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10 major applications of linear plasma cleaners to solve the problem of difficult bonding on the surface of materials

10 major applications of linear plasma cleaners to solve the problem of difficult bonding on the surface of materials:
A typical linear plasma cleaner application plasma is generated when a gas is subjected to a high-energy discharge: the gas is decomposed into electrons, ions, highly reactive free radicals, short-wave ultraviolet photons and other excited particles. These substances effectively scrub the surface to be cleaned when excited by a high-energy discharge. When the chamber contains a certain amount of reactive gas such as oxygen, it combines chemical reaction and mechanical bombardment technology to remove organic compounds and residues. The hydrocarbon contaminants on the surface to be cleaned and the oxygen ions in the plasma react to produce carbon dioxide and carbon monoxide, which are simply extracted from the chamber.
Inert gases, such as argon, helium, and nitrogen can be used to effectively bombard the surface and mechanically remove small amounts of material. The effect of the plasma on the surface can extend to a depth of up to a few microns, but is more usually much less than 0.01 microns, and the plasma does not change the overall properties of the material.
Linear plasma cleaning machine operation process: manually put the product into the assembly line continuously, continuously conveying, direct spray gun or rotary spray gun continuously work to clean the surface of the product, it takes about 12s to clean a product (different product processing time is different Some 5s are ok .
Plasma cleaning is a "dry" cleaning process that can replace environmentally harmful chemicals, such as chlorinated hydrocarbons (trichloroethylene). Before bonding, sealing, painting, welding or wire bonding on various metals (such as gold, silver, titanium, etc.), plasma is used for bonding, sealing, painting and removing organic residues on the surface before the surface Clean metal imprint/copper or remove oxidation of plastic, rubber and elastomer.

Atmospheric plasma and vacuum plasma are mixtures of charged particles and neutral particles (atoms, free radicals, and molecules) that can react with various materials. Plasma is generated when a gas is subjected to a high-energy discharge. The gas is decomposed into electrons, ions, highly active free radicals, short-wave ultraviolet photons and other excited particles. These substances effectively scrub the surface to be cleaned when excited by a high-energy discharge. Low-frequency plasma is widely used to clean surfaces and remove organic contaminants in metals, rubber and plastics.
Various applications of linear plasma cleaners and plasma processors:
1. Clean the surface before painting.
2. Clean the surface before coating. Clean the surface before assembly. Create a hydrophilic surface.
3. Create a hydrophobic surface. Reduce friction (crosslinking). Eliminate surface contamination. Surface disinfection.
4. Increase biocompatibility.
5. Clean the surface before welding.
6. Remove the flux.
7. Surface preparation before wire bonding.
8. Linear plasma cleaner, the main advantage of plasma processor: unified and repeatable processing.
9. Completely controlled process environment.
10. Fast and effective activation process.
11. Clean the surface before bonding.
12. The clean and dry process has low operating costs. No waste water, in line with environmental protection requirements; low energy consumption. Plasma surface activation/cleaning.
13. Plasma coating (hydrophilic, hydrophobic), bonding after plasma treatment to enhance bonding.

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