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High-Speed Laser Pipe Cutting Machine G17—7017A from China Suppliers & Factory with Material Saving Features

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Advantages and Features

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✓ High Speed: This advanced chuck achieves an impressive rotation speed of 130 RPM and features an acceleration of 1.2G. With exceptional cutting efficiency and a standard configuration, it offers a competitive edge in the market.

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✓ Material Saving: Our design significantly reduces leftover material to an ultra-short length of between 20-45mm—potentially even zero—setting a new industry record for material utilization.

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✓ High Range Compatibility: Capable of accommodating pipe diameters from Φ10 to 160mm, this machine is compatible with round, square, elliptical, and specially-shaped pipes, excelling particularly with thin-walled structures.

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✓ High-Precision Chuck: Enjoy real-time, stable control of clamping force for enhanced processing accuracy. The chuck features automatic lubrication, minimizing maintenance needs while ensuring a stable operational structure.

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✓ Automatic Feeding: Designed with a side-suspended machine tool structure, this standard semi-automatic feeding machine boasts a rapid feeding cycle of 18-19 seconds, optimizing your production efficiency.

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✓ Stability: Utilizing pneumatic support, this machine effectively prevents pipe shaking, facilitating high-stability cutting performances.

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✓ Low Cost: This solution eliminates the need for high-cost consumables. Operating costs are kept to a minimum, covering only electricity fees and minor components like protective lenses and copper nozzles—amounting to just 13-15 yuan per hour.

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As a leading China supplier and factory of cutting-edge machinery, we are committed to providing innovative solutions tailored to your needs, ensuring high efficiency and cost-effectiveness.

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    Key Component Configuration
    Order No. Component Name Brand Model / Origin
    Key Components
    1 Fibre Laser Ricke 3000W – a top-tier domestic brand
    2 Cutting Head BOCI 3000W – a top-tier domestic brand
    3 Gear Rack Specialty: Taiwan M2-6 class / Taiwan, China
    4 Reduction Box TECHMECH / Modori 090 / Germany
    5 Linear Guide Rail DTX / SMG CGH30 / Taiwan, China
    6 Motor HuiChuan / HoChuan High-performance motor with a maximum speed of 4000 rpm and bus-type configuration
    8 Water Cooling Unit Hanli / Teyu Top-tier domestic brands
    10 Electronic Control Element Schneider, France China
    11 Airway Component AIRTAC, Taiwan China
    Processing Components
    11 Main Bed Frame Self-developed, Suzhou 9 meters / annealing at 600°C
    12 Chucks (optional for 0 tailstock) Self-developed, Suzhou DRK-170 pneumatic / continuous air supply clamp
    13 Auxiliary Feeding, Servo Floating Support Frame Self-developed, Suzhou 3 stents / 150 kg load capacity
    15 Material Feeding Device, Feeding Frame (optional) Self-developed, Suzhou 20 kg per meter, with a maximum cutting length of 2.0 meters
    Software System
    15 Operating System Shanghai Baichu Bus System / Shanghai
    16 Material Matching Software Shanghai Baichu 3D Tube Cutting Software / Shanghai
    Other
    17 Operation Direction Left-hand car Standard configuration
    18 Packaging and Transportation Standard packaging Standard configuration
    Note: The industrial machine operates at 380±5V. Customers should install a voltage stabilizer based on actual conditions.
    • Laser Tube Cutting Machine Laser Flat Cutting Machine Laser Marking Machine detail (6)
    • Laser Tube Cutting Machine Laser Flat Cutting Machine Laser Marking Machine detail (5)
    • Laser Tube Cutting Machine Laser Flat Cutting Machine Laser Marking Machine detail (4)
    • Laser Tube Cutting Machine Laser Flat Cutting Machine Laser Marking Machine detail (3)
    • Laser Tube Cutting Machine Laser Flat Cutting Machine Laser Marking Machine detail (2)
    • Laser Tube Cutting Machine Laser Flat Cutting Machine Laser Marking Machine detail (1)
    Component Technical Parameters
    Component Name Attribute Parameter Values
    Laser Output Power 3000W
    Work Pattern Fiber Continuous
    Fibre Diameter 50μm
    Cooling Method Hydrocooling
    Cuttable Material Carbon steel, stainless steel, aluminum alloy, copper, brass, and other metals
    Lathe Bed Structure Tube sheet welding
    Length 8.5 meters
    Cartridge Chuck Model RDK160
    Work Pattern Pneumatic
    Bearing 150 kG
    Cutting Head Focal Length 125 mm
    Collinear Focal Length 100 mm
    Focal Speed 100 mm/s (manual focus not available)
    Auxiliary Air Pressure ≤3 MPa
    Water Cooling Unit Cooling Medium Distilled water / Deionized water
    Ambient Water / Frozen Water Settings 30 / 20 (adjustable)
    Temperature Regulation Accuracy ±0.1ºC
    Pump Capacity 10 L/Min
    Pump Lift 20 m
    Complete Machine Technical Parameters
    Class Attribute Parameter Values
    Environment Attribute Device Series Small platform: 125 series
    External Dimensions (mm) 9600 × 3300 × 2300
    Total Weight (tons) About 3.5T
    Full Power Consumption (KW) 20~25
    Running Temperature (℃) 0–40
    Range of Work Processing Path (mm) Pipe diameter: 10–120
    Incision Width (mm) 0.1–0.2
    Y / X / Z / U Axis Stroke (mm) 7000 / 150 / 250 / Unlimited rotation
    Resetting Accuracy / Speed X / Y Axis Positioning Accuracy (mm) ±0.03\1000 (7000±0.06)
    X / Y Axis Repeatability (mm) ±0.03
    Cutting Accuracy ±0.1
    Rotation of the X-axis Repeatability (arc minutes) ≤5
    Maximum Rotation Speed of the X-axis (RPM) 130 HuiChuan
    Velocity and Acceleration Maximum Acceleration of X / Y Axis 1.5G
    Maximum Idle Speed on the X-axis (m/min) 100
    Maximum Idle Speed of the Y-axis (m/min) 130 HuiChuan
    Feed Parameters Manual Feeding (mm) 3000–6800
    Automatic Feeding Length (mm) 5800–6200
    Cycling Feed Cycle (s) Initial loading ≤50, subsequent loading ≤20
    Loading Machine Capacity (kg) Semi-automatic: 200; Fully automatic: 1500
    Maximum Load Capacity (kg) for Single Pipe in Manual Feeding 150
    Maximum Load Capacity (kg) for Single Pipe in Automatic Feeding 150
    Cutting Parameters Tail Length (mm) ≥45 mm
    Minimum Cutting Length (mm) Standard 2000
    ⚙️ * The above technical specifications were established through testing on March 1, 2025.
    Key Components and Motion Control
    1Bed Frame

