Laser pipe cutter T series
Price from: 2 025 000,00 ₴
The T series machines with extended equipment are equipped as standard with two chucks for cutting pipes with an ultra-short stock. There is no overheating and slag sticking when cutting small diameter pipes. For large diameter pipes, high cutting speed is ensured. The machines are characterized by fast production and delivery and are widely used in the production of railway transport, automobiles, construction machinery, agricultural and forestry machinery, etc.
1.5–6 [kW] Laser power
12000 [mm] Maximum tube length
15–360 [mm] Tube diameter
120–500 [kg] Tube weight
Economical entry-level laser pipe cutting machine

High-precision dual-chuck clamping mechanism

Additional support with automatic tracking or support with variable pitch
Support with automatic support

Support with variable pitch
Compatible with pipes of various diameters and suitable for working with round, square and rectangular pipes.

Centering profiles










Video review of the T series machine
In this video you can see the appearance of the T series machine, its key advantages - industrial design and adaptive support, as well as a demonstration of the real processing process.
6020T | Fully automatic laser tube cutting machine with loading system
Designed for highly efficient pipe processing, 6020T equipped with a fully automatic loading system, ensuring continuous and stable production.
- Fully automatic pipe feeding
- Minimal operator intervention
- Stable cutting accuracy and high productivity
6016T | Spiral Round Pipe Connector Cutting Demonstration
6020T | H-beam laser cutting demonstration
6020T | Square tube laser cutting demonstration
| Parameters | Models | ||||||
|---|---|---|---|---|---|---|---|
| SF6012T | SF6016T | SF6024T | SF6035T | SF9024T | SF9035T | SF12035T | |
| Laser power (kW) | 1,5–3 | 1,5–3 | 1,5–6 | 1,5–6 | 1,5–6 | 1,5–6 | 1,5–6 |
| Tube length (mm) | 1000–6500 | 1000–6500 | 2000–6500 | 2000–6200 | 2000–9000 | 2000–9000 | 2000–12000 |
| Round pipe size range (mm) | Φ15–120 | Φ15–170 | Φ20–230 | Φ20–360 | Φ20–230 | Φ20–360 | Φ50–350 |
| Square tube size range (mm) | □15×15–120×120 | □15×15–170×170 | □20×20–230×230 | □20×20–360×360 | □20×20–230×230 | □20×20–360×360 | □50×50–350×350 |
| Maximum tube weight (kg) | 120 | 160 | 260 | 500 | 260 | 500 | 500 |
| Positioning accuracy (X/Y, mm) | ±0.05 | ±0.05 | ±0.05 | ±0.05 | ±0.05 | ±0.05 | ±0.05 |
| Repositioning accuracy (X/Y, mm) | ±0.03 | ±0.03 | ±0.03 | ±0.03 | ±0.03 | ±0.03 | ±0.03 |
| Max. idle speed (m/min) | 150 | 110 | 100 | 60 | 100 | 60 | 60 |
| Max. chuck rotation speed (rpm) | 180 | 140 | 100 | 60 | 100 | 60 | 60 |
| Dimensions (L×W×H, mm) | 9100×1800×2100 | 9100×1800×2100 | 9530×1950×2200 | 9500×2050×2550 | 12530×1950×2200 | 12330×2050×2550 | 15330×2050×2550 |
| Power Supply | Three-phase 380 V, 50 Hz/60 Hz | ||||||

Semi-automatic inclined loading device
Tube length (min.–max.): 4500–6000 mm
Tube size:
Round pipe: Φ20–120 mm
Square pipe: 20×20–120×120 mm
Maximum weight of one tube: 120 kg
Tube type: round/square/rectangular pipe

Two-handed semi-automatic chain loading device
Tube length (min.–max.): 4000–9000 mm
Tube size:
Round pipe: Φ20–240 mm
Square pipe: 20×20–240×240 mm
Maximum weight of one tube: 240 kg
Tube type: round / square / rectangular pipe / angle / channel / I-beam

Semi-automatic chain loading device
Tube length (min.–max.): 4000–12000 mm
Tube size:
Round pipe: Φ50–350 mm
Square pipe: 50×50–350×350 mm
Maximum weight of one tube: 500 kg
Tube type: round / square / rectangular pipe / angle / channel / I-beam

Simply designed fully automatic loading device
Tube length (min.–max.): 6000–12000 mm
Tube size:
Round pipe: Φ20–240 mm
Square pipe: 20×20–240×240 mm
Maximum weight of one tube: 260 kg
Tube magazine capacity: 3 tons
Tube type: round/square/rectangular pipe

Professional fully automatic loading device
Tube length (min.–max.): 3500–12000 mm
Tube size:
Round pipe: Φ20–240 mm
Square pipe: 20×20–240×240 mm
Maximum weight of one tube: 260 kg
Tube magazine capacity: 3 tons
Tube type: round/square/rectangular pipe

Automatic unloading device
An automatic sorting system separates offcuts from finished pipes, and an integrated loading and unloading design saves production space and ensures accurate pipe movement.

