➢ Large gantry design ensures large area diagonal precision; Automatic accuracy compensation.
➢ Super long air duct; Partition automatic dust removal; Satble and durable machine tool.
➢ Laser safety protection and safety light curtain design.
Advantages over plasma cutting
➢ High Precision, good cutting quality. Fast speed high efficiency.
➢ Small cutting taper; High material utilization.
➢ Clean and environmentally friendly; energy saving
| Model Specifications | HN-FL12025 |
| Fiber Laser Source | 10000-40000W |
| Laser Head | Boci BLT series cutting head |
| Effective working length X axis | 2500mm |
| Effective working length Y axis | 12000mm |
| Max cutting thickness | MS ≤ 50mm SS≤ 20mm |
| X,Y axis positioning accuracy | ±0.02mm/m |
| X,Y Axis repositioning accuracy | ±0.02mm/m |
| X,Y Axis moving speed | ≤80m/min |
| Rated supply voltage | 380V, 3Phase |
| Frequency | 50Hz |
| Power consumption | 24KW |
| General power protection class | IP54 |
| Maximum load of workbench | 4200KG |
| Weight | 15T |
| Dimension (Length*Width*Height) | 13500*3850*1500mm |
| MAX | Carbon Steel | Stainless Steel | Aluminum | Brass |
| 1000W | 10 | 5 | 3 | 3 |
| 1500W | 13 | 7 | 4 | 3 |
| 2000W | 18 | 8 | 6 | 5 |
| 3000W | 20 | 10 | 6 | 6 |
| 4000W | 25 | 10 | 8 | 8 |
| 6000W | 25 | 16 | 14 | 14 |
| 8000W | 25 | 20 | 16 | 16 |
| 10000W | 35 | 25 | 18 | 18 |

Cut video:
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Aluminum Beam::Better than cast aluminium, strong rigidity, high density, looks brighter than normal cast aluminum, stable performance and not easy deformed. |
Super Large Format:The dust removal system adopts a blowing and suction design. The fan on one side delivers air powerfully, and the dust collector on the other side sucks air efficiently. This two-pronged approach has excellent dust removal effects, extends the life of the equipment, creates a green and environmentally friendly working environment, and better protects the health of operators. |
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HypCut is customized software developed for high-power laser cutting. A professional process is provided for high-power laser cutting, which can realize intelligent production. It supports the planning and scheduling to assist production management; its modular design provides users with more concise and efficient operations and assists users in quickly completing production. |
Without Manual FocusingThe software automatically adjusts the focusing lens to realize automatic perforating and cutting plates of different thickness. The speed of automatically adjusting focus lens is ten times of the manual adjusting. Bigger Adjustment RangeAdjustment range -10 mm~ +10mm, precision 0.01mm, suitable for 0 ~ 20mm different types of plates. Long Service LifeCollimator lens and focus lens both have water-cooling heat sink which reduces the temperature of the cutting head to improve the life of the cutting head. |
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In the rapidly evolving manufacturing landscape, fiber laser metal cutting machines have emerged as a revolutionary technology, offering unparalleled precision, efficiency, and versatility. These advanced systems leverage high-powered fiber laser sources to deliver exceptional cutting performance across a wide range of metals, making them indispensable tools for industries such as automotive, aerospace, construction, and electronics. Below, we explore the key advantages of fiber laser metal cutting machines that set them apart from traditional cutting methods.
Fiber laser cutters excel in producing intricate designs and tight tolerances, even on thin or delicate materials. The concentrated laser beam, with a wavelength optimized for metal absorption, ensures clean edges, minimal kerf width, and near-perfect repeatability. This precision reduces the need for secondary finishing processes, saving time and costs while maintaining high-quality output.
Compared to CO₂ lasers or plasma cutting systems, fiber laser machines operate at significantly higher speeds. Their ability to rapidly pierce and cut through metals—including stainless steel, aluminum, copper, and brass—translates to faster production cycles. Automated features, such as CNC controls and material handling systems, further boost throughput, enabling 24/7 operation with minimal downtime.
Fiber lasers consume up to 50% less energy than conventional CO₂ lasers, thanks to their solid-state design and efficient photoelectric conversion rates. Lower power consumption, combined with reduced maintenance requirements (no gas mirrors or complex optics), results in substantial long-term cost savings. Additionally, the minimized material waste from precise cutting optimizes raw material usage.
From ultra-thin sheets (0.1 mm) to thicker plates (up to 30 mm, depending on the laser power), fiber laser cutters handle diverse metal types effortlessly. Advanced systems adapt to varying material properties by adjusting parameters like power, speed, and gas pressure, ensuring consistent quality whether cutting reflective metals or alloys.
Fiber laser systems are engineered for robustness, with no moving parts in the laser source and a simplified optical path. This design reduces wear and tear, extends service life, and eliminates frequent recalibration. Routine maintenance is straightforward, focusing primarily on lens cleaning and consumable replacements.
Fiber laser cutting produces fewer emissions and noise compared to traditional methods. The absence of harmful chemicals or gases (in many applications) aligns with sustainable manufacturing practices. Furthermore, the precision of laser cutting minimizes scrap metal generation, contributing to waste reduction.
Modern fiber laser cutters seamlessly integrate with Industry 4.0 technologies. IoT-enabled monitoring, real-time data analytics, and compatibility with CAD/CAM software streamline workflow automation. This connectivity allows for remote operation, predictive maintenance, and adaptive process optimization.
Fiber laser metal cutting machines represent a transformative leap in industrial cutting technology. Their combination of precision, speed, cost efficiency, and adaptability makes them a critical asset for businesses aiming to stay competitive in a demanding market. By investing in fiber laser systems, manufacturers can achieve higher productivity, reduce operational costs, and deliver superior-quality products—all while supporting sustainable practices. As the technology continues to advance, its applications and benefits will only expand, solidifying its role as the future of metal fabrication.
Machine Features: