Cable winding device with cleaning function
Through the cable winding device with integrated guidance, cleaning and winding functions, the problem of cables that need to be cleaned separately before winding in the prior art is solved, and the integration of automated cleaning and winding is achieved, which improves production efficiency and reduces labor costs.
Patent Information
- Application Number
- CN202510792691.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-13
- Publication Date
- 2025-07-11
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing cable winding device needs to be cleaned separately before winding, which increases operating steps and labor costs, and the cleaning effect is not ideal.
Design a cable winding device with cleaning function, integrating guidance, cleaning and winding functions, and realizes automatic cleaning and winding integration of cables through the coordinated work of guide parts, cleaning parts and winding parts.
It realizes the integration of automated cleaning and winding of cables, improves production efficiency, reduces labor costs, and maintains a clean working environment.
Smart Images

Figure CN120288579A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a cable winding device with a cleaning function, belonging to the technical field of cable winding equipment. Background Art
[0002] During the production and use of cable lines, dust, oil stains or other impurities often adhere to them. These pollutants not only affect the appearance and quality of the cable lines, but may also have an adverse impact on their electrical performance and service life. Therefore, before winding the cable lines, cleaning treatment is usually required. After retrieval, it is found that a Chinese patent with the publication number CN117842772B discloses a winding device for special cable production. In this patent, one end of the cable is inserted into the jack of the winding disc, and the motor is started to drive the horizontal rotating shaft to drive the winding disc to rotate; when the cable passes through the opening adjusting mechanism, the bottom support and the side support automatically adjust the opening size according to the cable diameter to ensure the smooth passage of the cable; the horizontal guiding mechanism slides horizontally driven by the driving lead screw, and the floating distance adjusting mechanism adjusts the position of the opening adjusting mechanism in the radial direction of the winding disc according to the thickness of the cable winding, and the periodic adjusting mechanism adjusts the movement direction of the horizontal guiding mechanism through the cooperation of the movable disc, the dial post and the internal tooth part, so that the cable is evenly distributed and laminated on the winding disc. However, this patent requires separate cleaning of the cable line before winding, which increases the operation steps and time, reduces the production efficiency, and the general cleaning process relies on manual operation, which not only increases the labor cost, but also easily leads to unsatisfactory cleaning effect due to improper operation. Summary of the Invention
[0003] The technical problem to be solved by the present invention is to overcome the defects of the prior art and provide a cable winding device with a cleaning function, which can realize the integration of automatic cleaning and winding of the cable line, thereby improving the production efficiency and reducing the labor cost.
[0004] To solve the above technical problem, the technical solution of the present invention is: a cable winding device with a cleaning function, including: A frame, on which a first working platform is provided, and a working chamber is arranged inside the frame; A guiding component, which includes a guiding platform, on which a guiding hole is provided, and the guiding platform is slidably matched on the first working platform; A cleaning component, which includes a cleaning base, a cleaning supporting roller and two cleaning brushes. The cleaning supporting roller is installed on the cleaning base, the two cleaning brushes are slidably installed on the cleaning supporting roller, the two cleaning brushes are arranged oppositely and elastic bristles are provided on the surfaces, and a cleaning channel is arranged between the two cleaning brushes; A second working platform suitable for installing a winding component is further arranged on the first working platform; The winding component includes a winding assembly and at least one clamping and moving component. The winding assembly includes a lower winding base and an upper winding shaft. The lower winding base is rotatably installed on the second working platform, and the upper winding shaft is adapted to move downward and connect with the lower winding base to form a winding rack. The clamping and moving component includes a clamping table and two movable jaws. The clamping table is slidably fitted on the second working platform, and the movable jaws are installed on the clamping table. The cable is adapted to be conveyed into the device through an external conveying device, sequentially pass through the guiding hole and the cleaning channel, and then be wound around the winding rack to form a cable coil. After winding is completed, the upper winding shaft is adapted to move upward to separate from the cable coil, and the two movable jaws are adapted to clamp the cable coil and drive it to move to the other end of the second working platform for the staff to take.
