Cable storage device convenient for batch winding

By designing the frame, clamping and pushing components, conveying components, and winding drive components to work in synergy, the cable storage device achieves batch winding and automatic conveying, solving the problem that traditional devices can only wind up individually, and improving winding efficiency and production efficiency.

CN223646067UActive Publication Date: 2025-12-09CHANGZHOU ANCHENG CABLE MASCH CO LTD
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Patent Information

Application Number
CN202520109436.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2025-12-09
Estimated Expiration
2035-01-17

AI Technical Summary

Technical Problem

Traditional cable storage devices can only wind up one roll of cable at a time, making it impossible to wind up in batches and to automatically transfer the cable storage drum, resulting in low winding efficiency.

Method used

A cable storage device is designed, comprising a frame, a clamping and pushing component, a conveying component, and a winding drive component. The clamping and pushing component arranges the cable storage cylinders at equal intervals. The conveying component drives the hollow cylinder of the winding drive component to move axially and rotate. Combined with the winding motor, the cable storage cylinders rotate at high speed, enabling batch winding. The feeding component enables automatic conveying.

Benefits of technology

It enables batch winding and automatic conveying of cables, improves winding efficiency, meets the need for quick and accurate acquisition of the required cable length on automated production lines, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cable storage, in particular to a cable storage device convenient for batch winding, which mainly comprises a frame seat, a clamping and pushing assembly, a conveying assembly and a winding driving assembly, all parts are cooperated and matched, cable storage cylinders are arranged in the frame seat at equal intervals by utilizing the clamping and pushing assembly, and the winding driving assembly is arranged on the frame seat. The transmission assembly is used for driving the hollow cylinder to perform axial displacement, the hollow cylinder can rotate at a low speed while performing axial displacement, so that the hollow cylinder can be quickly clamped into each cable storage cylinder, and then the cable storage cylinders rotate at a high speed along with the winding motor to realize winding and cable storage; the cable storage cylinders do not axially displace under the clamping action of the clamping and pushing assembly in the cable winding and storage process, after cable storage is finished, the clamping and pushing assembly is used for rapidly discharging all the cable storage cylinders, in this way, cables can be wound in batches, automatic conveying of the cable storage cylinders can be achieved in cooperation with the feeding assembly, and the production efficiency is improved. And the winding efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cable storage technology field especially, it relates to a cable storage device convenient to batch winding. BACKGROUND

[0002] Cable storage devices play a crucial role in multiple fields, particularly in industries such as wire and cable manufacturing, electronic assembly, automated production lines, and data communication. Their main functions can be summarized as follows: 1) orderly storage and management of cables: cable storage devices can store and manage cables of different specifications and lengths in an organized manner, preventing clutter and improving the cleanliness and safety of the work area. Through orderly storage, the required cable can be quickly found, improving work efficiency. 2) protection of cables from damage: if cables are placed randomly when not in use, they are prone to physical damage such as excessive bending, stepping, and scratching. Cable storage devices provide necessary support and protection for cables through the design of reasonable structure and materials, extending the service life of cables. 3) optimization of space utilization: efficient cable storage devices can maximize the use of storage space, reducing space waste. Whether it is vertical hanging, horizontal stacking or reel-type storage, it can be flexibly adjusted according to actual needs, making cable storage more compact, convenient to manage and access. 4) improve production efficiency: on automated and semi-automated production lines, quickly and accurately obtaining the required length of cable is crucial to maintaining production rhythm. Cable storage devices can quickly release cables on demand through pre-set cable release mechanisms or automatic cable feeding systems, reducing manual intervention and improving production efficiency.

[0003] The traditional cable storage device has the following deficiencies when in use: first, it can only wind one cable at a time and cannot wind multiple cables at once; second, it cannot automatically transfer the cable storage drum, resulting in low winding efficiency. Therefore, it is necessary to optimize and improve the traditional cable storage device. UTILITY MODEL CONTENT

[0004] The utility model aims at overcoming the above problems in the prior art and provides a cable storage device convenient for batch winding.

[0005] To achieve the above technical purposes and effects, the utility model is implemented by the following technical solutions:

[0006] A cable storage device convenient for batch winding, comprising a frame seat, a clamping and pushing assembly, a conveying assembly and a winding driving assembly;

[0007] An arc-shaped sliding groove is formed in the upper end of the frame seat, and a weight-reducing groove is symmetrically formed on both sides of the arc-shaped sliding groove, a sliding rail mounting groove is provided below the arc-shaped sliding groove, and a guide sliding groove is symmetrically formed on the two side walls of the sliding rail mounting groove;

[0008] The clamping and pushing assembly is symmetrically installed at the upper end of the frame base, and comprises a circulating belt, clamping grooves, belt pulleys and a driving motor. The outer side of the belt body of the circulating belt is provided with a plurality of groups of clamping grooves, and the inner side of the belt body is provided with a plurality of belt pulleys, wherein at least one belt pulley is driven to rotate by the driving motor.

