| Specification | Details |
|---|---|
| Product Type | Micro Laser Welding Machine |
| Laser Type | Fiber Laser |
| Laser Power | 100W–300W |
| Welding Type | Precision Laser Welding |
| Suitable Materials | Stainless Steel, Carbon Steel, Mild Steel and Compatible Metals |
| Welding Application | Small Components and Fine Metal Parts |
| Cooling System | Air or Water Cooling, Based on Configuration |
| Control System | Digital Control System |
| Operation | Manual / Semi-Automatic, Based on Configuration |
| Welding Area | Fine and Focused Welding Area |
| Power Supply | 220V, 50Hz |
| Application | Jewelry, Electronics, Hardware, Engineering and Industrial Parts |
Micro Laser Welding Machine is made for small and precise welding jobs. It uses a focused laser beam to join metal parts with good control.
The machine is useful when normal welding methods may create too much heat or a large weld area. It helps operators work on small parts with better accuracy.
This precision laser welding machine can be used with suitable metals such as stainless steel, carbon steel, and other compatible materials.
The machine can be used for many small metal welding applications, including:
The focused laser beam helps keep the welding area small. This can reduce unwanted heating around the joint.
The controlled welding process also helps produce neat welds on small parts. Operators can adjust the welding parameters according to the material and job requirements.
The machine is also useful for applications where accuracy and repeatable welding are important.
The Micro Laser Welding Machine can be used in jewelry manufacturing, electronics, engineering, hardware production, tool making, and general industrial manufacturing.
It is suitable for workshops and production units that need controlled welding for small components.
A focused laser welding process offers good control over the weld area. It can help reduce distortion and unnecessary heat on suitable workpieces.
The fiber laser welding system can also support repeatable results when the correct laser power, pulse settings, material, and joint design are selected.
For exact performance, laser source, power, workpiece thickness, and configuration should be selected according to the application.
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