[0005] Further, in order to facilitate the replacement of the guiding table and prevent deviation caused by vibration during the winding process, the guiding component further includes a guiding bracket and a guiding base. The guiding bracket is installed on the guiding base, the guiding base is slidably fitted on the first working platform, a guiding groove is provided on the guiding bracket, and the guiding table is installed in the guiding groove. First fixing holes are provided on both sides of the guiding bracket. Second fixing holes are provided on the two sides of the guiding table opposite to the fixing holes after the guiding table is installed in place. Two fasteners are further provided on the guiding bracket. The fasteners sequentially pass through the first fixing holes and the second fixing holes to fixedly connect the guiding bracket and the guiding table.
[0006] Further, in order to adapt to cables with different wire diameters, a hole diameter adjusting member is provided in the guiding hole. The hole diameter adjusting member is installed on the guiding table through at least one screw-nut pair. The screw-nut pair includes a screw installed on the guiding table and a nut installed on the hole diameter adjusting member. Rotating the screw is adapted to drive the hole diameter adjusting member to move up and down in the guiding hole to adjust the size of the guiding hole.
[0007] Further, in order to adapt to the cable size and maintain the cleanliness of the working environment, the cleaning component further includes two cleaning cylinders. The two cleaning cylinders are installed on both sides of the cleaning base, and the movable ends of the two cleaning cylinders are respectively connected to the cleaning brush. The cleaning cylinders are adapted to drive the cleaning brush to slide on the cleaning support roller to adjust the size of the cleaning channel. A splash guard is further provided above the cleaning base. The splash guard is adapted to block the sewage splashed when the cleaning brush cleans the cable.
[0008] Furthermore, in order to improve the winding quality, a cable winding device with a cleaning function also includes a transition roller mechanism, which is arranged between the guide component and the cleaning component, and the transition roller mechanism includes a telescopic bracket, a transition roller cylinder and a transition roller, the telescopic bracket is installed on the first working platform, the transition roller cylinder is installed on the telescopic bracket, the transition roller is connected to the movable end of the transition roller cylinder, the cable is suitable for passing through the guide hole, winding around the transition roller for one circle, and then passing through the transition roller and entering the cleaning channel for cleaning treatment, and the transition roller cylinder is suitable for driving the transition roller to move to adjust the stacking of the winding circles.
[0009] Further, the winding assembly further comprises an upper winding bracket and an upper winding cylinder, wherein the upper winding bracket is mounted on the cleaning base, the upper winding cylinder is mounted on the upper winding bracket via a first bracket, and the movable end of the upper winding cylinder is connected to the upper winding shaft via a bearing seat; An auxiliary cylinder is provided on the upper winding bracket, and the movable end of the upper winding cylinder moves in the auxiliary cylinder.
[0010] Further, a circular through slot adapted to the lower winding base is provided on the second working platform, the lower winding base is rotatably arranged in the circular through slot, a connecting slot is provided on the lower winding base, and a connecting piece is provided on the upper winding shaft; The winding assembly also includes a lower connecting shaft, a driving wheel, a driven wheel, a synchronous belt and a lower winding motor, one end of the lower connecting shaft is installed at the bottom of the working bin through a second bearing seat, the other end of the lower connecting shaft is connected to the lower winding base, the driven wheel is installed on the lower connecting shaft, the lower winding motor is installed in the working bin, the driving wheel is connected to the active end of the lower winding motor, the synchronous belt is suitable for connecting the driving wheel and the driven wheel, and the lower winding motor is suitable for driving the lower winding base and the upper winding shaft connected thereto to rotate synchronously to wind up the cable.
[0011] Further, in order to ensure the reliability of clamping, the movable clamping jaw is composed of a connecting portion and a clamping portion, the connecting portion is a tooth-shaped structure, the connecting portion is installed on the clamping platform, and the connecting portions of the two movable clamping jaws are meshed; The clamping moving assembly also includes a clamping jaw motor, which is installed on the clamping table through a second bracket, wherein a connecting shaft is provided on the connecting portion of one of the movable clamping jaws, and the movable end of the clamping jaw motor is hinged to the connecting shaft, and the clamping jaw motor is suitable for driving one of the movable clamping jaws to rotate clockwise to drive the other movable clamping jaw to rotate counterclockwise, thereby realizing the closing action of the movable clamping jaw to clamp the cable coil; The clamping portion is an arc-shaped structure, and a side of the clamping portion facing the cable coil is provided with anti-slip patterns.
