Cable winding and arranging device

By switching the button and linking it with the shaft core interlocking circuit, the cable layout can be adjusted with one click, which solves the problems of low cable layout efficiency and unevenness in the existing technology, improves debugging efficiency and accuracy, and adapts to different specifications of shaft cores.

CN223804622UActive Publication Date: 2026-01-16XINYA ELECTRONICS
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Patent Information

Application Number
CN202520468575.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2026-01-16
Estimated Expiration
2035-03-18

AI Technical Summary

Technical Problem

In existing technologies, cable arrangement and adjustment efficiency is low, especially when multiple cores are being wound up. Manual adjustment is inefficient and uneven, making it difficult to achieve efficient and uniform arrangement.

Method used

The system uses a button switch and a shaft interlock control circuit to control the power supply and de-energization of the shaft limit component, enabling one-button switching of cable routing distance. The interlock circuit controls the routing distance of different shafts.

Benefits of technology

It improves the efficiency and accuracy of cable routing debugging, adapts to different specifications of shaft cores, and enhances the versatility of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

A cable winding and arranging device relates to the technical field of cable winding and arranging control and comprises a cable arranging device, a shaft core and a control circuit. The cable arranging device is used for arranging cables on the shaft core; the shaft core is provided with a plurality of shaft core limiting assemblies at different intervals, and the shaft core limiting assemblies are used for limiting the length of the cable arranged by the cable arranging device; the control circuit comprises a plurality of control buttons, each control button corresponds to one shaft core limiting assembly, and when the control buttons are pressed down, the shaft core limiting assemblies corresponding to the control buttons are powered on, and meanwhile the other shaft core limiting assemblies are powered off. Through the arrangement of the button switching module, the step of manually debugging the shaft core is omitted, the debugging time is saved, and the debugging precision is improved. Meanwhile, due to the switchable design, the device can adapt to shaft cores of different specifications, and the universality is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the cable's collection line control technical field, concretely relates to a cable collection line device. BACKGROUND

[0002] In the manufacturing process of cable, the cable needs to be neatly collected and arranged on the winding disc provided with the shaft core, so as to facilitate the subsequent transportation and statistical work. In the prior art, the cable arrangement and adjustment work mostly rely on manual operation, for example, positioning is carried out through sliding groove and mechanical fixing device, but such operation has the problems of low adjustment efficiency and uneven arrangement adjustment. Especially in the adjustment of multi-shaft core winding, if the shaft core is adjusted manually, repeated arrangement and debugging are needed, which makes the problems of low adjustment efficiency and uneven adjustment more prominent. SUMMARY

[0003] The utility model through the button switching and the shaft core interlock control circuit's linkage only makes the target shaft core's proximity switch electrification, other shaft core power off, realizes the arrangement distance of one key switching cable, solves the problem raised in the background art.

[0004] The technical scheme adopted by the utility model is:

[0005] A cable collection line device comprises:

[0006] A winding device, a shaft core and a control circuit.

[0007] The winding device is used for arranging the cable on the shaft core.

[0008] The shaft core is provided with a plurality of shaft core limiting assemblies with different intervals, and the shaft core limiting assembly is used for limiting the length of the cable arranged by the winding device.

[0009] The control circuit comprises a plurality of control buttons, each control button corresponds to a group of shaft core limiting assemblies, and when the control button is pressed, the shaft core limiting assembly corresponding to the control button is electrified while the other shaft core limiting assemblies are powered off.

[0010] The shaft core limiting assembly comprises a first shaft core limiting assembly, a second shaft core limiting assembly and a third shaft core limiting assembly, the control button comprises a first control button, a second control button and a third control button, the first shaft core limiting assembly is electrified while the other two shaft core limiting assemblies are powered off when the first control button is pressed, the second shaft core limiting assembly is electrified while the other two shaft core limiting assemblies are powered off when the second control button is pressed, and the third shaft core limiting assembly is electrified while the other two shaft core limiting assemblies are powered off when the third control button is pressed.

[0011] The two limiting contacts of the first shaft core limiting assembly have a larger spacing than the two limiting contacts of the second shaft core limiting assembly, and the two limiting contacts of the second shaft core limiting assembly have a larger spacing than the two limiting contacts of the third shaft core limiting assembly.

[0012] The wire arranging device is provided with a detection position for detecting the limiting contacts arranged on both sides of the shaft core limiting assembly.

[0013] The control circuit comprises three interlocking circuits, and each interlocking circuit comprises a contactor KM1, a contactor KM2 and a contactor KM3.

[0014] The first control button is used for controlling the opening and closing of the contactor KM1, the second control button is used for controlling the opening and closing of the contactor KM2, and the third control button is used for controlling the opening and closing of the contactor KM3.

