Winding structure for tinned stranded wire production
By designing the support components and protective components of the winding structure for tin-plated stranded wire production, the problems of knotting and breaking and hitting of the wire during winding are solved, and safe and efficient winding operations are achieved.
Patent Information
- Application Number
- CN202422157421.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-09-03
AI Technical Summary
Common winding structures for tin-plated stranding wire production lack structures and protective structures to prevent the thread body from being knotted, resulting in the thread body being knotted easily when winding, and may hit the operator when it collapses, affecting the winding progress and safety.
A winding structure including a support component, a drive component, a fixing component, a winding component, a line component, a protective component and a outlet component are designed. By setting up a structure and a protective structure to prevent the wire body from being tied, the wire body is ensured to be wound normally and prevent the operator from hitting the wire when it breaks.
Effectively prevent the wire from knotting when winding, and protecting the operator when it breaks, improving the safety and progress of the wire winding.
Smart Images

Figure CN223206055U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of winding for tinned stranded wire production, in particular to a winding structure for tinned stranded wire production. Background Art
[0002] Tinned stranded wire refers to copper wire with a thin layer of metallic tin plated on the surface. The material of tinned stranded wire is relatively soft and has good conductivity. Compared with bare copper wire, it has stronger corrosion resistance and oxidation resistance, which can greatly extend the service life of low-voltage cables.
[0003] The common winding structure used in the production of tinned stranded wire only includes a winding structure and can perform winding operations on tinned stranded wire, but lacks a structure to prevent the wire from getting tangled and a protective structure. It cannot ensure that the wire is wound normally, nor can it ensure that the wire will not hit the operator when it breaks. It is easy for the wire to get tangled during winding, and the wire to hit the operator when it breaks, affecting the winding progress and safety.
[0004] Therefore, the above-mentioned winding structure for tinned stranded wire production lacks a structure to prevent the wire from tangling and a protective structure, which cannot ensure the normal winding of the wire, nor can it ensure that the wire will not hit the operator when it breaks. This problem urgently needs to be solved to improve the usage scenario of the winding structure for tinned stranded wire production. Utility Model Content
[0005] In order to overcome the common winding structure used in tinned stranded wire production, there is a lack of structures and protective structures to prevent the wire from tangling, which makes it impossible to ensure normal winding of the wire, and also unable to ensure that the wire will not hit the operator when it breaks. It is easy for the wire to tangle during winding, and the wire to hit the operator when it breaks, affecting the winding progress and safety.
[0006] The technical solution of the utility model is: a winding structure for tinned stranded wire production, including a support assembly, the support assembly consists of a work table and a support rod, four support rods are symmetrically welded at the four corners of the bottom of the work table, a drive assembly is provided at the bottom of the work table, the drive assembly consists of a mounting frame, a motor and a drive roller, a mounting frame is provided at the bottom of the work table, a motor is provided inside the mounting frame, a drive roller is provided at the top of the work table corresponding to the position of the motor, a fixing assembly is provided at the top of the work table corresponding to the position of the drive assembly, the fixing assembly consists of a fixed chassis, a fixing rod, a limit block, a screw hole and a cross-shaped limit piece, the top of the drive roller is welded with a fixed chassis, the top of the fixed chassis is welded with a fixing rod, and the top of the fixed chassis is surrounded by A number of limit blocks are set at equal intervals at the position of the fixed rod, a screw hole is set at the top of the fixed rod, a winding assembly is set on the fixed assembly, the winding assembly consists of a winding column, a lower limit disk, a limit hole and an upper limit disk, a winding column is mounted on the fixed rod, and an upper limit disk is welded on the top of the winding column. A line-aligning assembly is set at the top of the workbench corresponding to the position of the winding assembly, the line-aligning assembly consists of a connecting plate and a flexible steel plate, protective assemblies are symmetrically arranged on both sides of the top of the workbench, the protective assemblies consist of mounting strips, placement grooves, protective plates and rubber plates, mounting strips are symmetrically welded on both sides of the top of the workbench, and a line-out assembly is set on the other side of the top of the workbench corresponding to the position of the winding assembly, the line-out assembly consists of a fixed block, a wire hole and a speaker hole.
