Inquiry
Form loading...
Products Categories
Featured Products

Continuous Fiber Laser Welding Machine - High-Quality Ytterbium Fiber Laser from China Suppliers & Factory

Introducing the LWF series fiber laser welding machine, a cutting-edge solution that revolutionizes traditional welding processes. Unlike conventional solid-state lasers that utilize crystal rods, our fiber lasers feature a long ytterbium-doped double-clad fiber as the laser medium, powered by high-performance multimode laser diodes. This advanced technology produces lasers with exceptional beam quality and high energy output, making it ideal for various laser welding applications. Trusted by numerous buyers around the world, our China-based factory is a leading supplier of innovative welding equipment, ensuring you receive top-notch products to enhance your manufacturing capabilities. Experience the unique advantages of fiber laser technology today!

    Equipment Introduction
    The LWF series fiber laser welding machine is different from traditional solid-state lasers that use crystal rods as the laser medium. The laser medium of fiber lasers is a long ytterbium doped double clad fiber, which is pumped by high-power multimode laser diodes. The generated laser has the characteristics of good beam quality and high energy, and has many unique advantages in the field of laser welding applications. This device has the following advantages:
    Good beam quality, high energy, suitable for high-speed and high-precision welding

    Compared with traditional lamp pumped laser welding machines, the LWF series fiber laser welding machine has the characteristics of good beam quality and small divergence angle. Compared with traditional laser welding machines, it has great advantages in welding efficiency and weld seam effect in high-speed and high-precision welding.

    Compact size, achieving portability

    The LWF series fiber laser welding machine is lightweight and compact, saving space and facilitating transportation compared to lamp pumped solid-state laser welding machines. The laser transmission fiber can reach up to 15m, which can adapt to the requirements of changing processing locations and achieve product portability.

    Stable laser output power and high equipment reliability

    Energy fluctuations below 2% ensure stable laser welding quality. The average usage time of laser pump sources can reach over 50000 hours, which is about 100 times that of lamp pumped laser welding machines.

    High efficiency, low energy consumption, and cost savings in usage

    The electro-optical conversion efficiency is as high as 30%. The overall power of the FRZ-LWF500C is only 4000W, which is 1/3 of the ordinary 300W lamp pumped solid-state laser welding machine. The average energy consumption is about 1/10 of the ordinary welding machine. It can save users a lot of energy consumption expenses for long term using.

    Control system

    Using dedicated motion control software, the electric worktable is controlled to complete the workpiece welding work according to the set trajectory. The welding path can be edited arbitrarily. In addition, a vibrating mirror worktable, robot or line following automation design can be selected to meet various welding requirements of customers.

    Application areas
    The LWF series fiber laser welding machine is widely used in optical communication devices, IT device, Precision welding of aviation components, fuel injectors, diesel common rail systems, solenoid valves, precision clock parts, automotive headlights, and other products.
    Technical parameters
    Equipment model FRZ-LWF1000 FRZ-LWF2000 FRZ-LWF3000 FRZ-LWF4000
    Average output power(W) 1000W 2000w 3000W 4000W
    Laser Source Continuous Fiber Laser
    Single mode Single mode Multimode Multimode
    Cooling mode Water-Cooling Water-Cooling Water-Cooling Water-Cooling
    Min weld seam 0.2mm 0.2mm 0.2mm 0.2mm
    Wavelength 1064±20nm
    Fiber length 10m、15m(Optional)
    Min beam diameter 0.02mm
    Energy fluctuation range ≤2%
    Power supply AC 220V±10%,50/60Hz
    Operational environmental temperature 10~35℃
    Operational environmental humidity ≤95%
    Platform (Optional)
    Purifier (Optional)
    Equipment pictures
    Continuous Fiber Laser Welding Machine (4)
    Continuous Fiber Laser Welding Machine (3)
    Continuous Fiber Laser Welding Machine (8)
    Continuous Fiber Laser Welding Machine (5)
    Continuous Fiber Laser Welding Machine (6)
    Continuous Fiber Laser Welding Machine (7)
    Videos
    Frequently Asked Questions
    What is the difference between the LWF series fiber laser and traditional solid-state lasers?
    Unlike traditional solid-state lasers that use crystal rods, the LWF series fiber laser utilizes a long ytterbium-doped double-clad fiber as the laser medium, pumped by high-power multimode laser diodes. This design delivers superior beam quality and higher energy output.
    How energy-efficient is the LWF series fiber laser welding machine?
    The machine features an electro-optical conversion efficiency of up to 30%. For example, the overall power of the FRZ-LWF500C is only 4000W (about 1/3 of a 300W lamp-pumped solid-state laser), and its average energy consumption is only about 1/10 of ordinary welding machines.
    What is the lifespan and reliability of the laser source?
    The equipment is highly stable, maintaining energy fluctuations below 2%. The average usage time of the laser pump sources can reach over 50,000 hours, which is approximately 100 times longer than that of lamp-pumped laser welding systems.
    Is the equipment portable and flexible for different workspaces?
    Yes. The LWF series is designed to be lightweight and compact. Its laser transmission fiber can extend up to 15 meters, allowing operators to easily adapt to changing processing locations and achieve high portability.
    What options are available for controlling the welding path?
    The machine uses dedicated motion control software to run customized trajectories. Depending on your needs, you can also select a vibrating mirror worktable, robotic arm integration, or a line-following automation design.

    Leave Your Message