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metal laser cutting machine

10kw 12kw Laser Cutting Machine for Metal Sheet


High Power Laser Sheet Cutting Machine “ultra-large format” refers to the machine’s ability to handle large sheets of material, with a maximum length of up to 32m and a width of up to 5m. It is commonly used in industries such as aerospace, steel structure, and construction, where precision cutting of large parts is required. It allows for faster and more precise cutting, making it a popular choice for industrial applications.

Category: Laser Machine >>Laser Sheet Cutting Machine

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Large Format Laser Cutting Machine

Sheet metal laser cutting machine is a type of computer-controlled machine that uses a high-powered laser beam to cut and engrave metal materials. Laser cutting machines are capable of cutting a wide range of metals, including steel, aluminum, brass, and copper, with a high degree of precision and speed.

Completely controlled by CNC, fiber laser metal cutting machine can produce complex parts with high tolerance repeatedly and consistently. Laser cutting can also produce high quality cut edges, usually without further cleaning, processing or finishing, thus reducing the need for secondary processing.

The higher power output of a 12000w laser cutting machine allows it to cut through thicker materials more quickly than lower-powered machines. This can significantly increase productivity and reduce production times for large-scale cutting operations.

A high-power laser cutting machine is a specialized type of laser cutting equipment that utilizes a powerful laser beam to cut through thick and dense materials with speed and precision. These machines are designed to handle heavy-duty cutting applications that require increased power and capability compared to standard laser cutting machines.

Ultra high power laser cutting machine, 10KW,12KW, 15KW, 20KW,30KW available

12000w laser cutting machine

laser cut machining

Metal Laser Cutting and Engraving Machine Technical Data

Index Parameter
Model IGR-G12025
Power 12000w
Processing format (L*W) 12000mm*2500mm
X-axis travel 2500mm
X-axis travel 12000mm
Z-axis travel 160mm
Max. cutting speed 80m/min
Max. speed 150m/min
Max. acceleration 2G
Max. cut sheet thickness 40mm
X/Y axis positioning accuracy ±0.03mm
X/Y axis Repositioning accuracy ±0.02mm
Max. load of workbench 15 tons


Intelligent control system

fiber laser cutting machine manufacturers

Autofocus laser cutting head

cnc laser metal cutting machine

Max Laser Hanli chiller

Sheet Metal Laser Cutting Machine Application

It can be used for 0.5-25mm carbon steel plate, 0.5-16mm stainless steel plate, galvanized sheet, cold-rolled sheet, electrolytic plate; 0.5-16mm aluminum alloy plate,
0.5-10mm brass and red copper and other metal materials.


The ultra-large format fiber laser cutting machine widely used in industries such as aerospace, steel structure, and construction, where precision cutting of large parts is required. It allows for faster and more precise cutting, making it a popular choice for industrial applications.

A laser cutting machine for metal is a powerful tool used in industrial manufacturing processes to cut and shape various types of metal materials with the precision and speed of a laser beam. Laser cutting offers several advantages over traditional mechanical cutting methods, such as increased accuracy, faster production times, and the ability to cut intricate and complex designs.

Features and benefits of laser cutting machines for metal:

  1. Precision and Accuracy: Laser cutting machines utilize a focused and concentrated laser beam to achieve extremely precise and accurate cuts. They can achieve high levels of detail, intricate patterns, and fine contours, making them suitable for applications where precision is crucial.
  2. Versatility: Laser cutting machines can work with a wide range of metal materials, including stainless steel, carbon steel, aluminum, copper, brass, and more. They are capable of cutting varying thicknesses, from thin sheets to thicker plates.
  3. Non-Contact Cutting: Laser cutting is a non-contact process, meaning the laser beam does not physically touch the material being cut. This eliminates the risk of damage or distortion to the workpiece and allows for cleaner and smoother cuts.
  4. Speed and Efficiency: Laser cutting machines can perform cuts at high speeds, significantly reducing production time compared to traditional cutting methods. They offer rapid piercing capabilities and continuous cutting without the need for tool changes.
  5. Minimal Material Wastage: Laser cutting minimizes material wastage due to its narrow kerf width. The precise laser beam enables efficient nesting of parts, optimizing material usage and reducing costs.
  6. Complex and Intricate Designs: Laser cutting machines excel at cutting intricate and complex designs, including sharp corners, small holes, and fine details. They can also perform 3D laser cutting, allowing for bevel cuts and multi-dimensional shapes.
  7. Automation and Integration: Laser cutting machines can be integrated into automated systems, enabling efficient and continuous production. They can be programmed to follow CAD designs and can work in conjunction with other machinery or robotic systems.
  8. Minimal Post-Processing: Laser-cut metal parts often require minimal post-processing, such as deburring or finishing, due to the clean and precise cuts achieved by the laser beam. This reduces the overall production time and cost.

In addition to aerospace, automotive, and manufacturing, there are a number of other industries that use 12000w laser cutting machines for various applications. Some of these industries include:

Energy: The energy industry uses laser cutting machines for cutting and shaping components for renewable energy systems, such as wind turbines and solar panels, as well as for oil and gas exploration and production equipment.

Construction: The construction industry uses laser cutting machines for cutting and shaping metal components for buildings, bridges, and other infrastructure projects. Shipbuilding: The shipbuilding industry uses laser cutting machines for cutting and shaping metal components for ships and offshore structures.

Electronics: The electronics industry uses laser cutting machines for cutting and shaping metal components for electronic devices, such as smartphones, tablets, and laptops.

Medical: The medical industry uses laser cutting machines for cutting and shaping metal components for medical devices, such as surgical instruments and implants.

Overall, the high power and precision of 12000w laser cutting machines make them a valuable tool for a wide range of industries that require efficient and precise cutting of thick metal materials.

A CNC laser cutting machine works by using a high-powered laser beam to cut and engrave materials. The machine is computer-controlled and operates using a CNC (computer numerical control) system, which allows the operator to input precise cutting instructions. Here are the basic steps involved in the operation of a CNC laser cutting machine:

  1. Material preparation: The material to be cut or engraved is loaded onto the machine’s worktable or placed in a jig to hold it in place during the cutting process.
  2. Computer programming: The operator inputs the cutting instructions into the machine’s computer system, specifying the size and shape of the cuts to be made.
  3. Laser setup: The machine’s laser is adjusted to the appropriate power level and focus for the material being cut.
  4. Cutting: Once the setup is complete, the machine begins cutting the material according to the programmed instructions. The laser beam heats up and melts the material, which is then blown away by a gas jet or suction system.
  5. Finishing: After the cutting is complete, the finished parts are removed from the machine and any necessary finishing work is done, such as sanding or polishing.

The cost of a laser cutting machine can vary widely depending on a number of factors, such as the size and power of the machine, the brand and model, and the specific features and capabilities of the machine. Generally speaking, smaller and less powerful machines will be less expensive, while larger and more powerful machines will be more expensive.

As a rough estimate, a small desktop laser cutting machine suitable for hobbyists or small-scale production might cost anywhere from $2,000 to $10,000. A larger, industrial-grade laser cutting machine with more power and advanced features could cost anywhere from $20,000 to $200,000 or more.

It’s important to keep in mind that the cost of a laser cutting machine is just one factor to consider when deciding whether to invest in this technology. Other factors to consider include the specific needs and requirements of your business or project, the materials you will be cutting, and the level of expertise and training needed to operate the machine effectively. Additionally, there may be ongoing costs associated with maintenance, repairs, and consumables such as laser tubes and lenses.


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