Power communication cable processing device
By designing the storage component, swing component, and fastening component of the power communication cable handling device, the problems of uneven cable distribution and loosening were solved, achieving uniform cable storage and tight fixation, and improving the storage effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-11
- Publication Date
- 2026-03-13
AI Technical Summary
During the storage of power and communication cables, uneven cable distribution can easily cause them to loosen and fall off, affecting the storage effect.
A power communication cable handling device was designed, comprising a storage component, a swing component, and a fastening component. The cable reel is rotated by a rotating shaft, the sliding ring moves on the track rod to distribute the cable evenly, the spring generates elastic force to fasten the cable, and a buzzer indicates that storage is complete.
It achieves uniform cable storage, prevents accumulation, improves the tightness and controllability of storage, and ensures that cables are not easily detached.
Smart Images

Figure CN223990752U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of power communication cable processing technology, specifically a power communication cable processing device. Background Technology
[0002] Communication cables are primarily used for transmitting telephone, telegram, fax documents, television and radio programs, data, and other electrical signals. They consist of one or more pairs of insulated conductors twisted together. Compared to overhead power lines, communication cables offer advantages such as larger communication capacity, higher transmission stability, better security, and less susceptibility to natural conditions and external interference.
[0003] Currently, in the process of storing and processing power and communication cables, the cable is usually stored using a cable reel. During the cable reeling process, the cable will pile up at one end of the reel, resulting in uneven distribution of the cable on the reel, which in turn affects the processing effect of the communication cable.
[0004] Furthermore, when winding up the cable, the tension on the cable decreases as the winding coil is pulled down, causing the cable end to become loose on the surface of the winding coil. This makes it easy for the cable to fall off the winding coil, affecting the winding and storage of power and communication cables after processing. Utility Model Content
[0005] The purpose of this utility model is to provide a power communication cable processing device, which solves the technical problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a power communication cable processing device, comprising a base plate, a caster wheel rotatably connected to the lower end face of the base plate, a handle connected to the upper end face of the base plate, a rotating shaft disposed above the base plate, a wire reel sleeve sleeved on the surface of the rotating shaft, and a cable disposed on the upper end face of the base plate; the power communication cable processing device further includes:
[0007] A storage component is disposed on the base plate and is used to drive the rotating shaft to rotate, thereby automatically storing the cable.
[0008] A swing assembly is disposed on the base plate and is used to drive the cable to swing, thereby making the cable evenly distributed on the surface of the cable reel.
[0009] A fastening assembly, disposed on the base plate, is used to fasten a cable wound on the surface of the wire reel;
[0010] A cable length indicator is provided on the base plate to indicate the length of the cable stored in the cable reel.
[0011] Optionally, the storage component includes:
[0012] A fixing frame 1 has its lower end face connected to the upper end face of the base plate. A cable management tray is also connected to the side of the fixing frame 1. A through slot is opened on the side of the upper end face of the fixing frame 1. The wall of the through slot is rotatably connected to the end surface of the rotating shaft 1. A snap-fit block is also connected to the surface of the rotating shaft 1. A snap-fit groove is opened on the end surface of the cable reel sleeve. The wall of the snap-fit groove is snap-fitted and fixed to the surface of the snap-fit block.
[0013] The motor has its housing connected to the upper surface of the base plate, and its output end is connected to a second rotating shaft. The end surface of the second rotating shaft is connected to the end surface of the first rotating shaft via a belt drive.
[0014] Optionally, the oscillating component includes:
[0015] A second fixing frame is provided, the lower end face of which is connected to the upper end face of the base plate. A slot is provided on the upper end face of the second fixing frame. A rotating column is slidably connected to the slot wall. A track rod is connected to the end face of the rotating column. A bidirectional spiral groove is provided on the surface of the track rod. A limiting post is slidably connected to the groove wall of the bidirectional spiral groove. A sliding ring is connected to the end face of the limiting post. The inner wall of the sliding ring is slidably connected to the surface of the track rod. A slot is provided on the surface of the sliding ring. The groove wall is rubbed against the surface of the cable. The other end of the cable is wound around the surface of the cable reel.
