Electric wire winding equipment based on municipal engineering
By introducing cleaning components into the wire winding equipment, cleaning rollers and bristles are used to clean up dust and gravel on the surface of the wire, the stain problem during wire winding in municipal projects is solved, and the clean winding and safety of the wires are improved.
Patent Information
- Application Number
- CN202422249502.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-13
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-13
AI Technical Summary
During the winding of the wires in municipal projects, the dust and gravel on the surface of the cable have not been cleaned, resulting in damage to the cable, affecting safety and reuse.
A wire winding device is designed, including a bracket, a reel, and a cleaning assembly. The cleaning assembly includes a guide piece, a sliding plate and a cleaning roller. The cleaning roller is driven to rotate through the driving piece. The cleaning roller is provided with bristles to clean up dust and gravel on the surface of the wire.
During the winding process, the dust and gravel on the surface of the wire is effectively cleaned to ensure that the cable is clean, avoid cable damage, and improve safety and reuse.
Smart Images

Figure CN223060380U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of wire winding devices, in particular to a wire winding device based on municipal engineering. Background Art
[0002] In pipeline engineering in the municipal field, sometimes faults such as wire damage and breakage may occur. At this time, the original old wire needs to be replaced with a new wire. When storing the old wire, it is generally wound up. After winding the cable, it is convenient for storage and saves space. Therefore, at present, wire winding devices are mostly used in municipal construction to wind up the cable.
[0003] However, since municipal cables are arranged in underground cable channels, the surface of the cable may be wet, and a certain amount of dust, grit and other stains may adhere to the surface of the cable during winding. At present, the existing cable winding device winds up the cable directly without cleaning the surface of the cable. When the wound cable is dirty and there are small particles of grit on the surface, the grit squeezes against the surface of the cable when the cable is tightly wound on the winding drum, damaging the surface of the cable and affecting the safety of the cable, thus affecting its reuse. Summary of the Utility Model
[0004] The purpose of the utility model is to solve the above problems and provide a wire winding device based on municipal engineering that can clean the surface of the cable during winding to ensure the cleanliness of the wound cable.
[0005] To achieve the above purpose, the technical solution of the utility model is: a wire winding device based on municipal engineering, including a bracket and a winding drum arranged on the bracket; it further includes a cleaning component, and the cleaning component includes:
[0006] A guiding member, arranged in parallel and at intervals with the winding drum;
[0007] A sliding plate, guiding and slidingly arranged on the guiding member;
[0008] A cleaning roller group, arranged on the sliding plate, including two cleaning rollers arranged at intervals along the guiding direction of the guiding member;
[0009] A driving member, used to drive at least one of the cleaning rollers to rotate around its axis.
[0010] Further, the sliding plate includes two arranged at intervals, and the two cleaning rollers are respectively arranged on the sides of the two sliding plates close to each other.
[0011] Further, it further includes a guiding roller group, and the guiding roller group includes two guiding rollers arranged at intervals in the vertical direction. The two ends of the guiding rollers are respectively rotatably connected to the two sliding plates.
[0012] Further, in the vertical direction, a guide rod is disposed on each of the sliding plates in a guiding manner. A support seat is connected to the end of the guide rod, and both ends of a guide roller are rotatably connected to the two support seats respectively.
[0013] Further, in the vertical direction, mounting holes and support plates are arranged at intervals on the sliding plate. The guide rod is disposed on the support plate in a guiding manner. The support seat is arranged on one side of the guide rod close to the mounting hole. A support spring is arranged between the support seat and the support plate. Another guide roller is rotatably matched with the mounting hole.
[0014] Further, the axis of the guide roller is perpendicular to the axis of the cleaning roller. The driving member is a driving shaft rotatably arranged on the sliding plate. One end of the driving shaft is drivingly connected to the guide roller, and the other end is drivingly connected to the cleaning roller.
[0015] Further, the axis of the cleaning roller is vertically arranged. In the horizontal direction perpendicular to the guide member, the guide roller group includes two groups respectively arranged on both sides of the cleaning roller group.
[0016] Further, the guide member includes two guide rods arranged at intervals in the vertical direction.
[0017] Further, the cleaning roller includes a cylindrical roller body and bristles arranged on the outer peripheral surface of the roller body.
[0018] Further, an avoidance hole for avoiding the bristles is arranged on the sliding plate.
