TF-PE6025
Protective enclosed exchange table sheet fiber laser cutting machine
TF-PE6025 Protective Enclosed Exchange Table Sheet Fiber Laser Cutting Machine
The TF-PE6025 represents a leap in sheet metal processing technology, combining high-speed cutting, exceptional precision, and advanced safety features. This enclosed fiber laser cutting machine is designed for demanding industrial environments where efficiency and operator safety are paramount. The integrated exchange table minimizes downtime, significantly boosting productivity and throughput. Traditional sheet metal cutting methods encompass a wide array of tools, each with its own strengths and weaknesses. Manual techniques utilize hand tools like tin snips and shears, suitable for basic cuts and small-scale projects. For more complex geometries and thicker materials, power tools such as electric shears, plasma cutters, flame cutters, and CNC punching machines are commonly employed. However, these traditional approaches often lack the precision, speed, and versatility of modern laser cutting systems.These tools are used to cut various materials, such as mild steel, stainless steel, aluminum, copper, brass, galvanized steel, and more. The TF-PE6025, powered by a high-performance fiber laser, excels at processing a diverse range of these materials with exceptional accuracy and speed.
This technology is ideal for cutting materials like:
high-reflective metals such as aluminum and copper alloys, high-strength steels, and pre-painted or coated materials, minimizing damage to the surface finish. The enclosed design further enhances safety and allows for efficient fume extraction.
Applications of the TF-PE6025 Protective Enclosed Exchange Table Sheet Fiber Laser Cutting Machine:
Sheet Metal Fabrication: Manufacturing precise components for enclosures, brackets, panels, and housings.
Automotive Industry: Producing body panels, structural reinforcements, and interior components.
Aerospace Industry: Cutting lightweight, high-strength parts for aircraft and spacecraft.
Electronics Industry: Fabricating precision components for electronic devices and equipment.
Appliance Manufacturing: Producing components for refrigerators, ovens, washing machines, and other appliances.
HVAC Industry: Manufacturing ductwork, vents, and other HVAC components.
Architectural Metalwork: Creating decorative panels, facades, and other architectural elements.
Signage and Advertising: Cutting custom signs, displays, and promotional materials.
Medical Device Manufacturing: Producing precision components for medical equipment, instruments, and implants.
How to Use the TF-PE6025 (General Steps):
Material Loading: Load the sheet metal onto the exchange table. The exchange table allows for loading/unloading while the machine is cutting.
Programming: Use CAD/CAM software to design or import the desired cutting pattern. Optimize the cutting path, laser power, cutting speed, and other parameters.
Machine Setup: Enter the cutting parameters into the machine’s control system. Select the appropriate laser settings, assist gas, and nozzle.
Focusing: Adjust the laser focus to the optimal position for the material and thickness.
Cutting Process: Initiate the cutting process from the control panel. The enclosed design ensures operator safety during cutting.
Part Removal: After cutting, remove the finished parts from the exchange table.
Maintenance: Perform regular maintenance tasks such as cleaning the machine, checking the laser lens, and ensuring proper lubrication.
Component
Product parameters
| Machine Model | TF-PE6025 |
| Work Area | 6000*2500mm |
| Laser Power | Akw/6kw/8kw/12000w |
| Laser Brand | RayCUS/Max/IPG |
| Repeated Positioning Accurecy | ±0.03mm |
| Max Acceleration | 0.8G~1.0G |
| Maxrunning Speed | 80m/min |
| XY location Accuracy | ±0.01mm |
Industry-handling solutions
Laser cutting machines utilize high-powered laser beams to cut through materials with precision and efficiency. Their applications span multiple sectors:
- Automotive Industry: These machines are crucial for producing intricate parts such as body panels and exhaust systems, allowing for clean cuts that enhance vehicle performance and safety
- Aerospace: Laser cutting is employed to create complex shapes in aircraft components, ensuring high accuracy and minimal waste
- Electronics: They are used to cut circuit boards and other electronic components, where precision is essential for functionality
- Medical Devices: The ability to make precise cuts is vital for manufacturing surgical instruments and implants, which must meet stringent quality standards
- Construction and Architecture: In these fields, laser cutting machines are used for creating custom metal parts and fittings that require a perfect fit without gaps
Contact us
Contact us for more information, for scheduling a demonstration, and for anything else you might like to know about laser cutting.