Directed Energy Deposition of the commercial intermetallic Ti-48Al-2Cr-2Nb alloy was investigated. The CLAD® process is dependent on multiple parameters, which were successfully optimised through several experiments, including series of beads, small blocks, and massive blocks, under argon atmosphere. The use of adapted temperature management leads to massive blocks manufacturing that bear no apparent macroscopic defects, such as cracks, which are generally observed in this brittle material due to strong temperature cycling during the manufacturing. The microstructure and geometrical parameters were characterised by scanning electron microscopy (SEM). This process generates an ultra-fine and anisotropic microstructure, which is restored to a...
© 2019 Johnson JacobTitanium aluminide (mainly TiAl) based intermetallic alloys have superior mechan...
In order to improve Ti6Al4V high-temperature resistance and its tribological properties, the deposit...
Directed Energy Deposition Additive Manufacturing (DED-AM) is transformative for the production of l...
International audienceLaser Metal Deposition of the commercial intermetallic Ti-47Al-2Cr-2Nb (at%) a...
Direct energy deposition (DED) via laser processing, operated under standard conditions with a local...
Lightweight titanium aluminides (TiAl, ρ = 3.9 – 4.1 g/cm3) gain in importance as high temperature s...
The directed energy deposition (DED) process can be employed to build net shape components or protot...
Additive Manufacturing (AM) is an attractive way of producing parts of intermetallic titanium alloys...
TiAl-based intermetallic alloys have come to the fore as the preferred alloys for high-temperature a...
International audienceA Ti-47Al-2Cr-2Nb (at.%) material was fabricated using two laser-based methods...
In this paper, laser powder-bed fusion (L-PBF) additive manufacturing (AM) with a high-temperature i...
peer reviewedAdditive manufacturing processes such as laser cladding (LC) or selective laser melting...
International audienceThis paper presents the results of functionally graded Ti6Al4V-Mo alloy manufa...
β-solidifying TiAl alloys are considered as promising candidate materials for high-temperature struc...
AbstractA direct laser metal deposition (DLMD) technology with co-axial powder injection is used to ...
© 2019 Johnson JacobTitanium aluminide (mainly TiAl) based intermetallic alloys have superior mechan...
In order to improve Ti6Al4V high-temperature resistance and its tribological properties, the deposit...
Directed Energy Deposition Additive Manufacturing (DED-AM) is transformative for the production of l...
International audienceLaser Metal Deposition of the commercial intermetallic Ti-47Al-2Cr-2Nb (at%) a...
Direct energy deposition (DED) via laser processing, operated under standard conditions with a local...
Lightweight titanium aluminides (TiAl, ρ = 3.9 – 4.1 g/cm3) gain in importance as high temperature s...
The directed energy deposition (DED) process can be employed to build net shape components or protot...
Additive Manufacturing (AM) is an attractive way of producing parts of intermetallic titanium alloys...
TiAl-based intermetallic alloys have come to the fore as the preferred alloys for high-temperature a...
International audienceA Ti-47Al-2Cr-2Nb (at.%) material was fabricated using two laser-based methods...
In this paper, laser powder-bed fusion (L-PBF) additive manufacturing (AM) with a high-temperature i...
peer reviewedAdditive manufacturing processes such as laser cladding (LC) or selective laser melting...
International audienceThis paper presents the results of functionally graded Ti6Al4V-Mo alloy manufa...
β-solidifying TiAl alloys are considered as promising candidate materials for high-temperature struc...
AbstractA direct laser metal deposition (DLMD) technology with co-axial powder injection is used to ...
© 2019 Johnson JacobTitanium aluminide (mainly TiAl) based intermetallic alloys have superior mechan...
In order to improve Ti6Al4V high-temperature resistance and its tribological properties, the deposit...
Directed Energy Deposition Additive Manufacturing (DED-AM) is transformative for the production of l...