Efficient Absorption Supports Weld Shape & Fusion Depth Blue Laser Hybrid Welder
| Core Diameter: | 200 μm / 0.22 NA | Laser Power: | 1000W |
| Welding Materials: | Copper / Gold / Silver | Head Structure: | T / F/ Y |
| Cooling Method: | Water Cooling | Operating Temperature (℃): | 5-40 |
| Gas Type: | Co-axial / Side Gas | Wavelength (nm): | 445nm |
| High Light: | blue laser hybrid welder,industrial laser welding machine with efficient absorption,welder supports weld shape fusion depth |
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Welding copper, gold, and silver requires careful management of laser energy because these metals reflect a significant portion of incident laser radiation. The Blue Laser Composite Welding Machine is developed specifically for this type of material behavior. By incorporating blue laser energy into the welding process, the system provides a more suitable way to couple laser energy with reflective metals, supporting dependable melting during the welding operation.
The machine combines different laser wavelengths with beam oscillation to give users greater freedom when developing welding parameters. Instead of relying on a single beam condition, the composite configuration allows the energy delivered to the workpiece to be coordinated with the movement of the laser spot. This creates a broader processing window and makes the equipment suitable for a wider variety of welding tasks and joint conditions.
- Built Around Reflective Metal Welding Requirements.
- Composite Energy and Beam Oscillation for Broader Processing Options.
- Easier Energy Coupling at the Start of Welding.
- A Cleaner Welding Process with Little Spatter.
- Efficient Absorption Supports Weld Shape and Fusion Depth.
| Model | HW-B |
|---|---|
| Laser Power | 1000 W |
| Wavelength(um) | 445 nm |
| Head Option | Blue Laser Hybrid |
| Laser Core | 50um / 100um |
| Head Weigh | 4 Kg |
| Laser Beam | Stationary / Wobble |
| Cooling Method | Water Cooling |
| Power Range | 10-100 |
| Power Instability (%) | < 3 |
| Core Diameter | 200 μm / 0.22 NA |
The combination of suitable blue-light absorption and controlled beam movement helps maintain a more orderly welding process. When the molten material is properly managed, unwanted material ejection can be reduced, resulting in little to no visible spatter under suitable welding conditions. A cleaner weld area can also reduce the amount of work required after welding and help maintain the appearance of the finished joint.
For reflective metals, efficient absorption directly affects how effectively laser energy can be converted into heat within the workpiece. The high absorption characteristics of blue laser therefore provide a useful advantage when deeper fusion and controlled weld formation are required. The resulting process can support a well-formed weld profile together with improved penetration, making the machine suitable for applications where both weld appearance and joining performance matter.