Robotic Configuration:

  • Six-axis robotic arms equipped with force-controlled grinding tools, ensuring consistent material removal on curved and angled surfaces.
  • Integration with vision systems for precise alignment and adaptation to various chair leg designs.
  • Customizable end-effectors to accommodate different materials, such as wood, metal, or plastic.

Process Integration:

  • Automated grinding of chair legs to remove surface imperfections, weld seams, or casting marks.
  • Preparation of surfaces for subsequent polishing, painting, or coating processes.
  • Real-time monitoring of grinding parameters to ensure quality and consistency.

Key Benefits:

  • Enhanced surface finish and uniformity across all chair legs.
  • Increased production efficiency and reduced manual labor.
  • Improved worker safety by minimizing exposure to dust and repetitive tasks.

Applications:

  • Wooden, metal, or plastic chair legs in residential, commercial, or institutional furniture.

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