Improvement of Oxide/Oxide CMC and Development of Combustor and Turbine Components in the HiPOC Program

Author:

Gerenda´s Miklo´s1,Cadoret Yannick1,Wilhelmi Christian2,Machry Thays2,Knoche Ralf3,Behrendt Thomas4,Aumeier Thomas4,Denis Sandrine5,Go¨ring Ju¨rgen4,Koch Dietmar6,Tushtev Kamen6

Affiliation:

1. Rolls-Royce Deutschland Ltd. & Co. KG, Blankenfelde-Mahlow, Germany

2. EADS Innovation Works, Munich, Germany

3. ASTRIUM Space Transportation, Bremen, Germany

4. German Aerospace Center (DLR), Cologne, Germany

5. German Aerospace Center (DLR), Stuttgart, Germany

6. University of Bremen, Bremen, Germany

Abstract

Three different oxide/oxide ceramic matrix composite (CMC) materials are described. Design concepts for the attachment of the CMC component to the metal structure of the gas turbine are developed in a first work stream focused on the combustion chamber and the turbine seal segment. Issues like environmental barrier coating (EBC)/thermal barrier coatings (TBC), application and volatilization, allowance for the different thermal expansion and the mechanical fixation are addressed. The design work is accompanied by CFD and FEM simulations. A variation of the microstructural design of the three oxide/oxide CMC materials in terms of different fiber architecture and processing of matrix are considered. Also, mechanical properties of these variations are evaluated. The material concepts are developed further in a second work stream. The CMCs are tested in various loading modes (tension, compression, shear, off-axis loading) from room temperature to maximum application temperature focusing on tensile creep behavior. By modification of the matrix and the fiber-matrix interface as well as EBC coatings, the high temperature stability and the insulation performance are enhanced. An outline of the “High Performance Oxide Ceramic”-program HiPOC for the following years is given, including manufacturing of a high-pressure tubular combustor and turbine seal segments from the improved materials as technology samples, for which validation testing up to technology readiness level 4 is scheduled for 2011.

Publisher

ASMEDC

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