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6m Laser Tube Cutter with Dual Chucks T Series
With advanced configurations, T series come standard with two chucks to cut tubes with ultra-short tailing. For small tube, there is no overburning or adhering slag. As for large tube, the cutting is at fast speed. It enjoys fast shipment and delivery, and is widely used in rail transit, automobile production, construction machinery, agricultural and forestry machinery, etc.
6000 [mm] Max length of tube
6-360 [mm] Tube size
80-500 [kg] Max weight of tube
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Technical Parameters
| Main Parameters | Model | ||||
| SF6012T | SF6016T | SF6020T | SF6024T | SF6035T | |
| Laser Power (kW) | 1.5-3 | 1.5-3 | 1.5-6 | 1.5-6 | 1.5-6 |
| Max Length of Tube (mm) | 6000 | 6000 | 6000 | 6000 | 6000 |
| Scope of Tube Size (mm) | Φ8~120 | Φ10~160 | Φ10~220 | Φ10~230 | Φ20~360 |
| □8*8~120*120 | □10*10~160*160 | □10*10~150*150 | □10*10~230*230 | □20*20~360*360 | |
| Max Weight of Tube (kg) | 120 | 160 | 200 | 250 | 500 |
| X/Y-axis Positioning Accuracy (mm) | ±0.05 | ±0.05 | ±0.05 | ±0.05 | ±0.05 |
| X/Y-axis Repositioning Accuracy (mm) | ±0.02 | ±0.02 | ±0.02 | ±0.03 | ±0.03 |
| Max No-load Speed (m/min) | 150 | 110 | 100 | 100 | 60 |
| Max Rotating Speed of Chucks (r/min) | 180 | 140 | 100 | 100 | 60 |
| Overall Dimensions (L*W*H, mm) | 8900*2100*2100 | 8900*2100*2100 | 9260*1900*2280 | 9260*1900*2280 | 9500*2050*2550 |
| Power Supply | Three-phase 380V, 50Hz/60Hz | ||||
Automation
Optional Benefits
1. Semi-/fully-automatic loading & unloading devices
* Load 6000mm long tube easily, and also deal with round, square, rectangular tube, as well as angle, channel steel and I beam.
* As for unloading device, automatic sorting system is available to separate finished tubes from cutting scraps. Basically no manual operation.
What is laser cutter and how does it work?
A laser cutter uses laser as heat source and can be classified as sheet cutting and tube cutting. This includes sheet laser cutter, tube laser cutter and sheet & tube combo, making it one of the most advanced metal processing equipment available today.
The laser cutter utilizes the high-density laser beam to convert laser energy into thermal energy, causing localized heating, melting or even vaporization of materials. The melted or vaporized material is then blown away by using gas flow or other methods to achieve cutting.
The power of a fiber laser directly impacts its cutting capabilities. Fiber lasers with different power levels are suitable for various material thicknesses and types. The following article provides an overview of the cutting capabilities for the main power ranges: Cutting Capacity and Speed of 1.5kW-80kW Fiber Lasers
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