How Laser Welding Works
Key Features
Low Heat Input
Low Heat Input
Low Heat Input
Even for thick sections, laser welding only melts a small cross section of metal at a time and welds with a high travel speed, minimizing heat transfer to surrounding metal.
Precise Weld Geometry
Precise Weld Geometry
Precise Weld Geometry
Laser welding is capable of producing extremely deep, narrow welds with superior heating and cooling rates that can minimize the precipitation of alloy components in highly alloyed metals. Laser welding can also fill beveled joints much like traditional welding processes using filler rod.
Robust Process Parameters
Robust Process Parameters
Robust Process Parameters
Laser welding is often far more forgiving compared to traditional MIG, TIG, and other arc welding processes. It can deliver superior welds with looser control of welding procedure parameters.
Technical Specifications
Laser Source
Laser Source
Laser Source
2kW 1,060nm Laser.
Oscillation Type
Oscillation Type
Oscillation Type
Up to 4mm beam wobble pattern.
Penetration Depth
Penetration Depth
Penetration Depth
Up to 6mm of penetration in stainless steel in a single pass.
Welding Modes
Welding Modes
Welding Modes
Capable of keyhole and conduction welding.
Applications
Pipe Welding
Pipe Welding
Pipe Welding
Welding pressurized pipes and flanges.
Structural Welding
Structural Welding
Structural Welding
Welding nickel super alloys.
Automotive Applications
Automotive Applications
Automotive Applications
Joining thin sheet aluminum and stainless steel.
Precision Repairs
Precision Repairs
Precision Repairs
Repairs of fine tubing and joints.