An interaction integral method for 3D curved cracks in nonhomogeneous materials with complex interfaces
DOI10.1016/j.ijsolstr.2010.04.027zbMath1194.74317OpenAlexW2023174212MaRDI QIDQ994750
Hongjun Yu, Huaping Wu, Shanyi Du, Lin-Zhi Wu, Li-Cheng Guo
Publication date: 13 September 2010
Published in: International Journal of Solids and Structures (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.ijsolstr.2010.04.027
interfaceinteraction integralfinite element method (FEM)stress intensity factors (SIFs)nonhomogeneous materialsthree-dimensional (3D)
Brittle fracture (74R10) Stress concentrations, singularities in solid mechanics (74G70) Finite element methods applied to problems in solid mechanics (74S05)
Related Items (5)
Cites Work
- Three-dimensional mixed-mode stress intensity factors for cracks in functionally graded materials using enriched finite elements
- Stress-intensity factors for surface cracks in functionally graded materials under mode-I thermomechanical loading
- Stress intensity factors for three-dimensional cracks in functionally graded materials using enriched finite elements
- T-stress in orthotropic functionally graded materials: Lekhnitskii and Stroh formalisms
- The interaction of mode I crack with multi-inclusions in a three-phase model
- Domain integral formulation for stress intensity factor computation along curved three-dimensional interface cracks
- Domain integrals for axisymmetric interface crack problems
- An element-free Galerkin method for three-dimensional fracture mechanics
- Axisymmetric crack problem in bonded materials with a graded interfacial region
- T-stress, mixed-mode stress intensity factors, and crack initiation angles in functionally graded materials: A unified approach using the interaction integral method.
- Conservation laws in nonhomogeneous plane elastostatics
- On the computation of mixed-mode stress intensity factors in functionally graded materials
- Three-dimensional fracture analysis of FGM coatings under thermomechanical loading
- Boundary element method for \(J\)-integral and stress intensity factor computations in three-dimensional interface cracks
- Investigation of mixed-mode stress intensity factors for nonhomogeneous materials using an interaction integral method
- Consistent Formulations of the Interaction Integral Method for Fracture of Functionally Graded Materials
- A Mixed-Mode Crack Analysis of Isotropic Solids Using Conservation Laws of Elasticity
- The Element Free Galerkin method for dynamic propagation of arbitrary 3-D cracks
- Extended finite element method for three-dimensional crack modelling
- Non-planar 3D crack growth by the extended finite element and level sets-Part I: Mechanical model
- Stress intensity factors for three-dimensional surface cracks using enriched finite elements
- Mode decomposition of three-dimensional mixed-mode cracks via two-state integrals
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