Microstructure and microsegregation of an inconel 625 weld overlay produced on steel pipes by the cold metal transfer technique

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Abstract

The aim of this work was to investigate the development of microstructure and variations in chemical composition in commercial Inconel 625 coatings on a ferritic-pearlitic steel overlaid by the CMT method. The investigation showed that microsegregation occurring during the weld overlay solidification makes the dendrite cores to be richer in Ni, Fe and Cr and the interdendritic regions in Mo and Nb. Niobium shows the strongest tendency to segregation during solidification; molybdenum tends to segregate less and chromium has the lowest tendency to segregation. Although Inconel 625 is a solid solution strengthened alloy, Nb and Mo-rich phases are formed in the interdendritic regions of weld overlays.

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Rozmus-Górnikowska, M., Cieniek, Blicharski, M., & Kusiński, J. (2014). Microstructure and microsegregation of an inconel 625 weld overlay produced on steel pipes by the cold metal transfer technique. Archives of Metallurgy and Materials, 59(3), 1081–1084. https://doi.org/10.2478/amm-2014-0185

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