[0007] Preferably, by setting up a structure to prevent the wire from getting tangled and a protective structure, it is possible to ensure that the wire is wound normally, and the operator will not be hit when the wire breaks, so as to solve the problem that the common winding structure for tinned stranded wire production only includes a winding structure and can perform winding operations on tinned stranded wire, but lacks a structure to prevent the wire from getting tangled and a protective structure, and cannot ensure that the wire is wound normally, nor can it ensure that the operator will not be hit when the wire breaks. It is easy for the wire to get tangled during winding, and the wire will hit the operator when it breaks, affecting the winding progress and safety.
[0008] Preferably, the top of the mounting frame is welded to the bottom of the work table, the motor is fixed to the inside of the mounting frame by bolts, the bottom end of the drive roller passes through the work table and the mounting frame and is connected to the output end of the motor, the motor is started, and the motor drives the drive roller to rotate.
[0009] Preferably, the limit block is welded to the fixed chassis as a whole, and a cross-shaped limit piece is provided at the position of the screw hole corresponding to the top end of the fixed rod. The cross-shaped limit piece is screwed into the screw hole and fixed to the fixed rod. The cross-shaped limit piece limits the position of the winding assembly to prevent the winding assembly from detaching from the fixed rod during rotation.
[0010] Preferably, a lower limit plate is welded to the bottom end of the winding column, and a number of limit holes are symmetrically provided at the bottom of the lower limit plate corresponding to the position of the limit block. The limit block is inserted into the inside of the limit hole to fix the position of the lower limit plate. When the driving roller drives the fixed chassis to rotate, the lower limit plate can rotate synchronously with the fixed chassis.
[0011] Preferably, a connecting plate is welded to the top of the workbench corresponding to the position of the winding post, and two flexible steel plates are symmetrically welded to the sides of the connecting plate corresponding to the position of the winding post. When the winding post is winding, the wire on the winding post is pressed by the two flexible steel plates to prevent the wire from shifting in position on the winding post.
[0012] Preferably, a placement groove is provided on the top of the mounting bar, and a protective plate is provided at the position of the placement groove on the top of the mounting bar. A rubber plate is provided on the side of the protective plate. The bottom ends of the protective plate and the rubber plate are inserted into the interior of the placement groove. When the wire breaks during winding, the broken wire will hit the rubber plate due to inertia, thereby realizing the protection function and preventing the wire from breaking and hitting the operator, affecting safety.
[0013] Preferably, a fixing block is welded on the other side of the top of the workbench plate at a position corresponding to the winding assembly, a wire hole is provided on the side of the fixing block, and a speaker hole is welded on the side of the fixed block at a position corresponding to the wire hole. When winding, one end of the wire body is passed through the speaker hole and the wire hole and then wrapped around the winding column. In this way, when the winding column pulls the wire body, the bent wire body can be straightened when the wire body passes through the speaker hole and the wire hole, thereby preventing the wire body from tangling, and preventing the wire body from tangling during winding, which affects the winding progress.
[0014] Beneficial effects of the utility model:
[0015] 1. By setting up a structure to prevent the wire from tangling and a protective structure, it is possible to ensure that the wire is wound normally and that the operator will not be hit when the wire breaks, so as to solve the problem that the common winding structure for tinned stranded wire production only includes a winding structure and can perform winding operations on tinned stranded wires, but lacks a structure to prevent the wire from tangling and a protective structure, which cannot ensure the normal winding of the wire and cannot ensure that the operator will not be hit when the wire breaks. The wire is prone to tangling during winding and hitting the operator when the wire breaks, affecting the winding progress and safety.
