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The Microstructural Evolution of CM247LC Manufactured Through Laser Powder Bed Fusion

Authors :
Markanday, JFS
Christofidou, KA
Miller
Livera, ER
Jones, NG
Pickering, EJ
Li, W
Pardhi, Y
Jones, CN
Stone, HJ
Markanday, Jonathon [0000-0003-0509-8900]
Stone, Howard [0000-0002-9753-4441]
Apollo - University of Cambridge Repository
Source :
Markanday, J F S, Christofidou, K A, Miller, J R, Livera, E R, Jones, N G, Pickering, E J, Li, W, Pardhi, Y, Jones, C N & Stone, H J 2023, ' The Microstructural Evolution of CM247LC Manufactured Through Laser Powder Bed Fusion ', Metallurgical and Materials Transactions A . https://doi.org/10.1007/s11661-022-06939-0
Publication Year :
2023

Abstract

Numerous challenges persist with the additive manufacturing of high γ′ containing Ni-based superalloys such as CM247LC. Currently, significant cracking occurs during deposition of CM247LC components using laser powder bed fusion and during post-processing. Whilst post-deposition procedures seek to eliminate or minimise cracks, current procedures do not produce a microstructure suitable for service. This study systematically investigates the microstructural evolution of CM247LC manufactured using laser powder bed fusion following multiple post processing treatments. Phase and textural changes after each processing step were consistent with previous studies, although an additional Hf-rich and Cr-depleted segregation zone was identified along intercellular boundaries in the as-deposited condition, believed to be associated with the cracking propensity. Compositional modification of CM247LC including removal of Hf, reduction of C and addition of Nb eliminated the segregation zone but these changes were associated with an increased susceptibility to solidification and liquation cracking.

Details

Language :
English
Database :
OpenAIRE
Journal :
Markanday, J F S, Christofidou, K A, Miller, J R, Livera, E R, Jones, N G, Pickering, E J, Li, W, Pardhi, Y, Jones, C N & Stone, H J 2023, ' The Microstructural Evolution of CM247LC Manufactured Through Laser Powder Bed Fusion ', Metallurgical and Materials Transactions A . https://doi.org/10.1007/s11661-022-06939-0
Accession number :
edsair.doi.dedup.....bf670b7ce312efb37df0b070de25393a
Full Text :
https://doi.org/10.1007/s11661-022-06939-0