Plasma cutting is fast, accurate and high quality. Plasma cutting was originally developed for the thermal cutting of materials which were unsuitable for flame cutting, such as high alloy steels or Aluminum. 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
Plasma cutting was originally developed for the thermal cutting of materials which were unsuitable for flame cutting, such as high alloy steels or Aluminum. 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
When selecting a wood floor cutting machine, key features to consider include the cutting capacity, precision, safety features, ease of use, durability, and compatibility with different types of wood.
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Laser Cutting is used in most diverse areas, specifically wherever high accuracy for the component geometry and cut edge is required. Key features such as Laser light can be well focused ca. 0.2 mm, Very high power density (some MW/cm2) and many more. Characteristics: Plate thickness: 1 mm up to 25 mm Typical: 0.5 mm up to 20 mm Key features: Laser light can be well focused ca. 0.2 mm Very high power density (some MW/cm2) High to medium cut quality (roughness) Low heat input in.messer-cutting dot com/products/processes/laser-cutting/overview-laser-cutting
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