[0019] A wire winding device based on municipal engineering disclosed by the present utility model has the following beneficial effects compared with the prior art: The surface of the wire is cleaned by the cleaning roller, and the cable can be cleaned during the winding process. It includes a bracket and a winding drum arranged on the bracket; it further includes a cleaning assembly, and the cleaning assembly includes: a guide member arranged in parallel and at intervals with the winding drum; a sliding plate guidingly slidingly arranged on the guide member; a cleaning roller group arranged on the sliding plate, including two cleaning rollers arranged at intervals along the guiding direction of the guide member; a driving member for driving at least one of the cleaning rollers to rotate around its axis. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a schematic diagram of the overall structure of the wire winding device based on municipal engineering of the present utility model.
[0021] Figure 2 It is a schematic diagram of the overall structure of the cleaning assembly in the wire winding device based on municipal engineering of the present utility model Figure 1 .
[0022] Figure 3Structural schematic of the cleaning component in the wire winding device based on municipal engineering of the present utility model Figure 2 。
[0023] Figure 4 Structural schematic of the cleaning component in the wire winding device based on municipal engineering of the present utility model Figure 3 。
[0024] Figure 5 Schematic diagram of the connection structure of the guide rod and the support plate in the wire winding device based on municipal engineering of the present utility model.
[0025] In the figure: 1, bracket; 2, wire winding drum; 21, driving motor; 3, cleaning component; 31, guide member; 32, sliding plate; 320, mounting hole; 321, support plate; 322, second support plate; 323, avoidance hole; 324, guide hole; 33, cleaning roller group; 331, cleaning roller; 3310, roller body; 3311, brush bristles; 3312, bevel gear; 34, driving member; 4, guide roller group; 41, guide roller; 411, first gear; 412, second gear; 42, guide rod; 420, limit end plate; 43, support seat; 45, support spring. Detailed implementation manners
[0026] Now, the present utility model will be further described in detail with reference to the accompanying drawings. The drawings are simplified schematic diagrams, which only illustrate the basic structure of the present utility model in a schematic manner, so they only show the components related to the present utility model.
[0027] Please refer to Figures 1-5 , to achieve the above object, the technical solution of the present utility model is: a wire winding device based on municipal engineering, including a bracket 1, and a wire winding drum 2 arranged on the bracket; it further includes a cleaning component 3, and the cleaning component 3 includes:
[0028] A guide member 31, arranged in parallel and spaced apart from the wire winding drum 2;
[0029] A sliding plate 32, guiding and slidingly arranged on the guide member 31;
[0030] A cleaning roller group 33, arranged on the sliding plate 32, including two cleaning rollers 331 arranged at intervals along the guiding direction of the guide member 31;
[0031] A driving member 34, used to drive at least one of the cleaning rollers 331 to rotate around its axis.
[0032] Specifically, refer to Figure 1, the take-up reel 2 is rotatably arranged on the bracket 1. The take-up reel is drivingly connected to a driving motor 21, and the driving motor 21 can drive the take-up reel to wind the electric wire. A cleaning assembly 3 is arranged at the other end of the bracket 1. When winding the electric wire, first pass the end of the electric wire through the cleaning assembly 3, then wind the end around the take-up reel 2, and then start the motor to wind the electric wire. During the winding process, the driving motor 21 drives the cleaning roller 331 to rotate, and the cleaning roller is used to clean the dust, grit and other sundries on the surface of the electric wire, and then wind it onto the take-up reel 2, so that the cable can be cleaned during the winding process. During the winding process, the cable reciprocates back and forth along the axial direction of the take-up reel. At this time, the sliding plate can slide and follow the cable reciprocally, achieving a better cleaning effect. The sliding plate can be manually toggled by the staff or can swing automatically under the action of the tension during the winding of the wire harness.
[0033] Further, as a specific implementation manner, there are two sliding plates 32 arranged at intervals, and the two cleaning rollers 331 are respectively arranged on the surfaces of the two sliding plates 32 close to each other.
[0034] Specifically, referring to Figure 2 , a guiding hole 324 is arranged on the sliding plate, and the guiding hole is in guiding sliding fit with the guiding member. By arranging two sliding plates 32, better guiding property is achieved, enabling the cleaning assembly to slide more smoothly along the guiding member.
[0035] Further, as a specific implementation manner, referring to Figures 2-4 , it further includes a guiding roller group 4. The guiding roller group 4 includes two guiding rollers 41 arranged at intervals in the vertical direction. The two ends of the guiding roller 41 are respectively rotatably connected to the two sliding plates 32.
