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Industrial Fiber Laser Cutting Machine 15mm

Industrial Fiber Laser Cutting Machine 15mm

2100000.0 INR/Unit

Product Details:

  • Power 1000W / 1500W / 2000W / 3000W (optional)
  • Phase Three Phase
  • Technology Fiber Laser cutting technology
  • Usage & Applications Sheet metal cutting for automotive, kitchenware, cabinets, hardware, electrical, and industrial fabrication
  • Working Area 1500 x 3000 mm
  • Product Type Laser Cutting Machine
  • Laser Type Fiber Laser
  • Click to View more
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Industrial Fiber Laser Cutting Machine 15mm Price And Quantity

  • 1 Unit
  • 2100000.0 INR/Unit
  • Automatic focusing
  • 0.03 mm
  • Imported servo motor and dual-drive
  • O2, N2, Air
  • 1.5G
  • 0.02 mm
  • Enclosed protective cover, smoke extraction system
  • 0-40C
  • Fixed table (exchange table optional)
  • Multilingual support
  • Raycus / IPG / MAX / Optional
  • Double rack and pinion, gear transmission
  • 12 kW (varies by laser power)

Industrial Fiber Laser Cutting Machine 15mm Product Specifications

  • 3500 kg (approx.)
  • Standard white/blue (customizable)
  • 1500 x 3000 mm (customizable)
  • Three Phase
  • 0-35 m/min (depend on material and thickness)
  • Water Cooling
  • Fiber Laser cutting technology
  • CNC
  • AI, BMP, DST, DWG, DXF, DXP, LAS, PLT
  • Fiber Laser
  • 4600 x 2300 x 1900 mm
  • High precision, smooth edge cutting, low maintenance, energy saving
  • Yes
  • Automatic
  • Laser Cutting Machine
  • High cutting efficiency
  • 1500 x 3000 mm
  • Sheet metal cutting for automotive, kitchenware, cabinets, hardware, electrical, and industrial fabrication
  • 1000W / 1500W / 2000W / 3000W (optional)
  • Up to 15mm (Mild Steel)
  • 380V / 50Hz / 60Hz (customizable)
  • Yes
  • CypCut / FSCut / Other compatible software
  • Carbon Steel, Stainless Steel, Aluminum, Copper, Galvanized Sheet
  • Automatic focusing
  • 0.03 mm
  • Imported servo motor and dual-drive
  • O2, N2, Air
  • 1.5G
  • 0.02 mm
  • Enclosed protective cover, smoke extraction system
  • 0-40C
  • Fixed table (exchange table optional)
  • Multilingual support
  • Raycus / IPG / MAX / Optional
  • Double rack and pinion, gear transmission
  • 12 kW (varies by laser power)

Product Description

Overview of CNC Fiber Laser Cutting Machines

CNC fiber laser cutting machines are advanced automated systems that use a fiber laser beam to precisely cut materials, primarily metals, by melting, burning, or vaporizing them along a programmed path. The "CNC" (Computer Numerical Control) aspect allows for computer-driven operation, enabling high-speed, accurate cuts on complex shapes without physical contact. These machines represent a significant evolution in metal fabrication, offering superior efficiency and beam quality compared to older CO or plasma cutters, making them indispensable in industries such as automotive, aerospace, electronics, and construction.

How CNC Fiber Laser Cutting Machines Work

The process starts with designing parts in CAD software, which is converted to G-code via CAM software for the CNC controller. This code directs the machine's movements.

Key steps include:

  1. Laser Generation: A fiber laser source (using rare-earth-doped optical fibers like ytterbium) produces a coherent beam at 1064nm wavelength through stimulated emission, pumped by diode lasers. The beam is delivered via fiber optic cablesno mirrors needed, reducing maintenance.
  2. Beam Focusing and Cutting: The focused beam (spot size as small as 0.1mm) strikes the material, rapidly heating it to melting or vaporization point. An assist gas (nitrogen, oxygen, or air) blows away molten residue for a clean kerf (cut width of 0.1-0.3mm).
  3. Motion Control: Servo motors move the cutting head along X, Y, and Z axes at speeds up to 1000 inches per minute, following the programmed path. Real-time sensors adjust focus and power for varying thicknesses.
  4. Post-Processing: Minimal; edges are often burr-free, though dross may need light cleaning on thicker cuts.

Unlike CO lasers, fiber lasers handle reflective metals without back-reflection damage, and their wall-plug efficiency reaches 30-50%.

Key Components

Component Function
Fiber Laser Source Generates the high-power beam (500W-20kW options); core of the system for efficient, focused energy.
Cutting Head Includes focusing lens, nozzle, and sensors; directs beam and assist gas.
CNC Controller Processes G-code to control motion, power, and speed via servo drives.
Work Table Supports material; often with nesting software for efficient sheet use and options like shuttle tables for loading/unloading.
Chiller/Cooling System Maintains optimal temperatures for laser and optics to prevent overheating.
Exhaust/Fume Extraction Removes vapors and particles for safety and clean operation.