Weld inspection
Automatically detects and localizes the weld seam, effectively avoiding it during cutting, which improves the stability of the cutting process and the quality of the finished parts.

Visual scanning
Continuously detects and corrects pipe position deviations, improving positioning accuracy and providing more stable and efficient cutting.
What is a laser cutting machine and how does it work?
A laser cutting machine uses a laser as a heat source and can be designed to cut sheet metal, pipes, or a combination of sheet and pipe. This equipment includes sheet metal, pipe, and combination sheet and pipe laser cutting machines, making them one of the most advanced metalworking solutions.
A laser machine uses a high-energy density laser beam that converts laser energy into heat. This causes localized heating, melting, or even vaporization of the material. The melted or vaporized material is removed by a gas stream or other means, resulting in a precise cut.
What materials are suitable for laser cutting?
Laser machines can cut a wide range of materials, including stainless steel, carbon steel, alloy steel, silicon steel, aluminum, aluminum alloys, galvanized sheet, aluminum-zinc sheet, etched sheet, titanium, and other types of sheet metal.
Laser machines are used in most metalworking industries, including sheet metal processing, kitchen equipment manufacturing, aerospace, electrical cabinet manufacturing, automotive parts, construction and agricultural machinery, etc.
How to choose a laser machine that exactly meets the customer's needs?
When choosing a laser machine, we recommend paying attention to the following 10 main factors:
- Laser power
- Cutting speed
- Cutting accuracy
- Type of laser generator
- Automation level and software
- Cost of ownership and operation
- Material compatibility
- Technical support and service
- Area and installation requirements
- Environmental and safety factors
What cutting capabilities do lasers of different powers have?
The power of a fiber laser directly affects its cutting capabilities. Fiber lasers of different powers are suitable for working with different types and thicknesses of materials. The following article provides an overview of the cutting capabilities and speeds for the main power ranges - from 1.5 to 80 kW.
What should you pay attention to when maintaining a laser machine?
- Optics and nozzles: Clean the protective lenses regularly with a special optical cloth; replace them if they are scratched. Check the nozzles for dirt or damage; clean with a brass brush or replace if they are deformed. Always wear gloves when handling the lenses.
- Focusing and centering: Even with autofocus, periodically manually check the focus point and centering according to the material thickness.
- Purity: Clean the slag collection trays after each shift. Wipe down surfaces, vacuum off metal dust, and clean guides and rails to prevent dirt buildup.
- Gas and pneumatic systems: Make sure you have enough auxiliary gas. Regularly replace air filters, drain moisture from receivers, and check dryers and piping for damage or blockages.
- Security systems: Regularly check emergency buttons, door locks, light barriers and safety guards.
- Backing up settings: Back up your machine settings and cutting parameters weekly to prevent data loss.
- Lubrication: Check the oil level and add standard oil if necessary. Inspect the lubrication circuits and clean moving parts of dust.
- Consumables: Replace nozzles, ceramic rings and protective lenses in a timely manner according to the intensity of use to avoid unexpected downtime.
- Coolant: Use clean distilled or demineralized water. Add antifreeze at temperatures below 0 °C. Change the coolant periodically.
- Electrical system: Inspection of circuit breakers, connections, and wiring should only be performed by qualified electricians.
- Maintenance log: Record materials used, settings, and problems encountered to track equipment performance and detect malfunctions in a timely manner.
What are the advantages of a laser cutting machine compared to traditional cutting methods?
Laser cutting replaces traditional mechanical blades with an invisible laser beam, providing high precision, fast cutting, the ability to create complex contours without shape restrictions, automatic cutting to save material, smooth cutting edges and low operating costs. This technology is gradually improving and replacing traditional metal processing methods.
- Non-contact cutting: The mechanical parts of the laser cutting head do not come into contact with the workpiece, which prevents scratches on the surface of the material during operation.
- High cutting speed and quality: The laser provides fast cutting with smooth and even edges that usually do not require additional processing.
- Minimum thermal impact zone: The heating zone of the material is small, so the deformation of the sheet is minimal, and the cutting width is only 0.1–0.3 mm.
- Absence of mechanical loads: During laser cutting, no mechanical pressure is exerted on the material, and no burrs are formed on the edges of the cut from mechanical shear.
- High accuracy: Laser cutting provides high accuracy and stable repeatability of the result without damaging the material surface.
- Processing flexibility: CNC programming allows you to create and process almost any flat contours, as well as cut large sheets without making special molds. This helps save time and reduce production costs.
What is the warranty period for a laser machine?
The entire machine is provided with 2 year warranty. Major components and consumables are replaced based on their actual service life.
We also supply original components for users all over the world. A commercial offer for components can be obtained within 24 hours, and the delivery time is 3–7 business days.
Replacement of components is primarily carried out through the nearest representative offices or local service centers.
Does the laser pipe cutting machine have an automatic adjustment function?
Yes. Our machines are usually equipped with modern CNC systems that use capacitive centering to measure the actual size of the pipe and automatically adjust its position according to the specified profile model.
Also provided compensation of pipe deviations in real time, which reduces the requirements for the accuracy of its clamping and increases the accuracy of puncture.

