Precision Fiber Laser Cutting Machine
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Features
- Fast cutting speeds with precise and clean results
- Narrow kerfs and smooth cutting surfaces that do not damage the workpiece
- Capable of handling different shapes and material hardness
- Suitable for both metal and non-metal materials
- Reduces mold investment and material usage, leading to cost savings
- Easy and safe to operate with stable performance, enhancing the speed of new product development and offering wide adaptability
Specifications
| Model | | | | |
| Laser power | 500W | 1000W | 2000W | 3000W |
| Laser wavelength | 1064nm | |||
| Repeat accuracy | ±0.01mm | |||
| Cutting accuracy | ±0.03mm | |||
| Cutting area | 300*300mm/400*600mm/600*600mm (optional) | |||
| Cutting thickness of carbon steel | ≤3 | ≤8 | ≤16 | ≤18 |
| Cutting thickness of stainless steel | ≤3 | ≤5 | ≤7 | ≤8 |
| Cutting thickness of aluminum | ≤2 | ≤3 | ≤6 | ≤6 |
| Power supply | AC200-240V, 50/60Hz, single-phase three-wire | |||
| Machine power | 4kW | 4kW | 10kW | 12kW |
| Cooling method | Water cooling | |||
Details
FAQs
What power is needed for a laser cutting machine?
What power is needed for a laser cutting machine?
For engraving tasks, laser power between 25 and 80 watts is generally effective. For cutting or high-speed applications, it's best to use a laser with more than 80 watts of power to achieve optimal results.
What factors affect the accuracy of a laser cutting machine?
What factors affect the accuracy of a laser cutting machine?
The accuracy of a laser cutting machine depends on several factors. Equipment-related factors include the precision of the mechanical system, stability of the worktable, and quality of the laser beam. Material-related factors include the physical and chemical properties of the material being processed, as well as its reflectivity and consistency.
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