Direct energy deposition (DED) via laser processing, operated under standard conditions with a localised shielding gas, is a potential method for the manufacture of the γ-TiAl alloy. The freedom of operation, which includes the production of components via in situ melting of elemental powders, makes this method economically attractive. The goal of this study was to optimise the mass flow rates that lead to gamma phase formation during laser in situ melting of Ti and Al. A 3 kW Nd:YAG laser was used to melt Ti and Al elemental powders. Single clads were produced on Ti6Al4V substrates under localised argon shielding. The samples were heat-treated to promote microstructural homogenization and to provide thermal stress relief, after which...
For the manufacturing of low pressure turbine blades, titanium aluminides are used as structural mat...
For manufacturing turbine parts for the aeronautical industry, lightweight structural materials like...
A laser powder bed fusion process operating at elevated temperatures is introduced capable of fabric...
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...
Producing alloys via in-situ laser alloying approach is becoming very easy and a topical issue in th...
Selective laser melting (SLM) and laser cladding were developed in the late 1990s as economic layer-...
Directed Energy Deposition of the commercial intermetallic Ti-48Al-2Cr-2Nb alloy was investigated. T...
A thin-wall structure composed of Ti-6Al-4V has been deposited using direct laser deposition (DLD) ...
A major part of laser additive manufacturing focuses on the fabrication of metallic parts for applic...
Selective laser melting is a promising powder-bed-based additive manufacturing technique for titaniu...
Selective laser melting is a promising powder-bed-based additive manufacturing technique for titaniu...
γ-TiAl alloys are well-suited for aerospace applications due to low density, high temperature streng...
peer reviewedAdditive manufacturing processes such as laser cladding (LC) or selective laser melting...
LaserCUSING® is a selective laser melting (SLM) process that is capable of manufacturing parts by me...
For the manufacturing of low pressure turbine blades, titanium aluminides are used as structural mat...
For manufacturing turbine parts for the aeronautical industry, lightweight structural materials like...
A laser powder bed fusion process operating at elevated temperatures is introduced capable of fabric...
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...
Producing alloys via in-situ laser alloying approach is becoming very easy and a topical issue in th...
Selective laser melting (SLM) and laser cladding were developed in the late 1990s as economic layer-...
Directed Energy Deposition of the commercial intermetallic Ti-48Al-2Cr-2Nb alloy was investigated. T...
A thin-wall structure composed of Ti-6Al-4V has been deposited using direct laser deposition (DLD) ...
A major part of laser additive manufacturing focuses on the fabrication of metallic parts for applic...
Selective laser melting is a promising powder-bed-based additive manufacturing technique for titaniu...
Selective laser melting is a promising powder-bed-based additive manufacturing technique for titaniu...
γ-TiAl alloys are well-suited for aerospace applications due to low density, high temperature streng...
peer reviewedAdditive manufacturing processes such as laser cladding (LC) or selective laser melting...
LaserCUSING® is a selective laser melting (SLM) process that is capable of manufacturing parts by me...
For the manufacturing of low pressure turbine blades, titanium aluminides are used as structural mat...
For manufacturing turbine parts for the aeronautical industry, lightweight structural materials like...
A laser powder bed fusion process operating at elevated temperatures is introduced capable of fabric...