[0016] Optionally, the fastening assembly includes:
[0017] A sliding frame 1 has its lower end face connected to the upper end face of the base plate. A spring 1 is connected to the lower end face of the inner part of the sliding frame 1. A sliding block 1 is connected to the upper end of the spring 1. The surface of the sliding block 1 is slidably connected to the inner wall of the sliding frame 1. A sliding rod 1 abuts against the upper end face of the sliding block 1. A fastening arc plate is connected to the surface of the sliding rod 1. The inner wall of the fastening arc plate abuts against the surface of the wire reel sleeve.
[0018] Optionally, the storage prompt component includes:
[0019] A limiting rod, the lower end face of which is connected to the upper end face of the base plate, an inclined block is slidably connected to the surface of the limiting rod, a scale block is connected to the side of the inclined block, and a pointing block is connected to the upper end face of the base plate.
[0020] A connecting frame one, the upper end of which is connected to the surface of the sliding rod one, and a buzzer is connected to the lower end of the connecting frame one.
[0021] Optionally, the storage prompt component further includes:
[0022] A connecting rod 1 has its end face connected to the side of the inclined block. A straight toothed rack 1 is connected to the end face of the connecting rod 1 away from the inclined block. A toothed ring 1 is meshed with the tooth surface of the straight toothed rack 1. A rotating shaft 3 is connected to the inner wall of the toothed ring 1. A fixing plate 1 is rotatably connected to the surface of the rotating shaft 3. The lower end face of the fixing plate 1 is connected to the upper end face of the base plate. A handle 3 is connected to the end face of the rotating shaft 3 away from the toothed ring 1.
[0023] Optionally, the storage prompt component further includes:
[0024] The locking teeth are connected to the inner wall of the rotating shaft three. A locking rod is locked onto the surface of the locking teeth. The surface of the locking rod slides through the lower end face of the base plate. A locking ring is connected to the surface of the locking rod. A spring two is connected to the upper end face of the locking ring. The upper end of the spring two is connected to the lower end face of the base plate. A handle two is connected to the lower end face of the locking rod.
[0025] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0026] 1. This utility model uses a snap-fit block to drive the cable reel to rotate, thereby realizing the cable storage work. Furthermore, through the sleeve design of rotating shaft one and rotating shaft two, this cable processing device can quickly replace the cable reel, improving the continuous cable processing capability of this cable processing device.
[0027] 2. This utility model allows the sliding ring to move left and right on the track rod, thereby ensuring that the cable can be evenly distributed on the surface of the cable reel when the cable is being stored, preventing the cable from piling up on one side of the cable reel during storage.
[0028] 3. This utility model causes the spring to deform, further generating elastic force, which pushes the fastening arc plate upward, thereby making the cable on the wire reel tighter and improving the storage and handling effect of the wire reel.
[0029] 4. This utility model improves the controllability of cables during cable storage by producing an alarm when the buzzer moves downward and contacts the inclined block. Attached Figure Description
[0030] Figure 1 This is a front view of the structure of this utility model;
[0031] Figure 2 This is a side view of the structure of this utility model;
[0032] Figure 3 This is an enlarged view of the snap-fit block position structure in the present invention.
[0033] Figure 4 In the structure of this utility model Figure 3 Enlarged view of the structure at point A inside;
[0034] Figure 5 This is an enlarged view of the pointing block position structure in the present invention;
[0035] Figure 6 This is an enlarged view of the bidirectional spiral groove position structure in the present invention.
[0036] Figure 7 This is an enlarged view of the position structure of the limiting post in this utility model;
[0037] Figure 8 In the structure of this utility model Figure 3 Enlarged view of the structure at point B.
[0038] In the diagram: 1. Base plate; 2. Handle 1; 3. Motor; 4. Cable reel; 5. Cable; 6. Sliding ring; 7. Limiting rod; 8. Fixing bracket 2; 9. Rotating column 1; 10. Inclined block; 11. Caster wheel; 12. Rotating shaft 2; 13. Rotating shaft 1; 14. Fixing bracket 1; 15. Cable management tray; 16. Straight toothed rack 1; 17. Toothed ring 1; 18. Track rod 1; 19. Clamping block; 20. Fastening arc plate; 1. Sliding rod one; 22. Buzzer; 23. Connecting bracket one; 24. Connecting rod one; 25. Sliding frame one; 26. Rotating shaft three; 27. Fixing plate one; 28. Handle three; 29. Sliding block one; 30. Spring one; 31. Scale block; 32. Pointing block; 33. Bidirectional spiral groove; 34. Limiting post; 35. Snap-fit tooth; 36. Snap-fit rod; 37. Spring two; 38. Snap-fit ring; 39. Handle two. Detailed Implementation
[0039] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0040] Example 1, please refer to Figures 1 to 8This utility model provides a technical solution: a power communication cable processing device, including a base plate 1, a caster wheel 11 rotatably connected to the lower end face of the base plate 1, a handle 2 connected to the upper end face of the base plate 1, a rotating shaft 13 disposed above the base plate 1, a wire reel sleeve 4 sleeved on the surface of the rotating shaft 13, and a cable 5 disposed on the upper end face of the base plate 1. The power communication cable processing device also includes:
[0041] The storage component is set on the base plate 1 and is used to drive the rotating shaft 13 to rotate, thereby automatically storing the cable.
