4.7 Article

Laser cladding of Inconel 625-based composite coatings reinforced by porous chromium carbide particles

Journal

OPTICS AND LASER TECHNOLOGY
Volume 94, Issue -, Pages 6-14

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.optlastec.2017.03.007

Keywords

Direct diode laser; Laser cladding; Metal matrix composite; Chromium carbide; Inconel 625; Erosive wear

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Inconel 625/Cr3C2 composite coatings were produced via a laser cladding process using Cr3C2 reinforcing particles presenting an open porosity of about 60%. A laser cladding system used consisted of a direct diode laser with a rectangular beam spot and the top-hat beam profile, and an off-axis powder injection nozzle. The microstructural characteristics of the coatings was investigated with the use of scanning electron microscopy and X-ray diffraction. A complete infiltration of the porous structure of Cr3C2 reinforcing particles and low degree of their dissolution have been achieved in a very narrow range of processing parameters. Crack-free composite coatings having a uniform distribution of the Cr3C2 particles and their fraction up to 36 vol% were produced. Comparative erosion tests between the Inconel 625/Cr3C2 composite coatings and the metallic Inconel 625 coatings were performed following the ASTM G 76 standard test method. It was found that the composite coatings have a significantly higher erosion resistance to that of metallic coatings for both 30 degrees and 90 degrees impingement angles. Additionally, the erosion performances of composite coatings were similar for both the normal and oblique impact conditions. The erosive wear behaviour of composite coatings is discussed and related to the unique microstructure of these coatings. (C) 2017 Elsevier Ltd. All rights reserved.

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