3D Laser Cutting And Automatic Loading And Unloading Workstation for Profile Steel

Profile Steel Laser Cutting Machine

AUTO Loading and Unloading 1
AUTO Loading and Unloading 2
A machine that can realize various functions with great 3D laser cutting accuracy and efficiency.

Product Data

Customer Needs


Due to the current primary methods of secondary processing for structural steel being manual cutting and drilling, large components are mainly produced through plate assembly welding. In the process of welding and processing steel, after the cutting process, assembly is carried out. Therefore, the entire process is characterized by low efficiency, cumbersome manual operations, and poor precision. However, a new technology is coming to solve the problems.



Product Description


As specialized processing equipment for structural steel, this product is suitable for the three-dimensional cutting of various profiles in the steel structure industry (such as H-beams, channel steel, angle steel, and T-beams). It is widely used in the processing industry of steel components, such as various large-span industrial plants and prefabricated buildings in the steel structure industry, engineering machinery, the power industry, the shipbuilding (ship frame) industry, the iron and steel industry, the road and bridge industry, as well as warehousing and heavy equipment.

  • Intelligent Manufacturing

Use laser measurement and compensation device to to transfer the collected data to the CNC system, performing corresponding position compensation and improving 3D cutting accuracy;

  • Precise Processing

The automatic steel cutting production line adopts the form of mobile processing of workpieces and static cutting after precise segmental pushing;

  • Multi-functional Integration

Various functions can be achineved in one machine​​.



Extended Functions







Industry Application


Intelligent equipment for laser cutting of structural steel is primarily applied in the steel structure industry, demonstrating excellent processing results for I-beams, H-beams, channel steel, and angle steel. It can achieve beveling, cutting, punching, and marking processing for the flange and web of H-beams, and can perform rootless cutting for overwelding holes or locked joints. Automated equipment can be integrated with assembly welding equipment to form an automatic steel processing line, reducing labor and significantly enhancing the efficiency of steel processing.




Case Study




Technical Parameters

Basic Parameters

Laser Power


Focal Length

F250-F275 with automatic focusing adjustment

CNC System

FARLEY (five-Axis CNC System)

Display Screen

23.6-inch touch screen (supporting mouse opearation)

Processed Profile Types

H-beams, channel steels, angle steels, etc.


Sectional cutting, flange and web cutting, bevel cutting, marking

Linked Axis

Five-axis (X/Y/Z/A/C)

Steel Nesting Software

Support tekla and STEP

Automatic Loading And Unloading System

Processing Form

Robotic Pushing with Gantry Five-Axis 3D Cutting

Loading and Unloading Form

Loading rack and unloading rack, with workpiece lifting and translation

Workpiece Conveyance

Roller conveyor with centering clamps and deformation detection

Type of Robot Arm

Gripping mechanical arm with XYZ axis transmission

Waste Disposal

Automatic Slag Discharge Machine

Cutting Area Protection

Full-enclosed Cover

Processing Capability

Profile Dimension for Steel Processing

Width H≤1000mm

Height B≤400mm

Length L≤12000mm

Cutting Thickness (Carbon Steel O2)

Maximum Vertical Cutting:30mm

Bevel Cutting Range

0-45° bevel


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