MEET CATEKCNC

Fiber Laser Sheet Cutting Machine with Automatic Exchange Table

[Function Description]
The CK-1530-PU is a high-performance, environmentally friendly fiber laser sheet cutting machine designed for efficient and safe metal sheet processing. Equipped with the BOCHU S9 servo system, it delivers acceleration of up to 2G, increasing processing efficiency by 50–80%. Its fully enclosed protective design effectively contains sparks, smoke, molten slag, noise, and laser radiation, while interlocked safety doors prevent access to the cutting area during operation. Laser-protective observation windows provide a clear view of the cutting process without compromising safety, and a dual-camera monitoring system allows operators to monitor both the machine interior and exterior in real time. The dual shuttle exchange tables enable simultaneous cutting and loading/unloading, significantly reducing downtime and improving productivity. With a 1,530 × 3,050 mm working area, the CK-1530-PU is an ideal solution for high-speed, high-precision processing of a wide range of metal sheets.
{{(goodsPrice)}}
  • Brand: CATEKCNC
  • Model: CK-1530-PU
  • Tags: Fiber Laser, Dual-Shuttle Table, Enclosed
  • Share:

Enclosed fiber laser sheet cutting machine with shuttle table

The CK-1530-PU is a high-performance fiber laser sheet cutting machine engineered specifically for medium to large-scale sheet metal fabrication. It features a dual shuttle exchange table and a fully enclosed protective enclosure, and is equipped with a complete BOCHU intelligent control system, including BOCHU servo motors, a BOCHU laser cutting head, and a BOCHU CNC control system. The seamless integration of these core components ensures maximum machine performance, delivering high cutting speed, exceptional precision, and outstanding long-term operational stability.

The machine adopts a low-center-of-gravity, high-rigidity structural design, effectively minimizing vibration during high-speed operation to improve machining accuracy and overall stability. The machine bed is lined with heat-insulating mineral panels, which effectively block the high-temperature molten slag and sparks generated during laser cutting, reducing heat transfer to the machine structure and extending the service life of the equipment. The gantry beam is manufactured from high-strength aluminum alloy, providing excellent structural rigidity while significantly reducing the weight of moving components, resulting in faster dynamic response and superior high-speed motion performance.

The entire machine is enclosed by a fully enclosed sheet metal safety enclosure, effectively isolating laser radiation, cutting fumes, and flying sparks to provide a safer and more environmentally friendly working environment. A safety interlock system automatically pauses machine operation whenever the protective door is opened, ensuring enhanced operator safety. A laser-protective observation window, made of specialized laser-filtering glass, effectively blocks harmful laser radiation while maintaining excellent visibility, allowing operators to monitor the cutting process in real time. In addition, the machine is equipped with dual display screens. One display provides live video feeds from two cameras, enabling operators to monitor the machine's operating status without opening the protective enclosure.

All three linear axes are driven by BOCHU S9 high-speed servo motors, delivering a maximum rapid traverse speed of 180 m/min and a maximum acceleration of 2 G, fully meeting the requirements of high-speed, high-precision cutting. The servo system incorporates a professional 8 Hz low-pass filtering algorithm that effectively suppresses mechanical vibration during high-speed motion, resulting in smoother acceleration, deceleration, and start-stop performance while further improving machining accuracy and operational stability. Compared with conventional fiber laser cutting machines, the overall processing efficiency can be increased by approximately 50% to 80%, making it ideal for high-volume, high-throughput sheet metal production.

The machine is equipped with an intelligent zoned dust extraction system consisting of multiple independently controlled large-diameter air ducts. The system automatically activates the corresponding extraction zone according to the cutting position, enabling efficient collection and rapid removal of fumes and residual heat. This design maximizes dust extraction efficiency while reducing energy consumption and significantly improving the workshop environment.

To meet different automation requirements, the machine supports a wide range of intelligent automation upgrades, including an automatic nozzle changer and a cantilever-type automatic loading system. These optional configurations further optimize production workflows, reduce manual intervention, improve productivity and machining consistency, and provide strong support for smart manufacturing upgrades.