[0012] Further, to ensure the stability of the movement of the cable coil, the clamping table is slidably fitted on the second working platform through at least one guide rail slider mechanism; wherein, The guide rail slider mechanism includes: A guide rail installed on the second working platform; A slider installed at the bottom of the clamping table; The clamping and moving assembly further includes a moving mechanism, the moving mechanism includes a slide rail bracket installed on the first working platform, a slide rail installed on the slide rail bracket, and a moving block installed on the slide rail, and the moving block is connected to the clamping table; The moving mechanism includes a moving cylinder, the moving cylinder is installed on the first working platform, and the movable end of the cylinder is connected to the moving block.
[0013] Further, to improve work efficiency and facilitate the collection of cable coils, a taking groove is provided at the other end of the second working platform. When the cable coil is driven by the clamping and moving assembly to the taking groove, the central hole of the cable coil is directly above the taking groove, so that an external device can take the cable coil; Positioning baffles are further provided on both sides of the taking groove, and the positioning baffles are adapted to block the cable coil.
[0014] After adopting the above technical solutions, the present invention has the following beneficial effects: 1. In the present invention, when the device is started, the upper winding cylinder drives the upper winding shaft to move downward, and is clamped with the lower winding base to form a closed winding frame; The cable on the external conveying device is drawn into the guiding hole. By screwing the screw nut pair to adjust the aperture adjusting member in the guiding hole, the size of the guiding hole is matched with the wire diameter of the cable. Subsequently, after the cable is drawn through the guiding hole and wound around the transition roller once, the cleaning cylinder is started to drive the two cleaning brushes to slide towards each other on the cleaning support roller, and the width of the cleaning channel is adjusted to adapt to the size of the cable. When the cable passes through the cleaning channel, the surface dirt on the passing cable is brushed off by the elastic brush hairs on the cleaning brushes. The cleaned cable is drawn to the winding frame, and the lower winding base is driven to rotate by the lower winding motor to evenly wind the cleaned cable into a cable coil. During the winding process, the transition roller cylinder drives the transition roller to move plus the adjustment of the cleaning channel to complete the stacking of the layers of the cable coil during the winding process, making the winding more neat. After the winding is completed, the upper winding shaft automatically lifts and disengages from the cable coil, and only the lower winding base supports the cable coil; At this time, the clamping and moving assembly is located on the left and right sides of the cable coil. The jaw motor starts, driving the two meshing movable jaws to close synchronously. The arc-shaped clamping part fits against the outer edge of the coil to clamp the cable coil. The moving cylinder drives the clamping table to slide along the guide rail, translating the cable coil above the pickup slot on the second working platform. The positioning baffle restricts the offset of the coil, aligning its central hole with the pickup slot, facilitating the insertion of a forklift or hoisting equipment into the central hole to remove the cable coil; The clamping table returns to its original position, the movable jaws open and reset, and the upper take-up reel moves down again to prepare for the next winding, realizing the integrated operation of automatic winding and cleaning.
[0015] 2. In the present invention, a splash guard is also provided above the cleaning brush to block the splashing sewage and keep the working environment clean. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a three-dimensional Figure 1 ; Figure 2 is a three-dimensional Figure 2 ; Figure 3 is a front view of a cable wire winding device with a cleaning function according to the present invention; Figure 4 is a top view of a cable wire winding device with a cleaning function according to the present invention; Figure 5 is a schematic structural diagram of the clamping and moving assembly of the present invention; Figure 6 is a schematic structural diagram of the cleaning component of the present invention; Figure 7 is a schematic connection diagram of the aperture adjusting member and the guide table of the present invention. DETAILED DESCRIPTION OF THE INVENTION
[0017] In order to make the content of the present invention easier to be clearly understood, the present invention will be further described in detail below according to specific embodiments in conjunction with the accompanying drawings.
