The number of available materials for Laser Powder Bed Fusion is still limited due to the poor processability of many standard alloys. In particular, the lack of high-strength aluminium alloys, widely used in aerospace and automotive industries, remains a big issue for the spread of beam-based additive manufacturing technologies. In this study, a novel high-strength aluminium alloy for high temperature applications having good processability was developed. The design of the alloy was done based on the chemical composition of the widely used EN AW2618. This Al-Cu-Mg-Ni-Fe alloy was modified with Ti and B in order to promote the formation of TiB2 nuclei in the liquid phase able to stimulate heterogeneous nucleation of grains and to decrease t...
Abstract: A key-factor for the industrial implementation of beam-based additive manufacturing techno...
Abstract: A key-factor for the industrial implementation of beam-based additive manufacturing techno...
Abstract: A key-factor for the industrial implementation of beam-based additive manufacturing techno...
The number of available materials for Laser Powder Bed Fusion is still limited due to the poor proce...
The number of available materials for Laser Powder Bed Fusion is still limited due to the poor proce...
The number of available materials for Laser Powder Bed Fusion is still limited due to the poor proce...
The number of available materials for Laser Powder Bed Fusion is still limited due to the poor proce...
The number of available materials for Laser Powder Bed Fusion is still limited due to the poor proce...
Only few medium: and high-strength aluminium alloys can be processed by Laser Powder Bed Fusion with...
Only few medium: and high-strength aluminium alloys can be processed by Laser Powder Bed Fusion with...
Only few medium: and high-strength aluminium alloys can be processed by Laser Powder Bed Fusion with...
Only few medium: and high-strength aluminium alloys can be processed by Laser Powder Bed Fusion with...
Only few medium: and high-strength aluminium alloys can be processed by Laser Powder Bed Fusion with...
Abstract: A key-factor for the industrial implementation of beam-based additive manufacturing techno...
Abstract: A key-factor for the industrial implementation of beam-based additive manufacturing techno...
Abstract: A key-factor for the industrial implementation of beam-based additive manufacturing techno...
Abstract: A key-factor for the industrial implementation of beam-based additive manufacturing techno...
Abstract: A key-factor for the industrial implementation of beam-based additive manufacturing techno...
The number of available materials for Laser Powder Bed Fusion is still limited due to the poor proce...
The number of available materials for Laser Powder Bed Fusion is still limited due to the poor proce...
The number of available materials for Laser Powder Bed Fusion is still limited due to the poor proce...
The number of available materials for Laser Powder Bed Fusion is still limited due to the poor proce...
The number of available materials for Laser Powder Bed Fusion is still limited due to the poor proce...
Only few medium: and high-strength aluminium alloys can be processed by Laser Powder Bed Fusion with...
Only few medium: and high-strength aluminium alloys can be processed by Laser Powder Bed Fusion with...
Only few medium: and high-strength aluminium alloys can be processed by Laser Powder Bed Fusion with...
Only few medium: and high-strength aluminium alloys can be processed by Laser Powder Bed Fusion with...
Only few medium: and high-strength aluminium alloys can be processed by Laser Powder Bed Fusion with...
Abstract: A key-factor for the industrial implementation of beam-based additive manufacturing techno...
Abstract: A key-factor for the industrial implementation of beam-based additive manufacturing techno...
Abstract: A key-factor for the industrial implementation of beam-based additive manufacturing techno...
Abstract: A key-factor for the industrial implementation of beam-based additive manufacturing techno...
Abstract: A key-factor for the industrial implementation of beam-based additive manufacturing techno...