Combining high efficiency, outstanding precision, exceptional stability, and comprehensive safety protection, the CK-1530-PU is capable of consistently processing a wide range of metal sheets, including carbon steel, stainless steel, and aluminum alloy. It is widely used in industries such as sheet metal fabrication, display fixtures and shelving, educational equipment, metal furniture, commercial kitchen equipment, and machinery manufacturing. With its high-speed cutting performance, robust machine structure, advanced safety and environmental protection features, and extensive intelligent expansion capabilities, the CK-1530-PU helps manufacturers improve productivity, optimize production workflows, reduce overall manufacturing costs, and achieve efficient, high-quality, large-scale sheet metal processing.

Details of the Enclosed Fiber Laser Sheet Cutting Machine with Shuttle Table

Front view of the enclosed fiber laser sheet cutting machine with shuttle tableFront left view of the enclosed fiber laser sheet cutting machine with shuttle tableFront right view of the enclosed fiber laser sheet cutting machine with shuttle table
Heavy-duty machine bed base

The machine bed features a plug-in dual keel structure fabricated from heavy-duty thick-wall steel tubes. After welding, the entire frame undergoes vibration stress-relief treatment to effectively eliminate residual welding stress, providing exceptional rigidity and resistance to deformation. This robust foundation ensures outstanding stability for high-speed, high-precision cutting operations.

Heavy-duty machine bed base of the enclosed fiber laser sheet cutting machine with shuttle table
Maxphotonics 6000W fiber laser source

The Maxphotonics 6000W fiber laser source offers high electro-optical conversion efficiency, a compact design, and maintenance-free operation. Laser power is continuously adjustable from 10% to 100%, providing excellent flexibility for cutting a wide range of materials and thicknesses. It also delivers outstanding beam quality, with a Beam Parameter Product (BPP) of 3.2–3.8 mm·mrad (100 μm QBH output).

Maxphotonics 6000W fiber laser source of the enclosed fiber laser sheet cutting machine with shuttle table
BOCHU BLT421S laser cutting head

The BOCHU BLT421S intelligent laser cutting head features ±50 mm automatic focus adjustment, enabling stable, high-quality cutting of carbon steel, stainless steel, aluminum alloy, and other metal sheets. An external protective cover shields the cutting head from accidental impacts and high-temperature sparks, further improving equipment reliability and extending service life.

Laser cutting head protective housing of the enclosed fiber laser sheet cutting machine with shuttle table
Shuttle worktable

The shuttle system consists of two vertically arranged worktables. While one table performs cutting operations, the other can simultaneously complete workpiece loading and unloading, enabling parallel processing and material preparation. This significantly reduces auxiliary time, improves machine utilization, and increases overall production efficiency.

Shuttle worktable (exchange worktable) of the enclosed fiber laser sheet cutting machine with shuttle table
Observation window

The observation window uses specialized laser-protective filter glass, which effectively blocks harmful laser radiation while maintaining excellent light transmission. This allows operators to monitor the machining process in real time, achieving an ideal balance between operational safety and visibility.

Observation window of the enclosed fiber laser sheet cutting machine with shuttle table
Monitoring cameras

The machine is equipped with two sets of high-definition monitoring cameras, installed inside and outside the enclosure, enabling real-time monitoring of the cutting area and loading/unloading operations. The video feeds are displayed through an independent monitor without occupying the CNC control interface, allowing operators to fully monitor machine status while improving operational convenience and safety.

Monitoring cameras of the enclosed fiber laser sheet cutting machine with shuttle tableMonitor of the enclosed fiber laser sheet cutting machine with shuttle table
Hanli 6000W chiller

The machine is equipped with a Hanli 6000W fiber laser chiller featuring a dual-circuit independent temperature control system. It provides precise cooling for both the laser source and laser cutting head, ensuring long-term stable operation of critical components. The chiller also incorporates multiple alarm and protection functions, including low water level, over-temperature, and abnormal pressure warnings, providing reliable protection for continuous, high-load machining.

Hanli 6000W chiller of the enclosed fiber laser sheet cutting machine with shuttle table
Three-color signal light

The three-color signal light indicates the machine’s operating status at a glance. Even when operators are away from the machine, they can quickly identify abnormal conditions through visual and audible alerts, enabling timely response and reducing potential downtime.

