The effect of fibers-matrix interaction on the composite materials elongation

Author:

Tanasehte M,Hader A,Sbiaai H,Achik I,Boughaleb Y

Abstract

Abstract Failure process in composite materials is the basis of various actual researches. It study is the almost treated with fiber bundle model (FBM), in the framework of local load sharing rule (LLS), were the breakdown mechanisms is controlled by different parameters. Almost tentative investigates only fiber failure process and neglects the effect of the matrix, as a second crucial component of composite. Effectively, quantification of fibers-matrix interactions is not generally clear. Furthermore, the diversity of composite intrinsic proprieties complicates this quantification. The originality of our investigations is to quantify all interactions between fibers and matrix in a single parameter. Likewise, this latter gives us a different results than the ones obtained with FBM where the interaction amplitude is neglected. Moreover, interaction decelerates the failure process; it subdivides the avalanche phenomena on two consecutive regimes separated by delaying duration. These results are more similar to the ones obtained regular fibers substations. Therefore any fiber have its own elongation, the mean fiber elongation produces an elastic energy. The temporal variation of these latter presents two extremum separated by time duration; at this separated period, the material self-rearranging. These results are more similar to the ones obtained by the regular fibers substitution process.

Publisher

IOP Publishing

Subject

General Medicine

Reference42 articles.

1. The effect of the substitution on the failure process in heterogeneous materials: Fiber bundle model study;Sbiaai;Eur. Phys. J. Plus,2019

2. A general strength model for fiber bundle composites under transverse tension or interlaminar shear;Li;Compos. Part A Appl. Sci. Manuf.,2019

3. The diffusion geometry of fibre bundles: Horizontal diffusion maps;Gao;Appl. Comput. Harmon. Anal,2019

4. Theoretical elastic tensile behavior of muscle fiber bundles in traumatic loading events;Tamura;Clin. Biomech.,2019

5. Statistical physics of fracture, friction, and earthquakes;Kawamura;Rev. Mod. Phys.,2012

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