Product Overview:
A laser cutting machine works by focusing a high-power density laser beam onto the surface of a workpiece, rapidly heating it to melting or vaporization point. High-pressure assist gas then blows away the molten material, creating a precise cutting slit.
High-energy laser beam is generated and focused onto material surface
Material melts or vaporizes at the focal point
Assist gas removes molten/vaporized material to form clean cuts
CNC system controls movement for precise cutting paths
1. Laser Generator
Produces high-power laser beam (commonly fiber laser)
Ensures stable, efficient cutting performance
2. External Optical Path
Uses reflective mirrors to guide laser beam
Protected with covers and clean gas to prevent contamination
3. Stabilized Power Supply
Maintains stable operation despite power fluctuations
Ensures consistent laser output
4. Cutting Head
Focuses laser beam onto workpiece
Includes focusing lens, capacitive sensor, gas nozzle
Z-axis movement controlled by servo motor system
5. Operation Console (CNC System)
Controls cutting parameters and motion paths
Enables precise automation and adjustment
6. Chiller System
Cools laser source and optical components
Prevents overheating and maintains beam quality
7. Gas System
Provides assist gases (oxygen, nitrogen, air)
Helps in cutting efficiency and edge quality
Sheet metal fabrication
Automotive parts manufacturing
Aerospace components
Machinery and equipment production
Precision industrial cutting
This system is widely used for high-precision, fast, and efficient cutting of metals and non-metal materials, combining advanced laser technology with CNC automation for industrial manufacturing.
Read moreProduct Overview:
A laser cutting machine works by focusing a high-power density laser beam onto the surface of a workpiece, rapidly heating it to melting or vaporization point. High-pressure assist gas then blows away the molten material, creating a precise cutting slit.
High-energy laser beam is generated and focused onto material surface
Material melts or vaporizes at the focal point
Assist gas removes molten/vaporized material to form clean cuts
CNC system controls movement for precise cutting paths
1. Laser Generator
Produces high-power laser beam (commonly fiber laser)
Ensures stable, efficient cutting performance
2. External Optical Path
Uses reflective mirrors to guide laser beam
Protected with covers and clean gas to prevent contamination
3. Stabilized Power Supply
Maintains stable operation despite power fluctuations
Ensures consistent laser output
4. Cutting Head
Focuses laser beam onto workpiece
Includes focusing lens, capacitive sensor, gas nozzle
Z-axis movement controlled by servo motor system
5. Operation Console (CNC System)
Controls cutting parameters and motion paths
Enables precise automation and adjustment
6. Chiller System
Cools laser source and optical components
Prevents overheating and maintains beam quality
7. Gas System
Provides assist gases (oxygen, nitrogen, air)
Helps in cutting efficiency and edge quality
Sheet metal fabrication
Automotive parts manufacturing
Aerospace components
Machinery and equipment production
Precision industrial cutting
This system is widely used for high-precision, fast, and efficient cutting of metals and non-metal materials, combining advanced laser technology with CNC automation for industrial manufacturing.