AbstractThe Extended Finite Element Method (xFEM) has been applied to simulate fatigue crack growth in an AA2024-T351 T welded joint, 5 mm thick, made by friction stir welding. The ABAQUS and Morfeo software has been used. Tensile fatigue loading (mean stress 10 MPa, stress ratio R=0) is applied to Tjoints with a configuration suitable for reinforced panels where both skin and the web (reinforcement or stiffener) is made of a high strength AA2024-T351. Crack is introduced in one edge of the skin base material. The properties of materials in the areas of joints and geometry measures of Tjoint are adopted from available experiments. Following numerical results are obtained: crack front coordinates (x, y, z) and stress intensity factors (KI, K...
The present work studies the crack behavior along the surface of the friction stir welded (FSW) join...
AbstractThe fatigue crack propagation (FCP) behavior was investigated in the interfacial boundary of...
In the present work, FSW of 2024-T351 Al alloy is characterised in terms of weld residual stress and...
In this work, fatigue crack propagation in thin-walled aluminium alloy structure with two friction s...
The Extended Finite Element Method (xFEM) has been applied to simulate fatigue crack growth in an AA...
AbstractThe Extended Finite Element Method (xFEM) has been applied to simulate fatigue crack growth ...
AbstractIn this work, fatigue crack propagation in thin-walled aluminium alloy structure with two fr...
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 friction stir welded joints in 2024-T3...
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 a friction stir welded (FSW) joint in ...
Present paper predicts fatigue life and crack growth behaviour of Al 2024-T351 friction stir welded ...
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...
The present work studies the crack behavior along the surface of the friction stir welded (FSW) join...
AbstractThe fatigue crack propagation (FCP) behavior was investigated in the interfacial boundary of...
In the present work, FSW of 2024-T351 Al alloy is characterised in terms of weld residual stress and...
In this work, fatigue crack propagation in thin-walled aluminium alloy structure with two friction s...
The Extended Finite Element Method (xFEM) has been applied to simulate fatigue crack growth in an AA...
AbstractThe Extended Finite Element Method (xFEM) has been applied to simulate fatigue crack growth ...
AbstractIn this work, fatigue crack propagation in thin-walled aluminium alloy structure with two fr...
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 friction stir welded joints in 2024-T3...
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 a friction stir welded (FSW) joint in ...
Present paper predicts fatigue life and crack growth behaviour of Al 2024-T351 friction stir welded ...
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...
The present work studies the crack behavior along the surface of the friction stir welded (FSW) join...
AbstractThe fatigue crack propagation (FCP) behavior was investigated in the interfacial boundary of...
In the present work, FSW of 2024-T351 Al alloy is characterised in terms of weld residual stress and...