Wire winding device

By designing a wire winding device that includes a base assembly and a limiting frame assembly, the problem of traditional winding devices being unable to wind wires evenly has been solved, achieving stable hanging and efficient transportation of wires, and improving production efficiency and safety.

CN224677517UActive Publication Date: 2026-08-25陈志宏
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Patent Information

Application Number
CN202521944612.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-10
Publication Date
2026-08-25
Estimated Expiration
2035-09-10

AI Technical Summary

Technical Problem

Traditional winding devices cannot wind up wires evenly and efficiently, causing the wires to tip over and wear during transportation, posing safety risks.

Method used

A wire winding device comprising a base assembly, a limiting frame assembly, and a hanging component has been designed. Through the combination of multiple grooves, connectors, and limiting frames, combined with steel strips and cylindrical tubes, it achieves uniform winding and stable hanging of wire, and is suitable for automated production lines and warehousing applications.

Benefits of technology

It achieves uniform winding of wire, reduces the risk of wear, improves safety and production efficiency during transportation, adapts to different wire diameters and shapes, and supports automated hanging and rapid positioning.

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Abstract

The utility model relates to a wire winding device, containing: a base group contains a first frame seat, a second frame seat and a plurality of connecting pieces, a limiting frame group contains a plurality of limiting frames, a plurality of limiting frames are fixed together with first frame seat and second frame seat respectively, wherein, each a plurality of limiting frames contain a cylinder and a fixing piece, wherein, the bottom end of cylinder is connected with fixing piece, forms a L type structure, wherein, a steel band can pass through any first recess and corresponding second recess, and the wire is bound and wound in the limiting frame group.
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Description

Technical Field

[0001] This utility model relates to a wire winding device, and more particularly to a wire winding device that can quickly and efficiently wind up stretched wire evenly. Background Technology

[0002] In the past, when the wire drawing machine was in operation, after the wire was processed by the wire drawing machine, a take-up frame was needed to take up the processed wire. However, due to the lack of good design, the traditional take-up frame often failed to take up the wire evenly, causing the wire to be excessively biased in one direction. This resulted in improper weight distribution, which could easily cause the wire to tip over or wear excessively during subsequent transportation.

[0003] Due to previous technology, conventional wire winding racks could not wind up wire evenly and efficiently, leading to risks during subsequent transportation. Furthermore, excessively tilted wire to one side could cause wire abrasion. Therefore, there is an urgent need for a wire winding device that can wind up wire evenly to increase the efficiency of the entire wire winding process and improve overall production efficiency. Utility Model Content

[0004] In view of the shortcomings of the prior art, this invention proposes a solution relating to a wire winding device, comprising: a base assembly including a first frame, a second frame, and a plurality of connectors, wherein the first frame and the second frame are annular structures and are arranged vertically opposite each other, wherein the first frame includes a plurality of first grooves, and the second frame includes a plurality of second grooves, the plurality of first grooves and the plurality of second grooves being respectively arranged correspondingly, wherein the first frame and the second frame are fixed together by the plurality of connectors; a limiting frame assembly including a plurality of limiting frames, the plurality of limiting frames being respectively fixed together with the first frame and the second frame, wherein each of the plurality of limiting frames includes a column and a fixing member, wherein a bottom end of the column is connected to the fixing member to form an L-shaped structure, wherein a steel strip can pass through any of the plurality of first grooves and a corresponding second groove to bundle and wind a wire within the limiting frame assembly.

[0005] In one embodiment, the wire winding device further includes a hanging member disposed at one top of each column, wherein each limiting frame includes a hanging member having a concave structure in the shape of an inverted V, and a through hole is provided at the bottom of the concave structure.

[0006] In one embodiment, the wire winding device includes a fixing member that can extend and retract.

[0007] In one embodiment, the wire winding device further includes a plurality of cylindrical tubes respectively disposed on the plurality of columns in the corresponding L-shaped structures to reduce friction of the steel strip.

[0008] In one embodiment, the wire winding device wherein the recessed structure and the through hole of each of the hanging members can engage with a protrusion and a tip of a conveying device to suspend the wire winding device.

[0009] In one embodiment, the wire winding device includes any of the plurality of first grooves and the corresponding plurality of second grooves for engaging with a protrusion structure of a transport device to push and rotate the wire winding device.

[0010] In one embodiment, the wire winding device includes any of the plurality of first grooves and a corresponding second groove, which are used to correspond to a bundling machine, which uses the steel strip to bundle and wind the wire within the limiting frame assembly.

[0011] In one embodiment, the wire winding device includes a conical positioning device for fixing the wire winding device to a track assembly or a mechanical mechanism.

[0012] In one embodiment, the wire winding device further includes a plurality of female tenons at the bottom of the second frame for engaging with a plurality of male tenons of a platform.

