Fibre Laser Cutting
Fibre laser cutting of sheet metal: chassis panels, brackets, consoles and enclosure parts. Cut parts move on to bending and TIG/MIG welding in-house, so a sheet-metal assembly is completed under one roof.
01Why fibre laser for sheet metal
Fibre lasers work with a narrower beam and higher energy density than CO₂: faster cutting in thin and medium sheet, narrower kerf and a smaller heat-affected zone. Reflective materials such as stainless and aluminium cut consistently.
Nesting is done directly from DXF / DWG; material yield and cutting time are calculated at quotation.
02Capacity*
- Laser source
- 6 kW fibre
- Max thickness (S235 carbon steel)
- 20 mm
- Materials
- Carbon steel · Stainless · Aluminium
- Input formats
- DXF · DWG · STEP (flat pattern)
- Downstream
- Bending · Welding · Machined finishing · Surface treatment
03From cutting to assembly on one line
Sheet-metal parts are rarely wanted alone — they are part of a bent, welded assembly. Cutting, bending and welding in one workshop removes part-to-part mismatch and transport loss; after welding, critical faces are brought to tolerance on the 5-axis machining centre.
Frequently asked questions
- Do you take low-quantity cutting jobs?
- Yes. From single-piece prototypes to production; nesting is done even for one part.
- Is there burr or heat marking after cutting?
- Heat effect is confined to a narrow zone with fibre laser; deburring and surface treatment are applied as thickness and material require.
* marked values are pending verification before publication (see VERIFY.md).

