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Spray coating processing SPRAY PROCESSING
Plasma Copper Plate Molybdenum Powder Spraying and Processing for SX-80—Thermal Spraying of Metal Materials
Characteristics of Plasma Spraying: (1) It can spray a wide variety of coating materials, especially those with high melting points and refractory materials such as refractory metals, ceramics, metal-ceramics, and other special functional materials. (2) Inert gases can be selected as the working medium, reducing oxidative reactions of sprayed particles during flight. (3) The coating exhibits high bonding strength and low porosity; fine coatings can be prepared by precisely controlling process parameters.
Product Description
Plasma Copper Plate Molybdenum Powder Spraying and Processing for SX-80—Thermal Spraying of Metal Materials
Introduction to Plasma Spraying Technology
Plasma spraying is a thermal spraying process that uses a plasma arc as the heat source and primarily employs sprayed powder materials.
Steps of Plasma Spraying
During plasma spraying, a direct-current arc is generated between the cathode and the anode (nozzle). This arc heats and ionizes the introduced working gas into a high-temperature plasma, which is then ejected from the nozzle to form a plasma jet. Powder particles are fed into the plasma jet by a carrier gas, where they melt, accelerate, and are sprayed onto the substrate material to form a coating. The working gas can be argon, nitrogen, or a mixture of these gases with hydrogen added; alternatively, a mixed gas of argon and helium can also be used.
Characteristics of Plasma Spraying
(1) Capable of spraying a variety of coating materials, especially high-melting-point and refractory materials such as refractory metals, ceramics, metal-ceramics, and other special functional materials;
(2) An inert gas can be selected as the working medium to reduce oxidative reactions of the sprayed particles during their flight.
(3) The coating exhibits high bonding strength and low porosity; fine coatings can be prepared by controlling process parameters.
SX-80 Plasma Coating Equipment
It was successfully developed based on the introduction and absorption of plasma spraying equipment such as the PT-A3000 and METCO-9M, and its overall equipment level is comparable to that of the METCO-9M. The equipment consists of the following systems: ① main power supply ② control cabinet ③ transfer box ④ powder feeder ⑤ spray gun ⑥ heat exchanger and piping connections. The equipment’s key components and instruments all utilize products from well-known brands such as Schneider, Omron, and Chint, ensuring the equipment’s stability and efficiency.
Equipment design operating environment:
Voltage: AC 380V ±10% Frequency: 50 Hz Temperature: -5 to 40℃ Relative humidity: 50-95%






Prev: SX-80 Plasma-Sealed Shaft Alumina-Titanium Coating Thermal Spray Coating Metal Material
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Related products
Spraying equipment SPRAY EQUIPMENT
Plasma Copper Plate Molybdenum Powder Spraying and Processing for SX-80—Thermal Spraying of Metal Materials
Characteristics of Plasma Spraying: (1) It can spray a wide variety of coating materials, especially those with high melting points and refractory materials such as refractory metals, ceramics, metal-ceramics, and other special functional materials. (2) Inert gases can be selected as the working medium, reducing oxidative reactions of sprayed particles during flight. (3) The coating exhibits high bonding strength and low porosity; fine coatings can be prepared by precisely controlling process parameters.
Product Description
Plasma Copper Plate Molybdenum Powder Spraying and Processing for SX-80—Thermal Spraying of Metal Materials
Introduction to Plasma Spraying Technology
Plasma spraying is a thermal spraying process that uses a plasma arc as the heat source and primarily employs sprayed powder materials.
Steps of Plasma Spraying
During plasma spraying, a direct-current arc is generated between the cathode and the anode (nozzle). This arc heats and ionizes the introduced working gas into a high-temperature plasma, which is then ejected from the nozzle to form a plasma jet. Powder particles are fed into the plasma jet by a carrier gas, where they melt, accelerate, and are sprayed onto the substrate material to form a coating. The working gas can be argon, nitrogen, or a mixture of these gases with hydrogen added; alternatively, a mixed gas of argon and helium can also be used.
Characteristics of Plasma Spraying
(1) Capable of spraying a variety of coating materials, especially high-melting-point and refractory materials such as refractory metals, ceramics, metal-ceramics, and other special functional materials;
(2) An inert gas can be selected as the working medium to reduce oxidative reactions of the sprayed particles during their flight.
(3) The coating exhibits high bonding strength and low porosity; fine coatings can be prepared by controlling process parameters.
SX-80 Plasma Coating Equipment
It was successfully developed based on the introduction and absorption of plasma spraying equipment such as the PT-A3000 and METCO-9M, and its overall equipment level is comparable to that of the METCO-9M. The equipment consists of the following systems: ① main power supply ② control cabinet ③ transfer box ④ powder feeder ⑤ spray gun ⑥ heat exchanger and piping connections. The equipment’s key components and instruments all utilize products from well-known brands such as Schneider, Omron, and Chint, ensuring the equipment’s stability and efficiency.
Equipment design operating environment:
Voltage: AC 380V ±10% Frequency: 50 Hz Temperature: -5 to 40℃ Relative humidity: 50-95%






Prev: SX-80 Plasma-Sealed Shaft Alumina-Titanium Coating Thermal Spray Coating Metal Material
Online Quotation