[0018] As Figures 1-7 shown, a cable wire winding device with a cleaning function includes: A frame 1, on which a first working platform 11 is provided, and a working chamber 12 is provided inside the frame 1; A guiding component, the guiding component includes a guide table 21, on which a guiding hole 211 is provided, and the guide table 21 is slidably fitted on the first working platform 11; Cleaning component, the cleaning component includes a cleaning base 31, a cleaning support roller 32 and two cleaning brushes 33. The cleaning support roller 32 is installed on the cleaning base 31, and the two cleaning brushes 33 are slidably installed on the cleaning support roller 32. The two cleaning brushes 33 are arranged oppositely and their surfaces are provided with elastic bristles. A cleaning channel 35 is provided between the two cleaning brushes 33; A second working platform 111 suitable for installing a winding component is further provided on the first working platform 11. The second working platform is installed on the first working platform 11 through six support feet; The winding component includes a winding assembly and two clamping and moving components. The winding assembly includes a lower winding base 41 and an upper winding shaft 42. The lower winding base 41 is rotatably installed on the second working platform 111, and the upper winding shaft 42 is suitable for moving downward and connecting with the lower winding base 41 to form a winding frame; The clamping and moving component includes a clamping table 43 and two movable jaws 44. The clamping table 43 is slidably fitted on the second working platform 111, and the movable jaws 44 are installed on the clamping table 43; The cable is suitable for being conveyed into the device through an external conveying device, passing through the guiding hole 211 and the cleaning channel 35 in sequence and then winding around the winding frame to form a cable coil. After winding is completed, the upper winding shaft 42 is suitable for moving upward to separate from the cable coil, and the two movable jaws 44 are suitable for clamping the cable coil and driving it to move to the other end of the second working platform 111 for the staff to take.
[0019] In this embodiment, the elastic bristles are installed on the cleaning brush 33 by pasting. Before the device is used, a cleaning liquid is sprayed on the elastic bristles. When the elastic bristles cannot continue to clean after being used multiple times, the elastic bristles can be manually torn off for cleaning or replacement and then installed on the cleaning brush 33 for use.
[0020] Specifically, as Figures 1-4 shown, the guiding component further includes a guiding bracket 22 and a guiding base 23. The guiding bracket 22 is installed on the guiding base 23. The guiding base 23 is slidably fitted on the first working platform 11. A guiding groove 221 is provided on the guiding bracket 22, and the guiding table 21 is installed in the guiding groove 221; Two first fixing holes 222 are provided on both sides of the guiding bracket 22. After the guiding table 21 is installed in place, two second fixing holes are provided on the two sides opposite to the fixing holes. Two fastening members are further provided on the guiding bracket 22. The fastening members sequentially pass through the first fixing holes 222 and the second fixing holes to fixedly connect the guiding bracket 22 and the guiding table 21.
[0021] In this embodiment, the fastening member can be a fastening bolt. The guiding table 21 is installed in the guiding groove 221 to replace the guiding table 21 according to the cable with different wire diameters. During the production process, the operator will select the guiding table 21 with different diameters of guiding holes 211 according to the cable to be wound.
[0022] Specifically, as Figure 7 shown, a hole diameter adjusting member 24 is provided in the guiding hole 211. The hole diameter adjusting member 24 is mounted on the guiding platform 21 through at least one lead screw nut pair. The lead screw nut pair includes a lead screw 241 mounted on the guiding platform 21 and a nut 242 mounted on the hole diameter adjusting member 24. Rotating the lead screw 241 is adapted to drive the hole diameter adjusting member 24 to move up and down in the guiding hole 211 to adjust the size of the guiding hole 211.
[0023] In this embodiment, by adjusting the position of the hole diameter adjusting member 24, the size of the existing guiding hole 211 is changed. When the wire diameter of the cable to be wound exceeds the maximum diameter that the current guiding hole 211 can adjust, the guiding platform 21 needs to be replaced.
[0024] Specifically, as Figures 1-4 shown, the cleaning component further includes two cleaning cylinders 34. The two cleaning cylinders 34 are mounted on both sides of the cleaning base 31. The movable ends of the two cleaning cylinders 34 are respectively connected to the cleaning brush 33. The cleaning cylinder 34 is adapted to drive the cleaning brush 33 to slide on the cleaning support roller 32 to adjust the size of the cleaning channel 35; A splash guard 36 is further provided above the cleaning base 31. The splash guard 36 is adapted to block the sewage splashed when the cleaning brush 33 cleans the cable.
