Numerical Analysis of Fracture Behavior of Functionally Graded Materials using 3D-XFEM

Author:

Benhamena Ali1,Fatima Benaoum1,Foudil Khelil1,Baltach Abdelghani2,Chaouch Mohamed Ikhlef1

Affiliation:

1. Laboratory LPQ3M, BP 763 , University of Mascara , Mascara , Algeria

2. Department of Mechanical Engineering , University of Tiaret , Algeria

Abstract

Abstract This paper presents the numerical evaluation of mixed stress intensity factors (SIFs) and non-singular terms of William's series (T-stress) of functionally graded materials (FGMs) using three-dimensional extended finite element method (3D-XFEM). Four-point bending specimen with crack perpendicular to material gradation have been used in this investigation in order to study the effect of some parameters (crack position, crack size, specimen thickness) on the failure of FGMs materials. The fracture parameters (KI KII, phase angle ψ and T-stress) obtained by the present simulation are compared with available experimental and numerical results. An excellent correlation was found of the 3D-XFEM simulations with those available in the literature. From the numerical results, a fitting procedure is performed in order to propose an analytical formulation and subsequently are validated against the 3D-XFEM results.

Publisher

Walter de Gruyter GmbH

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