    Manufactured by welding sheet metal and tubing, the machine undergoes high-temperature annealing at 600°C, followed by 4.5 hours of heat preservation. After being slowly cooled to 200–300°C in the furnace, it is air-cooled to eliminate internal bed stress. The process includes rough machining followed by precision finishing, significantly enhancing the rigidity and stability of the machine tool while ensuring long-term stable accuracy. Featuring a side-mounted structure with an integrated automatic feeding system, this design effectively improves feeding efficiency and simplifies material handling.

    Laser pipe cutting machine—G17--7013 detail (1)
    1.1 Rigidness: The bed structure is welded with plates and pipes, and reinforced with multiple ribbed tube plates to ensure transverse and longitudinal rigidity.
    1.2 Welding: The welds on both sides are evenly distributed, symmetrically and staggered, to minimize welding deformation.
    Annealing Report: Each bed number has an annealing report.
    2Crossbeam and X-axis / Z-axis Devices
    2.1 The crossbeam undergoes annealing treatment to relieve internal stresses, ensuring the rigidity and stability of the laser head's moving components. During operation, limit switches control the travel distance for positioning, while elastic buffer pads at both ends provide mechanical limits to guarantee system safety.
    2.2 The Z-axis mechanism primarily enables vertical movement of the laser head. This motion is controlled by the CNC system through servo motors, which drive linear actuators to move the Z-axis slider up and down reciprocally. Both ends utilize proximity switches to limit travel distance, ensuring safe and reliable operation.
    3Cutting Head and Following Part
    3.1 Real-time monitoring of the sealed condition in the protected zone effectively extends the service life of the protective mirror and ensures stable production.
    3.2 The impact-resistant cutting head design significantly reduces return-to-factory rates, eliminating the need for on-site service visits. Customers can perform replacements independently, resulting in lower maintenance costs.
    3.3 A dust cover plate is added to the optical lens area to enhance the sealing grade of the core chamber and prolong the service life of the core lens.
    3.4 The system is equipped with a high-precision capacitive sensing automatic tracking system, which enables highly stable Z-axis floating under system control, preventing height errors caused by thermal stress deformation or pipe surface irregularities during cutting.
    4Cooling System

    The system employs Hanli, a renowned domestic brand, for its professional laser water chillers, which offer excellent stability and high precision. It features dual-channel temperature control, enabling independent temperature regulation for both the laser and cutting head, thereby ensuring more effective stability of the laser and cutting head. The functions include: water pressure alarm, high/low temperature alarm, voltage alarm, and various fault alarms.