Three-color signal light of the enclosed fiber laser sheet cutting machine with shuttle table
BOCHU FSCUT4000E system

The laser cutter adopts the BOCHU FSCUT4000E EtherCAT CNC control system with CypCutE laser cutting software. Featuring an intuitive and user-friendly interface, the system is easy to operate and learn. Its built-in process database automatically recommends optimized cutting parameters based on different materials and thicknesses, significantly reducing setup time while improving processing efficiency and cutting quality.

BOCHU FSCUT4000E system of the enclosed fiber laser sheet cutting machine with shuttle tableCypCutE software for the enclosed fiber laser sheet cutting machine with shuttle table
Automatic nozzle changer (optional)

An optional automatic nozzle changer is available, enabling automatic nozzle replacement according to different cutting processes without manual intervention. This reduces downtime caused by nozzle changes, improves continuous processing efficiency, and lowers operator workload.

Automatic nozzle changer (optional) of the enclosed fiber laser sheet cutting machine with shuttle table
Cantilever-type automatic loading system (optional)

The machine supports an optional cantilever-type automatic loading system, which enables automatic sheet handling and precise material positioning. Combined with the dual shuttle worktable, it further enhances machine automation, enabling continuous and efficient production while reducing labor requirements and increasing overall productivity.

Cantilever-type automatic loading system (optional) of the enclosed fiber laser sheet cutting machine with shuttle table

Technical Parameters of the Enclosed Fiber Laser Sheet Cutting Machine with Shuttle Table

Model CK-1530-PU
Frame / Gantry High-strength heavy-duty bed frame, aerospace-grade aluminum alloy gantry
Laser Source Maxphotonics (optional Raycus, IPG)
Laser Center Wavelength 1064nm
Laser Cutting Head ≤3000W: BLT310T
6000W: BLT421S
12000W: BLT442
Fiber Laser Power Options 3000-12000W
Cooling Method Hanli 3000W-12000W chiller for fiber laser
Worktable Shuttle worktable (dual alternating worktable system)
Drive System BOCHU S9 bus-based absolute servo system
Transmission HIWIN (Taiwan) high-precision linear guideways
Reducer TECHMECH planetary gear reducer
Main Electrical Components Schneider / Omron
Pneumatic Components SMC (Japan) proportional valves
Control System ≤3KW: BOCHU FSCUT2000E
3kW-6KW: BOCHU FSCUT4000E
6KW-12KW: BOCHU FSCUT6000
Lubrication System Automatic lubrication system
Max. Sheet Processing Size 1530 * 3050mm
Positioning Accuracy ±0.03mm
Max. Travel Speed (X/Y Linkage) 180m/min
Max. Acceleration (X/Y Linkage) 2G
Worktable Load Capacity 915kg
Operating Voltage AC380V
Machine Dimensions 8270*2280*2150mm
Machine Weight 5370kg

Advantages of the Enclosed Fiber Laser Sheet Cutting Machine with Shuttle Table

1. Heavy-Duty Machine Bed with Plug-In Dual Keel Design

The machine bed is fabricated from thick-wall steel tubes using a plug-in dual keel structure, providing excellent resistance to deformation and fatigue under long-term heavy-duty machining conditions. To eliminate potential accuracy issues caused by welding stress, the bed undergoes vibration stress relief and annealing treatment, ensuring outstanding accuracy consistency even after extended operation.

The mounting surfaces for the linear guide rails and rack gears are precision-machined by a milling process, ensuring a flat and highly precise installation surface. The close integration between the guide rails, racks, and machine bed provides exceptional positioning accuracy and motion stability.

The machine bed is covered with mineral-based thermal insulation tiles, which effectively protect the structure from high-temperature sparks and molten spatter. They also reduce the impact of cutting heat on the machine bed and critical components, significantly extending the overall service life of the equipment.

2. Lightweight Aluminum Alloy Gantry Beam

The gantry beam adopts a lightweight structural design and is manufactured from aerospace-grade aluminum alloy, offering excellent rigidity, low weight, and corrosion resistance. The reduced moving mass significantly improves the dynamic response of the gantry system. Combined with BOCHU S9 series high-speed servo motors, the machine achieves acceleration of up to 2G, enabling faster response and higher cutting efficiency.

