Laser cutting
A high‑precision method of cutting sheet metal using a focused laser beam. The process is fully automated, which enables fast and high‑quality cutting of parts with complex geometries from carbon steel, stainless steel, and non‑ferrous metals. The advantages include a perfectly smooth cut without burrs, which requires no additional processing, high production speed, minimal material waste, and the ability to run serial production with absolute repeatability of parts.
Laser system
It features two interchangeable tables measuring 12 x 3 m
Machine power
6 000 kW
Metal cutting
Up to 20 mm thick
Our advantages
  • Modern equipment
    Equipped with advanced technologies
  • Professional team
    Highly qualified service and consideration of each client's needs
  • Optimization of metal consumption
    Rational use of metal
How the technology works
In modern industry, an innovative method of metal processing — laser cutting — is becoming increasingly demand. This technology, based on the precise focusing of a laser beam of varying power on a metal-surface, allows for perfectly smooth cuts without the need for additional processing of the parts.

Advantages of laser cutting:
  • versatility — suitable for processing both ferrous and non‑ferrous metals;
  • no mechanical impact on the material;
  • the ability to work with parts of any complexity and configuration;
  • high process productivity;
  • economical use of material;
  • excellent cut quality, even for complex contours;
  • no need for additional processing.

Key strengths of the technology:
  • an optimal price‑to‑quality ratio;
  • superiority over traditional processing methods (guillotine, gas, and plasma cutting);
  • the ability to work with fragile and thin metals;
  • ease of creating complex shaped contours.
Modern equipment allows the process to be automated: all that is needed is to create an electronic drawing of the product, and the machine will handle the rest. This significantly increases production efficiency and minimises the likelihood of errors.

There are several types of laser systems:
  • gas lasers (including the popular CO₂ systems);
  • solid‑state lasers (using ruby, neodymium glass, or yttrium garnet);
  • gas‑dynamic lasers (for specialised tasks);
  • ytterbium fibre laser systems.
What material is suitable for laser cutting metal?
1
Galvanized steel
2
Cold rolled steel
3
Stainless steel
Equipment

Laser machine

Equipment model

TCLASER-6000W-11030



Equipment model

TCLASER-6000W-11030

Laser type

Fiber optic laser

Power

6 kW

Laser working environment

YV04

Laser wavelength

1170 мм

Movement along the X axis

2*12000 мм

Movement along the Y axis

2*3000 мм

Movement along the Z axis

120 мм

Effective cutting range

12000х3000 мм

Accuracy of axial positioning of the table

0.03 мм/м

Table repositioning accuracy

0.03 мм/м

Maximum positioning speed

120м/min

Maximum table load

1500 kg

Nominal supply voltage

380 V 3 phase

Frequency

50 Hz

General power supply protection class

IP54

Maximum cutting thickness

Carbon steel 20 mm

Stainless steel 10 mm

Aluminum steel 5 mm

Brass 5 mm



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