Automatic Rebar Bender
1.Dual Servo Control: Precise management of straightening, feeding, and bending angles.
2.High Precision: Closed-loop control for accurate feed length and bending angle.
3.Efficient Feeding: Automatic bar specification switching with magnetic feeding mechanism.
4.Multiple Bar Forming: Enables simultaneous forming of multiple bars for increased output.
5.Stable Performance: Reliable and efficient operation with minimal manual intervention.
Product Description
The raw materials are stored in multistage silos. Different specifications of bars are automatically switched using the matching magnetic feeding mechanism, enabling multiple steel bars to be formed at one time. This process ensures stable and efficient operation of the automatic rebar bender.
Parameters
Bar diameter (Single) | 12-32mm |
Bar diameter (Double) | 12-25mm |
Raw material storage method | Compartmentalized bunker truck |
Raw material loading method | Magnetic type |
Cutting method of raw material | Hydraulic |
Hydraulic pressure | ≤16MPa |
Gas pressure | ≤0.8MPa |
Rated power of equipment | 24KW |
Number of operators | 1 person |
Production efficiency | 24 tons/10 hours |
Occupied area | 24m×6m |
Control System Overview
CNC steel bar bending machine adopts two groups of servo system, one group is used to control the straightening and feeding of the steel bar, and the other group is used to control the movement of the torsion head. The servo drive in the servo system is controlled by industrial control machine. C language and VISUALBASIC are used for programming, and the programming is carried out according to the digital-to-analog conversion relationship of servo driver. The focus of the control part is how to control the feed displacement and bending Angle of the steel bar. The control system needs to complete two aspects of control. First, the feed length of the steel bar is controlled to meet the machining requirements. This part is completed by a group of closed-loop control through the displacement information fed back by the rotary encoder. Secondly, the processing Angle of the torsion head is controlled. It is difficult to reach the machining design Angle with one twist. Therefore, the Angle information transmitted by the Angle sensor is controlled by another set of closed-loop control systems.
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