[0025] In this embodiment, a coating is provided on the inner side of the splash guard 36 facing the cleaning brush. When the cable passes through the cleaning channel 35, due to the elastic force of the elastic bristles and the cleaning liquid, the pollutants on the cable will be wrapped and bounced off and splashed onto the inner side of the splash guard 36. However, due to the function of the coating provided on the inner side of the splash guard 36, the sewage splashed onto the cover body will quickly slide down along the cover wall to the bottom. A diversion groove is also provided on the first working platform 11, and the sewage will flow into the sewage tank through the diversion groove.
[0026] Specifically, as Figures 1-3 shown, a cable winding device with a cleaning function further includes a transition roller mechanism. The transition roller mechanism is arranged between the guiding component and the cleaning component. The transition roller mechanism includes a telescopic bracket 51, a transition roller cylinder 52 and a transition roller 53. The telescopic bracket 51 is mounted on the first working platform 11. The transition roller cylinder 52 is mounted on the telescopic bracket 51. The transition roller 53 is connected to the movable end of the transition roller cylinder 52. The cable is adapted to pass through the guiding hole 211, wind around the transition roller 53 for one circle, then pass through the transition roller 53 and enter the cleaning channel 35 for cleaning treatment. The transition roller cylinder 52 is adapted to drive the transition roller 53 to move to adjust the stacking of the winding turns.
[0027] In this embodiment, when winding the cable, the transition roller cylinder 52 drives the transition roller 53 to axially move along its central axis, and the telescopic bracket 51 drives the transition roller 53 to move up and down along the height direction of the telescopic bracket 51. That is, when the cable is wound one circle on the winding frame, the telescopic bracket 51 drives the transition roller 53 to move up, so that the cable forms a spiral progressive wire arrangement. When a layer of cable coils is formed, the transition roller 53 axially moves a certain distance so that the cable can be better laminated during winding. Specifically, as Figures 1-4 shown, the winding assembly further includes an upper winding bracket 45 and an upper winding cylinder 46. The upper winding bracket 45 is installed on the cleaning base 31, and the upper winding cylinder 46 is installed on the upper winding bracket 45 through a first bracket 461. The movable end of the upper winding cylinder 46 is connected to the upper winding shaft 42 through a first bearing seat 47. An auxiliary cylinder 451 is provided on the upper winding bracket 45, and the movable end of the upper winding cylinder 46 moves in the auxiliary cylinder 451.
[0028] Specifically, as Figures 1-4 shown, a circular through groove 112 adapted to the lower winding base 41 is provided on the second working platform 111. The lower winding base 41 is rotatably arranged in the circular through groove 112. A connecting groove is provided on the lower winding base 41, and a connecting member 421 is provided on the upper winding shaft 42. The winding assembly further includes a lower connecting shaft 481, a driving wheel 482, a driven wheel 483, a synchronous belt 484 and a lower winding motor 485. One end of the lower connecting shaft 481 is installed at the bottom of the working bin 12 through a second bearing seat 486, and the other end of the lower connecting shaft 481 is connected to the lower winding base 41. The driven wheel 483 is installed on the lower connecting shaft 481. The lower winding motor 485 is installed in the working bin 12. The driving wheel 482 is connected to the movable end of the lower winding motor 485. The synchronous belt 484 is adapted to connect the driving wheel 482 and the driven wheel 483. The lower winding motor 485 is adapted to drive the lower winding base 41 and the upper winding shaft 42 connected thereto to rotate synchronously to wind the cable.
[0029] In this embodiment, the upper winding shaft 42 is an air shaft, which can radially expand in the inflated state and shrink after pressure relief when the winding is completed, so that its shaft diameter is reduced to form a clearance fit with the cable coil in the non-inflated state, facilitating the overall removal of the wound cable coil. The air shaft is a prior art, and the implementation principle thereof will not be elaborated in this embodiment.
[0030] Specifically, as Figure 5 shown, the movable clamping jaw 44 is composed of a connecting portion 441 and a clamping portion 442. The connecting portion 441 is a toothed structure. The connecting portion 441 is installed on the clamping table 43, and the connecting portions 441 of the two movable clamping jaws 44 are meshed with each other. The clamping and moving assembly further includes a jaw motor 49, which is installed on the clamping table 43 through a second bracket 491. A connecting shaft 443 is provided on the connecting portion 441 of one of the movable jaws 44. The movable end of the jaw motor 49 is hinged to the connecting shaft 443. The jaw motor 49 is adapted to drive one of the movable jaws 44 to rotate clockwise to drive the other movable jaw 44 to rotate counterclockwise, so as to realize the closing action of the movable jaws 44 to clamp the cable coil. The clamping portion 442 is an arc-shaped structure, and anti-slip lines are provided on the side of the clamping portion 442 facing the cable coil.
