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Industrial Energy

Author: Site Editor     Publish Time: 2025-02-21      Origin: Site

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Steam turbine: Steam turbine blades work under harsh working conditions such as high temperature, high pressure, and high-speed air flow, which are prone to wear and corrosion. Spraying ceramic coatings or cermet coatings on the surface of blades, such as chromium carbide coating, alumina coating, etc., can improve the high temperature resistance, corrosion resistance and erosion resistance of the blades, prolong the service life of the blades, and improve the operation efficiency and reliability of the steam turbine.
Boiler: The heating surface of the boiler is exposed to high temperature, corrosion and wear for a long time. Thermal spraying corrosion-resistant alloy coatings, such as nickel-based alloy coatings, can effectively prevent high-temperature corrosion; Spraying wear-resistant coatings, such as tungsten carbide coating, can resist the erosion and wear of fly ash and other particles, reduce the leakage and pipe burst accidents on the heating surface, and improve the safety and economy of the boiler.
Generator: The shaft, bearing and other components of the generator need good wear resistance and friction reduction during operation. Thermal spraying of solid lubricating coatings such as molybdenum disulfide and boron nitride can reduce the coefficient of friction between components, reduce wear, improve the efficiency and stability of generators, and reduce maintenance costs.
Solar energy: On the heat absorption plate of the solar collector, the thermal spray selective absorption coating can improve the absorption efficiency of solar energy, reduce the thermal emissivity, and thus improve the thermal collection performance of the collector.
Wind energy: The blades of wind turbines withstand wind and sand erosion, rain erosion, and ultraviolet radiation in outdoor environments. Thermal spray protective coatings can improve the corrosion, wear and aging resistance of blade surfaces.
Nuclear energy: In nuclear reactors, some components need to have good resistance to high temperatures, corrosion, and radiation. Thermal spraying ceramic coatings, intermetallic compound coatings, etc., can provide effective protection for nuclear reactor components, improve the reliability and safety of components, and ensure the stable operation of nuclear reactors.
Heating furnace: The lining of the furnace, the furnace tube and other components of the heating furnace work in a high-temperature environment, and the thermal spraying ceramic coating and high-temperature thermal insulation coating can improve the thermal insulation performance of the furnace lining, reduce heat loss, and improve the thermal efficiency of the furnace; At the same time, it protects the furnace tube from high-temperature oxidation and corrosion, and prolongs the service life of the furnace tube.
Gas turbines: Gas turbine combustion chambers, turbine blades, and other components are subjected to extremely high temperatures and pressures. Thermal spray thermal barrier coatings, such as yttrium oxide-stabilized zirconia coatings, can effectively reduce the surface temperature of components, improve the high temperature resistance of components, and allow gas turbines to operate at higher temperatures, thereby improving the thermal efficiency and power output of gas turbines.


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