




AllBest TubeAir Cooling Handheld Fiber Laser Welding Machine
AT-WFA Series Air Cooling Handheld Fiber Laser Welding Machine
The Air Cooling Handheld Fiber Laser Welding Machine is ideal for welding carbon steel, stainless steel, aluminum alloy, galvanized sheets, copper, and other metal materials. It offers high welding speed, precision, flexibility, and efficiency, with an air-cooled design that reduces maintenance and operating costs, making it an excellent choice for a wide range of metal fabrication applications.
Vorteile
1 Lightweight & Flexible Welding:
The air-cooled handheld fiber laser welding machine features a compact and lightweight design, making it easy to operate and move between different work areas. Its handheld welding gun provides excellent flexibility, allowing operators to weld flat, curved, and hard-to-reach surfaces with ease.
2 High-Speed Welding Performance:
Fiber laser welding delivers significantly faster welding speeds than traditional TIG and MIG welding methods, helping reduce production time and increase overall efficiency. The concentrated laser beam provides stable energy output for fast, smooth, and consistent welding results.
3 Precise & Clean Welds:
The focused laser beam produces a small heat-affected zone and high energy density, resulting in precise welds with minimal deformation and distortion. It can achieve smooth, strong, and aesthetically pleasing weld seams while reducing the need for extensive post-welding grinding and polishing.
4 Wide Material Compatibility:
The machine is suitable for welding a wide range of metals, including carbon steel, stainless steel, aluminum, galvanized sheet, copper, and various metal alloys. With adjustable laser parameters, it can meet different material thicknesses and welding requirements across multiple applications.
5 Air-Cooled Design & Low Maintenance:
Unlike traditional water-cooled laser welding systems, the air-cooled design eliminates the need for a water chiller, simplifying installation and reducing maintenance requirements. Its compact structure, low operating cost, and easy operation make it an efficient and cost-effective solution for metal fabrication, workshops, and industrial production
Video
Anwendungen
Air-Cooled Design for Lower Operating Costs: With an advanced air-cooling system, the machine eliminates the need for a traditional water chiller, reducing equipment footprint, energy consumption, and maintenance requirements. This compact and efficient design provides a cost-effective solution for workshops and production environments.
High-Speed Welding to Maximize Productivity: The high-energy-density fiber laser beam enables fast and stable welding with excellent penetration and strong weld strength. Compared with traditional welding methods, it significantly reduces processing time and improves overall production efficiency, especially for repetitive metal fabrication tasks.
Precision Welding with Minimal Heat Distortion: The concentrated laser beam creates a small heat-affected zone, effectively minimizing material deformation and thermal damage. It produces smooth, clean, and consistent weld seams while reducing the need for post-welding grinding and polishing.
Versatile Processing for Multiple Metals: Optimized welding parameters allow the machine to process a wide range of materials, including stainless steel, carbon steel, aluminum, galvanized sheet, copper, and various metal alloys. Its flexible handheld operation makes it suitable for complex shapes, corners, joints, and different welding positions.
User-Friendly Operation for Faster Deployment: The intuitive control system and lightweight handheld welding gun make operation simple and convenient, reducing the learning curve for new operators. Combined with low maintenance requirements and flexible mobility, it can be quickly deployed across different production areas to support efficient and reliable metal fabrication.
Technische Parameter
| Model | AT-800WFA | AT-1200WFA | AT-1500WFA | AT-2000WFA | ||
|---|---|---|---|---|---|---|
| Laser Power (W) | 800 | 1200 | 1500 | 2000 | ||
| Dimensions(mm) | 540x300x440 | 710x450x595 | 710x450x595 | 699x371x573 | ||
| WorkingVoltage | AC220/2.3KW/10.5A | AC220/3.3KW/ 15A | AC220/4.7KW/21.3A | AC220/6KW/ 27.3A | ||
| Laserwellenlänge | 1080nm | 1080nm | 1080nm | 1080nm | ||
| Laserquelle | MAX/Raycus | |||||
| Power Adjustment Range | 10%-100%(GradientAdjustable) | |||||
| Kühlung | Air Cooling | |||||
Maschinenparameter

Precise Wire Feeding for Consistent Welding
High-precision wire feeder with matching wire feeder unit ensures uniform wire delivery, stable arc, and consistent welds, reducing rework and boosting productivity.

Intelligentes Steuerungssystem
The system supports one-click intelligent parameter optimization and real-time visual monitoring of the entire laser welding process. It effectively reduces manual operation errors, keeps welding output consistent and stable, and guarantees long-term safe and reliable equipment operation.

Reliable Performance in All Environments & Climates
Stabil von extrem kalten Bedingungen bis -20 °C bis zu hohen Temperaturen von +40 °C. In extremen Umgebungen mit einer Luftfeuchtigkeit von 90-100 % kann die W-Serie ebenfalls eine stabile und hervorragende Schweißerfahrung bieten.

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Probe
FAQ
Was ist ein Laserschneider und was kann er tun?
Er funktioniert als präzises „Lichtmesser“, das Metallbleche automatisch nach computerdesignten Mustern schneiden kann. Diese Technologie wird zur Herstellung von Maschinengehäusen, Metallwerbeschildern, Küchenutensilien und mehr verwendet.
Was ist der Unterschied zwischen Faserlaserschneidmaschine und CO2-Laserschneidmaschine?
Faserlaser werden hauptsächlich zum Schneiden von Metallen verwendet, aufgrund ihrer hohen Geschwindigkeit und niedrigen Stromkosten. CO2-Laser können sowohl Metalle als auch Nichtmetalle wie Acryl und Holz schneiden, sind beim Schneiden von Metallen jedoch weniger effizient.
Welche Leistung sollte meine Laserschneidmaschine haben?
Die Dicke des Materials, das Sie schneiden, bestimmt die erforderliche Leistung für einen effektiven Schnitt. In der Regel ermöglichen höhere Leistungsstufen das schnellere Schneiden dickerer Materialien.



