HW High-Reflective Metal-Specific Blue Light Hybrid Welder with Efficient Welding
The blue light composite welding machine is specifically designed to address the welding difficulties of highly reflective metals such as copper, gold, and silver. Since these materials have extremely high reflectivity to traditional infrared lasers, it is often difficult to establish a stable molten pool. Blue light lasers, on the other hand, have a higher material absorption rate in the short-wave spectrum, allowing energy to quickly act on the surface of the workpiece and penetrate deep into the material. Therefore, in industries such as new energy battery connectors, 3C electronic conductive components, and precision electrical terminals, blue light composite welding machines can significantly improve welding consistency and processing efficiency, making them one of the core pieces of equipment for processing highly reflective materials.
Key Features
- High-Efficiency Welding Solution Specifically Designed for Highly Reflective Metals.
- Composite Beam and Swing Structure Expand the Process Window.
- Lower Absorption Threshold Enables Greater Process Control.
- Splash-Free Welding Achieves a Cleaner Processing Procedure.
- Ultra-High Absorption Rate Leads to Better Weld Formation and Penetration.
Thanks to a gentler and more precise energy input method, the blue light composite welding machine can effectively suppress spatter generation, resulting in almost no metal particle ejection during the welding process. A clean welding environment not only improves the appearance quality of products but also reduces subsequent cleaning processes, allowing for faster production cycles and lower costs. It offers significant advantages for industries sensitive to surface cleanliness, such as consumer electronics and precision component manufacturing.
Technical Parameters
| Model | HW-B |
| Laser Power | 1000 W |
| Wavelength(um) | 445 nm |
| Head Option | Blue Laser Hybrid |
| Laser Core | 50um / 100um |
| Head Weigh | 4 Kg |
| Focuses | Option |
| Laser Beam | Stationary / Wobble |
| Cooling Method | Water Cooling |
| Machine Size | 1000*450*850mm |
| Power Range | 10-100 |
| Power Instability (%) | < 3 |
| Core Diameter | 200 μm / 0.22 NA |
Applications
The blue light wavelength has a very high absorption rate for highly reflective metals, allowing heat to be transferred more directly and deeply into the material, resulting in welds that are uniform, smooth, and more ductile. At the same time, higher energy efficiency can achieve a more desirable penetration depth, significantly improving weld strength and load-bearing capacity, making it especially suitable for the welding of power battery busbars, motor terminal connections, and the manufacture of high-end electrical components where high reliability is required.
Welding Samples
Shenzhen Hanwei Laser Enterprise
Shenzhen Hanwei Laser Equipment Co., Ltd. provides a broad range of laser equipment, encompassing both desktop and portable configurations. These setups adopt advanced fiber, pulsed or continuous-wave, blue laser, diode laser, and hybrid laser technologies — all carefully engineered to meet the distinctive requirements of customers.
The company offers customized solutions for specific use cases, along with training and after-sales support services. This ensures clients can fully unlock the performance potential of their laser systems. With branches and subsidiaries spanning Europe, North America, Asia, and the Middle East, Hanwei Laser has established a robust global presence, catering to clients around the world.
Hanwei Laser focuses primarily on laser welding. The company is committed to delivering cutting-edge laser welding technology to international laser integration enterprises, striving to provide top-tier welding solutions for all integrators. As one of the relatively rare national high-tech specialized and innovative enterprises worldwide, it specializes in the full industrial chain of R&D, manufacturing, and sales for various welding lasers, laser control systems, laser optical systems, and laser welding processes.