[0042] Storage components include:
[0043] The lower end face of the fixed frame 14 is connected to the upper end face of the base plate 1. The side of the fixed frame 14 is also connected to the cable tray 15. The upper end face of the fixed frame 14 has a through groove. The groove wall is rotatably connected to the end surface of the rotating shaft 13. The surface of the rotating shaft 13 is also connected to the snap-fit block 19. The end surface of the cable reel 4 has a snap-fit groove. The groove wall of the snap-fit groove is snap-fitted and fixed to the surface of the snap-fit block 19.
[0044] Motor 3, the outer casing of motor 3 is connected to the upper end surface of base plate 1, and the output end of motor 3 is connected to rotating shaft 2 12. The end surface of rotating shaft 2 12 is connected to the end surface of rotating shaft 1 13 by belt drive.
[0045] More specifically, in this embodiment: the cable 5 is connected to the cable reel 4, and then the motor 3 is started to drive the rotating shaft 2 12 to rotate. The rotating shaft 2 12 drives the rotating shaft 13 to rotate. The rotation of the rotating shaft 13 drives the cable reel 4 to rotate through the snap-fit block 19, thereby realizing the storage of the cable 5. Furthermore, through the sleeve design of the rotating shaft 13 and the rotating shaft 2 12, the cable processing device can quickly replace the cable reel 4, improving the continuous processing capability of the cable processing device for the cable 5.
[0046] Example 2, based on the above examples, includes: a swing assembly, which is disposed on the base plate 1 and is used to drive the cable 5 to swing, so that the cable 5 is evenly distributed on the surface of the cable reel 4;
[0047] The swing assembly includes:
[0048] The second fixing frame 8 has its lower end face connected to the upper end face of the base plate 1. The upper end face of the second fixing frame 8 has a slot. The groove wall of the slot is slidably connected to a rotating column 9. The end face of the rotating column 9 is connected to a track rod 18. The surface of the track rod 18 has a bidirectional spiral groove 33. The groove wall of the bidirectional spiral groove 33 is slidably connected to a limiting column 34. The end face of the limiting column 34 is connected to a sliding ring 6. The inner wall of the sliding ring 6 is slidably connected to the surface of the track rod 18. The surface of the sliding ring 6 has a slot. The groove wall of the slot is rubbed against the surface of the cable 5. The other end of the cable 5 is wound around the surface of the cable reel 4.
[0049] More specifically, in this embodiment: during the process of storing cable 5, the friction of the surface of cable 5 drives the sliding ring 6 to rotate. The rotation of the sliding ring 6 further causes the limiting post 34 to slide in the bidirectional spiral groove 33, thereby allowing the sliding ring 6 to move left and right on the track rod 18. This ensures that when storing cable 5, cable 5 can be evenly distributed on the surface of the cable reel 4, preventing cable 5 from accumulating on one side of the cable reel 4 during storage.
[0050] Example 3, based on the above examples, includes: a fastening assembly, which is disposed on the base plate 1 and is used to fasten the cable wound on the surface of the wire reel 4;
[0051] The fastening components include:
[0052] The lower end of the sliding frame 25 is connected to the upper end of the base plate 1. The lower end of the inner side of the sliding frame 25 is connected to a spring 30. The upper end of the spring 30 is connected to a sliding block 29. The surface of the sliding block 29 is slidably connected to the inner wall of the sliding frame 25. The upper end of the sliding block 29 abuts against a sliding rod 21. The surface of the sliding rod 21 is connected to a fastening arc plate 20. The inner wall of the fastening arc plate 20 abuts against the surface of the wire reel sleeve 4.