[0016] 2. When winding the wire, pass one end of the wire through the speaker hole and the wire hole and then wrap it around the winding post. In this way, when the winding post pulls the wire, the bent wire can be straightened when the wire passes through the speaker hole and the wire hole. The wire on the winding post is pressed down by two flexible steel plates to prevent the position of the wire on the winding post from shifting, thereby preventing the wire from tangling.
[0017] 3. When winding, the wire breaks and the broken wire hits the rubber plate due to inertia, thus achieving the protective function. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 Shown is a schematic diagram of a three-dimensional structure of a winding structure for producing tinned stranded wires of the present invention;
[0019] Figure 2 Shown is a schematic diagram of a three-dimensional exploded structure of a winding structure for producing tinned stranded wires of the present invention;
[0020] Figure 3 Shown is a schematic diagram of the three-dimensional structure of a winding structure outlet assembly for tinned stranded wire production according to the present invention;
[0021] Figure 4 What is shown is a three-dimensional top view structural schematic diagram of a winding structure winding assembly for tinned stranded wire production of the present invention.
[0022] In the figure: 1. Support assembly; 11. Work table; 12. Support rod; 2. Drive assembly; 21. Mounting frame; 22. Motor; 23. Drive roller; 3. Fixing assembly; 31. Fixed chassis; 32. Fixing rod; 33. Limit block; 34. Screw hole; 35. Cross-shaped limiter; 4. Winding assembly; 41. Winding column; 42. Lower limit plate; 43. Limit hole; 44. Upper limit plate; 5. Line-aligning assembly; 51. Connecting plate; 52. Flexible steel plate; 6. Protective assembly; 61. Mounting strip; 62. Placement slot; 63. Protective plate; 64. Rubber plate; 7. Wire outlet assembly; 71. Fixing block; 72. Wire hole; 73. Speaker hole. DETAILED DESCRIPTION
[0023] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0024] See also Figure 1-4The utility model provides an embodiment: a winding structure for tinned stranded wire production, including a support assembly 1, the support assembly 1 consists of a work table 11 and a support rod 12, four support rods 12 are symmetrically welded at the four corners of the bottom of the work table 11, a driving assembly 2 is provided at the bottom of the work table 11, the driving assembly 2 consists of a mounting frame 21, a motor 22 and a driving roller 23, a mounting frame 21 is provided at the bottom of the work table 11, a motor 22 is provided inside the mounting frame 21, a driving roller 23 is provided at the top of the work table 11 corresponding to the position of the motor 22, a fixing assembly 3 is provided at the top of the work table 11 corresponding to the position of the driving assembly 2, the fixing assembly 3 consists of a fixed chassis 31, a fixing rod 32, a limit block 33, a screw hole 34 and a cross-shaped limit piece 35, the top of the driving roller 23 is welded with a fixed chassis 31, the top of the fixed chassis 31 is welded with a fixing rod 32, and the top of the fixed chassis 31 is surrounded by a fixed A number of limit blocks 33 are set at equal intervals at the position of the fixed rod 32, a screw hole 34 is set at the top of the fixed rod 32, a winding assembly 4 is set on the fixed assembly 3, and the winding assembly 4 consists of a winding column 41, a lower limit disk 42, a limit hole 43 and an upper limit disk 44. The winding column 41 is mounted on the fixed rod 32, and the upper limit disk 44 is welded to the top of the winding column 41. A line-aligning assembly 5 is set at the top of the workbench 11 corresponding to the position of the winding assembly 4. The line-aligning assembly 5 consists of a connecting plate 51 and a flexible steel plate 52. Protective assemblies 6 are symmetrically arranged on both sides of the top of the workbench 11. The protective assembly 6 consists of a mounting strip 61, a placement groove 62, a protective plate 63 and a rubber plate 64. Mounting strips 61 are symmetrically welded on both sides of the top of the workbench 11. A wire-out assembly 7 is set on the other side of the top of the workbench 11 corresponding to the position of the winding assembly 4. The wire-out assembly 7 consists of a fixed block 71, a wire hole 72 and a speaker hole 73.
