Tension controller suitable for active/passive wire feeding mode and its control method

A technology of tensioner and controller, which is applied in the direction of conveying filamentous materials, thin material processing, transportation and packaging, etc. It can solve the problems of narrow control range of a single damper, inability to achieve constant tension control, and low control accuracy. Achieve the effect of meeting the needs of active wire feeding tension control and passive wire feeding tension control

CN109264505BActive Publication Date: 2020-12-15苏州创易技研股份有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Publication Date
2020-12-15

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Abstract

The invention relates to a tension controller suitable for an active / passive wire feeding mode and a control method thereof. The tension controller comprises a base plate and a tension setting controller, wherein a tension wire wheel and a tension adjusting mechanism are arranged on the base plate. The tension controller suitable for the active / passive wire feeding mode is characterized by that the tension controller further comprises a servo motor and a tension sensor, wherein the servo motor is correspondingly provided with a PID controller; a rotating shaft of the tension wire wheel is in transmission connection with an output shaft of the servo motor; a signal output end of the tension sensor is electrically connected with a signal input end of a servo motor driving controller; a tension threshold value is preset by the tension setting controller; when a real-time tension value acquired by the tension sensor is greater than or equal to the tension threshold value, the servo motor driving controller controls the servo motor to work in a torque control mode; and when the real-time tension value acquired by the tension sensor is less than or equal to the tension threshold value, the servo motor driving controller controls the servo motor to work in a speed mode.
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Description

technical field

[0001] The invention relates to a tensioner for a winding process, in particular to a set-type tension control method based on the application of a torque servo motor. Background technique

[0002] At present, tension controllers are needed in winding processes such as motor rotation, stator manufacturing, small transformers, and relay coils. The coil is suitable for tightness and tightness.

[0003] The setting type tension control system is to install a tension preset control circuit on the general-purpose electronic control tension control system, and change the manual tension adjustment to directly input the tension parameters to the tension control system, which is more intelligent.

[0004] But no matter what kind of tension controller is divided into two categories: active wire feeding type and passive wire feeding type according to the wire feeding method.

[0005] The outstanding advantage of the active wire feeding type is that the control precisi...

Examples

Embodiment 1

[0069] See attached figure 1 , attached figure 2 and attached Figure 4 As shown, a tension controller suitable for active / passive wire feeding mode includes a base plate 1 and a tension setting controller 3, the base plate 1 is provided with a tension wire wheel 2 and a tension adjustment mechanism, the tension wire wheel 2 Rotatingly supported on the base plate 1, the tension adjustment mechanism includes a tension rod 41, an extension spring 42 and an extension spring adjustment device, and the extension spring 42 is arranged between the tension rod 41 and the extension spring adjustment device.

[0070] Described extension spring adjusting device comprises extension spring block 43, guide rail, screw mandrel and motor 45, and described extension spring block 43 is moved and arranged on the guide rail and is fixedly connected with an adjustment slide block 47, between adjustment slide block 47 and screw mandrel Through threaded connection, the output shaft of the motor 4...

Embodiment 2

[0080] The difference between this embodiment and Embodiment 1 is: see the attached image 3 As shown, in the first embodiment, the tension sensor is integrated with the tension setting controller 3; repeat.

Embodiment 3

[0082] The difference between this embodiment and Embodiment 1 is: see the attached Figure 5 and attached Figure 7 As shown, the extension spring adjusting device includes an extension spring rod 48, an extension spring rod rotating shaft and a motor 45;

[0083] The extension spring rod 48 is rotatably supported on the base plate 1 through the extension spring rod shaft, and the extension spring rod rotation shaft is connected to the output shaft of the motor 45 through a worm gear mechanism;

[0084] One end of the tension rod 41 is rotatably supported on the base plate 1;

[0085] One end of the extension spring 42 is fixed on the tension rod 41 , and the other end of the extension spring 42 is fixed on the extension spring rod 48 .

[0086] The rest are the same as those in Embodiment 1, and will not be repeated here.