Alloy 718 samples were fabricated by electron beam melting (EBM) additive manufacturing process. The work focused on systematic investigation of response of the material to various thermal post-treatments, involving hot isostatic pressing (HIPing), solution treatment (ST) and two-step aging, to tailor post-treatment procedure for EBM-built Alloy 718. Results showed that HIPing at lowered temperature can be used for attaining desired defect closure while preserving grain size. Subjecting the material to ST, with or without prior HIPing, mainly caused precipitation of δ phase at the grain boundaries with prior HIPing decreasing the extent of δ phase precipitation. Moreover, results suggest that the utility of ST, with prior HIPing, could be d...
Successive thermal cycling (STC) during multi-track and multi-layer manufacturing of Alloy 718 using...
Defects in electron beam melting (EBM) manufactured Alloy 718 are inevitable to some extent, and are...
Electron beam melting (EBM) is a powder bed additive manufacturing process where a powder material i...
Alloy 718 samples were fabricated by electron beam melting (EBM) additive manufacturing process. The...
Additive manufacturing (AM) has emerged as a disruptive technology and it is a vital part in the pre...
Electron beam melting (EBM), a metal additive manufacturing (AM) process, has received considerable ...
Electron beam melting (EBM) produced Alloy 718 was subjected to thermal post-treatment involving hot...
Electron beam melting (EBM) of Alloy 718 is of rapidly growing interest as it allows cost-effective ...
Electron beam melting (EBM) is gaining rapid popularity for production of complex customized parts. ...
Electron beam melting (EBM) was used to produce Alloy 718 specimens with different microstructures (...
Electron beam melting (EBM) has emerged as an important additive manufacturing technique. In this st...
Although additive manufacturing (AM) of difficult-to-machine materials can open new design possibili...
Alloy 718 finds application in gas turbine engine components, such as turbine disks, compressor blad...
Additive manufacturing (AM) of Ni-based superalloys such as Alloy 718 may obviate the need for diffi...
Successive thermal cycling (STC) during multi-track and multi-layer manufacturing of Alloy 718 using...
Defects in electron beam melting (EBM) manufactured Alloy 718 are inevitable to some extent, and are...
Electron beam melting (EBM) is a powder bed additive manufacturing process where a powder material i...
Alloy 718 samples were fabricated by electron beam melting (EBM) additive manufacturing process. The...
Additive manufacturing (AM) has emerged as a disruptive technology and it is a vital part in the pre...
Electron beam melting (EBM), a metal additive manufacturing (AM) process, has received considerable ...
Electron beam melting (EBM) produced Alloy 718 was subjected to thermal post-treatment involving hot...
Electron beam melting (EBM) of Alloy 718 is of rapidly growing interest as it allows cost-effective ...
Electron beam melting (EBM) is gaining rapid popularity for production of complex customized parts. ...
Electron beam melting (EBM) was used to produce Alloy 718 specimens with different microstructures (...
Electron beam melting (EBM) has emerged as an important additive manufacturing technique. In this st...
Although additive manufacturing (AM) of difficult-to-machine materials can open new design possibili...
Alloy 718 finds application in gas turbine engine components, such as turbine disks, compressor blad...
Additive manufacturing (AM) of Ni-based superalloys such as Alloy 718 may obviate the need for diffi...
Successive thermal cycling (STC) during multi-track and multi-layer manufacturing of Alloy 718 using...
Defects in electron beam melting (EBM) manufactured Alloy 718 are inevitable to some extent, and are...
Electron beam melting (EBM) is a powder bed additive manufacturing process where a powder material i...