[0025] See also Figure 1-4 In this embodiment, the top of the mounting frame 21 is welded to the bottom of the work table 11, and the motor 22 is fixed to the inside of the mounting frame 21 by bolts. The bottom end of the driving roller 23 passes through the work table 11 and the mounting frame 21 and is connected to the output end of the motor 22. When winding, one end of the wire body passes through the horn hole 73 and the wire hole 72 and is wound on the winding post 41. In this way, when the winding post 41 pulls the wire body, the bent wire body can be straightened when the wire body passes through the horn hole 73 and the wire hole 72. The wire body on the winding post 41 is pressed by two flexible steel plates 52 to prevent the position of the wire body on the winding post 41 from being offset, thereby completing the work of preventing the wire body from being knotted. When winding, the wire body breaks, and the broken wire body due to inertia will hit the rubber plate 64, completing the protection work.
[0026] See also Figure 1-4In this embodiment, a connecting plate 51 is welded to the top of the workbench 11 at a position corresponding to the winding post 41, and two flexible steel plates 52 are symmetrically welded to the side of the connecting plate 51 at a position corresponding to the winding post 41. A fixing block 71 is welded to the other side of the top of the workbench 11 at a position corresponding to the winding assembly 4, and a wire hole 72 is provided on the side of the fixing block 71. A speaker hole 73 is welded to the side of the fixing block 71 at a position corresponding to the wire hole 72. A connecting plate 51 is welded to the top of the workbench 11 at a position corresponding to the winding post 41, and the side of the connecting plate 51 corresponds to the winding post 4 1 are symmetrically welded with two flexible steel plates 52. When winding, one end of the wire is passed through the horn hole 73 and the wire hole 72 and then wound around the winding post 41. In this way, when the winding post 41 pulls the wire, the bent wire can be straightened when the wire passes through the horn hole 73 and the wire hole 72. The wire on the winding post 41 is pressed down by the two flexible steel plates 52 to prevent the position of the wire on the winding post 41 from being offset, thereby achieving the function of preventing the wire from being knotted. When winding, the wire breaks, and the broken wire due to inertia will hit the rubber plate 64, thereby achieving the protection function.
[0027] When working, one end of the wire is passed through the horn hole 73 and the wire hole 72 and then wound on the winding post 41, and the motor 22 is started. The motor 22 drives the driving roller 23 to rotate, and the driving roller 23 drives the winding post 41 to rotate through the fixed chassis 31. The rotating winding post 41 pulls the wire to be wound on the winding post 41. When the winding post 41 is winding, the wire on the winding post 41 is pressed by two flexible steel plates 52 to prevent the position of the wire on the winding post 41 from being offset. When the wire passes through the horn hole 73 and the wire hole 72, the bent wire can be straightened. The wire breaks during winding, and the broken wire due to inertia will hit the rubber plate 64, thereby realizing the protection function and the function of preventing the wire from knotting.
[0028] Through the above steps, by setting up a structure to prevent the wire from getting tangled and a protective structure, it is possible to ensure that the wire is wound normally, and the operator will not be hit when the wire breaks, so as to solve the common winding structure for tinned stranded wire production, which only includes a winding structure and can perform winding operations on tinned stranded wire, but lacks a structure to prevent the wire from getting tangled and a protective structure, and cannot ensure that the wire is wound normally, nor can it ensure that the operator will not be hit when the wire breaks. It is easy for the wire to get tangled during winding, and the wire will hit the operator when it breaks, affecting the winding progress and safety.
[0029] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the purpose of the present invention.
