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China Suppliers Factory High-Power Six-Axis Robot Laser Welding Machine for Precision Automated Welding

Introducing our state-of-the-art six-axis laser welding machine, designed for unparalleled flexibility and efficiency in the welding process. Recognized as a leading solution from top manufacturers in China, such as Fanuc and ABB, this advanced system integrates a high-power laser with an industrial robot, earning it the title of laser welding robot., This cutting-edge technology enables the execution of intricate three-dimensional welding trajectories, allowing for the fabrication of complex geometries that traditional stationary systems cannot achieve. With precise synchronization between the robot's motion controller and the laser's power modulation, our machine guarantees uniform energy distribution across every millimeter of the weld seam, Ideal for high-precision automated welding applications, our laser welding machine is essential for factories aiming to enhance their productivity and quality. Partner with trusted suppliers to elevate your welding capabilities today!

    Core Composition

    Six-axis robot

    Provides spatial motion flexibility, typically with six degrees of freedom.

    Laser

    Provides the welding energy, primarily in the form of fiber lasers, with power ranging from several hundred watts to 8,000 watts.

    Welding head & Control

    Responsible for beam focusing and path programming, some are equipped with swing welding heads to optimize welding quality.

    Core Advantages

    Exceptional Flexibility

    With six degrees of freedom, it can adapt to automatic welding of various complex three-dimensional workpieces.

    High Quality & Efficiency

    Automation ensures consistency and high speed, with minimal heat-affected zone and deformation.

    Easy to Integrate

    The machine boasts high integration, with core components requiring no maintenance, enabling rapid integration into automated production lines.

    Technical Parameters & Functions

    Repeatability: Typically ±0.03mm to ±0.05mm.
    Welding speed: 5-10 mm/s, weldable thickness from 0.1mm to 5mm.
    Intelligent Features: Integrated weld seam tracking, penetration depth monitoring (e.g., LDD, SmartOCT), and multi-station collaboration, with the capability to connect to MES systems.

    Application Fields

    1. Automotive manufacturing: welding of body panels, power batteries, chassis components, and seat angle adjusters.
    2. Aerospace: Welding of critical components for aircraft engines.
    3. New Energy: Photovoltaic, Power Battery Module & Pack Production Lines.
    4. General Industry: 3C Electronics, Medical Devices, Hardware Appliances, Kitchen & Bath Cabinets, etc.

    Machine Picture

    Frequently Asked Questions

    What are the core components of the robotic laser welding system?

    The system primarily consists of three core components: a six-axis robot for spatial motion flexibility, a fiber laser (ranging from several hundred to 8,000 watts) to provide welding energy, and a specialized welding head and control system for beam focusing and path programming.

    What is the repeatability and speed of the six-axis welding robot?

    The robot has a repeatability of typically ±0.03mm to ±0.05mm. The welding speed ranges from 5 to 10 mm/s, and it can process weldable thicknesses from 0.1mm to 5mm.

    What are the main advantages of using a robotic laser welding system?

    Key advantages include exceptional flexibility due to the six degrees of freedom, high quality and efficiency with minimal heat-affected zones and deformation, and easy integration into automated production lines since the core components require no maintenance.

    What intelligent features are supported by the welding control system?

    It supports intelligent features such as integrated weld seam tracking, penetration depth monitoring (e.g., LDD, SmartOCT), multi-station collaboration, and the ability to seamlessly connect to factory MES systems.

    In which industries is this robotic laser welding system applied?

    It is widely used in automotive manufacturing (body panels, batteries, chassis), aerospace (engine components), new energy sectors (photovoltaic and battery packs), and general industries such as 3C electronics, medical devices, hardware appliances, and kitchen & bath cabinets.

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