[0031] Specifically, as Figure 5 shown, the clamping table 43 is slidably matched on the second working platform 111 through at least one guide rail slider mechanism; among them, The guide rail slider mechanism includes: A guide rail 61 installed on the second working platform 111; A slider 62 installed at the bottom of the clamping table 43; The clamping and moving assembly further includes a moving mechanism. The moving mechanism includes a slide rail bracket 63 installed on the first working platform 11, a slide rail 64 installed on the slide rail bracket 63, and a moving block 65 installed on the slide rail 64. The moving block 65 is connected to the clamping table 43; The moving mechanism includes a moving cylinder 66. The moving cylinder 66 is installed on the first working platform 11, and the movable end of the moving cylinder 66 is connected to the moving block 65.
[0032] Specifically, as Figures 1-5 shown, a taking groove 113 is provided at the other end of the second working platform 111. When the cable coil is driven by the clamping and moving assembly to the taking groove 113, the central hole of the cable coil is directly above the taking groove 113, so that an external device can take the cable coil; Positioning baffles 114 are further provided on both sides of the taking groove 113, and the positioning baffles 114 are adapted to block the cable coil.
[0033] In this embodiment, the jaw motor 49 pushes forward to cause one of the movable jaws 44 connected thereto to generate a clockwise rotational movement. Since the tooth-shaped connecting portions 441 of the two movable jaws 44 are meshed and driven, the rotation of one of the movable jaws 44 drives the other movable jaw 44 to rotate counterclockwise, realizing the co-directional rotation and approaching of the two arc-shaped clamping portions 442, providing sufficient clamping force to prevent the coil from slipping, and avoiding coil deformation caused by excessive extrusion; After the clamping action is completed, the moving cylinder 66 drives the clamping table 43 to move along the slide rail 64, smoothly transferring the cable coil above the taking groove 113. Subsequently, the jaw motor 49 retracts in the reverse direction to reset and open the two movable jaws 44. After releasing the cable coil, it returns to the winding rack through the slide rail 64.
[0034] In this embodiment, when the device is started, the upper winding cylinder 46 drives the upper winding shaft 42 to move downward, and is clamped with the lower winding base 41 to form a closed winding frame; The cable on the external conveying device is drawn into the guiding hole 211. By screwing the screw-nut pair to adjust the aperture adjusting member 24 in the guiding hole 211, the size of the guiding hole 211 is matched with the cable diameter. Then, after the cable is drawn through the guiding hole 211 and wound around the transition roller 53 once, the cleaning cylinder 34 is started to drive the two cleaning brushes 33 to slide towards each other on the cleaning support roller 32, and the width of the cleaning channel 35 is adjusted to fit the cable size. When the cable passes through the cleaning channel 35, the surface dirt on the passing cable is brushed off by the elastic brush on the cleaning brush 33. After cleaning, the cable is drawn onto the winding frame. The lower winding base 41 is driven by the lower winding motor 485 to rotate, and the cleaned cable is evenly wound into a cable coil. During the winding process, the transition roller cylinder 52 drives the transition roller 53 to move, and combined with the adjustment of the cleaning channel 35, the layering of the cable coil during the winding process is completed, making the winding more orderly. After the winding is completed, the upper winding shaft 42 automatically lifts and disengages from the cable coil, and only the lower winding base 41 supports the cable coil; At this time, the clamping and moving assembly is on the left and right sides of the cable coil. The jaw motor 49 is started to drive the two engaged movable jaws 44 to close synchronously. The arc-shaped clamping part 442 fits the outer edge of the coil to clamp the cable coil. The moving cylinder 66 drives the clamping table 43 to slide along the guide rail, and the cable coil is translated above the taking slot 113 of the second working platform 111. The positioning baffle 114 restricts the offset of the cable coil to align its central hole with the taking slot 113, facilitating the insertion of a forklift or lifting equipment into the central hole to take away the cable coil; The clamping table 43 returns to its original position, the movable jaws 44 open and reset, and the upper winding shaft 42 moves downward again to prepare for the next winding, realizing the integrated operation of automatic winding and cleaning.