Claims
1. A winding structure for producing tinned stranded wire, comprising a support assembly (1), characterized in that: The support assembly (1) is composed of a workbench (11) and a support rod (12). Four support rods (12) are symmetrically welded at the four corners of the bottom of the workbench (11). A driving assembly (2) is provided at the bottom of the workbench (11). The driving assembly (2) is composed of a mounting frame (21), a motor (22) and a driving roller (23). The bottom of the workbench (11) is provided with a mounting frame (21). The motor (22) is provided inside the mounting frame (21). The top of the workbench (11) is provided at a position corresponding to the position of the motor (22). A driving roller (23) is provided. A fixing assembly (3) is provided on the top of the workbench (11) at a position corresponding to the driving assembly (2). The fixing assembly (3) is composed of a fixing chassis (31), a fixing rod (32), a limiting block (33), a screw hole (34) and a cross-shaped limiting piece (35). The top of the driving roller (23) is welded with the fixing chassis (31), the top of the fixing chassis (31) is welded with the fixing rod (32), and the top of the fixing chassis (31) is provided with limiting blocks (33) at equal intervals around the position of the fixing rod (32). Several, the top of the fixing rod (32) is provided with a screw hole (34), the fixing assembly (3) is provided with a winding assembly (4), the winding assembly (4) is composed of a winding column (41), a lower limit plate (42), a limit hole (43) and an upper limit plate (44), the fixing rod (32) is provided with a winding column (41), the top of the winding column (41) is welded with an upper limit plate (44), the top of the workbench (11) is provided with a line assembly (5) corresponding to the position of the winding assembly (4), the line assembly (5) is composed of a connecting plate (51) and The workbench (11) is composed of a flexible steel plate (52), and protective components (6) are symmetrically arranged on both sides of the top of the workbench (11). The protective components (6) are composed of a mounting strip (61), a placement groove (62), a protective plate (63) and a rubber plate (64). The mounting strips (61) are symmetrically welded on both sides of the top of the workbench (11). An outlet component (7) is arranged on the other side of the top of the workbench (11) at a position corresponding to the winding component (4). The outlet component (7) is composed of a fixing block (71), a wire hole (72) and a speaker hole (73).
2. The winding structure for producing tinned stranded wire according to claim 1, characterized in that: The top of the mounting frame (21) is welded to the bottom of the workbench (11), the motor (22) is fixed inside the mounting frame (21) by bolts, and the bottom end of the driving roller (23) passes through the workbench (11) and the mounting frame (21) and is connected to the output end of the motor (22).
3. The winding structure for producing tinned stranded wire according to claim 1, characterized in that: The limiting block (33) is integrated with the fixed chassis (31) by welding, and a cross-shaped limiting piece (35) is provided at the top end of the fixing rod (32) at a position corresponding to the screw hole (34). The cross-shaped limiting piece (35) is screwed into the screw hole (34) and fixed to the fixing rod (32).
4. The winding structure for producing tinned stranded wire according to claim 1, characterized in that: The bottom end of the winding column (41) is welded with a lower limit plate (42), and the bottom of the lower limit plate (42) is symmetrically provided with a plurality of limit holes (43) corresponding to the position of the limit block (33), and the limit block (33) is snapped into the inside of the limit hole (43).
5. The winding structure for producing tinned stranded wire according to claim 1, characterized in that: A connecting plate (51) is welded to the top of the workbench (11) at a position corresponding to the winding post (41), and two flexible steel plates (52) are symmetrically welded to the side surfaces of the connecting plate (51) at a position corresponding to the winding post (41).
6. The winding structure for producing tinned stranded wire according to claim 1, characterized in that: A placement groove (62) is provided on the top of the mounting bar (61), a protective plate (63) is provided at a position on the top of the mounting bar (61) corresponding to the placement groove (62), a rubber plate (64) is provided on the side of the protective plate (63), and the bottom ends of the protective plate (63) and the rubber plate (64) are inserted into the interior of the placement groove (62).
7. The winding structure for producing tinned stranded wire according to claim 1, characterized in that: A fixing block (71) is welded on the other side of the top of the workbench (11) at a position corresponding to the winding assembly (4), a wire hole (72) is provided on the side of the fixing block (71), and a speaker hole (73) is welded on the side of the fixing block (71) at a position corresponding to the wire hole (72).