[0013] In one embodiment, the wire winding device further includes a plurality of guide members, each disposed on the outer side of one end of each fixing member. Attached Figure Description

[0014] Figure 1 This is the structural intention of the wire winding device in this case;

[0015] Figure 2 This is a top view of the wire winding device in this case.

[0016] Figure 3 This is a bottom view of the wire winding device in this case.

[0017] Figure 4 This is an illustration of an embodiment of the wire winding device in this case.

[0018] Figure label:

[0019] 100 Wire winding device

[0020] 10 base sets

[0021] 11 First frame seat

[0022] 12 Second frame seat

[0023] 121 Female tenon

[0024] 13 Connectors

[0025] 14 First Groove

[0026] 15 Second Groove

[0027] 20 limit frame groups

[0028] 21 Limiting frame

[0029] 211 Column

[0030] 212 Fastener

[0031] 213 Hanging components

[0032] 214 Through-hole

[0033] 30 Cylindrical tube

[0034] 40 guide components

[0035] 50 Conical Positioning Device Detailed Implementation

[0036] To more clearly describe the wire winding device proposed in this utility model, the preferred embodiments of this utility model will be described in detail below with reference to the accompanying drawings.

[0037] Please see Figures 1 to 3 A wire winding device 100 includes: a base assembly 10, comprising a first frame 11, a second frame 12, and a plurality of connectors 13, wherein the first frame 11 and the second frame 12 are annular structures and are arranged vertically opposite each other; wherein the first frame 11 includes a plurality of first grooves 14, and the second frame 12 includes a plurality of second grooves 15, wherein the plurality of first grooves 14 and the plurality of second grooves 15 are respectively arranged correspondingly; wherein the first frame 11 and the second frame 12 are fixed by the plurality of connectors 13. A limiting frame assembly 20, comprising multiple limiting frames 21, is fixed together with the first frame base 11 and the second frame base 12, respectively. Each of the multiple limiting frames 21 includes a column 211 and a fixing member 21, wherein one bottom end of the column 211 is connected to the fixing member 21 to form an L-shaped structure. A user can thread a steel strip through any corresponding first groove 111 and second groove 121, and extend the steel strip across the outside of the limiting frame 20 to form a binding structure. In this way, the wire to be stored can be restricted and fixed inside the overall limiting frame assembly, preventing the wire from loosening or slipping.

[0038] Please continue to refer to this. Figure 1 and Figure 3 Each limiting frame 21 also includes a hanging component 213, located at the top of each column 211. Each hanging component 213 has a concave structure, presenting an inverted V shape, and a through hole 214 at the bottom of the concave structure. The concave structure and the through hole 214 allow it to engage with a corresponding protrusion and its pointed tip on the conveying device, achieving a fixed and wobbly effect. Hooks, slings, or crane booms can pass through, enabling the overall wire winding device to be hung and moved. This design is suitable for warehousing, hoisting, or outdoor installation operations, effectively improving work efficiency and operational safety.

[0039] Please see Figures 1 to 3 The fastener 21 can be extended and shortened as needed, and can be fixed to multi-segment positioning points by buckles, threads or spring pins, so that users can adjust the height and angle of the limiting frame 20 according to different wire diameters and shapes, increasing the adaptability and modular configuration advantages of the device.

[0040] Please continue to refer to this. Figure 1 It also includes multiple cylindrical tubes 30, which are respectively disposed on the multiple columns 211. In the corresponding L-shaped structure, the multiple cylindrical tubes 30 can reduce the friction between the wire and the columns 211. The multiple cylindrical tubes 30 can effectively reduce the friction between the wire and the limiting frame during the winding process, further improving the winding quality of the wire.

[0041] Please refer to the image. Figure 1 and Figure 2 The recessed structure and through hole 214 of each of the hanging components 213 can engage with a protrusion and a pointed part on a conveying device to achieve fixation and prevent shaking. After engagement, the conveying device can be used to hang the wire winding device 100. Specifically, the protrusion has a contour corresponding to the shape of the recessed structure and a pointed part at its end. When the conveying device hangs the wire, the pointed part can be accurately inserted into the through hole 214 and locked inside the recessed structure, forming a stable and fast mechanical positioning and hanging combination. This structure can improve the accuracy of the overall hanging operation and avoid slippage or positioning errors caused by shaking, making it particularly suitable for the hanging operation requirements of automated warehousing or production lines.

[0042] The wire winding device 100 of this invention includes any one of the plurality of first grooves 14 and the corresponding plurality of second grooves 15, which engage with a protruding structure of a transport platform to transport and rotate the wire winding device 100. During transport, the protruding structure inserts into any one of the plurality of first grooves 14 and the corresponding plurality of second grooves 15, and then pushes the entire wire winding device horizontally via a drive mechanism. Furthermore, when the pushing direction has an eccentric distance, it can also drive the entire wire winding device 100 to rotate, for positioning, unloading, or further processing operations, thereby improving the automation and efficiency of the production process.