[0009] The conveying assembly comprises a sliding rail, a sliding block, a push plate and a motor support. The sliding rail is fixed to the top wall of the sliding rail mounting groove. The outer side of the sliding rail is provided with a sliding block which constitutes a linear guide pair with the sliding rail. The outer side of the sliding block supports the motor support through the push plate.

[0010] The winding driving assembly comprises a winding motor, a flange plate, a hollow cylinder and a protrusion. The winding motor is fixed on the motor support. The output end of the winding motor is provided with the hollow cylinder through the flange plate. The outer side of the hollow cylinder is provided with the protrusion.

[0011] Further, in the cable storage device convenient for batch winding, the cable storage cylinder is composed of a winding pipe part and end plates provided on both sides thereof. A through hole is formed in the center of the end plate and communicates with the inner cavity of the winding pipe part. The diameter of the through hole is equal to the outer diameter of the hollow cylinder. The inner side of the through hole is provided with a key groove matched with the protrusion.

[0012] Further, in the cable storage device convenient for batch winding, the shape of the circular arc-shaped sliding groove is matched with the shape of the end plate in the cable storage cylinder.

[0013] Further, in the cable storage device convenient for batch winding, the inside of the clamping groove is provided with a clamping cavity matched with the thickness of the end plate in the cable storage cylinder. The spacing value of the two clamping grooves in the same group is equal to the spacing value of the two end plates in the cable storage cylinder.

[0014] Further, in the cable storage device convenient for batch winding, the driving motor is installed in the weight-reducing groove, and the belt pulley is movably supported by the frame base.

[0015] Further, in the cable storage device convenient for batch winding, the push plate is limited to slide in the guide sliding groove.

[0016] Further, in the cable storage device convenient for batch winding, the feeding assembly further comprises a rectangular hopper. Two groups of locking push rods are installed side by side at the lower part of the rectangular hopper.

[0017] Further, in the cable storage device facilitating batch winding, the two locking push rods of the same group are symmetrically installed on the two side plates of the rectangular hopper, the movable rods of the two locking push rods can synchronously extend into the perforations of the cable storage drum, and the position of the cable storage drum is clamped and locked; the spacing value between the two groups of locking push rods cooperates with the outer diameter value of the end plate in the cable storage drum.

[0018] The utility model discloses the beneficial effect is:

[0019] The utility model discloses reasonable in structure design, it is mainly by frame seat, clamping push assembly, conveying assembly and winding drive assembly constitutes, and each part cooperates, utilizes clamping push assembly and arranges the cable storage drum equidistant interval in the circular arc chute of frame seat, utilizes conveying assembly and drives hollow cylinder of winding drive assembly to carry out axial displacement, utilizes winding motor and drives hollow cylinder to rotate slowly while axial displacement, makes hollow cylinder can be quickly inserted in the inside of each cable storage drum, and then winding motor drives cable storage drum and rotates at high speed, and cable storage drum also rotates at high speed and realizes winding and stores line, and cable storage drum does not appear axial displacement in winding and stores line process under the clamping effect of clamping push assembly, when storing line, utilizes clamping push assembly and exports each cable storage drum quickly, and through this way can realize batch winding cable, and cooperate feeding assembly and can realize the automatic conveying of cable storage drum, improve winding efficiency.

[0020] Of course, any product implementing the utility model does not necessarily need to achieve all the advantages above. BRIEF DESCRIPTION OF DRAWINGS

[0021] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the following will briefly introduce the drawings needed to be used in the embodiment description, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can also be obtained according to these drawings without creating labor.

[0022] Figure 1 It is the schematic diagram of the use state of the utility model whole;

[0023] Figure 2 It is the schematic diagram of the structure of the utility model whole;

[0024] Figure 3 It is the schematic diagram of the structure of the cable storage drum in the utility model;

[0025] Figure 4 It is the schematic diagram of the structure of the frame seat and clamping push assembly in the utility model;

[0026] Figure 5 It is the schematic diagram of the structure of the winding drive assembly and feeding assembly in the utility model;

[0027] Figure 6 is the main view schematic diagram of the winding drive assembly and the feeding assembly in the utility model;

[0028] Figure 7 is the half cutaway schematic diagram of the hollow cylinder in the utility model;

[0029] Figure 8 is the structural schematic diagram of the feeding assembly in the utility model;

[0030] In the drawings, the components represented by each reference numeral are as follows:

[0031] 1-frame seat, 101-circular arc-shaped sliding groove, 102-weight reduction groove, 103-slideway mounting groove, 104-guiding sliding groove;

[0032] 2-clamping and pushing assembly, 201-circulating belt, 202-clamping groove block, 203-belt wheel, 204-driving motor;

[0033] 3-conveying assembly, 301-slideway, 302-slideway block, 303-pushing plate, 304-motor support;

[0034] 4-winding drive assembly, 401-winding motor, 402-flange plate, 403-hollow cylinder, 404-protruding block;

[0035] 5-feeding assembly, 501-rectangular hopper, 502-locking and pushing rod;

[0036] 6-cable storage cylinder, 601-winding pipe part, 602-end plate, 603-perforation, 604-key groove. DETAILED DESCRIPTION

[0037] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0038] As shown in Figures 1-6 The embodiment provides a cable storage device facilitating batch winding, which comprises a frame seat 1, a clamping and pushing assembly 2, a conveying assembly 3 and a winding drive assembly 4.

[0039] In the embodiment, the upper end of the frame seat 1 is internally provided with a circular arc-shaped sliding groove 101, and the frame seat 1 is symmetrically provided with a lightening groove 102 on both sides of the circular arc-shaped sliding groove 101. The frame seat 1 is provided with a sliding rail mounting groove 103 below the circular arc-shaped sliding groove 101, and the two side walls of the sliding rail mounting groove 103 are symmetrically provided with a guide sliding groove 104.

[0040] In the embodiment, the clamping and pushing assembly 2 is two and symmetrically mounted on the upper end of the frame seat 1. The clamping and pushing assembly 2 comprises a circulating belt 201, a clamping groove block 202, a pulley 203 and a driving motor 204. A plurality of sets of clamping groove blocks 202 are mounted on the outer side of the belt body of the circulating belt 201. A plurality of pulleys 203 are mounted on the inner side of the belt body of the circulating belt 201, and at least one of the pulleys 203 is driven to rotate by the driving motor. In order to prevent slipping, anti-skid protrusions can be additionally provided on the outer side of the pulley 203, and anti-skid tooth grooves matched with the anti-skid protrusions are formed on the belt body of the circulating belt 201.

[0041] In the embodiment, the conveying assembly 3 comprises a sliding rail 301, a sliding block 302, a push plate 303 and a motor support 304. The sliding rail 301 is fixed to the top wall of the sliding rail mounting groove 103. The sliding rail 301 is provided with the sliding block 302 on the outer side thereof to form a linear guide rail pair. The motor support 304 is supported by the push plate 303 on the outer side of the sliding block 302.

[0042] In the embodiment, the winding driving assembly 4 comprises a winding motor 401, a flange plate 402, a hollow cylinder 403 and a protrusion 404. The winding motor 401 is fixed to the motor support 304. The hollow cylinder 403 is mounted to the output end of the winding motor 401 through the flange plate 402. The protrusion 404 is provided on the outer side of the hollow cylinder 403.

[0043] In the embodiment, the cable storage cylinder 6 is composed of a winding pipe part 601 and end plates 602 provided on both sides thereof. A through hole 603 is formed in the center of the end plate 602 and is in communication with the inner cavity of the winding pipe part 601. The diameter of the through hole 603 is equal to the outer diameter of the hollow cylinder 403. A key groove 604 matched with the protrusion 404 is provided on the inner side of the through hole 603.

[0044] In the embodiment, the shape of the circular arc-shaped sliding groove 101 is matched with the shape of the end plate 602 in the cable storage cylinder 6.

[0045] In the embodiment, the inside of the clamping groove block 220 is provided with a clamping cavity matched with the thickness of the end plate 602 in the cable storage cylinder 6. The distance between the two clamping groove blocks 202 in the same set is equal to the distance between the two end plates 602 in the cable storage cylinder 6.

[0046] In the embodiment, the driving motor 204 is mounted in the lightening groove 102, and the pulley 203 is movably supported by the frame seat 1.

[0047] In the embodiment, the push plate 303 is limited to slide in the guide chute 104.

[0048] In the embodiment, the cable storage device further comprises a feeding assembly 5, the feeding assembly 5 comprises a rectangular hopper 501, and two groups of material locking push rods 502 are installed side by side at the lower part of the rectangular hopper 501. The two material locking push rods 502 in the same group are symmetrically installed on the two side plates of the rectangular hopper 501, the movable rods of the two material locking push rods 502 can synchronously extend into the perforations 603 of the cable storage drum 6, and then the position of the cable storage drum 6 is clamped and locked; the spacing value between the two groups of material locking push rods 502 cooperates with the outer diameter value of the end plate 602 in the cable storage drum 6.