[0036] Specifically, the guiding roller group includes two guiding rollers arranged at intervals. The guiding roller includes a roller shaft rotatably matched with the sliding plate and a roller surface, and the roller surface is of an arc-shaped structure, so that it can better adapt to the circular cross-section of the wire harness. During work, the cable is inserted between the two guiding rollers 41, and the two guiding rollers are used to clamp the wire harness, thereby guiding and constraining the wire harness. Through the guiding roller group, it can be ensured that the cable can pass between the two cleaning rollers, so as to ensure that the cleaning rollers effectively clean the surface of the cable.
[0037] Further, as a specific implementation manner, referring to Figures 3-5 , along the vertical direction, a guiding rod 42 is guidingly arranged on each sliding plate. The end of the guiding rod is connected with a support seat 43. The two ends of one guiding roller 41 are respectively rotatably connected to the two support seats 43.
[0038] Specifically, a support plate 321 is provided on each sliding plate. The guide rod is vertically and guidingly arranged on the support plate 321, and a support seat 43 is arranged at the end of the guide rod. Both ends of a guide roller are rotatably matched with the two support seats 43. By this setting method, the position of the guide rod 42 can be adjusted according to the cables of different diameters, so that the distance between the two guide rollers can be adjusted, and thus cables of multiple sizes can be adapted, improving the adaptability.
[0039] Further, as a specific implementation manner, refer to Figures 2-5 , in the vertical direction, mounting holes 320 and support plates 321 are arranged at intervals on the sliding plate 32. The guide rod 42 is guidingly arranged on the support plate 321. The support seat 43 is arranged on the side of the guide rod close to the mounting hole 320. A support spring 45 is arranged between the support seat 43 and the support plate 321. The other guide roller 41 is rotatably matched with the mounting hole 320.
[0040] Specifically, as an implementation manner, the mounting hole 320 is arranged above the support plate 321. A limiting end plate 420 is arranged at the lower end of the guide rod 42. The upper end of the guide rod is threadedly connected to the support seat. The support spring 45 is sleeved around the guide rod to support the support seat. By this setting method, the lower guide roller 41 can be supported by the support spring. When guiding the cable, the end of the cable is inserted between the two guide rollers by forcefully resisting the elastic force of the support spring, and then the cable is clamped under the elastic force of the support spring to guide the cable, so that cables of different diameters can be automatically adapted, and the use is more convenient.
[0041] Further, in some implementation manners, the mounting hole 320 is arranged below the support plate 321. The same effect can be achieved in this way. And by this setting method, the lower guide roller 41 is directly rotatably connected to the sliding plate through the mounting hole 320, so that the cable can be better supported. At this time, the support spring only serves the purpose of clamping, and the lower guide roller will not float up and down due to the gravity of the cable, so that the two guide rollers can better clamp the cable and achieve a better guiding effect.
[0042] Further, as a specific implementation manner, refer to Figures 2-4 , the axis of the guide roller is vertically arranged with the axis of the cleaning roller 331. The driving member 34 is a driving shaft rotatably arranged on the sliding plate 32. One end of the driving shaft is drivingly connected to the guide roller, and the other end is drivingly connected to the cleaning roller.
[0043] Specifically, it can be understood that by using the guide rollers to clamp and guide the cable, when the cable is wound, the guide rollers can be driven to rotate under the frictional force between the cable and the guide rollers. In this application, a first gear 411 is provided at the shaft end of the guide roller that rotates in cooperation with the sliding plate through the mounting hole 320. The drive shaft is vertically and rotatably arranged on the sliding plate 32. One end of the drive shaft is drivingly connected to the first gear 411 through two second gears 412, and the other end of the drive shaft is drivingly connected to the cleaning roller 331 through a bevel gear 3312. Thus, the cleaning roller can be driven by the guide roller to achieve the cleaning effect. In this way, there is no need to additionally provide a driving component, and the cleaning roller is driven to work by using the rewinding force of the cable. The structure is simple and the design is ingenious.
[0044] Specifically, second support plates 322 are provided at both ends of the cleaning roller 331 on the sliding plate, and both ends of the cleaning roller are rotatably fitted with the two second support plates.
[0045] Further, as a specific implementation manner, the axis of the cleaning roller 331 is vertically arranged, and along the horizontal direction perpendicular to the guide member 31, the guide roller group 4 includes two groups respectively disposed on both sides of the cleaning roller group 33.
