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UV Ink

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One of the main advantages of UV Ink is its ability to adhere to a variety of materials, including plastic, glass, metal, and paper. This versatility makes it ideal for printing on unconventional surfaces, expanding the possibilities for creative and innovative designs. Additionally, UV inks are known for their superior color saturation and clarity, producing high-quality prints with stunning visual impact.
Another advantage of UV ink is its fast curing process, which requires no drying time. This increases the productivity and efficiency of the printing process, resulting in faster turnaround times and lower production costs. Additionally, the instant curing of UV ink creates a scratch- and abrasion-resistant surface, ensuring long-lasting durability of printed materials.
FAQ
Important things you should know
1
What is UV ink?
With an increasing number of consumers preferring sellf. service optionsover traditional customer support channels, having a solid
2
What are the classifications of UV inks?
1. Classification of printing technology   UV offset printing ink, UV screen printing ink, UV pad printing ink, UV water-based inkjet ink.  2. Classification of application fields  UV iron printing ink, UV metallic ink, UV glass ink, UV plastic ink, UV circuit printing ink, UV photosensitive ink.  3, Artistic effect ink  Due to the quick-drying curing characteristics of UV ink, the ink can show a unique texture effect on the printed matter, which is not available in other curing methods. Foaming ink, icing ink, hammer ink, crack ink, crystal ink, varnish, wrinkle ink, etc.
3
What is the principle of UV ink?
UV ink has the characteristic of selective absorption of UV light. Drying is affected by the total energy radiated by UV light source and the energy distribution of light with different wavelengths. Under the irradiation of UV light, the photopolymerization initiator of UV ink absorbs photons with a certain wavelength and excites them into excited states to form free radicals or ions. Then, through intermolecular energy transfer, the polymerized prepolymer and photosensitive monomer and polymer become excited States, resulting in a charge transfer complex. These complex particles are continuously crosslinked and polymerized and solidified into films.
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