[0035] In the above specific embodiments, the technical problems solved, technical solutions and beneficial effects of the present invention are further described in detail. It should be understood that the above are only specific embodiments of the present invention and are not used to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A cable winding device with a cleaning function, characterized in that, Comprising: A frame (1), on which a first working platform (11) is provided, and a working chamber (12) is arranged inside the frame (1); A guiding component, which includes a guiding platform (21) provided with a guiding hole (211), and the guiding platform (21) is slidably fitted on the first working platform (11); A cleaning component, which includes a cleaning base (31), a cleaning supporting roller (32) and two cleaning brushes (33). The cleaning supporting roller (32) is installed on the cleaning base (31), the two cleaning brushes (33) are slidably installed on the cleaning supporting roller (32), the two cleaning brushes (33) are arranged oppositely and their surfaces are provided with elastic bristles, and a cleaning channel (35) is arranged between the two cleaning brushes (33); A second working platform (111) suitable for installing a winding component is further provided on the first working platform; The winding component includes a winding assembly and at least one clamping and moving component. The winding assembly includes a lower winding base (41) and an upper winding shaft (42). The lower winding base (41) is rotatably installed on the second working platform (111), and the upper winding shaft (42) is suitable for moving downward and connecting with the lower winding base (41) to form a winding frame; The clamping and moving component includes a clamping platform (43) and two movable jaws (44). The clamping platform (43) is slidably fitted on the second working platform (111), and the movable jaws (44) are installed on the clamping platform (43); The cable is suitable for being conveyed into the device through an external conveying device, sequentially passing through the guiding hole (211) and the cleaning channel (35), and then being wound onto the winding frame to form a cable coil. After winding is completed, the upper winding shaft (42) is suitable for moving upward to separate from the cable coil, and the two movable jaws (44) are suitable for clamping the cable coil and driving it to move to the other end of the second working platform (111) for the staff to take.
2. A cable winding device with a cleaning function according to claim 1, characterized in that: The guiding component further includes a guiding bracket (22) and a guiding base (23). The guiding bracket (22) is installed on the guiding base (23), the guiding base (23) is slidably fitted on the first working platform (11), a guiding groove (221) is provided on the guiding bracket (22), and the guiding platform (21) is installed in the guiding groove (221); Two first fixing holes (222) are provided on both sides of the guiding bracket (22). After the guiding platform (21) is installed in place, second fixing holes are provided on the two sides opposite to the fixing holes. Two fasteners are further provided on the guiding bracket (22), and the fasteners sequentially pass through the first fixing holes (222) and the second fixing holes to fixedly connect the guiding bracket (22) and the guiding platform (21).
3. A cable winding device with a cleaning function according to claim 2, characterized in that: An aperture adjusting member (24) is provided in the guiding hole (211). The aperture adjusting member (24) is mounted on the guiding platform (21) through at least one lead screw-nut pair. The lead screw-nut pair includes a lead screw (241) mounted on the guiding platform (21) and a nut (242) mounted on the aperture adjusting member (24). Rotating the lead screw (241) is adapted to drive the aperture adjusting member (24) to move up and down in the guiding hole (211) to adjust the size of the guiding hole (211).
4. The cable winding device with a cleaning function according to claim 1, wherein: The cleaning component further includes two cleaning cylinders (34). The two cleaning cylinders (34) are mounted on both sides of the cleaning base (31). The movable ends of the two cleaning cylinders (34) are respectively connected to the cleaning brush (33). The cleaning cylinder (34) is adapted to drive the cleaning brush (33) to slide on the cleaning support roller (32) to adjust the size of the cleaning channel (35); A splash guard (36) is further provided above the cleaning base (31). The splash guard (36) is adapted to block the sewage splashed when the cleaning brush (33) cleans the cable.
