Precision, Efficiency, and Intelligent Manufacturing for the Future

Laser cutting technology, known for its high precision, efficiency, and versatility, has become a cornerstone of modern manufacturing. Utilizing advanced laser systems, we achieve intricate cuts on a variety of materials, including metal, plastic, and wood, meeting the demands of complex designs. Whether for industrial production or creative projects, laser cutting technology delivers exceptional solutions, combining innovation and quality seamlessly. Choose laser cutting, and let technology unlock endless possibilities for your products!

Our Laser Cutting Technology

Design and Preparation

1.Design Drawing: Use CAD (Computer-Aided Design) software to create cutting drawings and define the cutting path and shape.
2.Material Selection: Choose the appropriate material (e.g., stainless steel, aluminum, acrylic) based on requirements.
3.Equipment Check: Ensure the laser cutting machine is in proper working condition, and inspect the laser head, gas supply system, etc.

Parameter Setup

1.Power Setting: Adjust the laser power according to the material type and thickness.
2.Cutting Speed: Set an appropriate cutting speed to ensure quality and efficiency.
3.Gas Selection: Choose auxiliary gases (e.g., oxygen, nitrogen, or air) to improve cutting results and remove slag.
4.Focal Length Adjustment: Adjust the focal length of the laser head to ensure the beam is focused on the material surface.

Material Fixation

Secure the material to be cut on the worktable of the laser cutting machine, ensuring it is flat and stable to avoid displacement during cutting.

Cutting Process

1.Start the Equipment: Operate the laser cutting machine, and the laser beam follows the preset path for cutting.
2.Real-Time Monitoring: Observe the cutting process to ensure quality, making adjustments if necessary.
3.Auxiliary Gas Function: The auxiliary gas blows away slag, keeping the cutting surface clean.

Post-Processing

 1.Slag Removal: Clean the slag or burrs from the edges of the material after cutting.
2.Surface Treatment: Perform grinding, polishing, or other surface treatments on the cut surface as needed.
3.Quality Inspection: Check cutting precision, dimensions, and surface quality to ensure compliance with requirements.

Product Delivery

Package the cut parts or products and deliver them to the customer or proceed to the next process.

Our technological advantages

 1.Laser cutting achieves micron-level precision, making it suitable for complex shapes and intricate patterns.
2.The cutting edges are smooth, eliminating the need for secondary processing, and can be directly used for high-precision component manufacturing.

1.Laser cutting is fast and highly automated, significantly reducing production cycles.
2.It supports mass production while maintaining consistent cutting quality.

 1.It can cut a variety of materials, including metals (such as stainless steel, aluminum), non-metals (such as acrylic, wood), and composite materials.
2.There is no need to change tools; simply adjust parameters to adapt to different materials and thicknesses.

Our equipments

Material Fixation
Parameter Settings
Post-Processing
Cutting Process
Design and Programming

our team

Aluminum Extrusion

Laser Cutting

Injection Molding

CNC Machine Tool Production

Metal Die Casting

Tube Punching