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  2. 3M - Wikipedia

    en.wikipedia.org/wiki/3M

    3M Company (originally the ... laminates, passive fire protection, personal protective equipment, window films, paint protection film, ... a crystalline form of ...

  3. Window film - Wikipedia

    en.wikipedia.org/wiki/Window_film

    The thicker window films known as safety and security window film are designed to perform under extreme conditions, and as such there are specific standard criteria these films should meet, such as American standards ANSI Z.97, CPSC 16 CFR 1201, Cat II (400 ft-lb), and the British Standards BS 6206 (Class A, B, C).

  4. See-through graphics - Wikipedia

    en.wikipedia.org/wiki/See-through_graphics

    See-through graphics on the outside of a window See-through graphics: the view outside is unobstructed. Perforated self-adhesive window films are often used to create see-through graphics. [1] A graphic is printed on the front side of the film which contains circular holes (perforations) covering up to fifty percent of the surface area.

  5. Factory tint - Wikipedia

    en.wikipedia.org/wiki/Factory_tint

    Unlike window film, privacy glass is a pigment within the glass that is installed during the manufacturing process. There is no way to remove the tint from the glass except to replace the glass with untinted glass. The only alternative to getting the same benefits of window film is to install window film over the factory tint.

  6. Transparent ceramics - Wikipedia

    en.wikipedia.org/wiki/Transparent_ceramics

    Many ceramic materials, both glassy and crystalline, have found use as hosts for solid-state lasers and as optical window materials for gas lasers. The first working laser was made by Theodore H. Maiman in 1960 at Hughes Research Laboratories in Malibu, who had the edge on other research teams led by Charles H. Townes at Columbia University ...

  7. Parylene - Wikipedia

    en.wikipedia.org/wiki/Parylene

    Parylene N and C have a low degree of crystallinity; however, parylene VT-4 and AF-4 are highly crystalline ~60% in their as-deposited condition (hexagonal crystal structure) and therefore are generally not suitable as optical materials. Parylene C will become more crystalline if heated at elevated temperatures until its melting point at 270 °C.

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