    Specific Parameters of Laser Special Cooling System
    Double Temperature and Double Control Laser Special Chiller
    Power Input 220V / 50HZ
    Cooling Medium Distilled water / Deionized water
    Water Temperature Control Accuracy ±0.1ºC
    Set to Room Temperature Water Standard 30°C (adjustable)
    5Electrical Control System (Bachu Bus)

    The electrical control system of the optical fiber tube cutting machine consists of three core components: the Bachu CNC system, servo system, and low-voltage electrical system. The system features a high-performance Bachu CNC system, a Windows-based PC-based CNC platform renowned for its rapid interpolation calculations and intuitive operation. The servo system incorporates imported AC servo motors and drivers, delivering stable performance, dynamic responsiveness, and high load capacity with user-friendly controls. The machine's soft keys enable customized functions across multiple operation modes, reducing physical buttons and simplifying the control panel. All operational functions are displayed via a menu interface, ensuring intuitive operation.

    5.1 CNC System
    Laser pipe cutting machine—G17--7013 detail (2)
    5.2 Advantages of CNC System:
    1) The system features real-time bus-based control and adaptive cutting parameters, delivering twice the industry standard efficiency in corner cutting with stable corner-following and reliable cutting quality. It supports partial graphic processing, positioning at any point during stop/pause operations, and starting from any position. Additional features include fixed-height cutting, automatic edge detection, off-board tool engagement, and tool lifting.
    2) It supports the separate setting of laser power, frequency, laser form, gas type, gas pressure, and follow-up height for the perforation process and cutting process.
    3) Supports segmented perforation, progressive perforation, and pre-perforation. It allows setting separate parameters for the perforation process and cutting process, including laser power, frequency, laser type, gas type, gas pressure, and follow-up height.
    4) Flexible and versatile automatic and manual sorting features, supporting partially fixed processing sequences by group. The unique sequence browsing function provides a more interactive view of processing sequences than simulation.
    5) Set up the lead wire and cut seam compensation in the way of what you see is what you get. Automatically distinguish the inner and outer mold, and determine the cut seam compensation direction according to the inner and outer mold, and check the lead wire.
    6) Unique one-touch calibration for horizontal square pipes, with automatic rotation center positioning.
    5.3 Other Functions of the CNC System
    • Surface height tracking control of pipe (following function)
    • Undo
    • Breakpoint return function
    • Find Edge
    • Suture compensation function
    • Pulse cutting control function
    • Frog jump function
    • Import multiple parts
    • Layout
    • Quick conversion and batch processing
    • Efficient automatic formatting
    • The corresponding process database can be configured according to different materials and thicknesses
    • Outline detection and graphic optimization processing
    • Auto-optimize cutting path
    • Perfect expert craftsmanship with flexible manual process adjustment
    • Supports labeling and small hole marking
    • Microconnect
    • Weld compensation
    5.4 Multiple Alarm Functions

    The NC system of the machine has the function of self-checking and alarm and automatic protection, and the external condition has the function of alarm display and automatic protection.

    6Low-Voltage Electrical System
    Laser pipe cutting machine—G17--7013 detail (5)

    The low-voltage electrical system is located inside the electrical control cabinet, serving as the interface for the entire electrical control system. All components required for the electrical control system, including power supplies, relays, circuit breakers, contactors, and servo drive systems, are installed within the electrical control cabinet. The motor used is a bus motor, which reduces the number of wiring lines.

    Connection Diagram
    Water, Electricity and Gas Demand
    Electricity Demand Related Data Notes
    Three-phase five-wire 380~400VAC / 50Hz distribution box 380V±2% / 50Hz

    1. If voltage fluctuation exceeds 5%, a voltage stabilizer should be installed. A three-phase five-wire power supply of at least 45KVA is recommended.

    2. The three-phase power supply must maintain an imbalance below 2.5% (Note: The 400VAC/50Hz/380V±2%/50Hz voltage must not experience sudden surges or power outages, as these may damage the laser).

