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  4. Towards Virtual Testing of Textile Composites: Calibration of Thermoelastic Tow Properties
 
research article

Towards Virtual Testing of Textile Composites: Calibration of Thermoelastic Tow Properties

Shaw, John H.
•
Rajan, Varun P.
•
Blacklock, Matthew
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2014
Journal of the American Ceramic Society

We present a methodology for calibrating the thermoelastic properties of constituent tows in a woven C/SiC composite using a combination of experimental measurements and finite element simulations of strain distributions that arise upon heating. Because of the nonuniform distribution of the matrix phase and the presence of matrix microcracks, tow properties cannot be reliably predicted a priori using micromechanical models alone; instead, some can only be inferred from coupled experimental/numerical studies of the kind presented here. A small number of iterations of finite element simulations is required to achieve satisfactory agreement in all thermal strain components. The number of iterations is minimized by first performing simulations using model-based estimates of the effective tow properties, followed by judicious adjustments to select property values. Comparisons between measurements and simulations are performed on the basis of strains averaged over a characteristic area dictated by tow dimensions. The study reveals that, although each segment of a particular tow genus is nominally equivalent to all others, the strains within each population exhibit considerable variation. This is attributable to variations in both tow geometry and connectivity between adjacent tows. The virtual tests predict strain variations of comparable magnitude.

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Type
research article
DOI
10.1111/jace.12829
Author(s)
Shaw, John H.
Rajan, Varun P.
Blacklock, Matthew
Zok, Frank W.
Date Issued

2014

Publisher

Wiley-Blackwell

Published in
Journal of the American Ceramic Society
Volume

97

Issue

4

Start page

1209

End page

1217

Subjects

Ceramic-matrix composites

•

Computational modeling

•

Finite element analysis

•

Thermomechanical behavior

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
IGM  
Available on Infoscience
October 11, 2014
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/107380
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