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Project Laser · Welding processes

Precision welding

TIG, MIG/MAG and laser in the same plant that cuts and bends your part. Each joint calls for a process, and the right call comes with the quote.

TIG · MIG/MAG · Laser Structure, visible stainless and thin sheet Itupeva, Brazil
Welder at work with sparks, in blue tones

Three processes in-house

When to use each weld

Each joint calls for a process. The right choice sets the finish, cost and lead time of the part.

SL-01 / TIG

TIG welding

An arc with a tungsten electrode and fine control of heat input. The weld for visible joints and parts that demand care, in stainless and aluminum.

  • Visible joint
  • Stainless and aluminum
  • Prototype and one-off parts
SL-02 / MIG-MAG

MIG/MAG welding

Continuous wire and a high deposition rate. It delivers on structural work, boilermaking and thicker carbon steel.

  • Structural work
  • Carbon steel
  • Production volume
SL-03 / LASER

Laser welding

The beam concentrates energy on a small spot. The part barely heats up, thin sheet stays flat and the seam comes out narrow and even.

  • Thin sheet
  • Visible stainless
  • Series with repeatability

What changes in practice

How we choose the process

  1. 01

    Finish comes first

    Visible joints and exposed stainless call for a clean seam: TIG or laser, with less polishing afterwards.

  2. 02

    Structure calls for deposition

    Boilermaking and thicker carbon steel do better on MIG/MAG.

  3. 03

    Series call for repetition

    Straight joints in production runs come out fast and identical on laser welding, with thin sheet staying flat.

  4. 04

    The recommendation comes with the quote

    Send the drawing and the reply tells you which process fits your joint, with lead time and price.

Quote

Which weld does your part call for?

Send the drawing with material and quantity. The reply comes with the recommended process, lead time and price.