A communications engineering cable storage device
By designing a communication engineering cable storage device with a cleaning roller and a magnetic sheath, the problem of cleaning during cable winding is solved, realizing automatic cleaning and protection functions, adapting to the needs of cables of different specifications, reducing the risk of wear and tear, and extending the service life of cables.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WUHAN DONGHU UNIV
- Filing Date
- 2025-07-10
- Publication Date
- 2026-07-31
AI Technical Summary
Existing cable winding devices for communication engineering lack a cleaning mechanism when winding cables, causing dirt particles to adhere to the cable sheath, resulting in wear, scratches, and increased risks of short circuits and leakage. Furthermore, they lack adaptability to different cable specifications.
A cable storage device comprising a cleaning roller, a fixed sheath, and a movable sheath was designed. The storage roller is driven by a motor to rotate for automatic winding, and the cleaning roller removes dirt and dust from the surface of the cable. Combined with the magnetic sheath, it provides enclosed protection and adapts to the cleaning needs of cables of different diameters.
It enables automatic removal of impurities from the cable surface during the winding process, reducing the risk of wear, extending cable life, enhancing protection, adapting to the cleaning needs of cables of different specifications, and improving storage efficiency and convenience.
Smart Images

Figure CN224577791U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of communication engineering, and in particular to a cable storage device for communication engineering. Background Technology
[0002] An existing patent (publication number: CN220264700U) proposes a winding device for communication engineering, including a base and a winding mechanism mounted on the base for winding various specifications of cables. A shaft is mounted between two turntables, and several spools for winding and storing cables of different specifications are mounted on the shaft. With the help of a linkage component and a limiting component, the linkage between the fixing frame and the corresponding spool can be realized by screwing in the first locking screw at the corresponding spool position and unscrewing the second locking screw. However, this device lacks a cleaning mechanism when winding cables, causing the adhering dirt particles to abrade the cable sheath, resulting in scratches and damage to the outer sheath, increasing the risk of short circuits and leakage, which has drawbacks. Summary of the Invention
[0003] This utility model addresses the aforementioned shortcomings of existing technologies by providing a communication engineering cable storage device that offers stable support, protective functions, and simultaneous removal of surface-adhered dirt particles during cable winding, effectively reducing scratches and damage to the outer sheath, lowering the risk of short circuits and leakage, extending the service life of information engineering cables, and possessing strong versatility.
[0004] The objective of this utility model is achieved through the following technical solution: A cable storage device for communication engineering includes a fixed base plate, a storage roller, a fixed protective shell, a movable protective shell, a support plate, a cleaning roller, a fixed upright, and a mounting rod. The cleaning roller has shaft grooves on both sides and is connected to the mounting rod. The mounting rod has a control block on its exterior. One end of a spring strip is connected inside the mounting rod, and the other end of the spring strip is connected to a movable shaft. The movable shaft is adapted to the shaft groove and is connected to the shaft groove. The movable shaft has a lever groove. The mounting rod has a horizontal sliding hole. The lever groove and the horizontal sliding hole are adapted to a lever. The lever passes through the lever groove, and the lower end of the lever is threaded to the lever groove. The fixed upright has a vertical sliding hole, which is adapted to the control block. The control block passes through the vertical sliding hole.
[0005] The fixed upright of this utility model has a knob attached to its upper part. The knob has a control support rod, which passes through the fixed upright and the control block in sequence. The control support rod is connected to the control block by a thread. The control support rod is connected to the inside of the bearing. The fixed upright is connected to the outside of the bearing. The fixed base plate is connected to the lower part of the fixed upright. The push rod is connected to the upper part of the fixed base plate. The self-locking caster is connected to the lower part of the fixed base plate.
[0006] The present invention describes a receiving roller with baffles at both ends. The baffles are attached to a fixed protective shell, and a movable protective shell is attached to the outside of the fixed protective shell. The movable protective shell is connected to an N-pole magnetic sheet, and the fixed protective shell is connected to an S-pole magnetic sheet. The N-pole magnetic sheet and the S-pole magnetic sheet attract each other. The movable protective shell has a limiting block on its outside, which is attached to a support plate. The support plate has a groove, and the limiting block has a sliding rod that is adapted to the groove and connected to the groove.
