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    Home > Coatings News > Paints and Coatings Market > The energy saving effect of industrial furnaces of high temperature infrared radiation coatings is remarkable

    The energy saving effect of industrial furnaces of high temperature infrared radiation coatings is remarkable

    • Last Update: 2021-01-17
    • Source: Internet
    • Author: User
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    China Coatings Online News Information: At present,
    sustainable development of China's industry is facing serious challenges from energy and environmental factors. On the one hand, China's per capita energy consumption is less than half of the world average, on the other hand, China's industrial energy consumption accounts for 70% of the country's total energy consumption, far higher than the world average of 40%. Zhisheng Weihua high temperature coating experts put forward that industrial heating furnaces are also commonly used in production and the largest amount of energy consumption equipment, its energy consumption accounts for about 60% of the country's industrial energy consumption. There are many factors affecting the energy consumption of industrial furnaces, but energy-saving measures are generally inseparable from equipment improvement, residual heat utilization and the use of new technologies, new processes and other important aspects.
    High-temperature infrared radiation coating industrial furnace energy-saving effect is remarkable
    industrial kilns, furnaces, boilers, blast furnaces, usually burning operating temperature of more than 1000 degrees C, furnace structure materials are mainly a variety of refractable materials such as high brick, clay brick, pouring Materials, ceramic fibers, etc., they are not only the structural materials of the furnace body, but also insulation materials, but also participate in the radiation heat exchange process, their thermal radiation properties and insulation properties determine the thermal efficiency of the kiln, so that a single material is difficult to achieve a solid structure, high insulation and high radiation heating performance requirements. Domestic high-tech energy-saving coatings professional Zhisheng company, Beijing Zhisheng Weihua Chemical Co., Ltd. for the above high temperature furnace body work, after thousands of tests and specific furnace body use certificate, the use of ZS-1061 Zhisheng Weihua high temperature far infrared radiation paint, Through the coating infrared radiation, improve the heat exchange in the furnace, improve the temperature field strength and uniformity in the furnace, make the fuel combustion more fully, increase the thermal efficiency, greatly improve the thermal efficiency of refrater-resistant materials, reduce energy consumption, save energy and extend the life of the lining in the furnace.
    high temperature-resistant far-infrared radiation coating is a high temperature, strong radiation rate, corrosion resistance and high wear resistance of special functions of energy-saving coatings, is Beijing Zhisheng Weihua Chemical Co., Ltd. using nanotechnology, organic -inorganic IPN technology after many years of development. Zhisheng brand ZS-1061 high temperature far infrared radiation coating non-toxic tasteless, infrared band radiation rate ε>0.9, temperature resistance of 1800 degrees C, coating thermal impact capacity: excellent heat shock resistance, coating does not crack, do not fall off, high temperature oxidation corrosion, do not pollute the environment, long storage period, good bonding performance, long service life, easy construction, simple operation.
    High-temperature infrared radiation energy-saving technology is to apply high-temperature infrared radiation coating materials to the inner wall and heat absorption surface of the furnace, strengthen the radiation transmission in the furnace, improve the energy efficiency and production capacity of industrial furnaces, extend the service life of industrial kilns, and ultimately achieve energy conservation and emission reduction and reduce production costs. The infrared radiation rate of a single oxide varies greatly with the spectrum, and it is difficult to have a high radiation rate in a wide continuous band. ZS-1061 high temperature-resistant far-infrared radiation coatings are incorporated with rare earth elements to increase the activity of reactants, and are also the preferred and best material for doping and stabilizing coating structures.
    Zhisheng Weihua ZS-1061 high temperature far infrared radiation coating due to different metals, rare earth oxides at different temperatures have different radiation rates, the choice of a variety of materials is to play the material at the best temperature radiation, make up for the difference between different materials at different temperatures radiation, play radiation differences, play the overall combined effect of the material, improve the overall coating far-infrared radiation energy-saving performance. The design of the coating material and the radiation concept of composite technology have injected new vitality into the infrared coating, so that the composition of the infrared radiation material gradually develops from a single substance or mixture to a composite material.
    ZS far-infrared radiation coating through the surface of absorption and radiation, can better preserve heat, that is, the use of far-infrared radiation principle, heat diffusion and increase the temperature, so as to achieve energy-saving effect, is widely used in industry, the effect is good, and low cost, is the ideal energy-saving products. The ZS-1061 is more energy-saving with high temperature and far-outer radiation coatings, and when applied to metal substrates, the heat absorption and heat exchange capacity of substrates can be significantly improved. After coating the surface of the high aluminum brick refracing material, the heat storage thermostat was increased by 7% under the experimental conditions of 600 degrees C and the heat storage was increased by 21% at 1200 degrees C. Zhisheng Weihua ZS-1061 high temperature long-infrared radiation coating energy-saving advantages are far from the general industrial
    can be compared.
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