The weldability of Inconel 625 produced by Laser Powder Bed Fusion (L-PBF) is evaluated. The evaluation is based on the metallurgical characterization of a bead-on-plate weld made by the Laser Beam Welding (LBW) process. The characterization included optical and electron microscopy, and the EDS and EBSD techniques were employed to analyse the chemical composition and the microstructure of the bead. The results reported in the present work confirmed that the fusion zone is well penetrated, and it is not possible to detect any significant welding defect, such as cracks or porosity. Laser Beam Welding is thus deemed a promising technique to weld Ni-based superalloys obtained through additive manufacturing.

Investigation On The Microstructure Of Laser Beam Welded IN625 Produced Via Additive Manufacturing

Spiller, Saveria;Ferro, Paolo
2026

Abstract

The weldability of Inconel 625 produced by Laser Powder Bed Fusion (L-PBF) is evaluated. The evaluation is based on the metallurgical characterization of a bead-on-plate weld made by the Laser Beam Welding (LBW) process. The characterization included optical and electron microscopy, and the EDS and EBSD techniques were employed to analyse the chemical composition and the microstructure of the bead. The results reported in the present work confirmed that the fusion zone is well penetrated, and it is not possible to detect any significant welding defect, such as cracks or porosity. Laser Beam Welding is thus deemed a promising technique to weld Ni-based superalloys obtained through additive manufacturing.
2026
   Laser Welding and Repair of Superalloys
   ELAPSE
   Italian Ministry of University and Research
   Europeo - PRIN22
   CUP C53D23001630006
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/3588319
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