Introduction of Independent Manipulator Stamping Production Line

With the development of technology, stamping production lines are moving towards automation and high speed. The independent translational robotic stamping production line is one such representative example. To achieve automation and high speed, accuracy and stability must be ensured. Next, we will learn about the components of an independent manipulator stamping production line and how it works.
Working Principle
An independent manipulator is connected in series with two presses; multiple series combinations form an independent manipulator stamping line. To ensure the stable operation of the series production line, the manipulator automatically and orderly transfers workpieces between various workstations according to a pre-set program.
Components
1. Destacking System

The destacking system uses magnetic force to separate a portion of the stacked material from the top layer. Suction cups at the end of a robotic arm then extract each piece individually and transfer it to a waiting area.
2. Independent manipulator

Independent manipulators are the core component of this production line. They can be driven independently, employing independent servo systems and position feedback, enabling precise coordinated control.
3. Press Machine

The manipulator handles the transfer of materials, while the press machine performs the stamping. Multiple press machines can work in series to complete different processing steps sequentially.
4. Conveyor Belt

A movable conveyor belt is installed at the end to transport finished products transferred by the robotic arm, which are then collected and sorted manually. When not in use, it can be moved or relocated for use elsewhere.
Main Features
1. High Flexibility
Each manipulator can be independently controlled and programmed according to different production needs, enabling it to perform actions with varying rhythms and content.
2. High Degree of Automation
Whether it's depalletizing or workpiece transfer, automation can be achieved through the use of robotic arms, significantly reducing manual intervention.
Application Areas
1. Hardware Industry
The hardware industry primarily involves the continuous stamping of small to medium-sized parts. These parts are diverse and require high precision. This production line can effectively complete production tasks. Main products include: brackets, hinges, terminals, and so on.
2. Home Appliance Industry
Parts in the home appliance industry often require high precision to ensure accurate installation, and there are also certain requirements for appearance. Main products include: washing machine casings, refrigerator door panels, air conditioner panels, and so on.
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