A bare aluminum wire winding device

CN224312973UActive Publication Date: 2026-06-02HENAN OULAN WIRE MATERIAL CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HENAN OULAN WIRE MATERIAL CO LTD
Filing Date
2025-04-23
Publication Date
2026-06-02

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Abstract

The utility model discloses a kind of bare aluminium wire winding devices, including bearing frame, the bearing frame upper end middle part is equipped with sliding slot, the support of L type structure is arranged in the sliding slot, two groups of adjusting sleeve with telescopic structure are symmetrically installed on the one side wall of the support, the built-in buffer spring of adjusting sleeve, lifting cavity is equipped in the one side wall of the support. Advantageous effect lies in: the utility model is through setting a group of adjusting sleeve and the self-adapting adjusting mechanism of buffer spring, in the winding process of bare aluminium wire, with the winding of bare aluminium wire received tension will be more and more big, simultaneously winding drum can also be subjected to the tension of bare aluminium wire, at this time under the action of adjusting sleeve and buffer spring can make winding drum along sliding slot move and offset a part of tension, and then realize the self-adapting adjustment to bare aluminium wire tension, guarantee its winding effect and use performance.
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Description

Technical Field

[0001] This utility model relates to the technical field of bare aluminum wire winding devices, and specifically to a bare aluminum wire winding device. Background Technology

[0002] Aluminum wire refers to a metal wire material made from pure aluminum or aluminum alloys, with a uniform cross-section along its entire length. It is processed by centrifugal pressure and delivered in coils. Cross-sectional shapes include circular, elliptical, square, rectangular, equilateral triangle, and regular polygon. It is classified by material into pure aluminum wire and alloy aluminum wire. It is also classified by application into industrial aluminum wire and process aluminum wire. A winding device is required during the processing of bare aluminum wire.

[0003] Existing bare aluminum wire winding devices work by using a winding motor to drive a winding drum, which in turn works with a wire winding mechanism to evenly wind the bare aluminum wire. However, as winding progresses, the diameter of the winding drum increases, which in turn increases the tension on the bare aluminum wire. This not only makes the bare aluminum wire more prone to breakage but also affects the winding effect, resulting in lower performance. Therefore, there is an urgent need for a new bare aluminum wire winding device to solve these problems. Utility Model Content

[0004] (a) Technical problems to be solved

[0005] The technical problem to be solved by this utility model is to provide a bare aluminum wire winding device in view of the current state of the technology.

[0006] (II) Technical Solution

[0007] This utility model is achieved through the following technical solution: This utility model proposes a bare aluminum wire winding device, including a support frame, a groove is provided in the middle of the upper end of the support frame, an L-shaped support is provided in the groove, two sets of adjusting sleeves with telescopic structures are symmetrically installed on one side wall of the support, the adjusting sleeves have built-in buffer springs, a lifting cavity is provided on one side wall of the support, a screw is installed in the lifting cavity, a guide rod is provided on one side of the screw, a lifting block is provided on both the screw and the guide rod, and a lifting motor is fixed to one end of the screw.

[0008] Furthermore, the groove is formed on the support frame, and the support is slidably connected to the groove.

[0009] Furthermore, the adjusting sleeve is fixed between the support and the bearing frame, and the buffer spring is welded between the fixed part and the movable part of the adjusting sleeve.

[0010] Furthermore, the lifting cavity is formed on the support, the screw is rotatably installed in the lifting cavity, the guide rod is welded in the lifting cavity, the output shaft of the lifting motor is fixedly connected to one end of the screw, the lifting block is threadedly connected to the screw, and the guide rod passes through the lifting block.

[0011] Furthermore, a bearing shaft is rotatably mounted on one side wall of the lifting block, and a winding motor is mounted on the other side wall of the lifting block. The output shaft of the winding motor is fixedly connected to one end of the bearing shaft. Three sets of electric push rods are distributed in a circular pattern on the outer side wall of the bearing shaft, and an arc-shaped top plate is fixed on the movable part of the electric push rod.

[0012] Furthermore, a guide frame is welded to one side wall of the support, a stud is rotatably disposed inside the guide frame, a guide block is threadedly installed on the stud, a guide cavity is formed on the guide block, a servo motor is connected to one end of the stud, and the guide block is slidably connected to the guide frame.

[0013] Furthermore, a sliding plate is slidably mounted on the support, and the surface of the sliding plate has an arc-shaped structure.

