Processing device for grounding wire of power switch cabinet
By designing an automated grounding wire processing device for power switch cabinets, the problem of inability to accurately control the number and diameter of spiral turns in the prior art is solved, and the mechanized manufacturing and efficient winding of grounding wires are realized, meeting different usage needs.
Patent Information
- Application Number
- CN202510821371.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-19
- Publication Date
- 2025-07-22
AI Technical Summary
The existing power switch cabinet grounding wire processing device cannot accurately control the number of spiral turns and diameter, which poses safety hazards and cannot meet different usage needs.
A power switch cabinet grounding wire processing device including a winding unit and a moving component is designed. Through the cooperation of the winding unit and the moving component, automatic winding is realized, and the diameter of the winding component is adjusted by adjusting the components to meet different usage needs.
The mechanized manufacturing of grounding wires is realized, the winding accuracy and working efficiency are improved, the physical labor of workers is reduced, and the requirements for standardized and safe construction are met.
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Figure CN120348799A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cable processing, and particularly to a processing device for the grounding wire of a power switch cabinet. Background Art
[0002] The installation of the grounding wire of a power switch cabinet is a very important task. The grounding wire plays a very important role in protecting the circuit. To facilitate installation and prevent the grounding wire from being squeezed in the cabinet door, it is necessary to wind the grounding wire so that a spiral structure is formed at the middle position of the grounding wire.
[0003] The traditional method is to wind by manual operation of workers. That is, one hand fixes the head end of the grounding wire on a screwdriver, and the other hand holds the grounding wire and winds the grounding wire around the screwdriver so that a spiral structure is formed in the middle of the grounding wire. However, the manual operation method has certain safety hazards, and the number of spiral turns and the spiral shape cannot be accurately controlled, so the purpose of standardized installation and construction cannot be achieved. At the same time, although there are some devices for automatically winding the grounding wire in the prior art, they can only wind a spiral structure with a fixed spiral diameter range. In actual production and life, due to different usage requirements, as well as the influence of factors such as the magnitude of short-circuit current, electromagnetic environment interference, and installation space limitation, the number of spiral turns and the spiral diameter of the grounding wire of the power switch cabinet need to be adjusted accordingly. The existing automatic winding processing devices in the prior art obviously do not have measures to change the winding spiral diameter and cannot meet the usage requirements. Summary of the Invention
[0004] In view of the problems existing in the existing processing device for the grounding wire of a power switch cabinet, the present invention hereby provides a processing device for the grounding wire of a power switch cabinet to solve such problems.
[0005] To solve the above technical problems, the present invention provides the following technical solution: A processing device for the grounding wire of a power switch cabinet, including a base, a winding unit vertically arranged on the base, and the winding unit is rotationally connected to the base, and a moving component arranged on the side of the winding unit. The winding unit includes a bearing component rotationally connected to the base, an adjusting component rotatably arranged on the bearing component, and a plurality of groups of winding components vertically and annularly equally divided on the adjusting component. The end of the adjusting component passes downward through the adjusting component and is inserted into the bearing component; A plurality of groups of sliding grooves are equally opened on the bearing component, a plurality of groups of arc-shaped grooves with arc-shaped structures are equally opened on the adjusting component, the lower end of the adjusting component passes through the arc-shaped grooves and extends into the sliding grooves, and the arc-shaped extension direction of the arc-shaped grooves extends outward from the midpoint of the adjusting component; The moving part includes a screw rod vertically arranged on the base, and the screw rod is rotatably connected to the base, a slide rod parallel to the side of the screw rod, a slide table threadedly sleeved on the screw rod, and the outer end of the slide table is slidably connected to the slide rod, and a limiting part arranged on one side of the slide table, and the outer end of the limiting part semi - surrounds the outside of the winding unit.
[0006] As a preferred scheme of the grounding wire processing device for the power switch cabinet of the present invention, wherein: the bearing part further includes a tray rotatably connected to the base, and a chute is opened on the tray, a vertical shaft arranged at the axial center position of the tray, and an adjusting part is sleeved at the end of the vertical shaft, a fixing component arranged at the top of the vertical shaft, a limiting piece arranged at the lower end of the vertical shaft, and the adjusting part is located below the limiting piece, and a worm shaft arranged on the side of the tray, and the edge of the adjusting part meshes with the worm shaft.