[0053] More specifically, in this embodiment: when the cable reel 4 stores the cable 5, the diameter of the cable reel 4 gradually increases, thereby pressing the fastening arc plate 20 downward and squeezing the spring 30, causing the spring 30 to deform and generate elastic force, which pushes the fastening arc plate 20 upward, thereby making the cable on the cable reel 4 more compact and improving the storage effect of the cable reel 4.
[0054] Example 4, based on the above examples, includes: a storage prompt component, which is disposed on the base plate 1 and is used to indicate the length of the cable 5 stored in the cable reel 4;
[0055] The organization tips components include:
[0056] The lower end face of the limiting rod 7 is connected to the upper end face of the base plate 1. An inclined block 10 is slidably connected to the surface of the limiting rod 7. A scale block 31 is connected to the side of the inclined block 10. A pointing block 32 is connected to the upper end face of the base plate 1.
[0057] Connecting frame 23, the upper end face of connecting frame 23 is connected to the surface of sliding rod 21, and a buzzer 22 is connected to the lower end of connecting frame 23;
[0058] Connecting rod 24, the end face of connecting rod 24 is connected to the side of inclined block 10, the end face of connecting rod 24 away from inclined block 10 is connected to straight tooth row 16, the tooth surface of straight tooth row 16 is meshed with tooth ring 17, the inner wall of tooth ring 17 is connected to rotating shaft 26, the surface of rotating shaft 26 is rotatably connected to fixing plate 27, the lower end face of fixing plate 27 is connected to the upper end face of base plate 1, and the end face of rotating shaft 26 away from tooth ring 17 is connected to handle 28.
[0059] The surface of the locking tooth 35 and the rotating shaft 26 are connected to the inner wall of the locking tooth 35. The surface of the locking tooth 35 is engaged with the locking rod 36. The surface of the locking rod 36 slides through the lower end face of the base plate 1. The surface of the locking rod 36 is connected to the locking ring 38. The upper end face of the locking ring 38 is connected to the spring 37. The upper end of the spring 37 is connected to the lower end face of the base plate 1. The lower end face of the locking rod 36 is connected to the handle 39.
[0060] More specifically, in this embodiment, the working process or principle of the power communication cable processing device is as follows: During use, firstly, pull down handle 2 39 to disengage the locking rod 36 from the locking teeth 35, simultaneously stretching spring 2 37. Then, rotate handle 3 28 to drive rotating shaft 3 26. Rotating shaft 3 26 drives toothed ring 17 to rotate, which in turn drives straight tooth row 16 to move. This, in turn, drives tilting block 10 to move via connecting rod 24. After tilting block 10 moves to the appropriate position, release handle 2. 39. Then, the locking rod 36 will return to its original position under the action of the spring 37 and re-engage with the locking tooth 35, thereby preventing the tilting block 10 from moving during the winding process. The diameter of the cable reel sleeve 4 gradually increases during winding, thereby pressing down and moving the fastening arc plate 20 downward, driving the connecting bracket 23 downward, and at the same time causing the buzzer 22 to move downward. When the buzzer 22 moves downward and contacts the tilting block 10, it will sound an alarm to remind the staff that the cable winding is complete, thereby improving the controllability of the cable 5 when winding it.
[0061] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A power communication cable processing apparatus comprising a base plate (1), characterized in that: The lower end surface of the bottom plate (1) is rotatably connected with a universal wheel (11), the upper end surface of the bottom plate (1) is connected with a handle (2), the upper side of the bottom plate (1) is provided with a rotating shaft (13), the surface of the rotating shaft (13) is sleeved with a wire winding sleeve (4), the upper end surface of the bottom plate (1) is also provided with a cable (5), the power communication cable processing device further comprises: The storage assembly is arranged on the bottom plate (1) and is used to drive the rotating shaft (13) to rotate, thereby automatically storing the cable; The swing assembly is arranged on the bottom plate (1) and is used to drive the cable (5) to swing, thereby uniformly distributing the cable (5) on the surface of the wire winding sleeve (4); The fastening assembly is arranged on the bottom plate (1) and is used to fasten the cable wound on the surface of the wire winding sleeve (4); The storage prompting assembly is arranged on the bottom plate (1) and is used to prompt the length of the cable (5) stored in the wire winding sleeve (4).
