Atmospheric plasma spraying of WC coatings is typically characterized by increased decarburization, with a consequent reduction of their wear resistance. Indeed, high temperature and oxidizing atmosphere promote the appearance of brittle crystalline and amorphous phases. However, by using a high helium flow rate in a process gas mixture, plasma spraying may easily be optimized by increasing the velocity of sprayed particles and by reducing the degree of WC dissolution. To this purpose, a comparative study was performed at different spray conditions. Both WC-Co powder and coating phases were characterized by X-ray difraction. Their microstructure was investigated by scanning electron microscopy. Mechanical, dry sliding friction, and wear tests were also performed. The wear resistance was highly related to both microstructural and mechanical properties. The experimental data confirmed that high-quality cermet coatings could be manufactured by using optimized Ar-He mixtures. Their enhanced hardness, toughness, and wear resistance resulted in coatings comparable to those sprayed by high velocity oxygen-fuel.

Tribological Characterization of WC-Co Plasma Sprayed Coatings / Giovanni Di, Girolamo; Luciano, Pilloni; Pulci, Giovanni; Marra, Francesco. - In: JOURNAL OF THE AMERICAN CERAMIC SOCIETY. - ISSN 0002-7820. - STAMPA. - 92:5(2009), pp. 1118-1124. [10.1111/j.1551-2916.2009.03023.x]

Tribological Characterization of WC-Co Plasma Sprayed Coatings

PULCI, Giovanni;MARRA, FRANCESCO
2009

Abstract

Atmospheric plasma spraying of WC coatings is typically characterized by increased decarburization, with a consequent reduction of their wear resistance. Indeed, high temperature and oxidizing atmosphere promote the appearance of brittle crystalline and amorphous phases. However, by using a high helium flow rate in a process gas mixture, plasma spraying may easily be optimized by increasing the velocity of sprayed particles and by reducing the degree of WC dissolution. To this purpose, a comparative study was performed at different spray conditions. Both WC-Co powder and coating phases were characterized by X-ray difraction. Their microstructure was investigated by scanning electron microscopy. Mechanical, dry sliding friction, and wear tests were also performed. The wear resistance was highly related to both microstructural and mechanical properties. The experimental data confirmed that high-quality cermet coatings could be manufactured by using optimized Ar-He mixtures. Their enhanced hardness, toughness, and wear resistance resulted in coatings comparable to those sprayed by high velocity oxygen-fuel.
2009
atmospheric plasma spraying; cermet coatings; high velocity oxygen fuel
01 Pubblicazione su rivista::01a Articolo in rivista
Tribological Characterization of WC-Co Plasma Sprayed Coatings / Giovanni Di, Girolamo; Luciano, Pilloni; Pulci, Giovanni; Marra, Francesco. - In: JOURNAL OF THE AMERICAN CERAMIC SOCIETY. - ISSN 0002-7820. - STAMPA. - 92:5(2009), pp. 1118-1124. [10.1111/j.1551-2916.2009.03023.x]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/402399
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