[0007] As a preferred scheme of the grounding wire processing device for the power switch cabinet of the present invention, wherein: the fixing component includes a block with an opening on the side, and guiding plates in the shape of half - trumpet are arranged on both sides of the block, and a knob threadedly inserted on the block.
[0008] As a preferred scheme of the grounding wire processing device for the power switch cabinet of the present invention, wherein: the adjusting part includes a gear disk sleeved on the vertical shaft, and an arc - shaped groove is opened on the gear disk, and a plurality of groups of teeth are distributed on the outer diameter of the gear disk, and the teeth mesh and drive with the worm shaft.
[0009] As a preferred scheme of the grounding wire processing device for the power switch cabinet of the present invention, wherein: the winding part includes a winding rod in a triangular prism structure, and the outer side of the winding rod is in an arc - shaped structure, an extension shaft fixedly arranged at the end of the winding rod, and the extension shaft is in a cylindrical structure and extends into the arc - shaped groove, and a slider fixedly connected to the end of the extension shaft, and the slider is in a rectangular structure and slidably connected in the chute, and the length of the slider is greater than the diameter of the extension shaft.
[0010] As a preferred scheme of the grounding wire processing device for the power switch cabinet of the present invention, wherein: a transmission wheel is arranged at the end of the screw rod, and the transmission wheel extends into the base, and the slide rod is fixedly arranged on the base.
[0011] As a preferred scheme of the grounding wire processing device for the power switch cabinet of the present invention, wherein: the limiting part includes a support rod horizontally arranged on the side of the slide table, an arc - shaped frame fixedly connected to the outer end of the support rod, and the arc - shaped frame is in an arc - shaped structure with a diameter larger than the maximum diameter of the winding unit, and a clamp fixedly horizontally arranged above the connection position of the arc - shaped frame and the support rod.
[0012] As a preferred embodiment of the grounding wire processing device for the power switchgear of the present invention, the support rod is a multi-stage telescopic structure, and a card slot with an opening facing left and downward is provided inside the clamp.
[0013] As a preferred embodiment of the grounding wire processing device for the power switchgear of the present invention, a support is provided on the side of the base. Multiple groups of limit teeth are provided at the top of the support, and the overall height of the support is higher than that of the winding unit.
[0014] As a preferred embodiment of the grounding wire processing device for the power switchgear of the present invention, a driving motor is installed inside the base, and the rotating shaft of the driving motor is connected to the winding unit. A transmission belt is sleeved on the rotating shaft of the driving motor, and the other end of the transmission belt is sleeved on the end of the moving component.
[0015] Beneficial effects of the present invention: By setting the winding unit to cooperate with the moving component for use, the function of automatically winding and processing the spiral of the grounding wire is realized, the mechanized manufacturing of the grounding wire is achieved, the accuracy of the winding spiral of the grounding wire is improved, the requirements of standardized safe construction are met, the physical labor of workers is reduced, and the work efficiency is significantly improved; At the same time, multiple groups of winding components that can expand outward or gather inward synchronously according to the usage requirements are provided on the winding unit of the present device. The winding components that expand outward or gather inward can change the diameter of the spiral structure formed after winding, so as to realize the function of winding spiral structures with different diameters and meet more usage requirements. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for the description of the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts. Among them: Figure 1 It is a schematic diagram of the overall structure of the grounding wire processing device for the power switchgear of the present invention.
[0017] Figure 2 It is a top view of the grounding wire processing device for the power switchgear of the present invention.
[0018] Figure 3 It is a schematic diagram of the internal structure of the grounding wire processing device for the power switchgear of the present invention.
