Welcome to the official website of Guangzhou Sanxin Metal Technology Co., Ltd.!
Spraying equipment SPRAY EQUIPMENT
Application site of the SX-80 plasma equipment in the semiconductor chip industry
The Guangzhou Sanxin SX-80 plasma equipment is being applied at semiconductor chip manufacturing sites. This plasma equipment is used to apply insulating coatings on coating machines, as well as high-temperature-resistant zirconia coatings on lithography and etching machines. These coatings effectively enhance the equipment’s resistance to high temperatures and corrosion, improve its stability, and extend its service life, thereby providing higher-quality equipment services for the chip manufacturing industry.
SX-80 plasma equipment is used by a semiconductor wafer manufacturing equipment manufacturer in Anhui.
The Guangzhou Sanxin SX-80 plasma equipment has been applied by a semiconductor wafer manufacturing equipment manufacturer in Anhui, where it is used to spray high-temperature and corrosion-resistant ceramic coatings. The Guangzhou Sanxin SX-80 plasma equipment, with its excellent performance and highly efficient spraying results, has been successfully deployed in the company’s new equipment coating project. Plasma spraying technology enables uniform application of ceramic coatings onto equipment surfaces, enhancing their resistance to high temperatures and corrosion. This not only extends the service life of the equipment and improves production efficiency but also brings greater economic benefits to the enterprise.
Plasma equipment applies a titanium suboxide coating that is wear-resistant, corrosion-resistant, and capable of withstanding high temperatures.
Guangzhou Sanxin Company uses plasma equipment to coat titanium suboxide. Titanium suboxide is an environmentally friendly electrode coating material that boasts the high hardness and high melting point characteristic of ceramic materials. Due to its high oxygen evolution potential, titanium suboxide electrodes are highly favorable for anodic oxidation and can be widely applied in electrocatalytic degradation of organic pollutants and leachate from solid waste, electrocatalytic treatment of phenol-containing wastewater, dyeing and printing wastewater treatment, oilfield wastewater treatment, hospital wastewater treatment, as well as in the electrolysis of seawater for hydrogen production, seawater desalination, electrolytic water disinfection, and ozone generation. Under conditions of high current density and high acidity, these electrodes do not passivate or corrode—thus outperforming graphite and titanium metals. They are particularly suitable as electrodes for zinc electrowinning, metal recovery, electrolytic manganese oxide production, metal foil manufacturing, and the recycling and treatment of etching solutions used in printed circuit board fabrication. Because electrolytes often contain strongly corrosive substances such as fluoride ions, conventional anodes tend to deteriorate rapidly. In contrast, titanium suboxide electrodes exhibit a high oxygen evolution overpotential, strong corrosion resistance, excellent wear resistance, and stable electrode dimensions. Consequently, titanium-based titanium suboxide electrodes have now been practically applied for corrosion protection of oil storage tanks, ships, docks, bridges, and reinforced concrete structures, as well as for cathodic protection of soils.
Motor bearing insulation coating—plasma spraying, SX-80 plasma spraying equipment
Characteristics of Plasma Spraying: It can spray a wide variety of coating materials, especially those with high melting points and refractory properties, such as refractory metals, ceramics, metal-ceramics, and other special functional materials. Inert gases can be selected as the working medium, reducing oxidative reactions of sprayed particles during flight. The coating exhibits high bonding strength and low porosity; fine coatings can be produced by precisely controlling process parameters.
Bearing Spray Insulating Coating Plasma SX-80 Spraying Equipment
SX-80 Plasma Coating Equipment This equipment was successfully developed based on the introduction and absorption of plasma spraying devices such as the PT-A3000 and METCO-9M. Its overall technical 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. All key components and instruments of the equipment are sourced from well-known brands such as Schneider, Omron, and Chint, ensuring the equipment’s stability and high efficiency. Equipment Design Operating Environment: Voltage: AC 380V ±10% Frequency: 50 Hz Temperature: -5°C to 40°C Relative Humidity: 50%-95%
Plasma Spraying Equipment for Bearing Insulating Ceramic Coatings
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 coatings exhibit high bonding strength and low porosity; fine coatings can be prepared by precisely controlling process parameters. The SX-80 Plasma Coating Equipment was developed based on the introduction and absorption of plasma spraying equipment such as PT-A3000 and METCO-9M. Its overall performance 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. All major components and instruments of the equipment are sourced from well-known brands such as Schneider, Omron, and Chint, ensuring stable and efficient operation. Equipment design operating environment: Voltage: AC 380V ±10% Frequency: 50 Hz Temperature: -5°C to 40°C Relative humidity: 50%-95%