Product Introduction
Laser Cutting Robots are industrial devices used for automated, high-precision cutting of metal materials. They can be ordered in bulk or customized.
Main 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 |

Advantages and Application Fields
(I) Core Advantages
Wear-resistant: The key load-bearing structure of the Laser Cutting Robot uses high-strength alloy steel or custom materials to ensure rigidity under long-term high-speed operation, with a machine lifespan of 8-10 years.
Large Working Radius: With an arm span of 1895mm, it covers large-sized workpieces, reducing secondary positioning and increasing production efficiency by over 30%.
Stable Load Capacity: With a maximum load capacity of 20kg, it can stably support the laser cutting head and optical components, ensuring no deviation during high-speed cutting.
Customizable: It can be customized according to workpiece size, power, layout, and material type.
(II)Application Fields and Compatible Materials
| Application Scenario Classification | Specific Application Objects | Adaptable Materials |
|---|---|---|
| Metal Processing | Sheet metal parts, pipes, structural components | Carbon steel, stainless steel, aluminum alloy |
| Electronic Appliances | Mobile phone middle frames, computer case shells, metal accessories of charging piles, metal shells of sensors | Aluminum alloy, brass, red copper, thin-gauge stainless steel |
| Automobile Manufacturing | Automobile body cover parts, engine brackets, exhaust pipe accessories, battery pack shells | Low-carbon steel, galvanized steel sheet, aluminum alloy, high-strength hot-formed steel |
(III)On-Site Simulation and Structural Close-Up Display

Figure 2.1On-site Physical Object Diagram




Figure 2.2 Close-up Diagrams of Each Component
Operation Process: Operators fix the workpiece on the cutting table and set laser parameters (power, speed, air pressure). The robot moves according to the programmed trajectory, keeping real-time positioning between the laser head and the workpiece. After cutting, the laser head returns to the start position for the next cycle.
Usage and Maintenance Guidelines
Environmental Requirements: Operate in a dry, low-dust environment; avoid corrosive gases to maintain precision and longevity.
Preliminary Testing: Calibrate laser focus and robot axes before first use, ensuring laser output and auxiliary gas meet cutting requirements.
Daily Maintenance:
Check laser lens cleanliness and gas output.
Lubricate robot joints weekly with special lubricant.
Inspect power and optical path connections monthly to prevent aging or misalignment.
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