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3D Mold Laser Quenching Equipment GR-6000LQ - Advanced Heat Treatment Solutions by China Suppliers and Factory

Introducing our cutting-edge 3D Mold Laser Quenching Equipment, a game-changing solution for achieving superior surface hardening and strengthening for molds, dies, and complex curved components. Manufactured in China, this advanced industrial system integrates high-power laser technology with intelligent 3D path planning, ensuring highly localized and precise heat treatment. By enhancing wear resistance, fatigue strength, and extending the lifespan of critical tools while maintaining their dimensional integrity, our equipment sets the standard in the industry. As a leading supplier with a state-of-the-art factory, we are committed to delivering innovative solutions that meet the highest quality standards for your manufacturing needs

    Product Details

    Equipped with a multi-axis robotic arm and dynamic focusing optics, the system effortlessly conforms to complex geometries—including deep cavities, undercuts, and freeform surfaces—ensuring uniform energy distribution and hardness depth.

    The laser selectively heats targeted areas to austenitizing temperatures (up to 1500°C) within milliseconds, followed by rapid self-quenching via heat conduction, minimizing distortion and oxidation.

    Integrated AI algorithms analyze component geometry in real time, adjusting laser parameters (power, scan speed, spot size) to achieve tailored hardness profiles (50-65 HRC) for diverse materials.

    Eliminates traditional quenching media (oil, water), reducing waste and energy consumption by 40% compared to furnace-based methods.

    Ideal for Mold Types & Applications
    Injection Molds

    Strengthen high-wear regions like gates and cores to resist plastic abrasion and chemical corrosion.

    Stamping Dies

    Enhance edge durability of cutting or forming dies for high-volume sheet metal production.

    Die-Casting Molds

    Apply heat-resistant coatings to critical zones exposed to molten metal erosion.

    Complex Curved Components

    Strengthen turbine blades, gears, or biomedical implants with micron-level accuracy.

    Industry-Specific Benefits
    Automotive

    Extend service life of aluminum alloy die-casting molds for engine blocks or transmission housings.

    Aerospace

    Improve fatigue resistance of titanium alloy turbine blades or landing gear components.

    Electronics

    Harden micro-features on connectors or semiconductor tooling with sub-millimeter precision.

    Consumer Goods

    Optimize durability of plastic injection molds for high-gloss surfaces or intricate textures.

    Operational Advantages
    Reduced Downtime

    On-site hardening eliminates disassembly and external processing delays.

    Material Versatility

    Compatible with tool steels (H13, P20), stainless steels, and superalloys.

    Data-Driven Quality

    IoT-enabled monitoring tracks process metrics (temperature, hardness) for traceability and repeatability.

    Sustainability & Cost Efficiency

    By minimizing material waste and energy use, the system aligns with green manufacturing initiatives. Its ability to refurbish worn molds—instead of replacement—lowers lifecycle costs by up to 60%.

    Future-Ready Innovation

    The equipment supports hybrid additive-subtractive workflows, enabling simultaneous hardening and precision machining for next-gen smart manufacturing lines.

    Product Characteristics

    6-8 axis linkage motion mode
    Large-area welding range
    Applicable to molds and various complex curved surface products
    Surface quenching and strengthening

    Product Parameters

    3D mold laser quenching equipment GR-6000LQ
    Model GR-3000LH GR-4000LH GR-6000LH GR-9000LH GR-12000LH
    Laser Power 3kw 4kw 6kw 9kw 12kw
    Fiber System 600μm,20m 600μm,20m 600μm,20m 800μm,20m 1000μm,20m
    Laser Quenching lens GR60LQ GR60LQ GR60LQ GR60LQ GR60LQ
    Spot width 5-30mm 5-40mm 5-60mm 5-60mm 5-60mm
    Electrical system Siemens1500 Siemens1500 Siemens1500 Siemens1500 Siemens1500
    Motion system Robot+Positioning machine Robot+Positioning machine Robot+Positioning machine Robot+Positioning machine Robot+Positioning machine
    Auxiliary configuration Offline programming Offline programming Offline programming Offline programming Offline programming

    Line of Production

    Frequently Asked Questions

    What materials are compatible with the 3D mold laser quenching equipment?
    The system is highly versatile and compatible with tool steels (such as H13 and P20), stainless steels, and various superalloys.
    How does laser quenching achieve uniform energy distribution on complex surfaces?
    Equipped with a multi-axis robotic arm and dynamic focusing optics, the system effortlessly conforms to complex geometries, including deep cavities, undercuts, and freeform surfaces, ensuring uniform energy distribution.
    What is the energy efficiency of this system compared to traditional methods?
    By eliminating traditional quenching media like oil and water, this laser quenching system reduces waste and energy consumption by up to 40% compared to furnace-based methods.
    Can this equipment adjust parameters in real time for different workpiece geometries?
    Yes, integrated AI algorithms analyze component geometry in real time to adjust laser parameters (power, scan speed, spot size) and achieve tailored hardness profiles ranging from 50-65 HRC.
    What motion capabilities does the system support?
    The equipment features a 6-8 axis linkage motion mode, making it ideal for processing complex curved surfaces, large-area welding, and surface quenching of intricate molds.
    How does on-site laser hardening reduce operational downtime?
    The system performs on-site hardening directly on the components, which eliminates the need for disassembly and avoids external processing delays, significantly reducing overall downtime.

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