[0019] Figure 4 It is the grounding wire processing device for the power switchgear of the present invention Figure 3 Schematic diagram of the enlarged structure at A in the
[0020] Figure 5The processing device for the grounding wire of the power switch cabinet of the present invention Figure 3 The enlarged schematic diagram of the structure at B in
[0021] Figure 6 The schematic diagram of the structure of the bearing component of the processing device for the grounding wire of the power switch cabinet of the present invention
[0022] Figure 7 The schematic diagram of the structure of the adjusting component of the processing device for the grounding wire of the power switch cabinet of the present invention
[0023] Figure 8 The schematic diagram of the structure of the winding component of the processing device for the grounding wire of the power switch cabinet of the present invention
[0024] Figure 9 The bottom view of the connection position between the adjusting component and the winding component of the processing device for the grounding wire of the power switch cabinet of the present invention
[0025] Figure 10 The schematic diagram of the structure of the moving component of the processing device for the grounding wire of the power switch cabinet of the present invention
[0026] Figure 11 The schematic diagram of the structure of the clamp of the processing device for the grounding wire of the power switch cabinet of the present invention
[0027] Reference signs: 1, base; 11, bracket; 2, winding unit; 21, bearing component; 211, tray; 212, chute; 213, vertical shaft; 214, fixing component; 2141, clamping block; 2142, knob; 215, limiting piece; 216, worm shaft; 22, adjusting component; 221, gear disc; 222, arc groove; 223, tooth; 23, winding component; 231, winding rod; 232, extension shaft; 233, slider; 3, moving component; 31, screw; 311, driving wheel; 32, slide bar; 33, slide table; 34, limiting component; 341, support rod; 342, arc bracket; 343, clamp; 3431, clamping groove; 4, grounding wire; 5, driving motor; 6, transmission belt. Detailed implementation manners
[0028] In order to make the above objects, features and advantages of the present invention more obvious and understandable, the following detailed description of the specific implementation manners of the present invention will be made with reference to the accompanying drawings of the specification.
[0029] Many specific details are set forth in the following description in order to fully understand the present invention, but the present invention can also be implemented in other ways different from those described herein. Those skilled in the art can make similar extensions without departing from the connotation of the present invention. Therefore, the present invention is not limited by the specific embodiments disclosed below.
[0030] Embodiment Refer to Figures 1 to 11, which is an embodiment of the present invention, includes a processing device for the grounding wire of a power switch cabinet, including a base 1, a winding unit 2 vertically arranged on the base 1, and the winding unit 2 is rotatably connected to the base 1, and a moving member 3 arranged on the side of the winding unit 2. The winding unit 2 includes a bearing member 21 rotatably connected to the base 1, an adjusting member 22 rotatably arranged on the bearing member 21, and multiple groups of winding members 23 vertically and annularly equally divided on the adjusting member 22, and the end of the adjusting member 22 passes downward through the adjusting member 22 and is inserted into the bearing member 21; Refer to Figure 1 , the winding unit 2 is integrally rotatably connected to the base 1 through the bearing member 21, and can perform a circumferential rotation around its own axis. The rotation action can form an operation of winding the grounding wire 4. The adjusting member 22 is separately rotatably connected to the bearing member 21 and can perform an additional independent rotation operation on the bearing member 21. Multiple groups of winding members 23 can surround and form a polygonal columnar frame, and the columnar frame is used for winding the grounding wire 4 to realize the spiral winding operation of the grounding wire 4; Multiple groups of sliding grooves 212 are equally arranged on the bearing member 21. Multiple groups of arc-shaped grooves 222 with arc-shaped structures are equally arranged on the adjusting member 22. The lower end of the adjusting member 22 passes through the arc-shaped groove 222 and extends into the sliding groove 212. The arc-shaped extension direction of the arc-shaped groove 222 extends outward from the midpoint of the adjusting member 22; Refer to Figure 7 And Figure 9 , multiple groups of sliding grooves 212 are equally divided on the bearing member 21. Each group of sliding grooves 212 extends outward from the center of the bearing member 21. Since the end of the winding member 23 extends into the sliding groove 212, the end of the winding member 23 is limited by the sliding groove 212 and can only slide horizontally along the sliding groove 212. The arc-shaped structure extension direction of the arc-shaped groove 222 also limits the winding member 23. When the adjusting member 22 rotates, the arc-shaped groove 222 on the adjusting member 22 will push the winding member 23 to move gradually away from or close to the center of the adjusting member 22 through its own arc-shaped structure. Coupled with the limitation of the end of the winding member 23 by the sliding groove 212, when the arc-shaped groove 222 drives the winding member 23 to move, the winding member 23 can only move in a translational manner. Multiple groups of winding members 23 move synchronously, which can achieve the purpose of adjusting the diameter of the frame surrounded by multiple groups of winding members 23. The grounding wire 4 is wound around the frame composed of multiple groups of winding members 23. Therefore, by adjusting the synchronous expansion or gathering actions of multiple groups of winding members 23, the purpose of changing the diameter of the winding coil of the grounding wire 4 can be achieved, meeting more usage requirements.
