Title of article
Folding of fiber composites with a hyperelastic matrix
Author/Authors
Lَpez Jiménez، نويسنده , , Francisco and Pellegrino، نويسنده , , Sergio، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2012
Pages
13
From page
395
To page
407
Abstract
This paper presents an experimental and numerical study of the folding behavior of thin composite materials consisting of carbon fibers embedded in a silicone matrix. The soft matrix allows the fibers to microbuckle without breaking and this acts as a stress relief mechanism during folding, which allows the material to reach very high curvatures. The experiments show a highly non-linear moment vs. curvature relationship, as well as strain softening under cyclic loading. A finite element model has been created to study the micromechanics of the problem. The fibers are modeled as linear-elastic solid elements distributed in a hyperelastic matrix according to a random arrangement based on experimental observations. The simulations obtained from this model capture the detailed micromechanics of the problem and the experimentally observed non-linear response. The proposed model is in good quantitative agreement with the experimental results for the case of lower fiber volume fractions but in the case of higher volume fractions the predicted response is overly stiff.
Keywords
Fiber composites , Microbuckling , bending , strain softening , Random microstructure , Hyperelastic matrix
Journal title
International Journal of Solids and Structures
Serial Year
2012
Journal title
International Journal of Solids and Structures
Record number
1387907
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