3. Maxphotonics 6000W Fiber Laser Source

The Maxphotonics 6000W fiber laser source delivers excellent beam quality with a Beam Parameter Product (BPP) of ≤3.2–3.8 mm·mrad, an electro-optical conversion efficiency of over 30%, and a standard 150 μm fiber core output.

These superior beam characteristics enable more concentrated energy distribution and a finer, more uniform laser spot. When cutting thin sheets at high speed, the laser produces smooth and clean cut edges; when processing medium and thick plates, it provides fast and stable piercing performance.

The high electro-optical conversion efficiency effectively reduces energy consumption during operation, helping manufacturers lower electricity costs in long-term mass production. The laser source supports processing of various metals, including carbon steel, stainless steel, aluminum, and copper, with continuously adjustable output power from 10% to 100%, allowing optimized process parameters for different materials and thicknesses.

4. BOCHU BLT421S Laser Cutting Head

The BOCHU BLT421S intelligent laser cutting head features ±0.05 mm high-precision automatic focusing, automatically adjusting the focal position according to material thickness and surface flatness variations to maintain consistent cutting quality under different processing conditions.

The cutting head achieves a vertical adjustment acceleration of up to 7.5 m/s² and adopts an integrated water-cooled optical structure, effectively stabilizing the temperature of internal optical components and reducing the risk of thermal drift during prolonged high-speed cutting. This ensures consistent machining accuracy and cutting stability.

Multiple closed-loop sensors are integrated inside the cutting head to monitor gas pressure, protective lens temperature, and nozzle status in real time, providing timely feedback on operating conditions and improving processing reliability.

The cutting head features a drawer-type quick-change lens module design, allowing maintenance personnel to replace protective lenses quickly without complicated disassembly, significantly reducing machine downtime and maintenance costs. It also supports a collision protection function: in the event of accidental impact, the upper and lower modules automatically separate to absorb impact force and minimize potential damage.

5. Shuttle Worktable (Exchange Worktable)

The dual exchange system adopts an up-and-down stacked dual worktable structure. While Worktable A performs cutting operations, Worktable B can simultaneously complete loading and unloading preparation. After Worktable A finishes processing, the two worktables quickly exchange positions, enabling synchronized cutting and material handling while minimizing non-processing waiting time.

The shuttle worktable system can complete an exchange cycle in as little as 10 seconds, significantly improving continuous production capacity and overall equipment utilization.

The worktable adopts a tooth-type slat structure. The slats are manufactured from high-temperature-resistant alloy materials, offering excellent resistance to heat and molten slag impact. They can withstand the high-temperature environment generated during laser cutting while maintaining structural integrity without excessive burning or deformation.

The modular independent installation design allows individual worn slats to be replaced separately, simplifying maintenance and effectively reducing long-term operating costs.

6. Fully Enclosed Protective Enclosure

The fiber laser cutting machine is equipped with a specially designed fully enclosed protective enclosure, which effectively contains sparks, high-temperature molten slag, and cutting debris generated during operation.

The enclosure features a safety interlock system. When the protective door is opened, the machine automatically stops operation and triggers an alarm, preventing unsafe operation and enhancing operator protection.

To facilitate real-time monitoring, the machine is equipped with multiple observation windows fitted with special laser-filtering glass. The glass effectively blocks harmful laser radiation while maintaining clear visibility of the cutting process.

The machine is also equipped with two monitoring cameras, with one installed inside the enclosure and the other positioned externally. The camera monitoring system displays live images through an independent monitor, allowing operators to remotely observe the cutting process without opening the protective enclosure.

7. Zoned Fume Extraction System

The dust extraction system adopts a multi-zone independent control design. Based on the real-time position of the laser cutting head, the system automatically activates the corresponding extraction zones to achieve precise fume removal.

It efficiently collects cutting fumes and residual heat generated during processing, significantly improving the workshop environment.

Compared with traditional full-area extraction systems, the zoned control design avoids unnecessary energy consumption by concentrating suction power only on the active cutting area. This improves dust removal efficiency while reducing operating power consumption, providing a more energy-efficient and environmentally friendly solution.

8. BOCHU S9 High-Speed EtherCAT Servo System

All three linear axes of the machine are driven by the BOCHU S9 series servo system. As BOCHU’s latest-generation EtherCAT bus servo system, the S9 is equipped with a 23-bit absolute encoder, providing up to 3 times the rated torque overload capacity and an ultra-low bus communication response delay of less than 1 ms.

