Plasma and oxyfuel cutting systems

Metallurgical perfect surfaces for welding

Plasma cutting – fast, accurate and high quality. It was originally developed for the thermal cutting of materials which were unsuitable for flame cutting, such as high alloy steels or Aluminium. Today, the process is also used for the economical cutting of thin, low alloyed steels.

Characteristics:

  • Plate thickness: 0,8 mm up to 160 mm
  • Typical: 3 mm up to 75 mm

Key features:

  • High to very high cut quality
  • Smooth, cutting surfaces
  • Metallurgical perfect surfaces for welding
  • Medium heat input
  • Excellent cutting speed
  • Low harding on cutting surface

Oxyfuel cutting – most economical process. The heating flame brings the material up to its ignition temperature. Then a jet of Oxygen at least 99,5% pure is blown onto the heated spot. The Oxygen jet oxidizes the metal. The torch is moved, and a narrow cutting kerf is created, removing the slag from the kerf.

Despite the increasing significance of the other cutting processes such as plasma and laser cutting, oxyfuel flame cutting is still a very economical process

Characteristics:

  • Plate thickness: 3 mm up to 2800 mm
  • Typical: 10 mm up to 300 mm

Key features:

  • Good cut quality
  • Smooth, vertical cutting surface
  • Metallurgical perfect surfaces (oxidized)

Messer Element 400

FLEXIBILITY FOR THE METAL PROCESSING INDUSTRY

The demands on your production are continually increasing. As a solution provider, we therefore focus entirely on your needs. Continually providing increased efficiency, reliability and quality: we know what today’s metal processing industry requires from you – with our new, flexible ELEMENT platform we are already setting the course for a successful future today.

Apart from the high level of productivity and precision you have come to expect from us, this solution offers customised configuration options and updates, enabling you to respond to future requirements. This gives you a real competitive edge – helping you to stay ahead in the long run.

Messer OmniMat®

CUTTING MACHINE FOR COMPLEX APPLICATIONS

Are you engaged in shipbuilding or heavy engineering? The OmniMat® is characterised by a particularly high ability to handle heavy loads and high productivity. Whether oxyfuel, underwater or dry plasma, whether vertical or bevel cutting or with drilling, the OmniMat® is the ideal solution for the largest working areas and the toughest production conditions. A full spectrum of marking processes is, of course, also available.

OmniMat® is a large size CNC cutting machine with a heavy-duty structure and multi axis control, suitable for a wide field of applications and complicated cutting jobs. A number of different torch suspensions with tool holders is available, e.g. marking tools, punching and drilling devices, strip cutting attachments, triple torch or rotating triple torch, plasma arc contour bevel unit.

  • Working widths up to 7.800 mm
  • Also able to take the heaviest units
  • Such as complex vertical or bevel cutting heads
  • For oxyfuel, underwater or dry plasma
  • Drilling, marking, etc.
  • Linear guides on the bridge
  • Precise and smooth cuts
  • Positioning speeds of up to 50 m/min
  • Highest accelerations
  • Fast torch lifters (16 m/min):
  • Reduces non-productive times

Messer MetalMaster 2.0

HIGH PERFORMANCE – LOW PRICE

Plasma- ja polttoleikkausjärjestelmät

Do you need a compact flatbed cutting machine which can be installed and operated quickly and easily? Are you looking for an economical machine which gives full power in a small area? The MetalMaster 2.0 is the economical entry level machine for simple CNC plasma cutting, just oxyfuel or both combined.

  • Ergonomical design with stabile table construction and integrated extraction
  • Maximum working width with minimum space requirements
  • Fast Drop & Cut installation
  • Low price
  • Integrated guidance
  • High accuracy
  • Twin-sided longitudinal drive with rack and pinion:
  • Accurate, reliable performance with positioning speeds of up to 35 m/min

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