





ALLBEST WA-Series 1500W 2000W 3000WPlatform welding machineGold Mark platform automatic laser welding machine, equipped with an XYZ axis in a large working area, enables precise positioning and flexibility for various workpieces, which is an ideal solution for automated, accurate, flexible, and efficient laser welding. Gold Mark’s automatic laser welding machine integrates with automation systems and ensures high speed, adaptability, and a streamlined production process.
1.High Precision:Automatic platform laser welding machines offer exceptional precision in welding operations. The laser beam allows precise control over the heat input, resulting in accurate and consistent welds. This is particularly beneficial for applications that require tight tolerances and intricate welds.
2.Speed And Efficiency:Laser welding is faster than traditional welding methods. Platform laser welding machines can perform rapid and continuous welding, significantly reducing cycle times and increasing production efficiency. This speed advantage translates to higher throughput and reduced production costs.
3.Versatility:Platform automatic laser welders are highly versatile and can handle various materials. Including metals and alloys. They can easily weld different thicknesses and combinations of materials. This makes them suitable for diverse applications across automotive, aerospace, electronics, and more industries.
4.Minimal Heat Affected Zone (HAZ):Laser welding generates a concentrated, localized heat source. It results in a minimal heat-affected zone (HAZ) around the weld area. This reduces the risk of material distortion, preserving the surrounding material’s mechanical properties.
5.Weld Quality And Consistency:Laser welding offers excellent weld quality with high joint strength and integrity. Platform automatic laser welding machines ensure consistent welds throughout production, eliminating variations commonly associated with manual welding. This leads to improved product quality, reduced rework, and enhanced reliability.
Flexible Power Matching for Optimal Cost-Per-Part: With options from 6kW to 12kW and beyond, it allows precise power selection based on material thickness and cycle time requirements. This achieves the optimal balance between energy consumption and throughput, directly optimizing your cost-per-part.
Superior Dynamics to Boost Capacity Bottlenecks: The high-rigidity structure coupled with high-torque servo drives ensures smooth operation at high accelerations. This minimizes non-cutting time and guarantees consistent contour accuracy during continuous processing of thick plates or complex designs, directly increasing overall workshop capacity.
Process-Optimized for Stainless Steel & Alloys: Integrated with an advanced cutting parameter database and specially optimized gas control, the machine effectively manages the heat-affected zone. It delivers oxidation-free, bright cuts on stainless steel and aluminum, minimizing secondary operations like polishing.
High Automation Readiness for Uninterrupted Production: Designed for seamless integration with automatic loading/unloading, centralized fume extraction, and material storage systems, enabling hours of continuous, even unattended operation. This significantly reduces reliance on skilled operators and is a key step towards lights-out manufacturing.
| Mode | AT-3015F | AT-4020F | AT-6025F |
| Working Area | 3050*1530mm | 4000*2000mm | 6000*2500mm |
| Repeat Repositioning Accuracy | ±0.03mm | ||
| Accuracy of Positioning | ±0.02mm | ||
| X,Y Max linkage Speed | 145m/min | ||
| Laser Power | 1500W / 2000W / 3000W / 4000W / 6000W /12000W | ||
| Laser Source | MAX / Raycus / IPG/JPT/BWT/RECI | ||
| Maximum acceleration | 2G | ||
| Upgrade | Tube cutting / Exchange platform /Enclosed protection | ||

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It functions as a precise “light knife” that can cut metal sheets automatically according to computer-designed patterns. This technology is used to manufacture machine casings, metal advertising letters, kitchen utensils, and more.
Fiber lasers are mainly used for cutting metals due to their high speed and low electricity costs. CO2 lasers can cut both metals and non-metals, such as acrylic and wood, but are less efficient when cutting metals.
The thickness of the material you are cutting determines the power needed for effective cutting. Generally, higher power levels allow for cutting thicker materials more quickly.

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