[0007] The present invention describes a support plate with a fixed protective shell connected to its inner side and a reinforcing frame on its outer side. The reinforcing frame is connected to a fixed base plate by bolts. The support plate is divided into a left support plate and a right support plate. The left support plate has an outer mounting plate, which is connected to a motor. The motor is connected to a drive shaft, which passes through the left support plate and the fixed protective shell in sequence. The drive shaft is connected to a collecting roller, which is connected to a support shaft, which passes through the right support plate and the fixed protective shell in sequence. Beneficial effects
[0008] This utility model allows the cable to pass through the cleaning rollers on both sides. The drive shaft, driven by a motor, rotates the take-up roller, automatically winding it up outside the take-up roller for storage. This is convenient to operate, reduces manual labor intensity, and improves the efficiency of cable storage in communication engineering. The two ends of the take-up roller are connected to the left and right support plates via the drive shaft and support shaft, respectively. The support plates are fixedly connected to the base plate via a reinforcing frame, forming a stable support to ensure that the take-up roller will not shake or deviate during high-speed rotation, ensuring a smooth cable winding process. The push rod cooperates with the self-locking universal wheel to facilitate the movement and positioning of the device, increasing its flexibility and ease of use.
[0009] This utility model's cleaning roller wipes away dirt, dust, and other impurities adhering to the cable surface, preventing wear and tear on the cable sheath during winding and reducing scratches and damage. This lowers the risk of short circuits and leakage caused by cable sheath damage, extending the cable's lifespan. The cleaning roller can be quickly disassembled and replaced by moving the movable shaft via a lever, ensuring effective cleaning. The control rod's ends are connected to the control blocks on both sides via positive and negative threads, allowing the cleaning rollers to move towards or away from each other by rotating a knob. This adapts to the cleaning needs of cables of different diameters, providing versatility while ensuring even cleaning coverage of the cable surface for optimal cleaning results.
[0010] This utility model features a fixed protective shell and a movable protective shell that are attracted by an N-pole magnetic sheet and an S-pole magnetic sheet, enabling rapid opening and closing. By forming a closed protective space outside the cable, it prevents damage to the cable from external collisions and friction, thus enhancing the cable's protection. The movable protective shell slides within a groove on a support plate via a limit block, limiting its rotation range, ensuring stable opening and closing, preventing shell displacement, and guaranteeing the protective effect. This utility model provides stable support and protection, while simultaneously removing surface dirt particles during cable winding, effectively reducing scratches and damage to the outer sheath, lowering the risk of short circuits and leakage, extending the service life of information engineering cables, and featuring a flexible structure that can adapt to the cleaning needs of cables of different specifications, making it highly versatile. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of the structure of a communication engineering cable storage device according to the present invention.
[0012] Figure 2 This is an exploded view of the cleaning roller and mounting support structure described in this utility model.
[0013] Figure 3 This is an exploded view of the structure of the storage roller, fixed protective shell, movable protective shell, and support plate described in this utility model.
[0014] Figure 4 This is a cross-sectional view of the structure of a communication engineering cable storage device according to the present invention.
[0015] Figure 5 This is a cross-sectional view of the communication engineering cable storage device described in this utility model.
[0016] Figure 6 This is a cross-sectional view of the connection structure between the fixed protective shell and the movable protective shell described in this utility model. Detailed Implementation
[0017] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments: Example 1: A cable storage device for communication engineering includes a fixed base plate 03, a storage roller 04, a fixed protective shell 06, a movable protective shell 07, a support plate 15, a cleaning roller 18, a fixed upright 28, and a mounting rod 32. The cleaning roller 18 has shaft grooves 30 on both sides and is connected to the mounting rod 32. The mounting rod 32 has a control block 20 on its exterior. One end of a spring strip 23 is connected inside the mounting rod 32, and the other end of the spring strip 23 is connected to a movable shaft 27. 27 is adapted to the shaft groove 30. The movable shaft 27 is connected to the shaft groove 30. The movable shaft 27 has a lever groove 25. The mounting support 32 has a horizontal sliding hole 26. The lever groove 25 and the horizontal sliding hole 26 are adapted to the lever 24. The lever 24 passes through the lever groove 25. The lower end of the lever 24 is threaded to the lever groove 25. The fixed upright 28 has a vertical sliding hole 29. The vertical sliding hole 29 is adapted to the control support block 20. The control support block 20 passes through the vertical sliding hole 29. Cleaning roller 18 The cleaning rollers wipe away dirt, dust, and other impurities adhering to the cable surface to prevent wear and tear on the cable sheath during winding, reducing scratches and damage. This lowers the risk of short circuits and leakage caused by cable sheath damage, extending the cable's lifespan. The movable shaft 27 is displaced by moving the lever 24, allowing for quick disassembly and replacement of the cleaning rollers 18, ensuring effective cleaning. The control rod 19 is connected to the control blocks 20 on both sides via positive and negative threads, allowing the cleaning rollers 18 to move towards or away from each other by rotating the knob 21. This adapts to the cleaning needs of cables with different diameters, providing versatility while ensuring even cleaning coverage of the cable surface for optimal cleaning results.
