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  2. Laser engraving - Wikipedia

    en.wikipedia.org/wiki/Laser_engraving

    The machines for laser engraving and laser marking are the same, so the two terms are sometimes confused by those without relevant expertise. The impact of laser marking has been more pronounced for specially designed "laserable" materials and also for some paints. These include laser-sensitive polymers and novel metal alloys. [2]

  3. Laser bonding - Wikipedia

    en.wikipedia.org/wiki/Laser_bonding

    Laser bonding is a marking technique that uses lasers to bond an additive marking substance to a substrate.. First invented in the mid 1990s by Essilor International, this patented method [1] produces permanent marks on metal, glass, ceramic and plastic parts for a diverse range of industrial and artistic applications, ranging from aerospace and medical to the awards and engraving industries.

  4. MIL-STD-130 - Wikipedia

    en.wikipedia.org/wiki/MIL-STD-130

    There are several allowed methods for marking, the most common being a polyester or polyimide label marked with a thermal transfer printer. Other methods are: metal nameplate laser etched, metal plate metalphoto processed, direct part-marked by dot peen, ink jet, laser etch or chemical etch. The barcode must meet several quality specifications ...

  5. List of laser types - Wikipedia

    en.wikipedia.org/wiki/List_of_laser_types

    Helium–silver (HeAg) metal-vapor laser [3] 224.3 nm Scientific research Strontium vapor laser: 430.5 nm Scientific research Neon–copper (NeCu) metal-vapor laser [3] 248.6 nm Electrical discharge in metal vapor mixed with neon buffer gas. Scientific research: Raman and fluorescence spectroscopy [4] [5] Copper vapor laser: 510.6 nm, 578.2 nm

  6. Nd:YAG laser - Wikipedia

    en.wikipedia.org/wiki/Nd:YAG_laser

    Nd:YAG lasers are used in manufacturing for engraving, etching, or marking a variety of metals and plastics, or for metal surface enhancement processes like laser peening. [34] They are extensively used in manufacturing for cutting and welding steel, semiconductors and various alloys. For automotive applications (cutting and welding steel) the ...

  7. Direct part marking - Wikipedia

    en.wikipedia.org/wiki/Direct_Part_Marking

    The surface roughness levels should be limited to 8 micro-inches for dot-peen marking, laser and scribe systems can make a readable mark in rougher surfaces. The laser systems burn a "quiet zone" first and then the 2D code. The scribe method provides a high resolution 2D mark that makes the part readily readable in most cast surfaces. [4 ...

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