    3. The diameter of a single cable wire shall not be less than 10 square.

    4. The power supply must be effectively grounded with a resistance ≤3Ω.

    5. Three circuit breaker interfaces are required for the cutting machine wiring.

    Cooling Water Requirement Related Data Notes
    Chiller Water Distilled water / Deionized water 30L, conductivity less than 10 μS
    Protective Gas Demand Related Data Notes
    Oxygen

    Purity: ≥99.6%

    Gases with purity below 99.6% may affect the cutting performance and quality.

    Cutting carbon steel and various iron plates with oxygen-assisted cutting achieves high-quality and efficient results.

    Pressure: 1 MPa

    Flow rate ≥ 1 m³/min

    Nitrogen

    Purity: ≥99.99%

    Gases with purity below 99.99% may adversely affect cutting performance and quality.

    Cutting of stainless steel and galvanized sheets is performed with nitrogen-assisted cutting, achieving high-quality results.
    Pressure: 2.5 MPa   Flow rate: ≥2.5 m³/min

    1. Bottled gas requires the installation of a pressure reducing valve for the cylinder.

    2. Oxygen (O₂) pressure reducing valve: The adjustable outlet pressure range is 0.4 MPa to 1.2 MPa, with a pressure fluctuation range of 1%.

    3. Nitrogen (N₂) pressure reducing valve: The adjustable outlet pressure range is 0.4 MPa to 5 MPa, with a pressure fluctuation range of 1%.

    Air Working pressure ≥1.3 MPa

    1. If air cutting is required, the user shall provide a compressor, refrigerated dryer, air receiver, and four-stage filtration (filtering precision 0.01 microns).

    2. The gas in the air-to-laser cutting machine must be free of water and oil, as these contaminants may compromise cutting quality and reduce the lifespan of various lenses.

    3. The condensation point temperature must not exceed 5°C.

    4. Oil content ≤0.003 ppm, solid particles ≤0.01 μm

    Flow rate ≥ 1.8 m³/min
    Frequently Asked Questions (FAQ)
    Q
    What type of laser is used in this tube cutting machine, and what materials can it cut?
    This machine uses a 3000W Ricke fiber laser operating in continuous fiber mode. It is capable of cutting a wide range of metals including carbon steel, stainless steel, aluminum alloy, copper, brass, and other metallic materials.
    Q
    What are the power supply requirements for this laser tube cutting machine?
    The machine operates on a three-phase five-wire 380V±2% / 50Hz power supply. A minimum of 45KVA is recommended. If voltage fluctuations exceed 5%, a voltage stabilizer must be installed. The power supply must be effectively grounded with a resistance of ≤3Ω, and the cable diameter should be no less than 10 mm².
    Q
    What type of cooling system does the machine use, and what coolant is required?
    The machine uses a Hanli dual-channel water chiller with ±0.1°C temperature regulation accuracy. The required coolant is distilled water or deionized water with a conductivity of less than 10 μS. Approximately 30 liters of coolant are needed. The system features independent temperature control for both the laser and cutting head.
    Q
    What gases are required for operation, and what purity levels are needed?
    The machine uses three types of assist gases: Oxygen (O₂) with a purity of ≥99.6% and pressure of 1 MPa for cutting carbon steel; Nitrogen (N₂) with a purity of ≥99.99% and pressure of 2.5 MPa for cutting stainless steel and galvanized sheets; and Air with a working pressure of ≥1.3 MPa, which requires a compressor, refrigerated dryer, air receiver, and four-stage filtration to ensure the gas is free of water and oil.
    Q
    What is the maximum pipe diameter and cutting length supported by this machine?
    The machine supports pipe diameters ranging from 10 mm to 120 mm. The Y-axis stroke is 7,000 mm, with an automatic feeding length of 5,800–6,200 mm and a manual feeding range of 3,000–6,800 mm. The minimum cutting length is 2,000 mm (standard), and the tail length is ≥45 mm.
    Q
    What CNC control system does this machine use, and what are its key software features?
    The machine uses the Shanghai Baichu Bus CNC system — a Windows-based PC platform with real-time bus control. Key features include adaptive cutting parameters, segmented/progressive/pre-perforation support, automatic edge detection, breakpoint return, frog jump function, auto-optimize cutting path, weld compensation, process database configuration by material and thickness, and support for 3D tube cutting software for efficient nesting and layout.
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