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ITO Glass Replacing Manual Indium Coating Ultrasonic Technology
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ITO Glass Replacing Manual Indium Coating Ultrasonic Technology

ITO Glass Replacing Manual Indium Coating Ultrasonic Technology

Item No: FSY-2010-OC
Ultrasonic External Indium Coating
Frequency: 20khz
Power: 300-1500w
Working Amplitude: 3-20μm
Input Voltage:220V±10%,50/60Hz, 6A
Generator: Digital Generator
Treatment Materials: ITO glass, aluminum, molybdenum, copper, indium, etc
 Description:

 

ITO glass (Indium Tin Oxide Glass) is a transparent conductive glass typically made of indium oxide material. Ultrasonic indium coating is a method of coating indium material on the surface of ITO glass using ultrasonic technology.
The purpose of coating indium is to form a conductive thin film on the surface of ITO glass to enhance its conductivity. ITO glass is widely used in various electronic devices and display devices, such as flat panel displays, solar cells, touch screens, etc. Coating indium can improve the conductivity of ITO glass, making it have lower resistance and higher transparency.

 

 

The process of ultrasonic indium coating usually involved the following steps: 

 

1. Prepare ITO glass: Select ITO glass of appropriate size and specifications as the substrate.
2. Prepare indium solution: Prepare a solution containing indium, usually a mixture of indium salts and solvents.
3. Ultrasonic indium coating: Place ITO glass in the coating equipment and evenly coat indium solution on the surface of ITO glass through an ultrasonic vibration horn. Ultrasonic vibration can cause coating materials to form small droplets and spray them evenly onto the surface.
4. Drying and Curing: After coating is completed, the indium material is dried and cured to form a uniform and reliable conductive coating on the surface of ITO glass.

 

 

Parameters:

 

   FSY-2010-OC

Parameters

Principle :

 

1.Preparation of coating solution: Firstly, it is necessary to prepare a coating solution containing indium material. Coating solution is generally composed of indium powder or indium compounds mixed with solvents, and its viscosity and concentration can be adjusted as needed.

2.Installation object: Place the cylindrical object to be coated in the clamping device of the ultrasonic outer circle indium coating machine. Clamping devices typically have adjustable clamping force and the ability to adapt to different diameters.

3. Ultrasonic vibration: The outer ring coated with indium will be uniformly coated by the high-frequency vibration tool head generated by ultrasonic waves.

4.Coating process: When ultrasonic vibration acts on the coating liquid, it causes small eddies and vibrations in the liquid. These eddy currents and vibrations help to evenly disperse the indium material in the coating solution and promote its uniform distribution during the coating process.

5.Coating effect: The indium material in the coating solution will be brushed onto the outer surface of the object through the horn under the action of ultrasonic vibration. Due to the eddy current effect and small vibrations of ultrasound, indium droplets in the coating solution will be uniformly distributed and attached to the outer surface of the object, forming a uniform coating.

 

 

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