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High-Precision Laser Powder Feeding System GR-SF1 from China Suppliers & Factory for Additive Manufacturing

Introducing the GR-SF series high-precision airborne powder delivery system, a cutting-edge solution for additive manufacturing from leading suppliers in China. This advanced equipment utilizes state-of-the-art pneumatic conveying technology to ensure efficient and accurate transmission of metal powder while featuring supportive heating and stirring capabilities. With a remarkable powder delivery accuracy of within ±1%, this system is designed for long-distance delivery and proficiently prevents issues such as powder deposition and pipeline blockages. Discover how this factory-engineered precision system can enhance your manufacturing processes today

    Product Parameters
    High-precision laser powder feeding system
    Model GR-SF1
    Powder barrel quantity Single-Canister
    Powder barrel volume 2L, 5L
    Flow rate range 1-25L
    Pressure range 2~6Bar
    Powder feeding accuracy ±1%
    Powder feeding amount 1-300g/min
    Powder particle size 20-300 mesh
    Motor Servo
    Powder pan speed 0-15r
    Remote control I/O, TCP/IP
    Supply voltage 220V
    Product Function
    • Accurately deliver metal or plastic powder to ensure uniformity of the printing layer.
    • Evenly deliver powder to improve coating quality.
    Machine Features
    1. High-precision powder feeding control (accuracy ≤±1%)

    Adopt closed-loop feedback system and high-precision mass flow meter linkage, combined with PID dynamic adjustment algorithm, real-time correction of powder feeding error, ensure powder output fluctuation rate ≤±1%.

    2. Ultra-wide particle size compatibility (20-300 mesh)

    Modular powder feeding channel design, with adjustable Venturi nozzle and multi-stage gas-solid separation device. Wear-resistant alloy powder feeding plate and anti-static coating pipeline to avoid coarse powder clogging or fine powder adhesion, suitable for metal, ceramic, polymer and other multi-materials.

    3. Fully enclosed powder barrel protection system

    Effectively isolate the influence of oxygen and humidity to ensure the maximum utilization of powder. The powder barrel is easy to disassemble and install.

    4. Rich options

    Heating and stirring; non-stop powder adding device.

    5. Multiple control methods

    Support industrial Ethernet and I/O signal control.

    Line of Production
    High Power Heated Optical Lens (1)
    High Power Heated Optical Lens (2)
    High Power Heated Optical Lens (3)
    Laser Quenching Equipment For Outer Circle And Inner Hole (4)
    Laser Quenching Equipment For Outer Circle And Inner Hole (5)
    Laser Quenching Equipment For Outer Circle And Inner Hole (6)
    Frequently Asked Questions
    Q What is the powder feeding accuracy of the GR-SF1 system?

    The system achieves a high powder feeding accuracy of ≤±1% by utilizing a closed-loop feedback mechanism, a high-precision mass flow meter, and a PID dynamic adjustment algorithm for real-time error correction.

    Q Which powder particle sizes and materials are compatible?

    The GR-SF1 is compatible with an ultra-wide particle size range of 20-300 mesh. It is designed to work with various materials, including metals, ceramics, and polymers, without clogging or adhesion issues.

    Q What are the available powder barrel capacities?

    The system supports single-canister configurations with powder barrel volume options of either 2L or 5L, depending on your production requirements.

    Q What control interfaces does the powder feeder support?

    It supports multiple industrial control methods, including standard I/O signals and TCP/IP (industrial Ethernet) for seamless remote integration.

    Q Does the system protect the powder from moisture and oxidation?

    Yes, it features a fully enclosed powder barrel protection system that isolates the powder from external oxygen and humidity, ensuring maximum utilization and quality.

    Q What optional features can be added to the GR-SF1?

    Optional configurations include heating and stirring mechanisms for the powder, as well as a non-stop powder adding device to facilitate continuous operation.

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