Stochastic mixed mode stress intensity factor of center cracks FGM plates using XFEM

Author:

Lal Achchhe1,Markad Kanif1

Affiliation:

1. Mechanical Engineering Department, SVNIT, Surat, Gujarat 395007, India

Abstract

Extended finite element method (XFEM) and second-order perturbation technique (SOPT) were combinedly utilized using interaction integral (M-integral) through partition of unity method to find out the mean and variance of mixed mode stress intensity factor (MMSIF). Uncertain system parameters are considered in material properties, crack length, crack orientation, gradient coefficients in the present study. MMSIF in a numerical example with center crack is computed to validate the accuracy of the presented model. Finally, typical numerical results are presented to examine the different modulus ratios, crack angle, crack length, position of crack and tensile, shear and combined loadings with uncertain system properties on the MMSIF.

Funder

Government of India, Ministry of Defence R&;D organization, (DRDO) Directorate of Extramural Research and Intellectual Properties Rights

Publisher

World Scientific Pub Co Pte Lt

Subject

Computer Science Applications,Mechanics of Materials,General Materials Science,Modeling and Simulation,Numerical Analysis

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1. Meshless variational method applied to Mixed-mode dynamic stress intensity factors;Procedia Structural Integrity;2024

2. Free Vibration of Porous Functionally Graded Plate with Crack Using Stochastic XFEM Approach;Journal of Vibration Engineering & Technologies;2023-12-20

3. Fracture analysis of CNT reinforced FG structures under thermo-mechanical loading using XIGA framework;Mechanics of Advanced Materials and Structures;2023-01-06

4. Fracture analysis of functionally graded material reinforced with MWCNT;Journal of Micromechanics and Molecular Physics;2022-07-13

5. XFEM based thermo-elastic numerical analysis of FGMs with various discontinuities;Mechanics Based Design of Structures and Machines;2022-06-01

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