High reflective workpiece loading and unloading automation case

携手集成商

构建全行业场景应用创新

Industry
Project background

Flanges, also known as flanges or flanges, are a connection device used to connect pipes, pumps, valves, etc. Its production process mainly includes casting, forging, cutting and winding four types, in the manufacturing process involves a lot of loading and unloading operations.

The traditional loading and unloading link mainly relies on manual handling, manual operation not only increases the production cost, but also greatly limits the efficiency improvement. In addition, there are many types of environmental objects and high production and assembly requirements, which also make traditional operations face great challenges.

Therefore, the customer chose to join hands with the migration technology to identify and position the highly reflective flanges stacked on the production line with high precision through 3D vision, and guide the robot arm to grab the loading and unloading of the material, so as to realize the automatic upgrade and transformation of the flanges loading and unloading of the metal processing production line.

Project highlights

  • 01
    Excellent algorithm

    Reflective workpiece recognition is a major problem in 3D vision applications. The data distortion, overexposure and surface detail loss that may result from workpiece reflection put forward higher requirements for visual accuracy and algorithm processing. The 3D vision system combines a variety of excellent algorithms for the identification of highly reflective workpieces.

  • 02
    Super compatible

    3D vision has excellent compatibility and can easily handle the grasp of various specifications of the workpiece. In this project, 3D vision has been compatible with two different specifications of the workpiece, and later added products can be quickly imported.

  • 03
    Efficiency improvement

    The customer achieved this improvement through 3D visually-guided robotic arm operations, which increased production line efficiency by 1.8 times and significantly reduced manpower.

  • 04
    Intelligent obstacle avoidance

    Intelligent motion planning and obstacle avoidance design enable the robot arm to autonomously avoid collisions with obstacles in complex working environments, greatly improve the speed and stability of the robot arm, and reduce the incidence of failure and maintenance costs in the production process.

3D Vision Guidance Platform

Focused on 3D vision guidance for robot arms

Consult Now
Phone: 4000-191-161
Email: marketing@qianyi.ai
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