The system supports power-off position memory, allowing the machine to resume processing from the previous stopping position after power recovery without requiring a return-to-origin operation.

An integrated slip detection function monitors transmission status in real time. When slipping occurs, the system automatically triggers an alarm, allowing operators to quickly identify the issue and make adjustments.

The servo system supports a D-type acceleration/deceleration control algorithm, enabling higher acceleration performance with the same motor power. The maximum acceleration can reach 2G, significantly improving processing efficiency.

Complying with the highest EMC Level 4 electromagnetic compatibility standard, the servo system offers strong resistance to workshop dust and voltage fluctuations.

9. TECHMECH Planetary Gear Reducer

The TECHMECH planetary gear reducer features a single-stage backlash of ≤3 arcmin, a transmission efficiency of up to 97%, and an IP65 protection rating.

It adopts a high-rigidity integrated planetary gear structure. Both ends of the output shaft are supported by high-precision, low-clearance bearings, providing enhanced load capacity and perfectly matching the operating requirements of the BOCHU S9 high-speed servo system, including 2G acceleration and 180 m/min high-speed synchronous motion.

The internal gears are precision-ground to ensure smooth engagement and low operating noise. Even under long-term high-frequency reciprocating motion, gear wear remains extremely low. Combined with long-life synthetic grease, the reducer achieves maintenance-free operation throughout its service life

10. Hanli 6000W Chiller

The fiber laser cutting machine is equipped with a Hanli 6000W dedicated fiber laser chiller featuring a dual-circuit independent cooling system. The two cooling circuits separately provide precise heat dissipation for the laser source and laser cutting head, with independent temperature adjustment for each circuit to meet the specific cooling requirements of different core components.

The chiller integrates multiple intelligent protection systems, including alarms and safeguards for abnormal water flow, high/low pressure, and overheating conditions. It continuously monitors operating status to improve equipment reliability.

The internal pipelines and water tank are manufactured from corrosion-resistant stainless steel, ensuring long-term stability of the cooling circulation system. Equipped with a high-flow, high-pressure water pump, the chiller improves coolant circulation efficiency and provides consistent thermal management during continuous operation.

The machine features an intelligent temperature control panel that displays real-time information including water temperature, flow rate, and operating status, making equipment management and maintenance more convenient.

With precise constant-temperature control, the chiller provides reliable long-term cooling protection for the laser source and cutting head, improving continuous processing stability and extending the service life of critical components.

11. BOCHU FSCUT4000E System

The machine adopts the BOCHU FSCUT4000E CNC control system based on the EtherCAT communication protocol, providing high-speed, stable data transmission and a bus communication response delay of less than 1 ms. This enables rapid coordination between the motion control system and various functional modules.

The system is equipped with CypCutE professional sheet metal cutting software, featuring advanced process modules such as No-Sense Piercing, Flying Cut, and Micro Joint Without Marks. It also supports intelligent functions including QR code drawing import, circular plate centering, automatic nesting, and shuttle worktable synchronization, effectively improving processing efficiency and operational convenience.

The machine is also equipped with a WKB-V6 wireless handheld controller, supporting long-distance wireless operation with fast and stable response. The handheld device integrates frequently used functions such as return to origin, jog control, start/stop, edge finding, and height adjustment, allowing operators to adjust machining conditions near the machine without repeatedly returning to the main control station, greatly improving on-site operating efficiency.

12. Auxiliary Systems

Telescopic Bellows Protective Covers: The X and Y axes are equipped with telescopic bellows protective covers made from multi-layer wear-resistant and flame-retardant materials with built-in elastic support frames. The covers expand and retract synchronously with the high-speed gantry movement, fully protecting critical transmission components such as linear guide rails and rack gears.

Automatic Lubrication System: The automatic lubrication system provides timed and quantitative lubrication for the transmission components. It eliminates issues caused by insufficient or uneven manual lubrication and delivers consistent, maintenance-free lubrication. This significantly reduces manual maintenance requirements, allowing operators to simply replenish lubricant at regular intervals.