[0031] The moving part 3 includes a screw rod 31 vertically arranged on the base 1, and the screw rod 31 is rotatably connected to the base 1. A slide rod 32 is arranged parallel to the side of the screw rod 31. A slide table 33 is threadedly sleeved on the screw rod 31, and the outer end of the slide table 33 is slidably connected to the slide rod 32. And a limiting part 34 is arranged on one side of the slide table 33, and the outer end of the limiting part 34 semi-encircles the outside of the winding unit 2; Refer to Figure 9 With Figure 10 , when in use, first pass the grounding wire 4 through the limiting part 34, and then wind it on the winding unit 2. Therefore, the grounding wire 4 is limited in the vertical direction by the limiting part 34, but the grounding wire 4 is not limited in the horizontal direction by the limiting part 34, that is, the grounding wire 4 can be normally conveyed out through the limiting part 34. Through the threaded connection between the screw rod 31 and the slide table 33, the screw rod 31, the slide rod 32 and the slide table 33 can form a lead screw-slide table structure in cooperation with each other, that is, the screw rod 31 can drive the slide table 33 to move vertically by rotation. The vertically moving slide table 33 drives the limiting part 34 with the grounding wire 4 strung thereon to synchronously move in the vertical direction. Therefore, when the winding unit 2 winds the grounding wire 4, the moving part 3 can synchronously drive the grounding wire 4 to move in the vertical direction without delaying its outward conveyance. The height of the downward moving grounding wire 4 in the vertical direction is slightly lower than the height of the grounding wire 4 wound on the winding unit 2, thereby avoiding the overlap of the grounding wire 4 during the winding process, so that the grounding wire 4 is wound on the winding unit 2 in a spiral structure, achieving the purpose of processing the spiral structure.
[0032] Further, refer to Figure 6 , the bearing part 21 further includes a tray 211 rotatably connected to the base 1, and a chute 212 is opened on the tray 211. A vertical shaft 213 is vertically arranged at the center position of the tray 211, and an adjusting part 22 is sleeved on the end of the vertical shaft 213. A fixing component 214 is fixedly arranged at the top of the vertical shaft 213. A limiting piece 215 is arranged at the lower end of the vertical shaft 213, and the adjusting part 22 is located below the limiting piece 215. And a worm shaft 216 is arranged on the side of the tray 211, and the edge of the adjusting part 22 meshes with the worm shaft 216. The chute 212 limits the moving direction of the winding part 23, so that it can only perform horizontal translation sliding. The limiting piece 215 limits the adjusting part 22 in the vertical direction on the bearing part 21, so that the adjusting part 22 can only rotate around the vertical shaft 213 on the bearing part 21. And the worm shaft 216 can push the adjusting part 22 to rotate around the vertical shaft 213 through the meshing with the edge of the adjusting part 22.
[0033] Further, refer to Figure 5, the fixing component 214 includes a clamping block 2141 with an opening on the side, and guiding plates in the shape of half a horn are arranged on both sides of the clamping block 2141, and a knob 2142 is screwed and inserted on the clamping block 2141. The fixing component 214 is used to fix the other end of the grounding wire 4. The clamping block 2141 with an opening on the side enables the grounding wire 4 to be easily removed from or installed on the side of the fixing component 214. The knob 2142 can lock the grounding wire 4 on the fixing component 214 by rotation, so that the fixing component 214 will not slide during the winding process of the winding unit 2, avoiding winding the other end of the grounding wire 4 on the winding unit 2 as well.