Materials and Capabilities

  • Compatible Materials: Excels at metals like mild/carbon steel (up to 1" thick), stainless steel, aluminum, copper, brass, titanium, and alloys. Can handle some non-metals (plastics, composites) but less effectively than CO lasers; unsuitable for wood or acrylic without adjustments.
  • Cut Quality: Exceptional precision (0.003" accuracy), smooth edges with minimal HAZ (heat-affected zone), ideal for intricate designs and small holes.
  • Speed and Thickness: Cuts up to 5x faster than CO lasers; handles sheets up to 1" thick on standard models, tubes up to 22" diameter with rotary attachments. Power scales with needs: 1kW for thin sheets, 10kW+ for heavy plate.

Advantages and Disadvantages

Advantages:

  • High Efficiency and Speed: Up to 50% energy savings over CO; rapid processing reduces cycle times.
  • Precision and Versatility: Non-contact cuts minimize distortion; handles reflective metals safely.
  • Low Maintenance: Fiber delivery eliminates mirror alignment; long diode life (20,000+ hours).
  • Eco-Friendly: Less waste, no purging gas needed, and lower emissions.

Disadvantages:

  • High Initial Cost: Machines range from $30,000-$500,000+ depending on power and features.
  • Power Consumption: High for industrial models, though offset by efficiency.
  • Thickness Limits: Less effective on very thick (>1") or non-metallic materials compared to plasma.
  • Reflective Challenges: May require heat sinks for highly reflective workpieces like silver.

Applications

CNC fiber laser cutters are versatile for:

  • Automotive/Aerospace: Precision parts like chassis, brackets, exhausts, and panels.
  • Electronics/Medical: Intricate cuts for PCBs, implants, and surgical tools from stainless steel/titanium.
  • Fabrication/Construction: Sheet metal components, structural frames, and signage.
  • Jewelry/Art: Detailed patterns in precious metals and custom sculptures.
  • Tubular Cutting: With rotary add-ons, for pipes in furniture, fitness equipment, and handrails.


High-Precision Laser Cutting Performance

This state-of-the-art fiber laser cutting machine stands out for its exceptional precision and repeatable accuracy, thanks to a positioning accuracy of 0.03 mm and a repeat positioning accuracy of 0.02 mm. Its dual-drive, imported servo motor system ensures not only speed but unwavering stability throughout extended cutting jobs, making it perfect for detailed sheet metal applications.


Versatile and Energy-Efficient Operations

Supporting a wide range of materials-carbon steel, stainless steel, aluminum, copper, and galvanized sheets-this machine accommodates a broad spectrum of industrial applications. Multiple power options up to 3000W and advanced fiber laser technology deliver high cutting speeds while maintaining energy efficiency, helping manufacturers control operating costs.


Advanced Safety and User Convenience

With features such as an enclosed protective cover, smoke extraction system, and automatic focusing, operator safety and comfort are prioritized. The machine supports water cooling for optimal performance and integrates with CNC and popular control software. Multilingual support and customizable tables further enhance usability for diverse manufacturing environments.

FAQ's of Industrial Fiber Laser Cutting Machine 15mm:


Q: How does the automatic focusing system work in this fiber laser cutting machine?

A: The automatic focusing feature adjusts the laser head position based on material thickness detected during operation. This ensures optimal focus, high cutting efficiency, and consistently smooth edge quality, even when switching between different metals or thicknesses.

Q: What materials and thicknesses can be cut with this machine?

A: This machine is designed for cutting carbon steel, stainless steel, aluminum, copper, and galvanized sheet metal, with the capability to cut mild steel up to 15mm thick, depending on the laser power and material type.

Q: When is it necessary to use different assist gases like O2, N2, or Air?

A: Oxygen (O2) is typically used for cutting thick carbon steel to enhance speed, while nitrogen (N2) is preferred for stainless steel or aluminum to prevent oxidation and discoloration. Air is often suitable for cost-effectiveness in cutting thinner sheets with less critical edge quality requirements.

Q: Where is this fiber laser cutting machine commonly used?

A: It is widely deployed in industries such as automotive, kitchenware, cabinet production, hardware, electrical manufacturing, and other metal fabrication facilities needing high-precision and efficient sheet metal processing.

Q: What are the benefits of using CNC control and CypCut/FSCut software with this machine?

A: CNC control combined with CypCut, FSCut, or compatible software provides advanced automation, precise motion control, flexible design import options (AI, BMP, DXF, and more), and streamlined workflow management, resulting in faster production with fewer manual interventions.

Q: How does the enclosed design and smoke extraction system enhance operator safety?

A: The enclosed protective cover prevents direct exposure to the laser beam, while the smoke extraction system efficiently removes harmful fumes generated during cutting. These features create a safer and cleaner working environment for operators.

Q: What is the process for customizing table size or interface language?

A: Users can request customization for cutting table size and interface language at the time of order, allowing the machine to be tailored to specific workspace or operational requirements and making it accessible to multilingual teams.

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