A CNC-driven system combining press brakes with robotic arms, multi-axis tool changers, and adaptive programming. Enables rapid, automated bending of complex geometries with minimal setup. Features real-time adjustments, IoT connectivity, and compatibility with diverse materials, ideal for high-mix, low-volume production in smart manufacturing environments.
A Flexible Bending Center is a fully automated CNC-driven system designed for high-efficiency sheet metal bending. It integrates robotic arms for material handling, multi-axis tool changers, and adaptive CNC software to manage complex bending sequences. The process begins with automated sheet loading via robots, which position the workpiece precisely on the press brake. The CNC system, pre-programmed with CAD/CAM data, selects appropriate tools from the multi-axis changer and adjusts parameters like bend angle, force, and speed. During bending, real-time feedback from sensors and laser measurement systems monitors accuracy, enabling dynamic corrections to tool positioning or pressure. Once bends are completed, robots unload finished parts. This closed-loop automation minimizes human intervention, reduces setup time, and ensures repeatability (±0.01mm precision). IoT connectivity allows remote monitoring and data optimization, making it ideal for agile, high-mix, low-volume production in smart factories.
Flexible Bending Centers revolutionize sheet metal fabrication with automation and adaptability. Key benefits include:
High Efficiency: Robotic arms and multi-axis tool changers enable rapid material handling and setup changes, slashing production downtime.
Precision: Real-time sensor feedback and CNC control ensure ±0.01mm repeatability, critical for complex geometries.
Versatility: Adapts seamlessly to high-mix, low-volume production via CAD/CAM integration and programmable tooling.
Scalability: IoT connectivity supports data-driven optimization, predictive maintenance, and remote monitoring for smart factories.
Cost Savings: Reduces labor dependency, material waste, and rework errors.
Sustainability: Energy-efficient operation and minimal scrap align with eco-friendly manufacturing goals.
Ideal for industries like automotive and aerospace, these systems streamline agile production while maintaining top-tier quality and competitiveness in dynamic markets.
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