[0034] Among them, referring to Figure 2 and Figure 7 , the adjusting component 22 includes a gear disk 221 sleeved on the vertical shaft 213, and an arc-shaped groove 222 is opened on the gear disk 221, and a plurality of sets of teeth 223 are distributed on the outer diameter of the gear disk 221, and the teeth 223 are meshed and driven with the worm shaft 216. Through the meshing and driving with the worm shaft 216, the adjusting component 22 can be driven by the worm shaft 216 to rotate. The rotating adjusting component 22 adjusts the distance between multiple winding components 23 through the arc-shaped groove 222, achieving the purpose of manually adjusting the size of the columnar frame formed by the winding components 23. At the same time, the gear-worm structure formed by the cooperation of the worm shaft 216 and the teeth 223 has a self-locking function, which can prevent the adjusted winding components 23 from driving the adjusting component 22 to rotate in the reverse direction, so that the winding components 23 are kept in the adjusted position, ensuring the winding accuracy.
[0035] Among them, referring to Figure 3 and Figure 8 , the winding component 23 includes a winding rod 231 with a triangular prism structure, and the outer side of the winding rod 231 is an arc-shaped structure. An extension shaft 232 fixedly arranged at the end of the winding rod 231, and the extension shaft 232 is a cylindrical structure and extends into the arc-shaped groove 222, and a slider 233 fixedly connected to the end of the extension shaft 232, and the slider 233 is a rectangular structure and is slidably connected in the chute 212. At the same time, the length of the slider 233 is greater than the diameter of the extension shaft 232. The triangular prism structure enables the winding rod 231 to have better supporting performance. At the same time, the outer sides of all winding rods 231 are on the same vertical line, avoiding the spiral of the winding from becoming thicker or thinner at the top and bottom. The arc-shaped structure on the outer wall of the winding rod 231 fits better with the grounding wire 4. The cylindrical extension shaft 232 contacts the arc-shaped groove 222 more smoothly. The rectangular teeth 223 cooperate with the chute 212 to limit the whole winding component 23 from rotating and only allowing translational sliding.
[0036] Further, referring to Figure 3, a transmission wheel 311 is provided at the end of the screw rod 31, and the transmission wheel 311 extends into the base 1. The slide rod 32 is fixedly arranged on the base 1. The transmission wheel 311 is connected to the drive motor 5 through a transmission belt 6. Therefore, the drive motor 5 can drive the screw rod 31 to rotate through the transmission belt 6.
[0037] Among them, referring to Figure 2 and Figure 10 , the limiting component 34 includes a support rod 341 horizontally arranged on the side of the slide table 33, an arc-shaped frame 342 fixedly connected to the outer end of the support rod 341, and the arc-shaped frame 342 is an arc-shaped structure with a diameter larger than the maximum diameter of the winding unit 2, and a clamp 343 fixedly arranged horizontally above the connection position between the arc-shaped frame 342 and the support rod 341. The arc-shaped arc-shaped frame 342 can prevent the clamp 343 from inserting into the gap between the winding components 23, ensuring the use safety.
[0038] Furthermore, referring to Figure 4 , the support rod 341 is a multi-stage telescopic structure. An opening facing left and downward, a card slot 3431, is provided inside the clamp 343. The multi-stage telescopic support rod 341 always keeps the limiting component 34 close to the outside of the winding unit 2 through elastic support, so as to synchronously adjust the distance between the two following the size change of the winding unit 2. The card slot 3431 with a left and downward opening can facilitate the entry and removal of the grounding wire 4, and the specific opening direction can prevent the grounding wire 4 from accidentally detaching.
[0039] Among them, referring to Figure 1 , a bracket 11 is provided on the side of the base 1. Multiple groups of limiting teeth are provided at the top of the bracket 11, and the overall height of the bracket 11 is higher than that of the winding unit 2. The bracket 11 is used to fix the head end of the grounding wire 4, keeping the unwound end of the grounding wire 4 away from the winding unit 2 to avoid accidental winding on the winding unit 2.
