A finite element-based method for accurately determining stress intensity factors (SIF) for interacting arbitrarily-shaped 3D cracks is proposed. The method utilizes the superposition principle and does not require fine meshes or singular elements. The foundation of the new method is that disturbances in an elastic stress field due to neighbouring cracks can be captured accurately by splitting the total stress at the crack tip element into two components, singular and non-singular terms. Computed results are in very good agreement with the existing numerical solutions. In addition, novel SIF solutions for various crack configurations are presented, and the conversion of size-independent solutions to the small crack model, the √area paramete...
Three-dimensional (3D) finite element analyses (FEA) of clamped single-edge notched tension (SENT) s...
This paper presents a finite element analysis of calculating stress intensity factors for Mode I, Mo...
This research explores the modeling of a cracked structure using a linear elastic finite element met...
A finite element-based method for accurately determining stress intensity factors (SIF) for interact...
In the present work a method is proposed to predict stress intensity factors (SIFs) of strongly inte...
The exact analytical approach for stress intensity factor calculation for an arbitrary shape mode I ...
The 2D stress intensity factor at the tip of a crack plays an essential role in the models of brittl...
International audienceThe 2D stress intensity factor at the tip of a crack plays an essential role i...
International audienceThe 2D stress intensity factor at the tip of a crack plays an essential role i...
International audienceThe 2D stress intensity factor at the tip of a crack plays an essential role i...
International audienceThe 2D stress intensity factor at the tip of a crack plays an essential role i...
The 2D stress intensity factor at the tip of a crack plays an essential role in the models of brittl...
International audienceThe 2D stress intensity factor at the tip of a crack plays an essential role i...
For longitudinally cracked cylindrical components experiencing arbitrary stress variation across the...
International audienceThe 2D stress intensity factor at the tip of a crack plays an essential role i...
Three-dimensional (3D) finite element analyses (FEA) of clamped single-edge notched tension (SENT) s...
This paper presents a finite element analysis of calculating stress intensity factors for Mode I, Mo...
This research explores the modeling of a cracked structure using a linear elastic finite element met...
A finite element-based method for accurately determining stress intensity factors (SIF) for interact...
In the present work a method is proposed to predict stress intensity factors (SIFs) of strongly inte...
The exact analytical approach for stress intensity factor calculation for an arbitrary shape mode I ...
The 2D stress intensity factor at the tip of a crack plays an essential role in the models of brittl...
International audienceThe 2D stress intensity factor at the tip of a crack plays an essential role i...
International audienceThe 2D stress intensity factor at the tip of a crack plays an essential role i...
International audienceThe 2D stress intensity factor at the tip of a crack plays an essential role i...
International audienceThe 2D stress intensity factor at the tip of a crack plays an essential role i...
The 2D stress intensity factor at the tip of a crack plays an essential role in the models of brittl...
International audienceThe 2D stress intensity factor at the tip of a crack plays an essential role i...
For longitudinally cracked cylindrical components experiencing arbitrary stress variation across the...
International audienceThe 2D stress intensity factor at the tip of a crack plays an essential role i...
Three-dimensional (3D) finite element analyses (FEA) of clamped single-edge notched tension (SENT) s...
This paper presents a finite element analysis of calculating stress intensity factors for Mode I, Mo...
This research explores the modeling of a cracked structure using a linear elastic finite element met...