10W-15W uv laser

UV Laser Source Marking Module engraving glass, high processing efficiency

Sep 27 , 2022

UV Laser Source Marking Module engraving glass, high processing efficiency

Glass is fragile, so engraving on the surface of glass products requires higher process requirements. Compared with ordinary marking methods, laser marking technology has high processing efficiency, beautiful and detailed marking products, and does not require material consumption, environmental protection, energy saving, and convenient maintenance. It is a common choice for glass product processing. Ultraviolet laser marking can realize laser marking. Glass is very easy to break during processing, so special attention should be paid to the marking process.

UV Laser Source Marking Module  is non-contact processing, with short processing time and fine marking lines, which is very suitable for marking patterns or text information on the surface of glass materials. There are several ways to mark glass with a laser.

 

Ultraviolet laser marking can directly meet the standard without contact, because it uses a laser machine to emit laser light, and then produces a lasting and environmentally friendly pattern, as long as it is environmentally friendly and healthy, The marking substances used are carefully formulated, because a manufacturer and production place, they all need to be approved by the safety department, so don't worry about these aspects, the UV-UV Laser Source Marking Module  technology will not produce some smoke, Gradually generate some dust, which can also be purified by the equipment in the machine, and then ensure hygiene and cleanliness.

 

  1. A common type of UV Laser Source Marking Module  process is to use a single laser radiation to create a mark with an obvious outline on the surface of the glass. After a few days, the laser expands to the area near the original mark to form debris, and then uses multiple radiations to make the area adjacent to the marked area. The areas are heated by thermal conduction, creating a stress gradient in these areas, reducing the possibility of secondary cracking, and this method is very effective in marking soda lime and borosilicate glass. Small glass bottles containing liquid medicines and glass cups in life can be marked with this method
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