[0040] Among them, referring to Figure 3 , a drive motor 5 is installed in the base 1, and the rotating shaft of the drive motor 5 is connected to the winding unit 2. A transmission belt 6 is sleeved on the rotating shaft of the drive motor 5, and the other end of the transmission belt 6 is sleeved on the end of the moving component 3. The drive motor 5 can synchronously drive the screw rod 31 and the bearing component 21 to rotate through the transmission belt 6, achieving the purpose of synchronous operation of the moving component 3 and the winding unit 2.
[0041] During the use process, the connection part between the non-winding part and the part to be wound of the grounding wire 4 is fixed on the fixing component 214. The outer end of the non-winding part is placed on the bracket 11 to keep it away from the winding unit 2. Then, it passes through the space between two adjacent winding components 23 through the part to be wound and penetrates into the clamp 343 (refer to Figure 2 ); Subsequently, according to the actually required winding spiral diameter, the size of the columnar frame composed of multiple winding components 23 is adjusted. The worm shaft 216 is rotated. The worm shaft 216 drives the overall rotation of the adjusting component 22 by meshing with the tooth 223. The rotating adjusting component 22 drives multiple winding components 23 to perform actions of expanding outwards or converging inwards through the arc-shaped groove 222 (refer to Figure 9 ), achieving the action of adjusting the size of the columnar frame composed of multiple winding components 23, and further realizing the function of adjusting the winding diameter according to actual requirements. During the movement of the winding component 23, the limiting component 34 is always attached to the side of the winding unit 2 through the elastic support of the support rod 341 (refer to Figure 3 and Figure 4 ); After adjusting the diameter of the columnar frame composed of multiple winding components 23 to match the required spiral diameter, the driving motor 5 is started. The driving motor 5 drives the overall rotation of the winding unit 2 and synchronously drives the screw rod 31 to rotate through the transmission belt 6. When the winding unit 2 rotates, the grounding wire 4 located between two winding components 23 will be driven by the side of the winding component 23 (refer to Figure 2 ). At this time, the driven grounding wire 4 will slide outwards along the clip 343, and with the driving of the rotation action of the winding unit 2, the part to be wound is conveyed and wound on the columnar frame composed of multiple winding components 23; While the winding unit 2 rotates and winds, the screw rod 31 will synchronously drive the limiting component 34 to move vertically downwards. The downward moving limiting component 34 will synchronously drive the grounding wire 4 to move downwards. At this time, the grounding wire 4 exists in a posture of conveying outwards while the height decreases. The downward moving grounding wire 4 will make the height of the part to be wound in the vertical direction slightly lower than the height of the grounding wire 4 already wound on the winding unit 2, so that the wound grounding wire 4 will not be wound and overlapped at the same position, but will be wound on the winding unit 2 in a spiral structure, thus achieving the purpose of processing a spiral structure; In summary, by setting the cooperation of the winding unit 2 and the moving component 3 for use, the function of automatically winding and processing the spiral of the grounding wire is realized, the mechanical manufacturing of the grounding wire is achieved, the precision of winding the spiral of the grounding wire is improved, the requirements of standardized safety construction are met, the physical labor of workers is reduced, and the work efficiency is significantly improved. At the same time, the diameter of the spiral structure formed after winding can be changed according to actual requirements, realizing the function of winding spiral structures with different diameters and meeting more usage requirements.
[0042] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention, and they should all be covered within the scope of the claims of the present invention.
Claims
1. An earthing wire processing device for a power switchgear cabinet, comprising a base (1), a winding unit (2) vertically arranged on the base (1), and the winding unit (2) is rotatably connected to the base (1), and a moving member (3) arranged on the side of the winding unit (2), characterized in that: The winding unit (2) includes a bearing member (21) rotatably connected to the base (1), an adjusting member (22) rotatably provided on the bearing member (21), and multiple groups of winding members (23) vertically and annularly equally divided on the adjusting member (22), and the end of the adjusting member (22) passes downward through the adjusting member (22) and is inserted into the bearing member (21); Multiple groups of sliding grooves (212) are equally provided on the bearing member (21), multiple groups of arc-shaped arc grooves (222) are equally provided on the adjusting member (22), the lower end of the adjusting member (22) passes through the arc groove (222) and extends into the sliding groove (212), and the arc extension direction of the arc groove (222) extends outward from the midpoint of the adjusting member (22); The moving member (3) includes a screw rod (31) vertically arranged on the base (1), and the screw rod (31) is rotatably connected to the base (1), a slide rod (32) parallel to the side of the screw rod (31), a slide table (33) threadedly sleeved on the screw rod (31), and the outer end of the slide table (33) is slidably connected to the slide rod (32), and a limiting member (34) provided on one side of the slide table (33), and the outer end of the limiting member (34) semi-encircles the outside of the winding unit (2).
