Additive manufacturing (AM), e.g., laser powder bed fusion (LPBF) technique, has become a powerful manufacturing process for producing metallic components with the advantages of design freedom, net-shape-forming flexibility, product customization, and reduced lead time to market. Nickel-based superalloys is one of the most significant alloy families used at elevated temperatures. Nickel-based superalloys commonly contain up to 10 more alloying elements like chromium, aluminum, cobalt, tungsten, molybdenum, titanium, and so on. The great capacity of the nickel-based superalloys for high-temperature operation is ensured by the well-tailored microstructures with the assistance of carefully doped alloying elements, and the intently developed co...
A new class of crack-resistant nickel-based superalloy containing high ′ fraction is studied for the...
Additive manufacturing of metals has received a lot of attention in the last decade as this family o...
Ni-base superalloys are essential materials for high-temperature applications in the energy and aero...
Additive manufacturing (AM), e.g., laser powder bed fusion (LPBF) technique, has become a powerful m...
Nickel-based superalloys, an alloy system bases on nickel as the matrix element with the addition of...
The performance of superalloy materials at high temperatures is what makes gas turbine technology po...
The additive manufacturability of nickel-based superalloys for laser powder bed fusion (LPBF) techno...
IN738LC belongs to the class of γ’-precipitation strengthened nickel-base superalloys which are used...
The susceptibility of nickel-based superalloys to processing-induced crack formation during laser po...
Metal additive manufacturing (AM) is a disruptive technology which has the potential to deliver nume...
The additive manufacturing (AM) of the gamma' precipitation strengthened Ni-base superalloys still r...
The fabrication of gamma prime (γ′) strengthened nickel-based superalloys by additive manufacturing ...
Powder Bed Fusion (PBF) techniques constitute a family of Additive Manufacturing (AM) processes, whi...
In this work, we investigated the viability of established hot cracking models for numerically based...
An experimental printable gamma \u27-strengthened nickel-based superalloy, MAD542, is proposed. By p...
A new class of crack-resistant nickel-based superalloy containing high ′ fraction is studied for the...
Additive manufacturing of metals has received a lot of attention in the last decade as this family o...
Ni-base superalloys are essential materials for high-temperature applications in the energy and aero...
Additive manufacturing (AM), e.g., laser powder bed fusion (LPBF) technique, has become a powerful m...
Nickel-based superalloys, an alloy system bases on nickel as the matrix element with the addition of...
The performance of superalloy materials at high temperatures is what makes gas turbine technology po...
The additive manufacturability of nickel-based superalloys for laser powder bed fusion (LPBF) techno...
IN738LC belongs to the class of γ’-precipitation strengthened nickel-base superalloys which are used...
The susceptibility of nickel-based superalloys to processing-induced crack formation during laser po...
Metal additive manufacturing (AM) is a disruptive technology which has the potential to deliver nume...
The additive manufacturing (AM) of the gamma' precipitation strengthened Ni-base superalloys still r...
The fabrication of gamma prime (γ′) strengthened nickel-based superalloys by additive manufacturing ...
Powder Bed Fusion (PBF) techniques constitute a family of Additive Manufacturing (AM) processes, whi...
In this work, we investigated the viability of established hot cracking models for numerically based...
An experimental printable gamma \u27-strengthened nickel-based superalloy, MAD542, is proposed. By p...
A new class of crack-resistant nickel-based superalloy containing high ′ fraction is studied for the...
Additive manufacturing of metals has received a lot of attention in the last decade as this family o...
Ni-base superalloys are essential materials for high-temperature applications in the energy and aero...