[0018] Example 2: The fixed upright 28 of this utility model has a knob 21 attached to its upper part. The knob 21 has a control support rod 19, which passes through the fixed upright 28 and the control block 20 in sequence. The control support rod 19 is connected to the control block 20 by a thread. The control support rod 19 is connected to the inside of the bearing 22, and the fixed upright 28 is connected to the outside of the bearing 22. The fixed upright 28 is connected to the lower part of the fixed base plate 03. The upper part of the fixed base plate 03 is connected to the push rod 01, and the lower part of the fixed base plate 03 is connected to the self-locking universal wheel 02. The cable passes through the cleaning rollers 18 on both sides and is driven by the motor 12 to drive the drive shaft 11 to rotate the storage roller 04. The cable is automatically wound up and stored outside the storage roller 04. The operation is convenient, reduces the intensity of manual work, and improves the storage efficiency of communication engineering cables. The two ends of the storage roller 04 are connected to the left support plate 151 and the right support plate 152 through the drive shaft 11 and the support shaft 10, respectively. The support plate 15 is connected by the reinforcement frame 14. It is fixedly connected to the fixed base plate 03 to form a stable support, ensuring that the take-up roller 04 will not shake or deviate during high-speed rotation, ensuring that the cable winding process is smooth. The push rod 01 cooperates with the self-locking universal wheel 02 to facilitate the movement and positioning of the device, increasing the flexibility and ease of use of the device.
[0019] Example 3: The present invention describes a receiving roller 04 with baffles 05 at both ends. The baffles 05 are fitted to a fixed protective shell 06. A movable protective shell 07 is fitted to the outside of the fixed protective shell 06. The movable protective shell 07 is connected to an N-pole magnetic sheet 08, and the fixed protective shell 06 is connected to an S-pole magnetic sheet 09. The N-pole magnetic sheet 08 and the S-pole magnetic sheet 09 are attracted to each other. The movable protective shell 07 has a limiting block 31 on its outside, which is fitted to a support plate 15. The support plate 15 has a groove 17, and the limiting block 31 has a sliding rod 16 that is adapted to the groove 17. The slide bar 16 connects to the slide groove 17. The fixed protective shell 06 and the movable protective shell 07 are attracted by the N-pole magnetic plate 08 and the S-pole magnetic plate 09 to achieve rapid opening and closing. By forming a closed protective space outside the cable, the cable is protected from damage caused by external collisions and friction. The movable protective shell 07 slides in the slide groove 17 of the support plate 15 through the slide bar 16 of the limiting block 31, which limits the rotation range of the movable protective shell 07, ensures stable opening and closing, prevents the protective shell from shifting, and ensures the protective effect. Example 4: The support plate 15 of this utility model is connected to a fixed protective shell 06 on its inner side, and has a reinforcing frame 14 on its outer side. The reinforcing frame 14 is connected to a fixed base plate 03 by bolts. The support plate 15 is divided into a left support plate 151 and a right support plate 152. The left support plate 151 has a mounting plate 13 on its outer side. The mounting plate 13 is connected to a motor 12. The motor 12 is connected to a drive shaft 11. The drive shaft 11 passes through the left support plate 151 and the fixed protective shell 06 in sequence. The drive shaft 11 is connected to a take-up roller 04. The take-up roller 04 is connected to a support shaft 10. The support shaft 10 passes through the right support plate 152 and the fixed protective shell 06 in sequence. This device provides stable support and protection. At the same time, it can remove dirt particles attached to the surface when winding the cable, effectively reducing scratches and damage to the outer sheath, reducing the risk of short circuits and leakage, and extending the service life of information engineering cables. Moreover, the structure is flexible and can be adapted to the cleaning needs of cables of different specifications, making it highly versatile.
