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        News center | Control principle of winding equipment

        The control principle of winding equipment is a complex and fine process, which combines the knowledge and technology of mechanical motion, electrical control and electromagnetic induction. The following is a detailed description of the control principle of the winding equipment:

        First, electrical control system

        The electrical control system of the winding equipment is its core part, responsible for the operation and regulation of the entire equipment. The system mainly includes the following aspects:

        Motor control : Winding equipment usually uses motors to drive winding tools and tables for movement. The speed, direction and acceleration and deceleration parameters of the motor are precisely controlled by PLC (programmable logic controller), servo system, etc. The motor drive circuit receives instructions from the controller, and through the logic circuit processing, controls the motor start, stop and speed adjustment to ensure the accuracy of winding and speed control.

        Sensor detection : The winding equipment is equipped with a variety of sensors, such as photoelectric sensors, proximity switches, tension sensors, etc., for detecting key parameters in the winding process, such as winding position, tension, etc. The sensor feeds the detected signals back to the controller, and the controller adjusts and controls the signals accordingly to ensure the stability and quality of the winding.

        Programming control : The controller of the winding equipment usually adopts the way of programming control, and sets the operating parameters of the winding machine through the preset program, such as winding speed, winding number, winding mode, etc. According to the programming Settings, the controller drives and controls the motor accordingly, so that the winding equipment can be wound according to the established trajectory, speed and mode.

        : Winding equipment is usually also equipped with a human-machine interface, including an operation panel, a display screen, etc., for people to interact with the controller. You can set the running parameters of the winding device, view the running status and fault information on the operation panel, and monitor the device in real time on the display screen.

        Second, mechanical motion system


        The mechanical motion system of the winding equipment is the basis of the winding operation, which mainly includes winding tools, worktables and transmission devices. These parts work together to complete the winding task under the command of the electrical control system.

        Winding tool : The wire winding tool is the core component of the wire winding equipment, which is used to guide the wire to wind according to the predetermined trajectory. The motion track, Angle and speed of the winding tool are precisely controlled by programming control to meet different winding requirements.

        Workbench : The table is a platform for fixing the coil frame or winding object during the winding process. The movement of the table is also achieved through motor drive and programmed control to ensure stability and accuracy during winding.

        Transmission gear : The drive is used to transfer the power of the motor to components such as winding tools and worktables. The design and selection of the transmission device have an important influence on the performance and accuracy of the winding equipment.

        Third, electromagnetic induction principle


        In the winding process, especially when electromagnetic winding equipment is used, the principle of electromagnetic induction also plays an important role. Electromagnetic winding equipment realizes efficient energy conversion and output through the interaction of magnetic field force and electromagnetic induction.

        DC winding motor : The magnetic field is generated between the winding coils by the exciting current, and the rotating torque is formed by the interaction with the magnetic field of the permanent magnet. When the coil receives the DC power supply, the current quickly generates a magnetic field and induces the magnetic field in the permanent magnet to generate torque and the coil begins to rotate.

        AC winding motor : Three groups of rotating magnetic fields are formed when three groups of winding coils are energized by three-phase AC power supply. The permanent magnet is placed on the rotor under the action of three rotating magnetic fields and the rotor rotates under the action of the magnetic field to achieve efficient energy transfer.


        Iv. Summary


        To sum up, the control principle of winding equipment is a complex and delicate process involving knowledge and technology in many fields such as electrical control, mechanical motion and electromagnetic induction. The precise execution of mechanical motion and the efficient conversion of electromagnetic induction are achieved through the precise control of the electrical system to ensure the stability and quality of the winding process. This control method not only improves the operating efficiency and accuracy of the winding equipment, but also provides strong technical support for the manufacture of the coil.

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