SMC Proportional Valve: The machine uses a Japanese SMC electro-pneumatic proportional valve to precisely regulate cutting assist gas pressure. Through electrical proportional control signals, the system enables stepless adjustment of output pressure and flow rate, achieving control accuracy within ±3% F.S. The valve adopts FKM sealing materials and features an IP67 protection rating, ensuring stable operation in demanding industrial environments.

Applications of the Enclosed Fiber Laser Sheet Cutting Machine with Shuttle Table

Sheet Metal Fabrication Industry

Suitable for batch processing of conventional sheet metal materials, including cold-rolled steel, hot-rolled steel, stainless steel, galvanized sheets, aluminum sheets, and carbon steel plates. The machine is widely used for manufacturing customized equipment enclosures, electrical cabinets, sheet metal brackets, connection plates, protective covers, and non-standard metal parts. It meets diverse fabrication requirements such as thin-sheet precision cutting, medium-thick plate forming, complex hole cutting, and irregular contour processing.

Applications of the enclosed fiber laser sheet cutting machine with shuttle table in the sheet metal fabrication industry: electrical cabinet enclosures, household appliance enclosures, computer case enclosures, etc.

Commercial Kitchen Equipment Industry

Ideal for high-volume cutting of 201/304 stainless steel, aluminum alloy, and corrosion-resistant cold-rolled steel sheets. It is widely applied in the production of commercial kitchen equipment, kitchen cabinets, countertops, kitchen equipment brackets, exhaust hood enclosures, kitchen and bathroom hardware accessories, sterilizer housings, and dishwasher metal shells, providing rust-resistant and hygienic sheet metal components with excellent surface quality.

Applications of the enclosed fiber laser sheet cutting machine with shuttle table in the kitchen equipment industry: stainless steel sinks, metal worktables, oven enclosures, microwave oven enclosures, dishwasher enclosures, etc.

Metal Furniture Industry

Capable of precision cutting stainless steel, carbon steel, and aluminum alloy sheets ranging from thin plates to medium-thick plates. The machine is suitable for manufacturing metal table and chair frames, luxury furniture metal accessories, bed frames and supports, partition structures, decorative metal trims, load-bearing furniture connectors, and customized artistic metal components, meeting strict requirements for appearance quality and dimensional accuracy.

Applications of the enclosed fiber laser sheet cutting machine with shuttle table in the metal furniture industry: filing cabinets, metal tables and chairs, metal storage cabinets, metal skirting boards, etc.

Advertising and Decorative Industry

Ideal for precision cutting of thin metal sheets, including stainless steel, aluminum, and cold-rolled steel. It is well-suited for a wide range of applications, such as metal advertising letters, signboards, architectural panels, landscape structures, exhibition components, and custom decorative parts that demand high precision and a superior finish.

Applications of the enclosed fiber laser sheet cutting machine with shuttle table in the advertising industry: metal signboards, metal billboards, metal letters, etc.

Display Cabinet and Shelving Industry

Suitable for cutting carbon steel, stainless steel, galvanized sheets, and aluminum alloy plates to manufacture supermarket display racks, heavy-duty storage shelving, premium display cabinet frames, storage brackets, shelf connection plates, anti-collision panels, and customized display structures requiring high consistency, dimensional accuracy, and stable quality.

Applications of the enclosed fiber laser sheet cutting machine with shuttle table in the display cabinet and shelving industry: supermarket display cabinets, metal display stands, etc.

Educational Equipment Industry

Suitable for processing lightweight metal sheets such as carbon steel, stainless steel, and aluminum for customized production of laboratory equipment enclosures, training platform frames, teaching model structures, protective panels, training equipment sheet metal components, and science exhibition metal parts. It provides precise, safe, and well-structured metal components for educational applications.

Applications of the enclosed fiber laser sheet cutting machine with shuttle table in the educational equipment industry: magnetic whiteboards, student desks and chairs, metal storage cabinets, multimedia podiums, etc.

Building Materials Industry

Suitable for cutting aluminum alloy, stainless steel, galvanized steel, and carbon steel sheets to manufacture architectural curtain wall components, customized door and window frames, outdoor decorative metal structures, awning panels, balcony railing accessories, and architectural hardware connectors, delivering aesthetically appealing and dimensionally accurate building components.

