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High Power Cladding Optical Lens GR-120LD/T4-T8 - China Suppliers and Factory for Laser Processing Applications

The GR-LR series laser head is a versatile and high-performance solution designed for medium and high power laser processing applications. With the capability to handle a maximum laser power of 12KW, this laser head is an ideal choice for manufacturers looking to enhance their production quality. As one of the leading suppliers in China, we ensure this product is compatible with lasers from well-known manufacturers and is suitable for both fiber lasers and semiconductor lasers. The innovative design allows for the integration of various optical paths using multi-channel nozzles, enabling applications such as wide spot cladding and 3D deposition printing. Partner with our factory to leverage cutting-edge laser technology for your processing needs

    Product Parameters
    High power cladding optical lens
    Model GR-120LD/T4-T8
    Power level 12KW
    Fiber optic interface QBH, QD, LLK
    Applicable wavelengths 900-1100nm
    Spot size φ3-5mm
    Protect the mirror cabin 3layer
    Temperature monitoring Digital temperature detection
    Powder delivery form Multi-channel focusing
    Aperture Ф50mm
    Collimator focal length 100mm
    Focus lens focal length 300mm, 400mm, 500mm
    Assist gas pressure 15bar
    CCD interface TYPE-C, TYPE-CS
    Weight 6KG
    Product Function
    Green Laser's self-developed optical lens includes a reflective optical copper mirror group, a built-in water cooling circulation system, an optical focusing system, and an adjustment module. It is equipped with four, six, and eight-channel high-throughput, annular nozzles. The nozzle part is made of tungsten steel. While being resistant to high temperatures, it greatly extends the service life of the nozzle and can achieve a more concentrated powder feeding effect and higher cladding efficiency during the cladding process.
    Machine Features

    1. Fully enclosed structure, dustproof grade IP65, ensures long-term stable operation of the equipment in complex industrial environments.

    2. A combination of multiple nozzle powder feeding methods greatly improves the powder deposition efficiency and achieves a uniform and dense cladding layer, which is suitable for different materials and process requirements.

    3. The full copper mirror design ensures stable spot quality, improves the reliability of continuous operation, and effectively solves the stability of high-power cladding.

    4. The inner cavity double water cooling and coaxial airflow protection system are adopted to extend the service life of the lens.

    5. With a variety of nozzles to choose from, CCD can be optionally equipped to facilitate the observation of the molten pool process and real-time monitoring of the molten pool morphology and temperature.

    Case
    High Power Cladding Optical Lens GR-120LDTH (3)
    High Power Cladding Optical Lens GR-120LDTH (4)
    High Power Cladding Optical Lens GR-120LDTH (5)
    High Power Cladding Optical Lens GR-120LDTH (6)
    High Power Cladding Optical Lens GR-120LDTH (7)
    Frequently Asked Questions
    What is the maximum power capacity of the GR-120LD/T4-T8 cladding optical lens?

    The lens supports a high power level of up to 12KW, making it suitable for demanding industrial laser cladding applications.

    What fiber optic interfaces are compatible with this cladding lens?

    It is compatible with QBH, QD, and LLK fiber optic interfaces, ensuring broad compatibility with various laser systems.

    How does the temperature monitoring system work?

    It features digital temperature detection to monitor the lens temperature in real-time, preventing overheating and ensuring stable operation.

    What is the dustproof rating of the lens structure?

    The lens features a fully enclosed structure with an IP65 dustproof grade, protecting internal components in harsh industrial environments.

    Does it support CCD camera integration?

    Yes, it is equipped with TYPE-C and TYPE-CS CCD interfaces, allowing optional CCD integration for real-time monitoring of the molten pool morphology and temperature.

    What cooling mechanisms are used to extend the lens lifespan?

    The system utilizes an inner cavity double water cooling system and coaxial airflow protection to effectively manage heat and extend the service life of the optical components.

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