Why Laser Cutting Robot Stands Out
Complex Geometries: Cuts curved panels, internal cutouts, ventilation slots, and nested designs without re-fixturing.
Multi-Material Capability: Supports steel (≤12 mm), stainless steel (≤8 mm), aluminum (≤10 mm), copper (≤5 mm), and titanium (≤4 mm).
High Yield: Narrow kerf and low thermal impact reduce scrap by up to 35%.
Continuous Production: Integrated automatic sheet feeding, conveyors, and vacuum tables enable 8–24 hour operation.
Flexible Deployment: Modular design supports single-cell or multi-cell setups with conveyors and jigs.
Core Components
Laser Controller: Centralized management of laser power, cutting paths, and safety interlocks.
Robot Electric Control Cabinet: Integrates robotic arm motion with laser operation, allowing synchronized cutting and positioning.
Laser Cutting Torch: Adjustable focus and precise positioning.
Laser Cutting Table: A vacuum or fixed table ensures stable material placement and facilitates multi-part nesting.
Technical Parameters
|
Parameter |
Specification |
|
Arm Span |
1895 mm |
|
Repeat Positioning Accuracy |
±0.05 mm |
|
Maximum Load |
20 kg |
|
Laser Power |
2000–5000 W |
|
Equipment Weight |
Approximately 230 kg |
|
Protection Grade |
Wrist IP54, Body IP40 |
Applications
Automotive: Body panels, exhaust covers, interior enclosures
Electronics: Chassis, brackets, precision housings
Industrial Machinery: Control panels, decorative panels, sheet frames
Aerospace: Aircraft brackets, housings, structural components

On-Site Simulation and Structural Close-Up Display

Figure 2.1On-site Physical Object Diagram




FAQ
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