[0049] One specific application of the embodiment is that the device mainly comprises a frame seat 1, a clamping and pushing assembly 2, a conveying assembly 3 and a winding driving assembly 4, the components are cooperated, the clamping and pushing assembly 2 is used to arrange the cable storage drums 6 at equal intervals in the circular-arc chute 101 of the frame seat 1, the conveying assembly 3 is used to drive the hollow cylinder 403 of the winding driving assembly 4 to axially displace, the winding motor 401 is used to drive the hollow cylinder 403 to rotate at low speed while axially displacing, so that the hollow cylinder 403 can be quickly clamped into the inside of each cable storage drum 6, then the winding motor 401 drives the cable storage drum 6 to rotate at high speed, the cable storage drum 6 also rotates at high speed to realize winding and storage of the cable, the cable storage drum 6 will not axially displace during the winding and storage of the cable under the clamping of the clamping and pushing assembly 2, when the storage is finished, the clamping and pushing assembly 2 is used to quickly discharge each cable storage drum 6, in this way, the batch winding of the cable can be realized, the automatic conveying of the cable storage drum 6 can be realized by cooperating with the feeding assembly 5, and the winding efficiency is improved.

[0050] The preferred embodiments disclosed above are only used to help explain the utility model. The preferred embodiments do not describe all the details and limit the utility model to the specific embodiments. Apparently, according to the content of the specification, many modifications and changes can be made. The specification selects and specifically describes these embodiments in order to better explain the principle and practical application of the utility model, so that the person skilled in the art can well understand and utilize the utility model. The utility model is limited by the claims and the whole scope and equivalents.

Claims

1. A cable storage device for easy batch winding, characterized in that, Includes a frame, a clamping and pushing component, a conveying component, and a winding drive component; The upper end of the frame base is provided with an arc-shaped sliding groove, and the frame base is provided with weight reduction grooves symmetrically on both sides of the arc-shaped sliding groove. The frame base is provided with a slide rail mounting groove below the arc-shaped sliding groove, and the two side walls of the slide rail mounting groove are provided with guide grooves symmetrically. There are two clamping and pushing components, which are symmetrically installed on the upper end of the frame. Each clamping and pushing component includes a circulating belt, clamping slots, pulleys and a drive motor. Several sets of clamping slots are installed on the outer side of the circulating belt, and several pulleys are installed on the inner side of the circulating belt. At least one pulley is driven to rotate by the drive motor. The conveying assembly includes a slide rail, a slider, a push plate, and a motor bracket. The slide rail is fixed to the top wall of the slide rail mounting groove. A slider that forms a linear guide pair with the slide rail is mounted on the outside of the slide rail. The motor bracket is supported on the outside of the slider by the push plate. The winding drive assembly includes a winding motor, a flange plate, a hollow cylinder, and a protrusion. The winding motor is fixed on a motor bracket, and the output end of the winding motor is fitted with a hollow cylinder via the flange plate. A protrusion is provided on the outer side of the hollow cylinder.

2. The cable storage device for easy batch winding according to claim 1, characterized in that, The cable storage cylinder consists of a winding tube and end plates on both sides thereof. A through hole communicating with the inner cavity of the winding tube is provided at the center of the end plate. The diameter of the through hole is equal to the outer diameter of the hollow cylinder. A keyway that mates with a protrusion is provided on the inner side of the through hole.

3. The cable storage device for easy batch winding according to claim 2, characterized in that, The shape of the arc-shaped groove matches the shape of the end plate in the cable storage cylinder.

4. The cable storage device for easy batch winding according to claim 3, characterized in that, The clamping slot block has a clamping cavity inside that matches the thickness of the end plate in the cable storage cylinder. The spacing between two clamping slot blocks in the same group is equal to the spacing between two end plates in the cable storage cylinder.

5. The cable storage device for easy batch winding according to claim 4, characterized in that, The drive motor is installed in the weight reduction groove, and the pulley is provided with movable support by the frame base.

6. The cable storage device for easy batch winding according to claim 5, characterized in that, The sliding of the push plate is restricted within the guide groove.

7. The cable storage device for easy batch winding according to claim 6, characterized in that, It also includes a feeding assembly, which includes a rectangular hopper, and two sets of locking push rods are installed side by side at the bottom of the rectangular hopper.

8. The cable storage device for easy batch winding as described in claim 7 The wire device is characterized in that, The two locking push rods in the same group are symmetrically installed on the two side plates of the rectangular hopper. The movable rods of the two locking push rods can be simultaneously inserted into the through hole of the cable storage cylinder, thereby clamping and locking the position of the cable storage cylinder. The spacing between the two sets of locking push rods is matched with the outer diameter of the middle end plate of the cable storage cylinder.