This study focuses on the influence of defect density on the sizes of the critical defects responsible for fatigue failure in AlSi7Mg0.6 alloy produced by Selective Laser Melting. Samples having similar microstructures and different defect densities were obtained combining Hot Isostatic Pressing and T6 treatments. Defect populations were analyzed using X-ray tomography, and fatigue tests were performed to determine the critical defect distributions. A method allowing for the prediction of these distributions from the CT scan data was then proposed, and discussed with regard to the actual distributions obtained from the fatigue tests
Laser powder bed fusion is an additive manufacturing process characterized by different advantages l...
International audienceThis work shows the impact of microstructure and defect on the fatigue life of...
The AlSi7Mg (A357) alloy is a suitable material to be used in different industrial applications. Eve...
This study focuses on the influence of defect density on the sizes of the critical defects responsib...
This study focuses on the influence of defect density on the sizes of the critical defects responsib...
This study focuses on the influence of defects on the fatigue behavior of AlSi7Mg0.6 alloy produced ...
Here we analyse the relationship between the monotonic and cyclic behaviour of cylindrical AlSi10Mg ...
International audienceA modelling strategy is proposed to evaluate the influence of defect morpholog...
While the adoption of metal additive manufacturing (AM) is growing exponentially owing to its wide r...
Ability to predict the fatigue resistance of parts produced by additive manufacturing (AM) is a very...
Lack of fusion defects and porosity are inevitable characteristics of additive manufacturing and the...
Being able to predict the fatigue resistance of parts produced by additive manufacturing (AM) is a v...
Laser powder bed fusion is an additive manufacturing process characterized by different advantages l...
International audienceThis work shows the impact of microstructure and defect on the fatigue life of...
The AlSi7Mg (A357) alloy is a suitable material to be used in different industrial applications. Eve...
This study focuses on the influence of defect density on the sizes of the critical defects responsib...
This study focuses on the influence of defect density on the sizes of the critical defects responsib...
This study focuses on the influence of defects on the fatigue behavior of AlSi7Mg0.6 alloy produced ...
Here we analyse the relationship between the monotonic and cyclic behaviour of cylindrical AlSi10Mg ...
International audienceA modelling strategy is proposed to evaluate the influence of defect morpholog...
While the adoption of metal additive manufacturing (AM) is growing exponentially owing to its wide r...
Ability to predict the fatigue resistance of parts produced by additive manufacturing (AM) is a very...
Lack of fusion defects and porosity are inevitable characteristics of additive manufacturing and the...
Being able to predict the fatigue resistance of parts produced by additive manufacturing (AM) is a v...
Laser powder bed fusion is an additive manufacturing process characterized by different advantages l...
International audienceThis work shows the impact of microstructure and defect on the fatigue life of...
The AlSi7Mg (A357) alloy is a suitable material to be used in different industrial applications. Eve...