[0020] Example 5: Installation steps: First, assemble the drive structure of the collecting roller 04. Place the movable protective shell 07 outside the fixed protective shell 06, with the inner surface of the movable protective shell 07 fitting against the outer surface of the fixed protective shell 06. Then, place the support plate 15 outside the fixed protective shell 06 and fix it to it, with the inner surface of the support plate 15 fitting against the outer surfaces of the movable protective shell 07 and the limiting block 31. The slide rod 16 is embedded in the slide groove 17. Then, place the support plate 15 on the upper part of the fixed base plate 03, and use bolts to connect the reinforcing frame 14 to the fixed base plate 06. After the three sections are fixedly connected, the collecting roller 04 is placed inside the fixed housing 06, with the outer surface of the baffle 05 fitting against the inner surface of the fixed housing 06. Then, the support shaft 10 passes through the right support plate 152 and the fixed housing 06 in sequence, with its inner end fixedly connected to the collecting roller 04. The drive shaft 11 passes through the left support plate 151 and the fixed housing 06 in sequence, and is fixedly connected to the collecting roller 04. Finally, the motor 12 is installed and fixed on the upper part of the mounting plate 13, and is driven by the drive shaft 11, completing the collecting roller 04 connection. After assembling the drive structure, the support structure for the cleaning roller 18 is then assembled. First, the spring strip 23 and the movable shaft 27 are placed into the mounting support 32 in sequence, with the lever groove 25 corresponding to the horizontal sliding hole 26. Then, the lever 24 is passed through the horizontal sliding hole 26 until its lower end is embedded in the lever groove 25, and then fixedly connected to the movable shaft 27 by threads. Next, the control support block 20 is passed through the vertical sliding hole 29 and placed into the fixed upright 28. Then, the control support rod 19 is embedded into the bearing 22 until the lower surface of the knob 21 is flush with the fixed bearing 22. The upper surfaces of the uprights 28 are fitted together, and the control rods 19 pass through the fixed uprights 28 and the control blocks 20 in sequence. The two ends of the control rods 19 are respectively positioned and connected to the control blocks 20 on both sides through positive and negative threads. Then, the fixed uprights 28 are installed and fixed on both sides of the fixed base plate 03. The push rod 01 is welded and fixed to the upper part of the fixed base plate 03. The self-locking caster wheel 02 is installed and fixed to the lower part of the fixed base plate 03. Finally, the cleaning roller 18 is placed inside the mounting rod 32, and the movable shaft 27 is embedded in the shaft groove 30 to complete the installation.
[0021] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A communications engineering cable storage device, characterized by The system includes a fixed base plate (03), a collection roller (04), a fixed protective shell (06), a movable protective shell (07), a support plate (15), a cleaning roller (18), a fixed upright (28), and a mounting rod (32). The cleaning roller (18) has shaft grooves (30) on both sides. The cleaning roller (18) is connected to the mounting rod (32). The mounting rod (32) has a control block (20) on its outside. One end of a spring strip (23) is connected inside the mounting rod (32), and the other end of the spring strip (23) is connected to a movable shaft (27). The movable shaft (27) is connected to the shaft. The rod groove (30) is adapted to the movable shaft (27) connected to the shaft groove (30). The movable shaft (27) has a lever groove (25). The mounting support rod (32) has a horizontal sliding hole (26). The lever groove (25) and the horizontal sliding hole (26) are adapted to the lever (24). The lever (24) passes through the lever groove (25). The lower end of the lever (24) is connected to the lever groove (25) by a thread. The fixed upright rod (28) has a vertical sliding hole (29). The vertical sliding hole (29) is adapted to the control block (20). The control block (20) passes through the vertical sliding hole (29).
2. A communications engineering cable storage device according to claim 1, wherein The upper part of the fixed upright (28) is attached to the knob (21). The knob (21) has a control support rod (19). The control support rod (19) passes through the fixed upright (28) and the control block (20) in sequence. The control support rod (19) is connected to the control block (20) by a thread. The control support rod (19) is connected to the inside of the bearing (22). The outside of the bearing (22) is connected to the fixed upright (28). The lower part of the fixed upright (28) is connected to the fixed base plate (03). The upper part of the fixed base plate (03) is connected to the push rod (01). The lower part of the fixed base plate (03) is connected to the self-locking universal wheel (02).
3. A communications engineering cable storage device according to claim 2, wherein The receiving roller (04) has baffles (05) at both ends. The baffles (05) are attached to the fixed protective shell (06). The fixed protective shell (06) is attached to the outside of the movable protective shell (07). The movable protective shell (07) is connected to the N pole magnetic sheet (08). The fixed protective shell (06) is connected to the S pole magnetic sheet (09). The N pole magnetic sheet (08) and the S pole magnetic sheet (09) are attracted to each other. The movable protective shell (07) has a limiting block (31) on the outside. The limiting block (31) is attached to the support plate (15). The support plate (15) has a groove (17). The limiting block (31) has a sliding rod (16). The sliding rod (16) is adapted to the groove (17). The sliding rod (16) is connected to the groove (17).
4. The communications engineering cable storage device of claim 1, wherein The inner side of the support plate (15) is connected to the fixed shell (06), and the outer side of the support plate (15) has a reinforcing frame (14). The reinforcing frame (14) is connected to the fixed base plate (03) by bolts. The support plate (15) is divided into a left support plate (151) and a right support plate (152). The outer side of the left support plate (151) has an mounting plate (13). The mounting plate (13) is connected to a motor (12). The motor (12) is connected to a drive shaft (11). The drive shaft (11) passes through the left support plate (151) and the fixed shell (06) in sequence. The drive shaft (11) is connected to a collecting roller (04). The collecting roller (04) is connected to a support shaft (10). The support shaft (10) passes through the right support plate (152) and the fixed shell (06) in sequence.