Pipe cnc fiber laser cutting machine

Pipe cnc fiber laser cutting machine

Pipe cnc fiber laser cutting machine

1.Introduction for Pipe cnc fiber laser cutting machine:
The laser cutting machine focuses the laser beam emitted from the laser source through the optical path system into a high-power-density laser beam. This laser beam is directed onto the surface of the workpiece, causing it to reach the melting point or boiling point. At the same time, the high-pressure gas coaxial with the laser beam blows away the molten or vaporized metal.
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1.Introduction for Pipe cnc fiber laser cutting machine:

The laser cutting machine focuses the laser beam emitted from the laser source through the optical path system into a high-power-density laser beam. This laser beam is directed onto the surface of the workpiece, causing it to reach the melting point or boiling point. At the same time, the high-pressure gas coaxial with the laser beam blows away the molten or vaporized metal. As the relative position of the laser beam and the workpiece moves, the material forms a cutting seam, achieving the purpose of cutting. Laser cutting processing replaces the traditional mechanical knife with an invisible beam, featuring high precision, rapid cutting, no limitation on cutting pattern restrictions, automatic layout to save materials, smooth cuts, low processing costs, etc. It will gradually improve or replace traditional metal cutting equipment. The mechanical part of the laser cutter head has no contact with the workpiece, and during operation, it will not cause scratches on the workpiece surface. The laser cutting speed is fast, the cut is smooth and flat, generally no subsequent processing is required; the heat affected zone of the cutting is small, the deformation of the sheet is small, the cutting seam is narrow (0.1mm - 0.3mm); the cut has no mechanical stress, no shear burrs; the processing accuracy is high, the repeatability is good, and the material surface is not damaged; with numerical control programming, it can process any planar drawings, and can cut large plates without molds, which is economical and time-saving.



2.Technical parameter for Pipe cnc fiber laser cutting machine


1

Model

CNC-6024(Other models can be customized)

2

Laser source

3000W,4000W,6000W or more(Optional)

3

Round pipe dia

20-240mm

4

Square pipe

20-240mm

5

I beam

10# to 18#

6

Max rotation speed

100m/min

7

Max pipe length

6000mm

8

Max workpiece weight

300kg

9

Chuck

240mm Pneumatic chuck

10

Laser source

Raycus or Max or IPG

11

Power

380V,50Hz,3P(can be customized)



3.Characters for Pipe cnc fiber laser cutting machine:

3.1 High Precision: The positioning accuracy can reach ±0.01mm, the repeatability positioning accuracy is ±0.03mm, and the minimum line width can be as low as 0.01mm. It is suitable for precision manufacturing.

3.2 High Speed: The maximum cutting speed can reach over ‌100m/min‌, and the travel speed can reach as high as ‌30,000mm/min‌. The acceleration can reach ‌3.0G‌ or even ‌5G‌ (for high-end models)

3.3 The cutting edge is of good quality, with a narrow cutting seam (typically 0.1–0.3mm), a smooth surface without burrs, a roughness of ‌Ra ≤ 6.5, a small heat affected zone, and minimal deformation of the workpiece.

3.4 Non-contact Processing: The laser head does not come into contact with the material, thus avoiding scratches, mechanical stress and tool wear.

3.5 The material adaptability is strong. It can cut various metals such as carbon steel, stainless steel, aluminum alloy, copper, and titanium alloy. The CO₂ laser machine can also process non-metal materials such as wood, acrylic, fabric, leather, plastic, ceramics, and glass.

3.6 Flexibility: Supports the cutting of any complex shapes, without the need for mold production. Suitable for small-batch, multi-variety production.

3.7 High level of automation, supporting CNC numerical control programming, and capable of seamless integration with CAD/CAM systems; optional features include automatic feeding, visual alignment, automatic layout, and waste recycling.

3.8 Energy Conservation and Environmental Protection: The photoelectric conversion efficiency of the fiber laser cutting machine is approximately 30%, which is three times that of the CO₂ laser machine; it has low operating energy consumption and low maintenance costs.

products faq

A:

The machine is typically equipped with professional nesting software (e.g., FastCAM, SigmaNEST, or equivalent). This software automatically arranges multiple part shapes on a single sheet to minimize scrap, optimize cutting paths, and reduce travel time. Material savings of 10–20% are commonly achieved, significantly reducing raw material costs over time.

A:

Typical cutting accuracy ranges from ±0.1mm to ±0.5mm, depending on the cutting technology and machine configuration. Laser cutting offers the highest precision (±0.1mm), followed by plasma (±0.5mm). Repeatability is consistently high due to servo drive systems and precision guide rails, ensuring identical results across multiple production runs.

A:

Yes, basic training is recommended. Our machines feature user-friendly interfaces and intuitive CAD/CAM software. Operators with basic computer skills can typically learn to program and operate the machine within 1–3 days. Advanced features such as nesting optimization and multi-torch setup may require additional training, which we provide as part of our commissioning and after-sales support package.

A:

Routine maintenance includes:

Cleaning the cutting table and slats regularly
Checking and replacing consumables (nozzles, electrodes, shields)
Inspecting guide rails, gear racks, and lubrication systems
Checking coolant (for laser) and gas/air supply lines
Calibrating torch height control and sensors
Updating software and backing up programs
We provide detailed maintenance schedules, spare parts support, and remote technical assistance to keep your machine operating at peak performance.

A:

Yes. Our CNC cutting machines can be equipped with bevel cutting capability, allowing the torch to tilt at adjustable angles to produce V-bevels, Y-bevels, X-bevels, and K-bevels in a single setup. This feature eliminates the need for secondary edge grinding, significantly streamlines weld preparation, and improves downstream welding quality and efficiency.