Laser welding (fiber laser welding) is one of the newest additions to AXINAR’s toolset. It doesn’t replace MIG or TIG welding, it complements them for specific cases where precision, speed, or weld cleanliness is critical.
How Laser Welding Works
A fiber laser concentrates energy into a very small beam diameter (~0.1mm). The beam melts the metals at the contact point and joins them with a minimal heat-affected zone (HAZ). Filler material is usually not needed, welding happens by autogenous fusion.
Comparison with MIG/TIG
| Laser | TIG | MIG | |
|---|---|---|---|
| Speed | Very high (5x MIG) | Low | Medium |
| Heat-affected zone (HAZ) | Very small | Small | Medium |
| Distortion | Minimal | Small | Medium |
| Precision | 0.05mm | 0.2mm | 0.5mm |
| Equipment cost | High | Low | Medium |
| Material thickness | 0.1–8mm | 0.5–20mm | 1–40mm |
Laser Welding Applications
- Stainless steel: food tanks, dairy industry equipment, medical devices
- Aluminum: electronic enclosures, heat exchangers
- Very thin materials: 0.1–1mm where MIG burns through the material
- High production speed: production lines, robotic welding
- Precision points: spot welding on PCB housings, batteries, sensors
When It’s NOT the Best Choice
- Metal thickness above 8mm, MIG is more economical
- Structural constructions, MIG with fill wire gives better mechanical properties
- Field work, laser needs a stable environment
AXINAR operates 3kW fiber laser welding in Thessaloniki, for applications where MIG/TIG cannot meet precision or speed requirements.
- Precise fitting without distortion
- Steel, stainless, aluminum
- Ideal for inox & tight tolerances
Request a Quote for Your Project
Send us sketches, CAD drawings, or a description of your project, and we’ll respond within 24 hours with a technical estimate and indicative cost. We cover everything from prototypes to mass OEM production.
See also all AXINAR metal processes.