In this work, fatigue crack propagation in thin-walled aluminium alloy structure with two friction stir welded T joints has been simulated numerically. Crack propagation in stiffened part of the structure between two friction stir welded T joints is analysed by using the eXtended Finite Element Method (XFEM), including software ABAQUS, as well as MORFEO, for modelling and results display. Tensile fatigue loading is applied, with stress ratio R = 0, and maximum stress sigma(max) = 10 MPa. Material properties (Al 2024-T351, as used in aeronautical industry) in different welded joints zones are adopted from available literature data. Following results are obtained by numerical analysis: stress-strain and displacement state in the structure, po...
This paper is concerned with the simulation of crack propagation in friction stir welded butt joints...
The present work studies the crack behavior along the surface of the friction stir welded (FSW) join...
Since Friction Stir Welding has been identified as a key technology for primary aerospace structures...
AbstractIn this work, fatigue crack propagation in thin-walled aluminium alloy structure with two fr...
AbstractThe Extended Finite Element Method (xFEM) has been applied to simulate fatigue crack growth ...
In this work, fatigue crack propagation in thin-walled aluminium alloy structure with two friction s...
The aim of the present work is to predict the fatigue life of friction stir welded joints in 2024-T3...
Fatigue crack propagation through a friction stir welded (FSW) joint of 2024-T351 Al alloy is invest...
The aim of the present work is to predict the fatigue life of a friction stir welded (FSW) joint in ...
Present paper predicts fatigue life and crack growth behaviour of Al 2024-T351 friction stir welded ...
The Extended Finite Element Method (xFEM) has been applied to simulate fatigue crack growth in an AA...
775-782Present paper predicts fatigue life and crack growth behaviour of Al 2024-T351 friction stir ...
In this work the fatigue crack propagation within the friction stir welded (FSW) joint of 2024-T351 ...
The present work simulates and predicts the fatigue crack growth in the friction stir welded (FSW) j...
AbstractThe fatigue crack propagation (FCP) behavior was investigated in the interfacial boundary of...
This paper is concerned with the simulation of crack propagation in friction stir welded butt joints...
The present work studies the crack behavior along the surface of the friction stir welded (FSW) join...
Since Friction Stir Welding has been identified as a key technology for primary aerospace structures...
AbstractIn this work, fatigue crack propagation in thin-walled aluminium alloy structure with two fr...
AbstractThe Extended Finite Element Method (xFEM) has been applied to simulate fatigue crack growth ...
In this work, fatigue crack propagation in thin-walled aluminium alloy structure with two friction s...
The aim of the present work is to predict the fatigue life of friction stir welded joints in 2024-T3...
Fatigue crack propagation through a friction stir welded (FSW) joint of 2024-T351 Al alloy is invest...
The aim of the present work is to predict the fatigue life of a friction stir welded (FSW) joint in ...
Present paper predicts fatigue life and crack growth behaviour of Al 2024-T351 friction stir welded ...
The Extended Finite Element Method (xFEM) has been applied to simulate fatigue crack growth in an AA...
775-782Present paper predicts fatigue life and crack growth behaviour of Al 2024-T351 friction stir ...
In this work the fatigue crack propagation within the friction stir welded (FSW) joint of 2024-T351 ...
The present work simulates and predicts the fatigue crack growth in the friction stir welded (FSW) j...
AbstractThe fatigue crack propagation (FCP) behavior was investigated in the interfacial boundary of...
This paper is concerned with the simulation of crack propagation in friction stir welded butt joints...
The present work studies the crack behavior along the surface of the friction stir welded (FSW) join...
Since Friction Stir Welding has been identified as a key technology for primary aerospace structures...