[0014] (III) Beneficial Effects

[0015] Compared with the prior art, this utility model has the following advantages:

[0016] This invention utilizes an adaptive adjustment mechanism consisting of an adjusting sleeve and a buffer spring. During the winding process of bare aluminum wire, the tension on the bare aluminum wire increases as winding progresses, and the winding drum is also subjected to the tension of the bare aluminum wire. At this time, under the action of the adjusting sleeve and the buffer spring, the winding drum can move along the slide groove to offset part of the tension, thereby achieving adaptive adjustment of the tension of the bare aluminum wire and ensuring its winding effect and performance. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of the bare aluminum wire winding device described in this utility model;

[0018] Figure 2 This is a schematic diagram of the internal structure of the adjusting sleeve in the bare aluminum wire winding device described in this utility model;

[0019] Figure 3 This is a rear view of the bare aluminum wire winding device described in this utility model.

[0020] The annotations in the attached figures are explained as follows:

[0021] 1. Bearing frame; 2. Slide groove; 3. Support; 4. Adjusting sleeve; 5. Sliding plate; 6. Lifting cavity; 7. Lifting motor; 8. Screw; 9. Guide rod; 10. Stud; 11. Bearing shaft; 12. Electric push rod; 13. Top plate; 14. Guide frame; 15. Servo motor; 16. Stud; 17. Guide block; 18. Guide cavity; 19. Buffer spring; 20. Rewinding motor. Detailed Implementation

[0022] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0023] like Figures 1-3 As shown, a bare aluminum wire winding device in this embodiment includes a support frame 1. A groove 2 is provided in the middle of the upper end of the support frame 1 to provide a moving track for the support 3. An L-shaped support 3 is provided in the groove 2. Two sets of adjustable sleeves 4 with telescopic structures are symmetrically installed on one side wall of the support 3. The adjustable sleeves 4 have built-in buffer springs 19, which can offset part of the tension on the bare aluminum wire. A lifting cavity 6 is provided on one side wall of the support 3. A screw 8 is installed in the lifting cavity 6. A guide rod 9 is provided on one side of the screw 8. Lifting blocks 10 are provided on both the screw 8 and the guide rod 9. A lifting motor 7 is fixed to one end of the screw 8, which can lower the height of the winding drum after winding to facilitate loading and unloading of the winding drum.

[0024] like Figures 1-3 In this embodiment, the slide groove 2 is formed on the support frame 1, the support 3 is slidably connected to the slide groove 2, the adjusting sleeve 4 is fixed between the support 3 and the support frame 1, the buffer spring 19 is welded between the fixed part and the movable part of the adjusting sleeve 4, the lifting cavity 6 is formed on the support 3, the screw 8 is rotatably installed in the lifting cavity 6, the guide rod 9 is welded in the lifting cavity 6, the output shaft of the lifting motor 7 is fixedly connected to one end of the screw 8, the lifting block 10 is threadedly connected to the screw 8, and the guide rod 9 passes through the lifting block 10. During the winding process, as... As the bare aluminum wire is wound, the tension on it increases, and the winding drum is also pulled by the bare aluminum wire. At this time, under the action of the adjusting sleeve 4 and the buffer spring 19, the winding drum can move along the slide groove 2 to offset part of the tension, thereby achieving adaptive adjustment of the bare aluminum wire tension and ensuring its winding effect and performance. After winding, the lifting motor 7 drives the screw 8 to rotate, which in turn causes the lifting block 10 to move the winding drum down under the action of the screw and the guide rod 9, reducing its height and facilitating loading and unloading of the winding drum.

[0025] like Figures 1-3In this embodiment, a bearing shaft 11 is rotatably mounted on one side wall of the lifting block 10, and a winding motor 20 is mounted on the other side wall of the lifting block 10. The output shaft of the winding motor 20 is fixedly connected to one end of the bearing shaft 11. Three sets of electric push rods 12 are circumferentially distributed on the outer side wall of the bearing shaft 11. An arc-shaped top plate 13 is fixed on the movable part of the electric push rod 12. A guide frame 14 is welded to one side wall of the support 3. A stud 16 is rotatably disposed inside the guide frame 14. A guide block 17 is threadedly mounted on the stud 16. A guide cavity 18 is opened on the guide block 17. A servo motor 15 is connected to one end of the stud 16. Block 17 is slidably connected to guide frame 14. Sliding plate 5 is slidably installed on support 3. The surface of sliding plate 5 is arc-shaped. During the winding process, the winding drum is sleeved on bearing shaft 11. Electric push rod 12 pushes top plate 13 to tighten and fix the winding drum. Then, the bare aluminum wire is passed through guide cavity 18 and one end is fixed on winding drum. Then, the winding motor 20 and servo motor 15 are controlled to work. The winding motor 20 drives the winding drum to rotate and wind the bare aluminum wire. The servo motor 15 drives stud 16 to rotate, thereby causing guide block 17 to move back and forth on the surface of stud 16, thereby ensuring that the bare aluminum wire is wound evenly.

