The Interface Crack Between Dissimilar Anisotropic Composite Materials

Author:

Wang S. S.1,Choi I.1

Affiliation:

1. Department of Theoretical and Applied Mechanics, University of Illinois, Urbana, Ill. 61801

Abstract

The fundamental nature of an interface crack between dissimilar, strongly anisotropic composite materials under general loading is studied. Based on Lekhnitskii’s stress potentials and anisotropic elasticity theory, the formulation leads to a pair of coupled governing partial differential equations. The case of an interlaminar crack with fully opened surfaces is considered first. The problem is reduced to a Hilbert problem which can be solved in a closed form. Oscillatory stress singularities are observed in the asymptotic solution. To correct this unsatisfactory feature, a partially closed crack model is introduced. Formulation of the problem results in a singular integral equation which is solved numerically. The refined model exhibits an inverse square-root stress singularity for commonly used advanced fiber-reinforced composites such as a graphite-epoxy system. Extremely small contact regions are found for the partially closed interlaminar crack in a tensile field and, therefore, a simplified model is proposed for this situation. Physically meaningful fracture mechanics parameters such as stress intensity factors and energy release rates are defined. Numerical examples for a crack between θ and −θ graphite-epoxy composites are examined and detailed results are given.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

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2. A new FE modeling procedure to investigate the effects of toughening mechanisms on the fracture toughness of laminated composites;Theoretical and Applied Fracture Mechanics;2020-06

3. Literature Review on Cracks Located at the Interface of Dissimilar Materials (Interface Cracks);Fracture Mechanics of Electrically Passive and Active Composites with Periodic Cracking along the Interface;2020

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