Laser metal deposition (LMD) additive manufacturing was utilized to fabricate a Cu‒9Al‒5Fe‒5Ni alloy with a hierarchical microstructure and superior mechanical strength. An optimized processing window of LMD was established for printing the alloy with a relative density greater than 99% using laser power of 1000–1500 W, scanning speed of 0.5–1.5 m/min and hatch space of 1.5–2 mm. The LMD-printed alloy exhibited a microstructure consisting of a martensite β* phase, a Widmanstätten α phase, Fe Al and NiAl nanoprecipitates, and nanotwins. The hierarchical microstructure comprising microscale cellular structures, sub-microscale grains, and nanoscale precipitates and twins was achieved. The cellular structures were formed by the martensite β* an...
Additive Manufacturing (AM) has been hailed as a disruptive technology, capable of altering signific...
Nanotwinned (nt)‐metals exhibit superior mechanical and electrical properties compared to their coar...
While laser-printed metals do not tend to match the mechanical properties and thermal stability of c...
Copper–chrome–niobium alloys exhibit excellent thermal and electrical properties combined with high ...
Designing a metastable microstructure with a coherent nano-sized precipitation phase in the matrix i...
Additive Manufacturing (AM), often known as 3D printing, is a technique for creating three-dimension...
International audienceA precipitation strengthenable high entropy alloy (HEA), Al0.3CoCrFeNi, was pr...
Laser rapid prototyping (LRP) of the Stellite12-B 4 C-Y 2 O 3 mixed powders produced a bottom layer;...
Copper alloys are commonly used in applications of marine and offshore industry. Traditional manufac...
Nickel–aluminium–bronze (NAB) alloys have been substantially utilised in aerospace, marine, and offs...
Additive Manufacturing using laser deposition has a great deal of attractiveness as a fabrication te...
Laser metal deposition (LMD) is one of the most important techniques in additive manufacturing (AM) ...
Through the incorporation of phosphorus (P) as a third component, an in-situ formation of a magnetic...
Nickel-based superalloys are substantially used in the manufacturing of boilers for ultra-supercriti...
The authors uses laser additive manufacturing (LAM) as a combinatorial method for synthesizing micro...
Additive Manufacturing (AM) has been hailed as a disruptive technology, capable of altering signific...
Nanotwinned (nt)‐metals exhibit superior mechanical and electrical properties compared to their coar...
While laser-printed metals do not tend to match the mechanical properties and thermal stability of c...
Copper–chrome–niobium alloys exhibit excellent thermal and electrical properties combined with high ...
Designing a metastable microstructure with a coherent nano-sized precipitation phase in the matrix i...
Additive Manufacturing (AM), often known as 3D printing, is a technique for creating three-dimension...
International audienceA precipitation strengthenable high entropy alloy (HEA), Al0.3CoCrFeNi, was pr...
Laser rapid prototyping (LRP) of the Stellite12-B 4 C-Y 2 O 3 mixed powders produced a bottom layer;...
Copper alloys are commonly used in applications of marine and offshore industry. Traditional manufac...
Nickel–aluminium–bronze (NAB) alloys have been substantially utilised in aerospace, marine, and offs...
Additive Manufacturing using laser deposition has a great deal of attractiveness as a fabrication te...
Laser metal deposition (LMD) is one of the most important techniques in additive manufacturing (AM) ...
Through the incorporation of phosphorus (P) as a third component, an in-situ formation of a magnetic...
Nickel-based superalloys are substantially used in the manufacturing of boilers for ultra-supercriti...
The authors uses laser additive manufacturing (LAM) as a combinatorial method for synthesizing micro...
Additive Manufacturing (AM) has been hailed as a disruptive technology, capable of altering signific...
Nanotwinned (nt)‐metals exhibit superior mechanical and electrical properties compared to their coar...
While laser-printed metals do not tend to match the mechanical properties and thermal stability of c...