Improvements in hardness and wear resistance of thermally sprayed WC-Co nanocomposite coatings
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference7 articles.
1. Near-nanostructured WC-18 pct Co coatings with low amounts of non-WC carbide phase: Part I. Synthesis and characterization
2. Influence of heat treatment on the abrasive wear behaviour of HVOF sprayed WC–Co coatings
3. The effects of fuel chemistry and feedstock powder structure on the mechanical and tribological properties of HVOF thermal-sprayed WC–Co coatings with very fine structures
4. Factors controlling decarburization in HVOF sprayed nano-WC/Co hardcoatings
5. Nanostructured WC-Co Coatings from Different Feedstock Powders
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1. Achieving ultra-low coefficient of friction of FeCoNiW multi-bonded composite coatings by Co-coated WC;Tribology International;2024-09
2. Improved tribological performance and enhanced tensile adhesive strength of micro- to near-nanocrystalline WC-17 wt. %Co coatings sprayed using HVOF;Ceramics International;2024-04
3. Tribological performance and corrosion resistance of HVOF WC-17 wt. % Co coatings: influence of micro-to-nanoscale morphology;The International Journal of Advanced Manufacturing Technology;2023-08-26
4. Structure and properties of WC-10Co4Cr coatings obtained with high velocity atmospheric plasma spraying;Metal Working and Material Science;2023-06-13
5. Characteristics of reduced graphene oxide (rGO) mixed HVOF-sprayed nanostructured coatings;Surface Engineering;2023-04-03
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