Applications of the enclosed fiber laser sheet cutting machine with shuttle table in the building materials industry: metal curtain walls, aluminum ceiling panels, canopy panels, metal decorative panels, etc.
Last Updated:
2026-07-24 13:54:17
Model CK-1530-PU
Frame / Gantry High-strength heavy-duty bed frame, aerospace-grade aluminum alloy gantry
Laser Source Maxphotonics (optional Raycus, IPG)
Laser Center Wavelength 1064nm
Laser Cutting Head ≤3000W: BLT310T
6000W: BLT421S
12000W: BLT442
Fiber Laser Power Options 3000-12000W
Cooling Method Hanli 3000W-12000W chiller for fiber laser
Worktable Shuttle worktable (dual alternating worktable system)
Drive System BOCHU S9 bus-based absolute servo system
Transmission HIWIN (Taiwan) high-precision linear guideways
Reducer TECHMECH planetary gear reducer
Main Electrical Components Schneider / Omron
Pneumatic Components SMC (Japan) proportional valves
Control System ≤3KW: BOCHU FSCUT2000E
3kW-6KW: BOCHU FSCUT4000E
6KW-12KW: BOCHU FSCUT6000
Lubrication System Automatic lubrication system
Max. Sheet Processing Size 1530 * 3050mm
Positioning Accuracy ±0.03mm
Max. Travel Speed (X/Y Linkage) 180m/min
Max. Acceleration (X/Y Linkage) 2G
Worktable Load Capacity 915kg
Operating Voltage AC380V
Machine Dimensions 8270*2280*2150mm
Machine Weight 5370kg

REVIEWS

Let more people know what you share.

    No reviews yet

    FAQs

    Frequently Asked Questions

    Find the answers to the machine-related questions you're looking for.

    Still have questions?

    We are here to help you!

    Contact Us
    • 1. What are the advantages of a fully enclosed fiber laser cutting machine compared with an open-type fiber laser cutting machine?

      The fully enclosed enclosure of a fiber laser cutting machine isolates the working area from the external environment, effectively containing cutting fumes, molten metal slag, noise, and laser radiation generated during operation. This creates a safer, cleaner, and more environmentally friendly working environment.

      Meanwhile, the enclosed structure prevents external factors such as dust and contaminants from affecting the cutting area, helping improve processing consistency and quality while significantly reducing the risk of machine component damage.

    • 2. What applications are suitable for a shuttle worktable?

      The dual shuttle worktable solves the problem of excessive machine waiting time during sheet loading and unloading on fiber laser sheet cutting machines. By allowing material preparation and cutting operations to be performed simultaneously, it significantly improves machine utilization and overall processing efficiency.

      It is especially suitable for production environments with high sheet processing volumes and frequent loading/unloading operations, such as sheet metal fabrication, machinery manufacturing, electrical cabinet production, commercial kitchen equipment, and construction machinery industries. The dual shuttle design helps achieve more efficient continuous production and maximizes manufacturing productivity.

    • 3. How does the shuttle worktable operate?

      The shuttle worktable consists of two vertically stacked worktables, A and B, which can move horizontally to exchange positions. During operation, Worktable A stays inside the cutting area and carries the sheet metal for laser cutting, while Worktable B moves outside the enclosure to allow operators to perform sheet loading or finished part unloading.

      After Worktable A completes the cutting process, it moves out, and Worktable B moves into the machining area. The two worktables quickly exchange positions and begin the next processing cycle. This exchange process is automatically controlled by the CNC system and can typically be completed within 10–15 seconds.

      This design significantly reduces non-processing downtime, improves machine utilization, and increases overall production efficiency, making it especially suitable for continuous and high-volume sheet metal processing.

    • 4. Under what circumstances should the nozzle be replaced on a fiber laser sheet cutting machine?

      1. When changing materials or sheet thicknesses:

      The nozzle should be replaced with a suitable type and aperture size to match different materials and thicknesses, ensuring optimized cutting performance and quality.

      2. When cutting quality deteriorates:

      If issues such as excessive dross, wider kerf width, or unstable cutting occur, replacing the nozzle can help restore stable cutting performance.

      3. When the nozzle is worn or damaged:

      The nozzle should be replaced promptly if the nozzle orifice becomes deformed, clogged, or damaged due to accidental collision.