2. A power communications cable processing apparatus according to claim 1, characterised in that: The storage assembly comprises: The lower end surface of the fixed frame (14) is connected with the upper end surface of the bottom plate (1), the side surface of the fixed frame (14) is also connected with a wire spool (15), the upper end surface of the fixed frame (14) is provided with a through groove, the groove wall of the through groove is rotatably connected with the end surface of the rotating shaft (13), the surface of the rotating shaft (13) is also connected with a clamping block (19), the end surface of the wire winding sleeve (4) is provided with a clamping groove, and the groove wall of the clamping groove is clamped and fixed with the surface of the clamping block (19); The housing of the motor (3) is connected with the upper end surface of the bottom plate (1), the output end of the motor (3) is connected with a rotating shaft (12), and the end surface of the rotating shaft (12) is belt driven with the end surface of the rotating shaft (13).
3. A power communications cable processing apparatus as claimed in claim 1, wherein: The swing assembly comprises: The lower end surface of the fixed frame (8) is connected with the upper end surface of the bottom plate (1), the upper end surface of the fixed frame (8) is provided with a slot, the slot wall is slidably connected with a rotating column (9), the end surface of the rotating column (9) is connected with a track rod (18), the surface of the track rod (18) is provided with a double helical groove (33), the groove wall of the double helical groove (33) is slidably connected with a limiting column (34), the end surface of the limiting column (34) is connected with a sliding ring (6), the inner wall of the sliding ring (6) is slidably connected with the surface of the track rod (18), the surface of the sliding ring (6) is provided with a slot, the slot wall of the slot is frictionally connected with the surface of the cable (5), and the other end of the cable (5) is wound on the surface of the wire winding sleeve (4).
4. A power communications cable processing apparatus as defined in claim 1, wherein: The fastening assembly comprises: The sliding frame one (25) is connected with the upper end surface of the bottom plate (1), the inner lower end surface of the sliding frame one (25) is connected with the spring one (30), the upper end of the spring one (30) is connected with the sliding block one (29), the surface of the sliding block one (29) is connected with the inner wall of the sliding frame one (25) in sliding mode, the upper end surface of the sliding block one (29) is connected with the sliding rod one (21), the surface of the sliding rod one (21) is connected with the fastening arc-shaped plate (20), and the inner wall of the fastening arc-shaped plate (20) is connected with the surface of the wire coil sleeve (4).
5. A power communications cable processing apparatus as claimed in claim 4, wherein: The storage prompting assembly comprises: The limiting rod (7) is connected with the upper end surface of the bottom plate (1), the surface of the limiting rod (7) is connected with the inclined block (10) in sliding mode, the side surface of the inclined block (10) is connected with the scale block (31), and the upper end surface of the bottom plate (1) is connected with the pointing block (32). The connecting frame one (23) is connected with the surface of the sliding rod one (21), and the lower end of the connecting frame one (23) is connected with the buzzer (22).
6. A power communications cable processing apparatus as claimed in claim 5, wherein: The storage prompting assembly further comprises: The end surface of the connecting rod one (24) is connected with the side surface of the inclined block (10), the end surface of the connecting rod one (24) away from the inclined block (10) is connected with the straight tooth row one (16), the tooth surface of the straight tooth row one (16) is connected with the tooth ring one (17) in meshing mode, the inner wall of the tooth ring one (17) is connected with the rotating shaft three (26), the surface of the rotating shaft three (26) is connected with the fixed plate one (27) in rotation mode, the lower end surface of the fixed plate one (27) is connected with the upper end surface of the bottom plate (1), and the end surface of the rotating shaft three (26) away from the tooth ring one (17) is connected with the handle three (28).
7. A power communications cable processing apparatus as claimed in claim 6, wherein: The storage prompting assembly further comprises: The surface of the rotating shaft three (26) is connected with the inner wall of the clamping tooth (35), the surface of the clamping tooth (35) is connected with the clamping rod (36), the surface of the clamping rod (36) slides through the lower end surface of the bottom plate (1), the surface of the clamping rod (36) is connected with the clamping ring (38), the upper end surface of the clamping ring (38) is connected with the spring two (37), the upper end of the spring two (37) is connected with the lower end surface of the bottom plate (1), and the lower end surface of the clamping rod (36) is connected with the handle two (39).