A method for producing an efficient vacuum coating system.
Release time:
2021-09-27 21:20
Vacuum coating machines have become popular in various industries, and most colored objects are completed through coating.Vacuum Coating SystemUsed for vacuum coating products. In existing vacuum coating systems, due to the slow increase in coating material concentration, the coating efficiency of low concentration atomized coating materials is low, resulting in long coating times, while high concentration atomized coating materials have short coating times but cause a lot of waste. The coating itself is used to change the surface characteristics of the workpiece. To obtain various different properties on the surface of the workpiece, it often requires multiple coatings. Therefore, it is necessary to switch the coated workpieces between different coating machines to obtain different coatings, which leads to wasted time. In addition, multiple conversions result in low efficiency and complicated coating methods. Based on this, a vacuum coating system is proposed.
In view of the deficiencies of the existing technology mentioned above, the technical problem to be solved by this utility model is to provide a vacuum coating system that addresses the problem of wasted time during coating, thereby simplifying the coating method and improving work efficiency. To solve the above technical problem, this utility model adopts the following technical solution: aVacuum Coating Systemcharacterized by including a coating frame, a coating chamber, a central processor, and a control device; the coating frame and the central processor are both located in the coating chamber, and the control device is set outside the coating chamber; the vacuum coating system also includes a coating device, with multiple coating devices set inside the coating chamber. Preferably, one side of the coating frame is connected to a feeding device. The control device of the vacuum coating system is also connected to the spray painting chamber, spraying device, and solvent storage device, with the spray painting chamber connected to both the spraying device and the solvent storage device. One side of the solvent storage device in the vacuum coating system is connected to a discharge device. The feeding device used in the vacuum coating system has a feeding port equipped with a heating device for the coating material. An electromagnetic valve is also arranged at the feeding port. Preferably, the electromagnetic valve is a one-way electromagnetic valve.Vacuum Coating SystemThe heating device is a heating coil, which is connected to the control device. The evaporating source for multi-arc plating is generally a disc, commonly known as a disc target, and there are also rectangular multi-arc targets. Magnets are installed on the target base, and by moving the magnets back and forth, the magnetic field strength can be changed, allowing adjustment of the movement speed and trajectory of the arc spots. To reduce the temperature of the target and the backing plate, cooling water should be continuously introduced into the backing plate. To ensure high conductivity and thermal conductivity between the target and the backing plate, tin gaskets can also be added between the target and the backing plate.
This utility modelVacuum Coating Systemhas the advantages of avoiding coating gas pollution, improving coating quality, simplifying the coating method, increasing coating efficiency, improving the utilization rate of coating materials, and saving energy.
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