[0026] The specific implementation process of this embodiment is as follows: The device is placed in position and connected to an external power source. During the winding process, the winding drum is fitted onto the bearing shaft 11. The electric push rod 12 pushes the top plate 13 to tighten and fix the winding drum. Then, the bare aluminum wire is passed through the guide cavity 18 and one end is fixed to the winding drum. The winding motor 20 and servo motor 15 are then controlled to operate. The winding motor 20 drives the winding drum to rotate and wind the bare aluminum wire. The servo motor 15 drives the stud 16 to rotate, thereby causing the guide block 17 to reciprocate on the surface of the stud 16, thus ensuring that the bare aluminum wire is wound evenly. During the winding process, the tension on the bare aluminum wire increases as winding progresses, and the winding drum is also pulled by the bare aluminum wire. At this time, under the action of the adjusting sleeve 4 and the buffer spring 19, the winding drum can move along the slide groove 2 to offset part of the tension, thereby achieving adaptive adjustment of the tension of the bare aluminum wire, ensuring its winding effect and performance. After winding, the lifting motor 7 drives the screw 8 to rotate, which in turn causes the lifting block 10 to move the winding drum down under the action of the screw and the guide rod 9, reducing its height so that it is on the sliding plate 5, making it easy to load and unload the winding drum.

[0027] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A bare aluminum wire winding device, characterized in that: The support frame (1) includes a sliding groove (2) at the middle of the upper end of the support frame (1). An L-shaped support (3) is provided in the sliding groove (2). Two sets of adjusting sleeves (4) with telescopic structures are symmetrically installed on one side wall of the support (3). The adjusting sleeves (4) have built-in buffer springs (19). A lifting cavity (6) is provided on one side wall of the support (3). A screw (8) is installed in the lifting cavity (6). A guide rod (9) is provided on one side of the screw (8). A lifting block (10) is provided on both the screw (8) and the guide rod (9). A lifting motor (7) is fixed at one end of the screw (8).

2. The bare aluminum wire winding device according to claim 1, characterized in that: The groove (2) is formed on the bearing frame (1), and the support (3) is slidably connected to the groove (2).

3. The bare aluminum wire winding device according to claim 1, characterized in that: The adjusting sleeve (4) is fixed between the support (3) and the bearing frame (1), and the buffer spring (19) is welded between the fixed part and the movable part of the adjusting sleeve (4).

4. The bare aluminum wire winding device according to claim 1, characterized in that: The lifting cavity (6) is formed on the support (3), the screw (8) is rotatably installed in the lifting cavity (6), the guide rod (9) is welded in the lifting cavity (6), the output shaft of the lifting motor (7) is fixedly connected to one end of the screw (8), the lifting block (10) is connected to the screw (8) by a thread, and the guide rod (9) passes through the lifting block (10).

5. A bare aluminum wire winding device according to claim 4, characterized in that: A bearing shaft (11) is rotatably mounted on one side wall of the lifting block (10), and a winding motor (20) is mounted on the other side wall of the lifting block (10). The output shaft of the winding motor (20) is fixedly connected to one end of the bearing shaft (11). Three sets of electric push rods (12) are distributed in a circular pattern on the outer side wall of the bearing shaft (11). An arc-shaped top plate (13) is fixed on the movable part of the electric push rod (12).

6. The bare aluminum wire winding device according to claim 3, characterized in that: A guide frame (14) is welded to one side wall of the support (3). A stud (16) is rotatably installed inside the guide frame (14). A guide block (17) is installed on the stud (16) by thread. A guide cavity (18) is opened on the guide block (17). A servo motor (15) is connected to one end of the stud (16). The guide block (17) is slidably connected to the guide frame (14).

7. A bare aluminum wire winding device according to claim 6, characterized in that: A sliding plate (5) is slidably mounted on the support (3), and the surface of the sliding plate (5) is an arc-shaped structure.