source:本站author:超级管理员time:2025-03-10views:36157519
Low temperature plasma cleaning machines can quickly clean the top of cylindrical batteries, achieving reliable and durable wire bonding. With the development of society and the changing times, the demand for high-performance batteries is rapidly increasing. Plasma cleaning treatment is a key technology for almost all materials, such as achieving fine cleaning, surface activation, and nano coating treatment. Next,
please follow the editor to explore the application process and advantages of plasma cleaning equipment in the field of new energy?
Firstly, when low-temperature plasma comes into contact with materials at its high energy level, the surface properties of these materials will change, for example, hydrophobic surfaces may become hydrophilic, which can play a huge role in various stages of battery production.
Seismometer atmospheric plasma technology is used for various types of batteries, including prismatic, cylindrical, and square batteries.
Plasma cleaning machines are widely used. For example, before covering a single battery with PET film, plasma cleaning technology can be used to optimize electrical insulation. After plasma cleaning treatment, the adhesion between batteries can be improved. Plasma treatment can be applied after coating or film covering to activate the surface of the battery, thereby improving adhesion and cohesion.
The atmospheric plasma cleaning machine can be cleaned or activated according to different surface materials, with different nozzles and
generators, as well as different plasma treatment systems. Zhenyi Co., Ltd. can provide our customers with specific process and production environment solutions, as well as effective plasma cleaning pretreatment
Atmospheric plasma cleaning technology is not only applied in lithium batteries,
but also suitable for partial and large-area plasma pretreatment of aluminum foil and plastic film. Without the use of additives, it can effectively clean, activate or coat film materials by controlling processing parameters such as temperature, nozzle offset, nozzle width and speed in a targeted manner.
Compared with other methods such as corona treatment, low-temperature plasma treatment can maintain the mechanical properties of materials without damaging the surface.
The plasma cleaning machine is designed for aluminum surface cleaning, activation, modification, and etching treatment. Plasma cleaning technology is a simple and environmentally friendly method.
Composite films are particularly used in the production of beverage and food packaging to maintain the airtightness of the packaging. Here, the film is laminated with aluminum foil (aluminum layer). This material is also coated with PE to prevent direct contact between aluminum and the contents.
By using a plasma cleaning machine to process the film, it can ensure reliable bonding with PE film. During the plasma cleaning process,
the material surface will decompose and remove all organic substances, such as particles and oxides. The plasma cleaning equipment can be integrated into the existing entire process, making plasma pretreatment particularly cost-effective.
In order to print and coat plastic films, it is necessary to first increase the surface tension of the material. In addition, the coating requires long-term stability of surface activation. In previously available methods such as corona or flame treatment, surface tension would decrease in a short period of time.
Through plasma cleaning pretreatment process, the surface of plastic film can be activated, which has good long-term stability.
They can be reliably treated with atmospheric pressure plasma on any width of the film. Another positive side effect of using atmospheric plasma cleaning machine to treat plastic is its obvious anti-static effect.
The surface of the film usually contains pollutants such as dust, oil, oxides, etc., which can hinder the tight bonding between the film and the substrate.
The plasma generated by the plasma cleaning machine contains high-energy active particles such as ions, electrons, and free radicals, which can react chemically with surface pollutants and decompose them into volatile substances such as carbon dioxide and water, thereby cleaning the surface. For example, for oil pollution, the active particles in the plasma can break the chemical bonds of the oil pollution molecules, converting them into volatile small molecules,
thereby completely removing the oil pollution and allowing the film surface to better contact the substrate.
Ions in plasma have a certain amount of energy, which can remove the surface oxide layer through physical bombardment, exposing a clean metal or semiconductor surface. This is conducive to the formation of stronger chemical bonds or physical adsorption between the film and the substrate in the future. For more information about the application charm of atmospheric plasma cleaning machines,
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