[0015] The first interlocking circuit comprises the normally open contact of the contactor KM1, the normally closed contact of the contactor KM2 and the normally closed contact of the contactor KM3 in a normal state.

[0016] The second interlocking circuit comprises the normally open contact of the contactor KM2, the normally closed contact of the contactor KM1 and the normally closed contact of the contactor KM3 in a normal state.

[0017] The third interlocking circuit comprises the normally open contact of the contactor KM3, the normally closed contact of the contactor KM1 and the normally closed contact of the contactor KM2 in a normal state.

[0018] The beneficial effects of the utility model are as follows: the utility model is provided with a button switching module, so that the step of manually debugging the shaft core is saved, the debugging time is saved, and the debugging precision is improved. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 The utility model discloses a structure schematic view.

[0020] Figure 2 The utility model discloses a schematic view of the length distribution of each shaft core.

[0021] Figure 3 The utility model discloses a circuit diagram of the shaft core interlocking circuit. DETAILED DESCRIPTION

[0022] The utility model will be described in detail below according to the drawings.

[0023] As Figure 1The utility model provides a cable winding and unwinding device, which comprises a winding device, a shaft core and a control circuit. The winding device is used for arranging the cable on the shaft core. The shaft core is provided with a plurality of shaft core limiting assemblies with different intervals. The shaft core limiting assemblies are used for limiting the length of the cable arranged by the winding device. The utility model comprises three different shaft core limiting assemblies, namely a first shaft core limiting assembly, a second shaft core limiting assembly and a third shaft core limiting assembly. Each shaft core limiting assembly is provided with two left and right limiting contacts.

[0024] As Figure 2 , the length of the first shaft core limiting assembly is greater than that of the second shaft core limiting assembly, and the length of the second shaft core limiting assembly is greater than that of the third shaft core limiting assembly. The three shaft core limiting assemblies are arranged on the same shaft core. The left and right limiting contacts of the third shaft core limiting assembly are arranged on the part of the shaft core closest to the middle. The left limiting contact of the second shaft core limiting assembly is arranged on the left side of the left limiting contact of the third shaft core limiting assembly, and the right limiting contact of the second shaft core limiting assembly is arranged on the right side of the right limiting contact of the third shaft core limiting assembly. The left limiting contact of the first shaft core limiting assembly is arranged on the left side of the left limiting contact of the second shaft core limiting assembly, and the right limiting contact of the first shaft core limiting assembly is arranged on the right side of the right limiting contact of the second shaft core limiting assembly.

[0025] The lower end of the winding device is provided with a detection position. When the detection position detects that the limiting contacts on both sides of the shaft core limiting assembly are powered, the winding device performs the winding and unwinding work. The final length of the cable on the shaft core depends on the interval of the limiting contacts at both ends of the shaft core limiting assembly that is powered. The user can switch the shaft core limiting assembly that is powered through the control button to control the final length of the cable on the shaft core after the winding and unwinding is completed.

[0026] The utility model adopts an interlocking circuit to control the switching of the shaft core. Figure 3 SQ1 is the first shaft core limiting assembly, SQ2 is the second shaft core limiting assembly, and SQ3 is the third shaft core limiting assembly. SB1 is the power-off button of the entire circuit, SB2 is the first control button, SB3 is the second control button, and SB3 is the third control button. Correspondingly, the contactor KM1 controls the power-on and power-off of the first shaft core limiting assembly, the contactor KM2 controls the power-on and power-off of the second shaft core limiting assembly, and the contactor KM3 controls the power-on and power-off of the third shaft core limiting assembly.

[0027] The shaft core interlocking circuit is composed of three interlocking circuits, each of which includes contactors KM1, KM2 and KM3, and each of the interlocking circuits is composed of one normally open contact and two normally closed contacts in KM1, KM2 and KM3. Correspondingly, the contact of the contactor KM1 connected with the first shaft core limiting component is a normally open contact, and the contactors KM2 and KM3 connected with the first shaft core limiting component are normally closed contacts. The contactor KM2 connected with the second shaft core limiting component is a normally open contact, and the contactors KM1 and KM3 connected with the second shaft core limiting component are normally closed contacts. The contactor KM3 connected with the third shaft core limiting component is a normally open contact, and the contactors KM1 and KM2 connected with the third shaft core limiting component are normally closed contacts.