2. The grounding wire processing device for a power switch cabinet according to claim 1, characterized in that: The bearing member (21) further includes a tray (211) rotatably connected to the base (1), the sliding groove (212) is opened on the tray (211), a vertical shaft (213) vertically arranged at the axis position of the tray (211), the adjusting member (22) is sleeved on the end of the vertical shaft (213), a fixing component (214) provided at the top of the vertical shaft (213), a limiting piece (215) provided at the lower end of the vertical shaft (213), and the adjusting member (22) is located below the limiting piece (215), and a worm shaft (216) provided on the side of the tray (211), and the edge of the adjusting member (22) meshes with the worm shaft (216).
3. The grounding wire processing device for the power switch cabinet according to claim 2, wherein: The fixing component (214) includes a block (2141) with an opening on the side, and two one-half trumpet-shaped guiding plates are provided on both sides of the block (2141), and a knob (2142) threadedly inserted into the block (2141).
4. The grounding wire processing device for the power switch cabinet according to claim 2, wherein: The adjusting member (22) includes a gear disk (221) sleeved on the vertical shaft (213), the arc groove (222) is opened on the gear disk (221), and multiple groups of teeth (223) are distributed on the outer diameter of the gear disk (221), and the teeth (223) mesh and drive with the worm shaft (216).
5. The grounding wire processing device for a power switchgear according to claim 1, characterized in that: The winding component (23) includes a winding rod (231) having a triangular prism structure, and the outer side of the winding rod (231) is an arc structure. An extension shaft (232) fixedly arranged at the end of the winding rod (231), and the extension shaft (232) is a cylindrical structure and extends into the arc groove (222). And a slider (233) fixedly connected to the end of the extension shaft (232), and the slider (233) is a rectangular structure and is slidably connected in the chute (212). At the same time, the length of the slider (233) is greater than the diameter of the extension shaft (232).
6. The grounding wire processing device for the power switch cabinet according to claim 1, characterized in that: A transmission wheel (311) is arranged at the end of the screw rod (31), and the transmission wheel (311) extends into the base (1). The slide rod (32) is fixedly arranged on the base (1).
7. The grounding wire processing device for the power switch cabinet according to claim 1, characterized in that: The limiting component (34) includes a support rod (341) horizontally arranged on the side of the slide table (33), an arc-shaped frame (342) fixedly connected to the outer end of the support rod (341), and the arc-shaped frame (342) is an arc structure with a diameter larger than the maximum diameter of the winding unit (2). And a clamp (343) fixedly and horizontally arranged above the connection position of the arc-shaped frame (342) and the support rod (341).
8. The grounding wire processing device for a power switchgear according to claim 7, wherein: The support rod (341) is a multi-stage telescopic structure, and a card slot (3431) with an opening facing left and downward is formed inside the clamp (343).
9. The grounding wire processing device for the power switch cabinet according to claim 8, wherein: A bracket (11) is arranged on the side of the base (1), and a plurality of groups of limiting teeth are arranged at the top of the bracket (11), and the overall height of the bracket (11) is higher than that of the winding unit (2).
10. The grounding wire processing device for the power switch cabinet according to claim 9, characterized in that: A driving motor (5) is installed in the base (1), and the rotating shaft of the driving motor (5) is connected to the winding unit (2). A transmission belt (6) is sleeved on the rotating shaft of the driving motor (5), and the other end of the transmission belt (6) is sleeved on the end of the moving component (3).