Effect of carbon nanotubes on microhardness and adhesion strength of high-velocity oxy-fuel sprayed NiCr–Cr3C2 coatings
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Date
2022
Journal Title
Journal ISSN
Volume Title
Publisher
SAGE Publications Ltd
Abstract
NiCr–Cr<inf>3</inf>C<inf>2</inf> coatings are widely used for high temperature and tribological applications due to their high hardness, oxidation, and wear resistance properties. In the present investigation, an attempt is made to further enhance the hardness and adhesion strength of NiCr–Cr<inf>3</inf>C<inf>2</inf> coatings by reinforcing them with multi-walled carbon nanotubes. The carbon nanotubes (3–7 wt%) with varying weight percentages were mixed with NiCr–Cr<inf>3</inf>C<inf>2</inf> using a planetary ball rolling mill and sprayed on SA213 T12 (T12 alloy steel tube) using a high-velocity oxy-fuel spraying process. The microstructures of mixed powder, coating cross-section, and fractured coating surface were characterized using a scanning electron microscope while X-ray diffraction was used for phase identification in the fractured coating surface. The coated samples were subjected to microhardness and adhesion strength tests according to ASTM E384 and ASTM D4541-09 standards. Out of all coatings, NiCr–Cr<inf>3</inf>C<inf>2</inf>/7% carbon nanotube composite coating showed the lowest porosity of 1.17%, highest microhardness, and adhesion strength of 563.8 HV and 55.8 MPa, respectively. A fracture analysis after a pull-off adhesion test revealed adhesion failure for NiCr–Cr<inf>3</inf>C<inf>2</inf> coating and combined adhesion/cohesion failure for NiCr–Cr<inf>3</inf>C<inf>2</inf>/7% carbon nanotube composite coating. © IMechE 2021.
Description
Keywords
Adhesion, Alloy steel, Bond strength (materials), Composite coatings, Fuels, HVOF thermal spraying, Microhardness, Multiwalled carbon nanotubes (MWCN), Scanning electron microscopy, Sprayed coatings, Wear resistance, Carbon nanotubes composites, Coating surface, Composites coating, Effect of carbons, High hardness, High velocity oxy fuel, High-temperature application, Resistance properties, Tribological applications, X- ray diffractions, X ray diffraction
Citation
Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications, 2022, 236, 1, pp. 86-96
