Model | TSE7.5-13 | TSE11-16 | TSE15-16 | TSE22-16 | TSE37-16 |
---|---|---|---|---|---|
Rated Power | 7.5 kW | 11 kW | 15 kW | 22 kW | 37 kW |
Exhaust Pressure | 13 bar | 16 bar | 16 bar | 16 bar | 16 bar |
Volume Flow | 0.8 m³/min | 1.0 m³/min | 1.2 m³/min | 2.2 m³/min | 3.5 m³/min |
Main Unit Type | Integrated Unit | ||||
Cooling Method | Air Cooling | ||||
Air Tank Capacity | 340L | ||||
Volume Flow | 420kg | 440kg | 450kg | 480kg | 800kg |
Dimensions | 1760x700x1600mm | 1800x800x1760mm | 1800x700x1760mm | 1800x750x1760mm | 2000x800x1800mm |
The various components of a 22KW fiber laser air compressor usually include the following main parts, each of which plays an important role in the system.
Maximize efficiency and quality with our specialized air compressor – the power behind your precision.
Using compressed air for laser cutting not only reduces costs, but also improves cutting quality and safety. It is highly adaptable and environmentally friendly, and is an ideal choice for many industrial applications.
Cost-effectiveness: Compressed air is relatively cheap, and using air as a cutting gas can reduce material and operating costs.
Cutting quality: Compressed air can provide a clear cutting edge, reduce slag and burrs, and is especially good when cutting thin materials.
Strong adaptability: It is suitable for a variety of materials, including stainless steel, aluminum, and plastics.
No pollution: Using compressed air does not produce harmful gases or waste, which meets environmental requirements.
Fast cutting: Compressed air can increase the speed of laser cutting, especially when cutting thin materials.
Reduce heat effects: When cutting with compressed air, the heat-affected zone is relatively small, which helps to maintain the physical properties of the material and reduce deformation.