon carbide composites (C/SiC) are promising materials for high-temperature, light weight structural components. However, a protective coating and environmental barrier coating (EBC) are necessary to prevent the oxidation of the carbon and the reaction of the formed silica scale with water vapor. Current EBC systems use multiple layers, each serving unique requirements. However, any mismatch in the coefficients of thermal expansion (CTE) creates internal stresses and might lead to crack formation. In this case, oxygen and water vapor penetrate through the EBC, reducing the lifetime of the component. Mullite (Al6Si2O13) is used in many known EBC systems on silicon-based ceramics either as an EBC itself or as a bondcoat. Due to its low CTE and its sufficient thermal cycling behavior, mullite was chosen in this investigation as a first layer. As mullite suffers loss of SiO2 when exposed to water vapor at high temperatures, an additional protective top coat is needed to complete the EBC system. Different oxides were evaluated to serve as top coat, especially high-temperature oxides with low coefficients of thermal expansion (LCTE). An EBC containing mullite as bondcoat and the LCTE oxide La2Hf2O7 as a top coat is proposed. Both layers were applied via atmospheric plasma spraying. In this paper, results of the influence of processing conditions on the microstructure of single mullite and LCTE oxide layers as well as mullite/LCTE oxide systems are presented. Special emphasis was directed toward the crystallinity of the mullite layer and, in the top layer, toward low porosity and reduced crack density.

Keyword(s): J ; atmospheric plasma spraying (auto) ; C/SiC (auto) ; ceramic oxide coating (auto) ; coefficient of thermal expansion (auto) ; environmental barrier coating (auto) ; mullite (auto) ; pyrochlore oxide (auto)


Note: Record converted from VDB: 12.11.2012

Contributing Institute(s):
  1. Werkstoffsynthese und Herstellungsverfahren (IWV-1)
Research Program(s):
  1. Brennstoffzelle (E01)
  2. Werkstoffsysteme für Kraftwerke (E03)

Appears in the scientific report 2005
Notes: Nachtrag
Click to display QR Code for this record

The record appears in these collections:
Document types > Articles > Journal Article
Institute Collections > IMD > IMD-2
Workflow collections > Public records
IEK > IEK-1
Publications database

 Record created 2012-11-13, last modified 2024-07-08



Rate this document:

Rate this document:
1
2
3
 
(Not yet reviewed)