Hastelloy X (HX) is a Ni-based superalloy which suffers from high crack susceptibility during the laser powder bed fusion (LPBF) process. In this work, the microstructure of as-built HX samples was rigorously investigated to understand the main mechanisms leading to crack formation. The microstructural features of as-built HX samples consisted of very fine dendrite architectures with dimensions typically less than 1 µm, coupled with the formation of sub-micrometric carbides, the largest ones were mainly distributed along the interdendritic regions and grain boundaries. From the microstructural analyses, it appeared that the formation of intergranular carbides provided weaker zones, which combined with high thermal residual stresses resul...
Numerous challenges persist with the additive manufacturing of high γ′ containing Ni-based superallo...
Ni-based superalloy components for high-temperature applications rely on the long term stability of ...
The Ni-based Hastelloy X (HX) superalloy is widely used in aero-engine components because of its exc...
Hastelloy X (HX) is a Ni-based superalloy which suffers from high crack susceptibility during the la...
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 engine applications...
Nickel-based superalloys such as Hastelloy X (HX) are widely used in gas turbine engines for their e...
Laser powder bed fusion (LPBF) is a proven additive manufacturing (AM) technology for producing meta...
Hastelloy X is the trademark for a nickel-based, high-temperature superalloy that is increasingly ap...
© 2018 Elsevier B.V. Hastelloy X is the trademark for a nickel-based, high-temperature superalloy th...
Nickel-based superalloys such as Hastelloy X (HX) are widely used in gas turbine engines for their e...
One of the well-known AM techniques is laser powder-bed fusion (LPBF), which enables engineers to be...
In this study,microstructure and mechanical characterization of as-built Hastelloy X (HX) samples pr...
Numerous challenges persist with the additive manufacturing of high γ′ containing Ni-based superallo...
Ni-based superalloy components for high-temperature applications rely on the long term stability of ...
The Ni-based Hastelloy X (HX) superalloy is widely used in aero-engine components because of its exc...
Hastelloy X (HX) is a Ni-based superalloy which suffers from high crack susceptibility during the la...
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 engine applications...
Nickel-based superalloys such as Hastelloy X (HX) are widely used in gas turbine engines for their e...
Laser powder bed fusion (LPBF) is a proven additive manufacturing (AM) technology for producing meta...
Hastelloy X is the trademark for a nickel-based, high-temperature superalloy that is increasingly ap...
© 2018 Elsevier B.V. Hastelloy X is the trademark for a nickel-based, high-temperature superalloy th...
Nickel-based superalloys such as Hastelloy X (HX) are widely used in gas turbine engines for their e...
One of the well-known AM techniques is laser powder-bed fusion (LPBF), which enables engineers to be...
In this study,microstructure and mechanical characterization of as-built Hastelloy X (HX) samples pr...
Numerous challenges persist with the additive manufacturing of high γ′ containing Ni-based superallo...
Ni-based superalloy components for high-temperature applications rely on the long term stability of ...
The Ni-based Hastelloy X (HX) superalloy is widely used in aero-engine components because of its exc...