© 2018 Elsevier B.V. Hastelloy X is the trademark for a nickel-based, high-temperature superalloy that is increasingly applied in gas turbine engines because of its exceptional combination of oxidation resistance and high-temperature strength. The superalloy suffers from hot cracking susceptibility, however, particularly when processed using additive manufacturing and laser powder bed fusion (LPBF). This paper systematically studies for the first time the effect of post-treatment hot isostatic processing (HIP) on the microstructure and mechanical properties of LPBF-fabricated Hastelloy X, with an emphasis on fatigue performance. The experimental results demonstrate that despite the very small number of remaining gas-filled micropores due to...
This study reports the crack-free fabrication of a new high gamma prime precipitation hardened Ni-ba...
There are many challenges associated with the laser powder bed (LPBF) manufacture of high γ' content...
The fabrication of gamma prime (γ′) strengthened nickel-based superalloys by additive manufacturing ...
Hastelloy X is the trademark for a nickel-based, high-temperature superalloy that is increasingly ap...
Nickel-based superalloys such as Hastelloy X (HX) are widely used in gas turbine engine applications...
Additive manufacturing (AM) offers an unprecedented freedom of design and enables production of comp...
The fatigue crack initiation of as built (AB) laser powder bed fusion (LPBF) AlSi10Mg is highly affe...
Hastelloy X (HX) is a Ni-based superalloy which suffers from high crack susceptibility during the la...
In this study, the effect of post-process heat treatment on the microstructure and mechanical prope...
Hastelloy X (HX) is a Ni-based superalloy which is employed to produce gas turbine and gas-cooled re...
Nickel-based superalloys such as Hastelloy X (HX) are widely used in gas turbine engines for their e...
The post-processing on the additively manufactured component is of huge interest as the key to tailo...
Additive manufacturing (AM) of metal components is increasingly used in high performance application...
Laser powder bed fusion (LPBF) is a proven additive manufacturing (AM) technology for producing meta...
IN738LC belongs to the class of γ’-precipitation strengthened nickel-base superalloys which are used...
This study reports the crack-free fabrication of a new high gamma prime precipitation hardened Ni-ba...
There are many challenges associated with the laser powder bed (LPBF) manufacture of high γ' content...
The fabrication of gamma prime (γ′) strengthened nickel-based superalloys by additive manufacturing ...
Hastelloy X is the trademark for a nickel-based, high-temperature superalloy that is increasingly ap...
Nickel-based superalloys such as Hastelloy X (HX) are widely used in gas turbine engine applications...
Additive manufacturing (AM) offers an unprecedented freedom of design and enables production of comp...
The fatigue crack initiation of as built (AB) laser powder bed fusion (LPBF) AlSi10Mg is highly affe...
Hastelloy X (HX) is a Ni-based superalloy which suffers from high crack susceptibility during the la...
In this study, the effect of post-process heat treatment on the microstructure and mechanical prope...
Hastelloy X (HX) is a Ni-based superalloy which is employed to produce gas turbine and gas-cooled re...
Nickel-based superalloys such as Hastelloy X (HX) are widely used in gas turbine engines for their e...
The post-processing on the additively manufactured component is of huge interest as the key to tailo...
Additive manufacturing (AM) of metal components is increasingly used in high performance application...
Laser powder bed fusion (LPBF) is a proven additive manufacturing (AM) technology for producing meta...
IN738LC belongs to the class of γ’-precipitation strengthened nickel-base superalloys which are used...
This study reports the crack-free fabrication of a new high gamma prime precipitation hardened Ni-ba...
There are many challenges associated with the laser powder bed (LPBF) manufacture of high γ' content...
The fabrication of gamma prime (γ′) strengthened nickel-based superalloys by additive manufacturing ...