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Spray coating processing SPRAY PROCESSING

HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
+
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process

HVOF Supersonic Flame Process


HVOF Supersonic Flame Process: In supersonic flame spraying, oxygen and aviation kerosene are mixed in a premixing system and then burned in a high-pressure combustion chamber. The resulting flame jet, combined with high-pressure air passing through a Laval nozzle, generates a high-temperature, high-velocity flame stream that heats metal-ceramic powders to a semi-molten state.

Key words :

工艺

涂层

喷涂

火焰

超音速

材料

工件

所以

熔化

产生

Request for quotation Phone: 020-84836251

Product Description

 

HVOF Supersonic Flame Process

 

Supersonic Flame Spraying: Oxygen and aviation kerosene are mixed in a premixing system and then burned in a high-pressure combustion chamber. The flame jet generated during combustion, combined with high-pressure air passing through a Laval nozzle, produces a high-temperature, high-velocity flame stream. This flame stream heats metal-ceramic powders to a semi-molten state and propels the partially molten powder onto the substrate surface at a velocity of 2000 m/s, thereby forming a high-quality, wear-resistant coating with excellent bonding strength and density.

The primary coating material used in supersonic flame spraying is WC-Co metal ceramic. The bonding strength and density of supersonic flame-sprayed coatings are higher than those of arc-sprayed coatings. Consequently, the resulting coatings exhibit superior wear resistance. Moreover, since the workpiece temperature during spraying remains below 20°C, no thermal distortion occurs in the workpiece.

The primary coatings used in supersonic flame spraying include tungsten carbide coatings, nickel-chromium-chromium carbide coatings, cobalt-based alloy coatings, nickel-chromium-tungsten carbide coatings, and various cemented carbide coatings.

The hardness of supersonic flame spraying is controllable within the range of HRC 50–70.

Bond strength between the supersonic flame-sprayed coating and the substrate: ≥80 MPa.

High-temperature resistance of supersonic flame-sprayed coatings: controllable between 600℃ and 1200℃.

Wear resistance of supersonic flame-sprayed coatings: It is 10 to 40 times that of 20# steel.

Characteristics of supersonic flame: The spraying temperature is below 120℃, and no thermal deformation occurs.

 

Prev: Undertaking on-site construction of lithium-ion battery industry equipment, plasma cladding coatings, and nano-ceramic coatings.

Next: Powder mixing machinery for spraying tungsten carbide

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Spraying equipment SPRAY EQUIPMENT

HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
HVOF Supersonic Flame Process
+
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process
  • HVOF Supersonic Flame Process

HVOF Supersonic Flame Process


HVOF Supersonic Flame Process: In supersonic flame spraying, oxygen and aviation kerosene are mixed in a premixing system and then burned in a high-pressure combustion chamber. The resulting flame jet, combined with high-pressure air passing through a Laval nozzle, generates a high-temperature, high-velocity flame stream that heats metal-ceramic powders to a semi-molten state.

Key words:

工艺

涂层

喷涂

火焰

超音速

材料

工件

所以

熔化

产生

Request for quotation E-mail:CarrieFeng07@outlook.com

Product Description

 

HVOF Supersonic Flame Process

 

Supersonic Flame Spraying: Oxygen and aviation kerosene are mixed in a premixing system and then burned in a high-pressure combustion chamber. The flame jet generated during combustion, combined with high-pressure air passing through a Laval nozzle, produces a high-temperature, high-velocity flame stream. This flame stream heats metal-ceramic powders to a semi-molten state and propels the partially molten powder onto the substrate surface at a velocity of 2000 m/s, thereby forming a high-quality, wear-resistant coating with excellent bonding strength and density.

The primary coating material used in supersonic flame spraying is WC-Co metal ceramic. The bonding strength and density of supersonic flame-sprayed coatings are higher than those of arc-sprayed coatings. Consequently, the resulting coatings exhibit superior wear resistance. Moreover, since the workpiece temperature during spraying remains below 20°C, no thermal distortion occurs in the workpiece.

The primary coatings used in supersonic flame spraying include tungsten carbide coatings, nickel-chromium-chromium carbide coatings, cobalt-based alloy coatings, nickel-chromium-tungsten carbide coatings, and various cemented carbide coatings.

The hardness of supersonic flame spraying is controllable within the range of HRC 50–70.

Bond strength between the supersonic flame-sprayed coating and the substrate: ≥80 MPa.

High-temperature resistance of supersonic flame-sprayed coatings: controllable between 600℃ and 1200℃.

Wear resistance of supersonic flame-sprayed coatings: It is 10 to 40 times that of 20# steel.

Characteristics of supersonic flame: The spraying temperature is below 120℃, and no thermal deformation occurs.

 

Prev: Undertaking on-site construction of lithium-ion battery industry equipment, plasma cladding coatings, and nano-ceramic coatings.

Next: Powder mixing machinery for spraying tungsten carbide

Online Quotation

Action
Submit a request for quotation