Cutting and punching
Sheet cutting and formed features using complementary laser and punch processes.
- Sheet format up to 3,000 × 1,500 mm.
- Usual work is rarely thicker than 6 mm.
Thin-sheet metal fabrication, robotic welding and design support
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Sheet cutting and formed features using complementary laser and punch processes.
Manual press-brake work and automated bending for different batch requirements.
Laser robots, TIG cobot and manual joining processes.
Deburring, grinding, marking and fastening for fabricated parts.
Component drawings, prototypes and production preparation.
Fabricated parts for equipment manufacturers across six supported application areas.
Drawings, design optimization and first prototypes.
Stockholding linked to customer production.
Machine and manual removal of cutting burrs.
Press-in fastening, stud welding and riveting.
Robot-assisted and manual surface work.
CO2 and fibre-laser sheet cutting.
Robot laser welding of thin-sheet components.
Conventional joining alongside robot processes.
Laser and mechanical identification marks.
CoWelder TIG work with or without filler wire.
Manual and robotic bending for fabricated parts.
Punched features combined with laser-cut contours.
Coordinate specialist finishing for fabricated enclosures.
Thin-sheet metal components include electronics enclosures and parts for medical equipment, automation, energy and ventilation. Production in Værløse combines CO2 and fibre-laser cutting, punching, manual and robotic bending, laser and TIG robot welding, and conventional joining. Design and prototyping can precede production; deburring, grinding, fastening and engraving complete components. Specialist partners provide selected operations such as painting and screen printing. Typical production series contain 100–1,000 pieces.
Surface grinding & sanding
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Updated Sep 13, 2026