Micromechanical evaluation of failure models for unidirectional fiber-reinforced composites

Author:

Arefi Azam12ORCID,van der Meer Frans P2,Forouzan Mohammad Reza1ORCID,Silani Mohammad1ORCID,Salimi Mahmoud13

Affiliation:

1. Department of Mechanical Engineering, Isfahan University of Technology, Isfahan, Iran

2. Faculty of Civil Engineering and Geosciences, Delft University of Technology, GA Delft, The Netherlands

3. Faculty of Engineering, University of Alberta, Canada

Abstract

In this paper, micromechanical simulations are employed to evaluate the performance of the Tsai–Wu and Hashin failure criteria for fiber-reinforced composites, especially in stress states whose experimental reproduction is complicated. Micromechanical responses are generated using a finite element model of a representative volume element, in which only the matrix material experiences damage and the fibers are assumed to be elastic. Micromechanical simulations of basic load cases are used to calibrate macrolevel criteria. Finally, the response of the micromodel and macromodels is compared for various load combinations. Despite a good agreement between Tsai–Wu criterion predictions and micromodel results in a wide range of stress states, some stress combinations are highlighted for which the strength is not predicted accurately. Additionally, accuracy of the Hashin criterion suffers from ignoring the influence of stress in fiber direction on matrix failure.

Publisher

SAGE Publications

Subject

Materials Chemistry,Mechanical Engineering,Mechanics of Materials,Ceramics and Composites

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