Cutting, drilling, boring of metals by Laser cutting

Achieve precise metal cutting, drilling, and boring with advanced laser technology that delivers superior accuracy, speed, and manufacturing efficiency.

Laser cutting has established itself as one of the most viable contenders for many applications and has become the most widely used application in micro machining. It competes with the traditional methods of cutting like punch pressing and more recent plasma arc cutting and EDM, but stands out for its ease of fixturing, cutting complex shapes, high rate and low cost for voluminous applications, small kerf, speedy set up and ease of automation. All in all, Laser cutting of materials is a preferred choice on economic and technical aspects. Lasers are used for cutting highly accurate, excellent quality, small kerf width, low or no burr on mild steel, stainless steel, graphite, titanium and aluminum plates for cutting intricate shapes and small holes. The most used application of laser cutting is filigree - for jewelery making.

During cutting of metals by lasers, the large laser beam is focused down to a single pin point, where the heat density is extreme, which results in rapid heating, melting, partial or complete vaporization of the material yielding very precise cuts, holes/ drills on the metal.

Laser cutting of metals is a stable, precise, reliable and a very accurate cutting process depending on the control of the parameters that affect cut quality. Read More


  • laser cutting on brass pendant art

    laser cutting on brass pendant art

    Features:

    • Object
      : Leaf Pendant
    • Material
      : Brass
    For sampling and machine related queries for above shown applications please mail us at: info@markolaser.com
  • Laser cutting on brass

    Laser cutting on filigree pendant

    Features:

    • Object
      : Filigree pendant
    • Material
      : Copper
    For sampling and machine related queries for above shown applications please mail us at: info@markolaser.com
  • Laser cutting on brass bangle

    Laser cutting on bangle

    Features:

    • Object
      : Bangle
    • Material
      : Brass
    For sampling and machine related queries for above shown applications please mail us at: info@markolaser.com
  • laser cutting on brass beautiful art pendant

    laser cutting on brass beautiful art pendant

    Features:

    • Object
      : Pendant
    • Material
      : Brass
    For sampling and machine related queries for above shown applications please mail us at: info@markolaser.com
  • laser cutting on brass leaf laser art

    Laser cutting on brass leaf laser art

    Features:

    • Object
      : Leaf Art
    • Material
      : Brass
    For sampling and machine related queries for above shown applications please mail us at: info@markolaser.com
  • Laser cutting on brass watch gears and needles

    Laser cutting on brass watch gears and needles

    Features:

    • Object
      : Watch gears
    • Material
      : Brass
    For sampling and machine related queries for above shown applications please mail us at: info@markolaser.com
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Frequently Asked Questions?

1 What is filigree, and why are lasers uniquely suited for it?

Ans: Filigree is the art of creating highly intricate, delicate, and decorative patterns commonly used in jewelry and precision-engineered components. Markolaser fiber laser systems are ideal for filigree work because they offer precise control over laser power and beam quality, enabling the creation of complex designs with exceptional accuracy and minimal material distortion.

2 Which metals can be processed with Markolaser filigree cutting systems?

Ans: Markolaser filigree cutting machines can process a wide range of metals, including gold, silver, platinum, brass, copper, stainless steel, mild steel, aluminum, titanium, and tungsten. The systems are designed to deliver clean and precise cuts even on highly reflective materials.

3 Can Markolaser machines process non-metallic substrates as well?

Ans: Yes. In addition to metals, Markolaser laser cutting systems can process various non-metallic materials, including graphite, ceramics, silicon wafers, composite materials, and engineering plastics, making them suitable for diverse industrial and precision manufacturing applications.

4 How does the jewelry industry utilize Markolaser filigree cutting machines?

Ans: Jewelry manufacturers use Markolaser filigree cutting systems to create intricate patterns and detailed designs on materials such as gold, silver, brass, and copper. Common applications include earrings, pendants, bangles, decorative ornaments, and fine-sheet jewelry components requiring high precision and clean edge quality.

5 What role does Markolaser technology play in watchmaking and precision engineering?

Ans: Markolaser systems support the production of highly detailed and miniature components used in watches and precision-engineered products. Their micro-machining capabilities enable accurate fabrication of watch gears, hands, internal mechanisms, and other small parts that demand tight tolerances and superior edge finish.