      4. When changing cutting processes or assist gases:

      Different processing requirements, such as using oxygen, nitrogen, or compressed air, require selecting the appropriate nozzle type to achieve the best cutting results.

    • 5. How does the automatic nozzle changer of a fiber laser sheet cutting machine work?

      The automatic nozzle changer is fully managed by the CNC control system throughout the entire process, eliminating the need for manual nozzle removal, installation, adjustment, or alignment. The system is equipped with a dedicated nozzle storage magazine, which can hold multiple standard nozzles with different aperture sizes to meet the processing requirements of different materials, sheet thicknesses, and cutting processes.

      During operation, when the machine needs to switch materials, change sheet thicknesses, adjust cutting parameters, or when the system detects abnormal conditions such as nozzle wear, clogging, or collision damage, the machine automatically pauses the cutting process and initiates the nozzle replacement procedure.

      During the replacement process, the laser cutting head first moves to the nozzle cleaning station, where a dedicated cleaning device removes metal slag and contaminants from the nozzle surface as much as possible. The cutting head then moves to the nozzle magazine, automatically removes the current nozzle, and returns it to its designated storage position. After that, the cutting head moves to the selected nozzle position and automatically picks up and installs the new nozzle.

      Once the new nozzle is installed, the system automatically performs a series of self-check procedures, including gas pressure detection, nozzle center calibration, focus parameter matching, and airtightness inspection, ensuring that the nozzle installation meets machining requirements. After all parameters are confirmed to be normal, the machine automatically resumes cutting operation without any manual intervention.

    • 6. What daily maintenance should be performed on a fiber laser cutting machine?

      Daily maintenance of a fiber laser cutting machine mainly includes the following aspects:

      • Regularly inspect and clean the laser cutting head protective lens to prevent dust and metal slag buildup from affecting cutting quality.
      • Check the nozzle condition for wear, clogging, or deformation in a timely manner to ensure stable assist gas flow.
      • Regularly clean and lubricate transmission components such as linear guide rails and rack-and-pinion systems to ensure smooth movement and stable operation of the motion system.
      • Check the assist gas pressure and gas supply system to ensure stable gas delivery during the cutting process.
      • Perform regular maintenance on the cooling system according to equipment requirements, including checking coolant temperature, water level, and operating status to ensure long-term stable operation of the laser source and cutting head.

      Through standardized daily maintenance procedures, equipment failures can be effectively reduced, the service life of key components can be extended, and the machine can continuously maintain high cutting accuracy and consistent processing quality.

    You May Also Like

    See all products
    The Most Affordable Compact Fiber Laser Tube Cutting Machine in 2026
    This is a compact fiber laser tube cutting machine designed to process various metal tubes up to 6,500 mm in length and with diameters ranging from 10 to 120 mm. It is an ideal solution for budget-conscious users.
    $18,990.00~$38,990.00
    Best-Selling 3-Chuck Fiber Laser Tube Cutting Machine with Bevel Cutting Capability
    This 20kW fiber laser tube cutting machine features advanced bevel cutting capability and an automatic loading and unloading system for efficient tube processing.
    $103,999.00~$116,999.00
    Rail-Type Fiber Laser Cutting Machine for Large-Format Metal Sheet
    The CK-3200-FG is a rail-type fiber laser plate cutting machine designed for large-format metal plate processing. Its key features include a modular machine bed and a high-power laser source, enabling efficient and precise cutting of ultra-large metal plates.
    $53,800.00~$193,800.00
    3-Chuck Fiber Laser Cutting Machine for Tubes and Profiles
    The CK-12032-TS is a horizontal three-chuck fiber laser tube cutting machine with a maximum laser power of 12,000 W. It is capable of performing both precision cutting and bevel cutting on a wide range of metal tubes and profiles.
    $76,900.00~$115,900.00
    5x10 Multi-Function Fiber Laser Plate and Tube Cutting Machine
    This is a fiber laser cutting machine capable of both metal sheet and metal pipe cutting. It features an added pipe clamping/rotating device on the side, making it more comprehensive.
    $22,500.00~$32,800.00
    Classic Fiber Laser Sheet & Tube Cutting Machine
    The CK-1530-FTL is equipped with a flatbed cutting table and a tube clamping device, enabling it to process both metal sheets and tubes.
    $31,580.00~$61,580.00
    Menu