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What are the Features of AF anti-fingerprint Coating?


Anti-fingerprint coating are called AF nano-coating, is a colorless and odorless transparent liquid composed of fluorine groups and silicon groups. The surface tension is extremely small and can be leveled instantly. It commonly used on the surface of glass, metal, ceramic, plastic and other materials. Anti-fingerprint coating is not only easy to apply and maintain, but also can ensure the high-performance usability of the product throughout its life cycle.

AF coating testing look

In order to meet the needs of different fields, AF anti-fingerprint oil can be subdivided into four categories: antibacterial, wear-resistant, non-baking and smooth, to achieve special scene applications of different products.

 

Definition: AF coating is based on the principle of lotus leaf, coating a layer of nano-chemical material on the glass surface to make it have strong hydrophobicity, anti-oil, anti-fingerprint and other functions.

 

So what are the features of these AF coating?

- Prevent fingerprints and oil stains from sticking and being easily erased

- Excellent adhesion, forming a complete molecular structure on the surface;

- Good optical properties, transparency, low viscosity;

- Very low surface tension, good hydrophobic and oleophobic effect;

- Excellent weather resistance and chemical resistance;

- Excellent friction resistance;

- Has good and durable anti-fouling and chemical properties;

- Low coefficient of dynamic friction, providing high-quality feel.

- Excellent optical performance, does not change the original texture

Application Area: Suitable for all display glass covers on touch screens. AF coating is single-sided, used on the front of the glass, such as mobile phones, TVs, LEDs, and wearables.

 

Saida Glass is a recognized global glass deep processing supplier of high quality, competitive price and punctual delivery time and we can provide the surface treatment AG+AF, AR+AF, AG+AR+AF. Any related projects, come and get your prompt response here.