5. The cable winding device with a cleaning function according to claim 1, wherein: It further includes a transition roller mechanism. The transition roller mechanism is arranged between the guiding component and the cleaning component. The transition roller mechanism includes a telescopic bracket (51), a transition roller cylinder (52) and a transition roller (53). The telescopic bracket (51) is mounted on the first working platform (11). The transition roller cylinder (52) is mounted on the telescopic bracket (51). The transition roller (53) is connected to the movable end of the transition roller cylinder (52). The cable is adapted to pass through the guiding hole (211), wind around the transition roller (53) for one circle, then pass through the transition roller (53) and enter the cleaning channel (35) for cleaning treatment. The transition roller cylinder (52) is adapted to drive the transition roller (53) to move to adjust the stacking of the winding turns.
6. The cable winding device with a cleaning function according to claim 1, wherein: The winding assembly further includes an upper winding bracket (45) and an upper winding cylinder (46). The upper winding bracket (45) is mounted on the cleaning base (31). The upper winding cylinder (46) is mounted on the upper winding bracket (45) through a first bracket (461). The movable end of the upper winding cylinder (46) is connected to the upper winding shaft (42) through a first bearing block (47); An auxiliary cylinder (451) is provided on the upper winding bracket (45). The movable end of the upper winding cylinder (46) moves in the auxiliary cylinder (451).
7. The cable winding device with a cleaning function according to claim 6, wherein: A circular through - slot (112) adapted to the lower winding base (41) is provided on the second working platform (111). The lower winding base (41) is rotatably arranged in the circular through - slot (112). A connecting groove is provided on the lower winding base (41), and a connecting member (421) is provided on the upper winding shaft (42). The winding assembly further includes a lower connecting shaft (481), a driving wheel (482), a driven wheel (483), a synchronous belt (484), and a lower winding motor (485). One end of the lower connecting shaft (481) is installed at the bottom of the working bin (12) through a second bearing seat (486). The other end of the lower connecting shaft (481) is connected to the lower winding base (41). The driven wheel (483) is installed on the lower connecting shaft (481). The lower winding motor (485) is installed in the working bin (12). The driving wheel (482) is connected to the movable end of the lower winding motor (485). The synchronous belt (484) is adapted to connect the driving wheel (482) and the driven wheel (483). The lower winding motor (485) is adapted to drive the lower winding base (41) and the upper winding shaft (42) connected therewith to rotate synchronously for winding the cable.
8. A cable winding device with a cleaning function according to claim 1, wherein: The movable clamping jaw (44) consists of a connecting part (441) and a clamping part (442). The connecting part (441) is in a toothed shape structure. The connecting part (441) is installed on the clamping table (43). The connecting parts (441) of the two movable clamping jaws (44) are meshed with each other. The clamping and moving assembly further includes a jaw motor (49). The jaw motor (49) is installed on the clamping table (43) through a second bracket (491). A connecting shaft (443) is provided on the connecting part (441) of one of the movable clamping jaws (44). The movable end of the jaw motor (49) is hinged to the connecting shaft (443). The jaw motor (49) is adapted to drive one of the movable clamping jaws (44) to rotate clockwise to drive the other movable clamping jaw (44) to rotate counterclockwise, so as to realize the closing action of the movable clamping jaw (44) for clamping the cable coil. The clamping part (442) is in an arc - shaped structure. An anti - slip pattern is provided on the side of the clamping part (442) facing the cable coil.
9. A cable winding device with a cleaning function according to claim 8, wherein: The clamping table (43) is slidably fitted on the second working platform (111) through at least one guide rail and slider mechanism; wherein, The guide rail and slider mechanism includes: A guide rail (61) installed on the second working platform (111); A slider (62) installed at the bottom of the clamping table (43); The clamping and moving assembly further includes a moving mechanism, the moving mechanism includes a slide rail bracket (63) installed on the first working platform (11), a slide rail (64) installed on the slide rail bracket (63), and a moving block (65) installed on the slide rail (64), and the moving block (65) is connected to the clamping table (43); The moving mechanism includes a moving cylinder (66), the moving cylinder (66) is installed on the first working platform (11), and the movable end of the moving cylinder (66) is connected to the moving block (65).
10. A cable winding device with a cleaning function according to claim 1, wherein: A taking groove (113) is provided at the other end of the second working platform (111). When the cable coil is driven by the clamping and moving assembly to the taking groove (113), the central hole of the cable coil is directly above the taking groove (113) so that an external device can take the cable coil; Positioning baffles (114) are further provided on both sides of the taking groove (113), and the positioning baffles (114) are adapted to block the cable coil.
Citation Information
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