Our heavy-duty laser hybrid cutting machine features a revolutionary coaxial technology, where the laser beam, propane, and oxygen converge through a single nozzle. This synergistic energy action rapidly melts and expels metal, resulting in a clean kerf and dramatic gains in cutting speed and edge quality. Integrating three cutting modes into one versatile platform, it delivers a comprehensive high-efficiency cutting solution for carbon steel, stainless steel, and non-ferrous metals.
| Type | Linear Guide Laser Combination Cutting Machine |
|---|---|
| Laser power | 12,000W |
| Applicable Materials | Carbon Steel、Stainless Steel、Non- Ferrous Metals |
| Thickness Capacity | Carbon Steel:200mm |
| Minimum Cut Hole Diameter | 30% of Plate Thickness |
A single system integrating three cutting modes: laser, laser-flame hybrid, and pure flame cutting. It intelligently switches based on material type and thickness, meeting diverse needs—from precision machining to ultra-thick plate processing.
Utilizes proprietary hybrid technology where the laser and propane/oxygen are delivered coaxially through one nozzle, working synergistically. This significantly accelerates metal melting and slag removal, increasing cutting speed by over 30% and delivering mill-smooth surface quality—often eliminating the need for secondary processing.
Equipped with an intelligent nesting and programming system featuring advanced processes like common-edge and bridge cutting. Efficient algorithms and path optimization maximize material utilization, enable continuous automated production, and multiply overall productivity.
Features automatic ignition, pressure regulation, and a built-in expert process database. Even beginners can quickly achieve stable, high-quality results, minimizing reliance on highly skilled operators.
Beyond standard nozzle wear, core laser optical components experience minimal consumption. An optional high-efficiency dust removal system effectively controls cutting fumes, promoting a clean, environmentally friendly workshop environment.