[0028] After SB2 is pressed, the contact of the contactor KM1 corresponding to the control of the first shaft core limiting component is electrified, at this time, the KM1 contact connected with the first shaft core limiting component is closed, and the KM1 contacts connected in series in the other two circuits are de-energized, and the two KM1 contacts are disconnected. This makes the wire arrangement device run between the left and right limiting contacts of the first shaft core limiting component, and the corresponding limiting contacts of the other two shaft cores are de-energized. When SB2 is disconnected, the contact state of KM1 returns to the initial state, at this time, the wire arrangement device stops running. After SB3 is pressed, the contact of the contactor KM2 corresponding to the control of the second shaft core limiting component is electrified, at this time, the KM2 contact connected with the second shaft core limiting component is closed, and the KM2 contacts connected in series in the other two circuits are de-energized, and the two KM2 contacts are disconnected. This makes the wire arrangement device run between the left and right limiting contacts of the second shaft core limiting component, and the corresponding left and right limiting contacts of the first shaft core limiting component and the third shaft core limiting component are de-energized. After SB3 is disconnected, the contact state of KM2 returns to the initial state, at this time, the wire arrangement device stops running. Similarly, the user can also control the connection and disconnection of the corresponding circuit of the third shaft core limiting component by pressing or disconnecting the switch SB4 through the same interlocking circuit structure.

[0029] In this way, the utility model can control the arrangement distance of different shaft cores through different control buttons, and the arrangement distance of different shaft cores can be switched through the buttons. When a shaft core is used, the left and right limiting proximity switches corresponding to the arrangement distance of the shaft core are electrified, and the proximity switches of the arrangement distance of other shaft cores are de-energized, so that the purpose of switching the arrangement distance of different shaft cores is achieved.

[0030] The above describes the structure, main embodiments and advantages of the utility model. It should be noted that the specific implementation of the utility model is not limited by the above method, and various non-substantial improvements using the technical solution of the utility model, or directly applying the concept and technical solution of the utility model to other occasions without improvement, are all within the protection scope of the utility model. The protection scope required by the utility model is defined by the appended claims and their equivalents.

Claims

1. A cable take-up and pay-off device, characterized in that The utility model relates to a cable arranging device, which comprises a cable arranging device, a shaft core and a control circuit. The cable arranging device is used to arrange cables on the shaft core. The shaft core is provided with a plurality of shaft core limiting components with different intervals, which are used to limit the length of the cables arranged by the cable arranging device. The control circuit comprises a plurality of control buttons, each of which corresponds to a group of shaft core limiting components. When a control button is pressed, the corresponding shaft core limiting components are powered on while the other shaft core limiting components are powered off.

2. A cable take-up and pay-off device according to claim 1, characterised in that: The shaft core limiting components include a first shaft core limiting component, a second shaft core limiting component and a third shaft core limiting component.

3. A cable take-up and pay-off device according to claim 2, wherein: The control buttons include a first control button, a second control button and a third control button.

4. A cable take-up and pay-off device according to claim 1, wherein: When the first control button is pressed, the first shaft core limiting component is powered on while the other two shaft core limiting components are powered off.

5. A cable take-up and pay-off device according to claim 2, wherein: When the second control button is pressed, the second shaft core limiting component is powered on while the other two shaft core limiting components are powered off.

6. A cable take-up and pay-off device according to claim 2 or 5, wherein: When the third control button is pressed, the third shaft core limiting component is powered on while the other two shaft core limiting components are powered off.

7. A cable take-up and pay-off device according to claim 5, wherein: Each of the shaft core limiting components includes two limiting contacts on the left and right sides.

8. A cable take-up and pay-off device according to claim 5, wherein: The interval between the two limiting contacts of the first shaft core limiting component is greater than that of the second shaft core limiting component, and the interval between the two limiting contacts of the second shaft core limiting component is greater than that of the third shaft core limiting component.

9. A cable take-up and pay-off device according to claim 5, wherein: The cable arranging device is provided with a detection position, which is used to detect the limiting contacts arranged on both sides of the shaft core limiting component. The control circuit comprises a three-way interlocking circuit, which includes a first interlocking circuit, a second interlocking circuit and a third interlocking circuit. Each of the interlocking circuits comprises contactors KM1, KM2 and KM3. Each of the interlocking circuits is composed of one normally open contact and two normally closed contacts in KM1, KM2 and KM3. The first control button is used to control the opening and closing of the contactor KM1. The second control button is used to control the opening and closing of the contactor KM2. The third control button is used to control the opening and closing of the contactor KM3. The first interlocking circuit in the normal state includes the normally open contact of KM1, the normally closed contact of KM2 and the normally closed contact of KM3. The second interlocking circuit in the normal state includes the normally open contact of KM2, the normally closed contact of KM1 and the normally closed contact of KM3. The third interlocking circuit in the normal state includes the normally open contact of KM3, the normally closed contact of KM1 and the normally closed contact of KM2.