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Definition of Plasma Bunting

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Published on:

12 Nov,2020

Definition of Plasma Bunting:

 

Plasma bundling is a process of surface modification so that it can be combined or printed. Often used in PTFE, rubber or plastic, this process actually changes the surface, leaving free radicals and allowing any material to bond reliably to glue or ink water.

 

The shift register is bound during assembly. Printing on bright surfaces (such as plastic or PTFE) results in poor surface quality, and large amounts of ink do not adhere to the surface. This situation will lead to confusion in printing and subsequent processing of the product. Similarly, sticking a strong plastic handle to a shiny plastic product is difficult because different polymers require very different adhesives.

 

The surface modification effect is not permanent, and the processing time can vary from several hours to several days depending on the storage conditions of the processed parts. Although the effects of plasma bonding are temporary, the treatment allows sufficient time to complete the processing or printing of these materials. This method is used to bond different surfaces (such as plastic and metal or rubber and plastic), and different surfaces often require different glues, making it difficult to find the right adhesives.

 

Plasmas are used to modify the surface, so that the plastic or rubber hole can be combined with the adhesive, and the strength can be improved significantly. Plastic has a glossy surface, usually treated or glued to another material, such as a plastic or metal handle. If the smooth surfaces are treated with the right plasma, they can be printed without a smear, or they can be stuck to the handle without having to worry about gluing.

 

Plasma treatment is very safe and environmentally friendly. By combining power setting and pressurized plasma, only the surface of the material can be changed without changing the properties of the material itself. The plasma binding effect was observed in the deep regions with only a few molecular layers, while the overall properties of the material remained unchanged. This method does not use any stimulant chemicals, thus eliminating chemical safety risks for employees and the environment.

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