Leave Your Message

High-Precision 3D Mold Laser Cladding Equipment GR-6000LDMR - China Factory Supplier for Enhanced Coating Solutions

This advanced industrial system, proudly designed and manufactured in China, utilizes high-precision laser technology to effectively deposit metallic or ceramic coatings onto 3D mold surfaces. By melting powdered materials such as steel and nickel-based alloys, our innovative equipment fuses coatings with the mold substrate. This process not only enables surface repair and enhances wear resistance but also allows for functional coating deposition on molds used in various industries, including automotive, aerospace, and glass manufacturing, As a leading supplier in the market, our 3D mold laser cladding equipment excels at repairing complex geometries and applying specialized coatings. By optimizing mold performance and boosting production efficiency, this cutting-edge technology supports sustainable manufacturing practices by recycling worn tools. Choose our Chinese factory solutions for superior quality and reliability in industrial coatings

    Product Parameters
    3D Mold Laser Cladding Equipment Specifications
    Model GR-3000LB GR-6000LB GR-9000LB
    Laser power 3kw 6kw 9kw
    Fiber system 600μm, 20m 600μm, 20m 800μm, 20m
    Laser cladding lens GR40LD GR60LD GR100LR
    Powder feeding form 3-way / 6-way 3-way / 6-way 3-way / 6-way
    Electrical system Siemens 1500 Siemens 1500 Siemens 1500
    Powder feeding system Single/Double Cylinder Single/Double Cylinder Single/Double Cylinder
    Motion system Robot+Positioning machine Robot+Positioning machine Robot+Positioning machine
    Machine Features

    1. This 3D mold laser cladding equipment adopts an advanced 8-10 axis linkage CNC system that enables high-precision laser processing for complex curved molds through multi-dimensional coordinated motion control.

    ⚙️

    2. Its innovative modular design supports dual-station and multi-station configurations, significantly increasing batch processing efficiency.

    🛡️

    3. The equipment is primarily used for surface strengthening and damage repair of 3D mold cavities.

    📐

    4. Featuring a compact integrated structure design, the 3D mold laser cladding equipment occupies a small footprint while being equipped with universal casters and quick connectors for flexible workshop layout adjustments.

    🚀

    5. The forward-looking system architecture reserves an expansion interface for depositional 3D printing capabilities.

    3d-mold-laser-cladding-equipment-application-2
    3d-mold-laser-cladding-equipment-application-1
    Key Functions
    • Restoring worn or damaged molds to original specifications, reducing replacement costs.
    • Upgrading surface properties (hardness, corrosion resistance, thermal stability) to extend mold service life.
    • Enabling rapid, localized material deposition with minimal heat input, preserving mold integrity and dimensional accuracy.
    3d-laser-cladding-equipment-application-3
    Line of Production
    Small Parts Laser Quenching Equipment GR-3000LQ (1)
    Small Parts Laser Quenching Equipment GR-3000LQ (2)
    Small Parts Laser Quenching Equipment GR-3000LQ (3)
    Small Parts Laser Quenching Equipment GR-3000LQ (4)
    Small Parts Laser Quenching Equipment GR-3000LQ (5)
    Small Parts Laser Quenching Equipment GR-3000LQ (6)
    Frequently Asked Questions
    Q What power models are available for this 3D mold laser cladding equipment?
    The equipment is available in three primary models: the GR-3000LB with 3kw laser power, the GR-6000LB with 6kw laser power, and the GR-9000LB with 9kw laser power.
    Q How does the motion system operate on these machines?
    The equipment features a Robot + Positioning machine motion system controlled by an advanced 8-10 axis linkage CNC system, enabling high-precision processing for complex curved molds.
    Q What are the primary applications and functions of this cladding equipment?
    It is primarily used for surface strengthening and damage repair of 3D mold cavities. It restores worn molds to original specifications, improves surface parameters (hardness, corrosion resistance, thermal stability), and enables localized material deposition with minimal heat input.
    Q Can this equipment be integrated into modern flexible workshop layouts?
    Yes. It features a compact integrated structure design that occupies a small footprint, and is equipped with universal casters and quick connectors for flexible layout adjustments.
    Q Can this system be upgraded for 3D printing in the future?
    Yes, the system architecture is forward-looking and reserves an expansion interface specifically designed for depositional 3D printing capabilities.

    Leave Your Message

    AI Helps Write