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  4. Determination of material properties for short fibre reinforced C/C-SiC
 
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2015
Conference Paper
Title

Determination of material properties for short fibre reinforced C/C-SiC

Abstract
Determining the mechanical properties of short fibre reinforced CMC using standard sized coupons has always been a challenge due to a high statistical scattering of the measured values. Although the random orientation of short fibres results in a quasi-isotropic material behavior of 2D-structures with a sufficiently large volume, the small volume typical for test coupons usually results in a non-isotropic fibre orientation in the tested volume. This paper describes a method for manufacturing unidirectional oriented short fibre reinforced CMC materials and presents material properties of UD-C/C-SiC. After verifying the fibre orientation of the CMC using micro-computed tomography, coupons were extracted to determine the orthotropic material properties. These orthotropic material properties were then used to predict the properties of C/C-SiC with randomly distributed short fibres. To validate the method, micro-computed tomography is used to quantitatively determine the fibre orientation within coupons extracted from randomly distributed short fibre C/C-SiC. After mechanical three-point-bending tests, the measured stiffness and bending strength is compared with the predicted properties. Finally, the data are used to devise a method suited for reducing the inherent large spread of material properties associated with the measurement of CMC materials with randomly distributed short fibres.
Author(s)
Hausherr, Jan Marcel
Fraunhofer-Institut für Silicatforschung ISC  
Eitel, M.
Krenkel, Walter
Mainwork
Testing and Modeling Ceramic & Carbon Matrix Composites  
Conference
Workshop on Testing and Modeling Ceramic & Matrix Composites for High Temperatures 2014  
Open Access
Link
Link
DOI
10.1051/matecconf/20152900005
Language
English
Fraunhofer-Institut für Silicatforschung ISC  
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