Fiber Laser Precision Cutting Machine

Fiber Laser Precision Cutting Machine
Fiber Laser Precision Cutting Machine
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  • Laser power 1500W
  • Repeatability accuracy ±0.05mm
  • Power supply 380V/50Hz
  • Machine weight 1850kg

The fiber laser precision cutting machine features an aerospace-grade aluminum alloy frame and a high-precision integrated structure. It houses a modular fiber laser and a multi-axis linkage servo system. Core components, such as the Raytools cutting head, Yaskawa servo motors, and Hiwin linear guides, are all from international top brands, ensuring the equipment maintains a repeat positioning accuracy of ±0.02mm even during high-speed operation. The overall machine layout is compact, with hidden designs for both cooling air ducts and cable management, enhancing both safety and operational convenience.

Applications

Stainless steel, carbon steel, aluminum alloy, titanium alloy, brass, copper, PCB circuit boards, precision electronic components, jewelry gold and silver foils.

  • 12mm metal plate laser cutting
  • Stainless steel sheet laser cutting
  • Steel plate laser cutting
  • Sheet metal laser cutting
  • Technical Data
  • Configuration
  • FAQ
  • Why Us
Technical Data
  • Laser power 1500W
  • Working area 600×600mm (customizable)
  • Cutting accuracy ±0.1mm
  • Control system Cypcut
  • Transmission dual-drive ball screw
  • Bed structure tube welded bed structure
  • Idle speed 100m/min
  • Max. acceleration 0.8G
  • Positioning accuracy ±0.05mm
  • Repeatability accuracy ±0.05mm
  • File format PLT, DXF, etc.
  • Operating temperature 0-40℃
  • Operating humidity ≤80%
  • Power supply 380V/50Hz
  • Machine dimensions 1850×2150×2100mm
  • Machine weight 1850kg
  • Package size 1990×2250×2200mm
  • Package weight 1900kg
Configuration

Precision cutting control cabinet
Features a fully enclosed shell with an explosion-proof glass observation window, effectively isolating metal dust and coolant intrusion. It uses a welded bed frame with an aviation aluminum gantry, stress-relieved through 650℃ high-temperature tempering, increasing deformation resistance by 50%.

Fiber laser
Utilizes renowned brands like Raycus, Max, and IPG for high-brightness single-mode fiber lasers, achieving electro-optical conversion efficiency of up to 50% and a focused spot diameter of ≤20μm, enabling micron-level cutting precision, especially suitable for ultra-thin metals and complex graphic processing.

Precision cutting head
Employs a renowned brand Raytools cutting head, equipped with a capacitive auto-focusing system with a response time of <1ms and a focal position error of ≤±0.01mm, adapting to real-time cutting demands for varying plate thicknesses.

Servo motors
Uses renowned brand Yaskawa servo motors, achieving a repeat positioning accuracy of ±0.02mm, speed control error ≤0.01%, and torque fluctuation <0.1%, ensuring trajectory consistency during high-speed cutting.

Linear guides
Paired with renowned brand Hiwin linear guides, which have a rolling friction coefficient of only 0.002-0.003 (just 1/50th of traditional sliding guides). Coupled with a four-direction equal-load design, their load capacity is increased by 30%.

Water Chiller

  • Protective Lenses
  • Cutting Nozzles

This equipment features high energy density and extremely fast cutting speed, which significantly reduces heat transfer to other areas of the material, thus greatly lowering the risk of thermal deformation. For thin metal sheets with a thickness of ≤3mm, there is almost no visible thermal deformation. Additionally, using auxiliary gases like nitrogen can be considered.

Daily: Clean the focusing lens and protective lens. Weekly: Clean debris from guide rails and lead screws, and apply specialized lubricant. Monthly: Check for laser output optical path deviation. Regularly: Inspect the cutting head nozzle for wear and replace it promptly. Quarterly: Clean the chiller filter, check cooling water pipes for leaks. Check cable connections for looseness and ensure reliable grounding.

Yes, we provide free basic operational training, including on-site guidance from engineers, remote video tutorials, an equipment operation manual, and video tutorials.
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