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Application of Ultrasonic Spraying Technology in Anti-corrosion Coating of Float Glass

2025-06-13

Latest company news about Application of Ultrasonic Spraying Technology in Anti-corrosion Coating of Float Glass

Application of Ultrasonic Spraying Technology in Anti-corrosion Coating of Float Glass

 

Float glass is a glass product widely used in various fields. Its production process involves floating molten glass in a high-temperature tin bath to form a flat, smooth and uniform glass ribbon. Float glass has advantages such as good optical properties, high transparency and high surface quality. However, it also has some disadvantages, including being susceptible to corrosion and stains from humid environments and pollutants. In order to improve the corrosion resistance and aesthetics of float glass, an anti-corrosion coating is usually applied to the surface of float glass.

latest company news about Application of Ultrasonic Spraying Technology in Anti-corrosion Coating of Float Glass  0

Float glass is a glass product widely used in various fields. Its production process involves floating molten glass in a high-temperature tin bath to form a flat, smooth and uniform glass ribbon. Float glass has advantages such as good optical properties, high transparency and high surface quality. However, it also has some disadvantages, including being susceptible to corrosion and stains from humid environments and pollutants. In order to improve the corrosion resistance and aesthetics of float glass, an anti-corrosion coating is usually applied to the surface of float glass.

 

What is the advantage of ultrasonic spray coating?

Uniform coating: The droplet size produced by ultrasonic atomization is uniform and controllable, ensuring the consistency of coating thickness and density. High material utilization rate: The velocity of the atomized droplets is low and the direction is controllable, which reduces the diffusion and deposition of materials in the air and improves the coverage of the glass surface. Simple equipment: Ultrasonic atomization does not require heating or pressurizing the liquid, reducing the complexity and cost of the equipment. Low energy consumption: The electrical and gas energy required for ultrasonic atomization is minimal, thus saving energy and reducing environmental pollution. Ultrasonic spraying technology has been successfully applied to float glass anti-corrosion coatings. The dedicated system for float glass anti-corrosion coatings can spray water-soluble organic acid solutions (such as maleic acid, maleic anhydride, adipic acid, etc.) online to protect the glass surface from corrosion and stains caused by humid environments and pollutants during transportation and storage.

latest company news about Application of Ultrasonic Spraying Technology in Anti-corrosion Coating of Float Glass  1

Uniform coating: The droplet size produced by ultrasonic atomization is uniform and controllable, ensuring the consistency of coating thickness and density. High material utilization rate: The velocity of the atomized droplets is low and the direction is controllable, which reduces the diffusion and deposition of materials in the air and improves the coverage of the glass surface. Simple equipment: Ultrasonic atomization does not require heating or pressurizing the liquid, reducing the complexity and cost of the equipment. Low energy consumption: The electrical and gas energy required for ultrasonic atomization is minimal, thus saving energy and reducing environmental pollution. Ultrasonic spraying technology has been successfully applied to float glass anti-corrosion coatings. The dedicated system for float glass anti-corrosion coatings can spray water-soluble organic acid solutions (such as maleic acid, maleic anhydride, adipic acid, etc.) online to protect the glass surface from corrosion and stains caused by humid environments and pollutants during transportation and storage.

 

Uniform coating: The droplet size produced by ultrasonic atomization is uniform and controllable, ensuring the consistency of coating thickness and density. High material utilization rate: The velocity of the atomized droplets is low and the direction is controllable, which reduces the diffusion and deposition of materials in the air and improves the coverage of the glass surface. Simple equipment: Ultrasonic atomization does not require heating or pressurizing the liquid, reducing the complexity and cost of the equipment. Low energy consumption: The electrical and gas energy required for ultrasonic atomization is minimal, thus saving energy and reducing environmental pollution. Ultrasonic spraying technology has been successfully applied to float glass anti-corrosion coatings. The dedicated system for float glass anti-corrosion coatings can spray water-soluble organic acid solutions (such as maleic acid, maleic anhydride, adipic acid, etc.) online to protect the glass surface from corrosion and stains caused by humid environments and pollutants during transportation and storage.

 

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