[0043] The wire winding device 100 of this invention includes any one of the plurality of first grooves 14 and a corresponding second groove 15, which correspond to a bundling machine. The bundling machine uses the steel strip to pass through any one of the plurality of first grooves 14 and the corresponding second groove 15 to bundle and wind the wire within the limiting frame assembly 20. The bundling machine aligns its steel strip supply end with any one of the plurality of first grooves 14 and the corresponding second groove 15 of the limiting frame assembly 20, and inserts the steel strip into the limiting frame assembly through the corresponding groove, then drives the steel strip to complete the wrapping and tightening action. This design ensures the consistency between the bundling path and the positioning hole position, achieving accurate, high-speed, and automated bundling operations, while ensuring that the wire is firmly fixed during the winding process, preventing loosening or displacement.

[0044] The wire winding device 100 in this case, wherein, please refer to... Figure 4 It also includes a plurality of guide members 40, which are respectively disposed on the outer side of one end of each fixing member 21. By using the oblique angles on the plurality of guide members 40, the wire winding device 100 is guided to a designated position during the transportation of the wire winding device 100.

[0045] The wire winding device 100 in this case, wherein, please refer to... Figure 3 The bottom of the second frame 12 also includes multiple female tenons 121 for engaging with multiple male tenons on a platform. After engagement, the wire winding device 100 can be rotated or moved via the platform. The multiple female tenon structures 121 can also cooperate with multiple male tenon structures on a corresponding fixed platform for quick insertion and positioning during installation. This mortise and tenon joint method not only improves the structural stability of the device and platform but also facilitates rapid deployment and replacement during on-site operations, making it particularly suitable for modular production systems.

[0046] The wire winding device 100 in this case, wherein, please refer to... Figure 3The fixing member 21 is provided with a conical positioning device 50 for fixing the wire winding device 100 to a track group or a mechanical mechanism to facilitate transportation or rotation. The number of the conical positioning devices 50 includes, but is not limited to, one.

[0047] Thus, the wire winding device of this utility model has been fully and clearly described above. However, it must be emphasized that the above detailed description is a specific description of feasible embodiments of this utility model, but the embodiments are not intended to limit the scope of the claims of this utility model. All equivalent implementations or modifications that do not depart from the spirit of the technology of this utility model should be included in the scope of the claims of this application.

Claims

1. A wire winding device, comprising: A base assembly includes a first frame base, a second frame base, and multiple connectors, wherein, The first frame base and the second frame base are annular structures and are arranged correspondingly on top and bottom. The first frame base includes a plurality of first grooves, and the second frame base includes a plurality of second grooves. The plurality of first grooves and the plurality of second grooves are respectively arranged correspondingly. The first frame base and the second frame base are fixed together by the plurality of connectors. A limiting frame assembly includes multiple limiting frames, which are respectively fixed together with a first frame base and a second frame base. Each of the multiple limiting frames includes a column and a fixing member. One bottom end of the column is connected to the fixing member to form an L-shaped structure. A steel strip can pass through any of the multiple first grooves and a corresponding second groove to bundle and coil a wire within the limiting frame assembly.

2. The wire winding device according to claim 1, wherein, Each of the limiting frames also includes a hanging member disposed at one top of each of the columns. The hanging member has a concave structure in the shape of an inverted V, and a through hole is provided at the bottom of the concave structure.

3. The wire winding device according to claim 1, wherein, The fastener can extend and retract.

4. The wire winding device according to claim 1, further comprising a plurality of cylindrical tubes respectively disposed on the plurality of columns in the corresponding L-shaped structures to reduce friction of the steel strip.

5. The wire winding device according to claim 2, wherein, The recessed structure and the through hole of each of the hanging components can engage with a protrusion and a tip of a conveying device to hang the wire winding device.

6. The wire winding device according to claim 1, wherein, Each of the plurality of first grooves and the corresponding plurality of second grooves is used to engage with a protruding structure of a transport device for pushing and rotating the wire winding device.

7. The wire winding device according to claim 1, wherein, Each of the plurality of first grooves and a corresponding second groove is used to correspond to a strapping machine, which uses the steel strip to strap and wind up the wire within the limiting frame assembly.

8. The wire winding device according to claim 1, wherein, The fastener is provided with a conical positioning device for fixing the wire winding device to a track assembly or a mechanical mechanism.

9. The wire winding device according to claim 1, wherein, The bottom of the second frame also includes multiple female tenons for engaging with multiple male tenons of a platform.

10. The wire winding device according to claim 1, further comprising a plurality of guide members, each disposed on the outer side of one end of each fixing member.