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- W63407580 abstract "This chapter discusses the fundamentals of thermal spraying combines particle melting, quenching, and consolidation in a single operation. The focus is on High-velocity oxy-fuel (HVOF). This spraying technology, facilitated by an achievement of metallurgical and chemical homogeneity, is used to fabricate a variety of simple preform shapes in addition to coatings. Thermal spraying was originally developed to produce corrosion-resistant zinc coatings, as well as coatings for other refractory metals. Thermally sprayed coatings are also widely used in the electronics industries, power generation plants, marine gas turbine engines, ceramics industries, and printing industries. HVOF spraying is the most significant development in the thermal spray industry since the development of the original plasma spray. HVOF is characterized by high particle velocities and relatively low thermal energy when compared to plasma spraying. The applications of HVOF have expanded from the initial use of tungsten carbide coatings to include different coatings that provide resistance to wear or erosion/corrosion. The extremely brief exposure of the precursor nanocrystalline particles to the high temperatures of the HVOF process appears to preserve the nanocrystalline structure in most of the particles deposited on the substrate. In general, the quality of the HVOF-sprayed coating is determined by a combination of various processes." @default.
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- W63407580 date "2000-01-01" @default.
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- W63407580 title "Synthesis of nanostructured coatings by high-velocity oxygen-fuel thermal spraying" @default.
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- W63407580 doi "https://doi.org/10.1016/b978-012513760-7/50006-x" @default.
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