[0046] Specifically, by providing two groups of guide roller groups, a better guiding effect on the cable can be achieved, ensuring that the cable can stably pass through the two cleaning rollers 331 and ensuring the stability of cleaning.
[0047] Further, as a specific implementation manner, the guide member 31 includes two guide rods arranged at intervals in the vertical direction.
[0048] Specifically, as a preferred implementation manner, both cleaning rollers are drivingly connected to the guide roller through the drive shaft, and a better cleaning effect can be achieved by rotating both cleaning rollers.
[0049] Further, as a specific implementation manner, the specific structure of the cleaning roller is: the cleaning roller 331 includes a cylindrical roller body 3310 and bristles 3311 provided on the outer peripheral surface of the roller body 3310.
[0050] Specifically, the bristles 3311 are made of plastic material.
[0051] Further, as a specific implementation manner, an avoidance hole 323 for avoiding the bristles is provided on the sliding plate 32. By providing the avoidance hole 323, it is possible to prevent the cleaning plate from contacting the bristles and damaging the bristles, thereby improving the service life of the bristles.
[0052] Obviously, the above embodiments are merely examples for clear illustration and not limitations on the implementation manners. For those of ordinary skill in the art, other different forms of changes or modifications can be made based on the above description. It is not necessary and impossible to enumerate all implementation manners here. And the obvious changes or modifications derived therefrom still fall within the protection scope of this utility model creation.
Claims
1. A wire winding device based on municipal engineering, comprising a bracket (1) and a winding drum (2) arranged on the bracket; characterized in that, It further includes a cleaning component (3), and the cleaning component (3) includes: a guide member (31) which is arranged in parallel and at an interval with the winding drum (2); a sliding plate (32) which is arranged on the guide member (31) in a guiding and sliding manner; a cleaning roller group (33) which is arranged on the sliding plate (32) and includes two cleaning rollers (331) arranged at intervals along the guiding direction of the guide member (31); a driving member (34) which is used for driving at least one of the cleaning rollers (331) to rotate around its axis.
2. The wire winding device based on municipal engineering according to claim 1, characterized in that, There are two sliding plates (32) arranged at intervals, and the two cleaning rollers (331) are respectively arranged on one side of the two sliding plates (32) close to each other.
3. The wire winding device based on municipal engineering according to claim 1, wherein, It further includes a guide roller group (4), and the guide roller group (4) includes two guide rollers (41) arranged at intervals in the vertical direction, and two ends of each guide roller (41) are respectively rotatably connected to the two sliding plates (32).
4. The wire rewinding device based on municipal engineering according to claim 3, characterized in that, In the vertical direction, a guide rod (42) is arranged on each sliding plate in a guiding manner, and a support seat (43) is connected to the end of the guide rod (42), and two ends of one guide roller (41) are respectively rotatably connected to the two support seats (43).
5. The wire rewinding device based on municipal engineering according to claim 4, characterized in that, In the vertical direction, mounting holes (320) and support plates (321) are arranged at intervals on the sliding plate (32), the guide rod (42) is arranged on the support plate (321) in a guiding manner, the support seat (43) is arranged on one side of the guide rod (42) close to the mounting hole (320), and a support spring (45) is arranged between the support seat (43) and the support plate (321), and the other guide roller (41) is rotatably matched with the mounting hole (320).
6. The wire winding device based on municipal engineering according to claim 5, characterized in that, The axis of the guide roller is arranged perpendicular to the axis of the cleaning roller (331), the driving member (34) is a driving shaft rotatably arranged on the sliding plate (32), one end of the driving shaft is drivingly connected to the guide roller (41), and the other end is drivingly connected to the cleaning roller (331).
7. The wire rewinding device based on municipal engineering according to claim 6, wherein, The axis of the cleaning roller (331) is arranged vertically, and in the horizontal direction perpendicular to the guide member (31), the guide roller group (4) includes two groups respectively arranged on both sides of the cleaning roller group (33).
8. The wire winding device based on municipal engineering according to claim 7, characterized in that, The guide member (31) includes two guide rods arranged at intervals in the vertical direction.
9. A wire rewinding device based on municipal engineering according to claim 8, characterized in that, The cleaning roller (331) includes a cylindrical roller body (3310) and bristles (3311) arranged on the outer peripheral surface of the roller body (3310).
10. The wire rewinding device based on municipal engineering according to claim 9, characterized in that, Avoidance holes (323) for avoiding the bristles are arranged on the sliding plate (32).