Cable packaging structure
By using a wire reel wrapping stand, a rotary drive mechanism, and a translation mechanism, the problem of wires easily scattering when placed vertically on a wire reel is solved, thus achieving convenient wire reel packaging.
Patent Information
- Application Number
- CN202520337691.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2035-02-28
AI Technical Summary
The current cable packaging method results in the cable reel being placed vertically, which easily causes the cable to scatter and is inconvenient to use.
The system employs a wire roll wrapping stand, a rotary drive mechanism, and a translation mechanism. The wire roll is rotated and sealed by a film-covering drive motor and a rotary drive motor, thus achieving horizontally placed wire roll packaging.
This allows for the horizontal placement of cable reels, preventing fraying and improving packaging convenience.
Smart Images

Figure CN223631856U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the cable packaging equipment technical field, concretely relates to a cable packaging structure. BACKGROUND
[0002] The power cable is indispensable construction material in building construction and city brightening engineering, has important role in controlling electrical equipment installation, power transmission between equipment, is indispensable product in engineering construction, and the cable is generally packaged into disc shape and sold, that is, after the cable is produced and processed, is first wound into disc shape, then is sleeved with binding belt and covering film, can guarantee success, and waits to sell.
[0003] The existing cable packaging mode is to vertically place the cable disc into the equipment for packaging, needs to lift the cable disc to the packaging position for packaging processing when using, and is lifted out after packaging is completed, and vertical placement easily causes cable disconnection, which brings inconvenience to users. SUMMARY
[0004] The utility model aims at solving above-mentioned problem, and provides a cable packaging structure.
[0005] A cable packaging structure, it includes: base, wire coil film stand, wire coil film mechanism, rotary drive mechanism frame, wire coil rotary drive mechanism, translation mechanism, wire coil bracket, the wire coil film stand is C character shape component, wire coil film stand vertical fixed on the rear of base upper end surface, wire coil film mechanism is equipped with C character shape rotary frame, film covering belt frame, film covering drive motor, drive gear set, film covering belt frame is fixed on wire coil film stand through C character shape rotary frame, wire coil film 8 axle is connected on film covering belt frame, wire coil bracket is slid forward and backward on base through translation mechanism, cable coil 9 can be placed on wire coil bracket, wire coil rotary drive mechanism is equipped with rotary drive motor, the front of wire coil bracket is equipped with the starting button on the handle, and the starting button starts film covering drive motor and rotary drive motor, rotary drive motor drives cable coil 9 to rotate along vertical axis, and film covering drive motor drives wire coil film 8 to rotate along horizontal axis, and wire coil film 8 is covered cable coil 9 with film spiral.
[0006] One side of the wire coil film stand is provided with a stand opening portion; an encircling portion is provided inside the stand opening portion, a C-shaped slide rail is provided at the edge of the encircling portion; the film covering drive motor and the drive gear set are provided on one side of the C-shaped slide rail; the C-shaped rotary frame is sleeved on the C-shaped slide rail; a rotary frame opening portion is provided on one side of the C-shaped rotary frame, the width of the rotary frame opening portion is the same as that of the stand opening portion; and the film covering belt frame is provided on one side of the rotary frame opening portion.
[0007] A film roll cover is provided on the film covering belt frame, the wire coil film 8 can be axially connected to the film covering belt frame, and the film roll cover is magnetically connected to the film covering belt frame.
[0008] The film covering driving motor is fixed on one side of the wire coil film wrapping stand, and the driving gear set is arranged on the other side of the wire coil film wrapping stand. The driving gear set comprises a main driving gear, a first driven gear and a second driven gear. The main driving gear is connected with the main shaft of the film covering driving motor. The main driving gear is in synchronous engagement transmission with the first driven gear and the second driven gear through two transmission gears respectively. The outer arc of the C-shaped rotating frame is provided with rotating frame engagement teeth. The rotating frame engagement teeth are in engagement transmission with the main driving gear, the first driven gear and the second driven gear.
[0009] The upper end of the rotating driving mechanism frame is provided with a mechanism table, and the wire coil rotating driving mechanism is arranged in the mechanism table. The wire coil rotating driving mechanism comprises a rotating driving motor, a rotating driving gear, a driven engagement gear, a vertical transmission rod, a first bevel gear, a vertical grinding wheel, a second bevel gear and a horizontal grinding wheel. The rotating driving motor is fixed on one side of the upper end surface of the mechanism table, and the rotating driving gear is fixed on the electric main shaft of the rotating driving motor. The driven engagement gear is fixed on the lower end of the vertical transmission rod. The rotating driving gear and the driven engagement gear are in engagement transmission. The first bevel gear and the vertical grinding wheel are fixed above the vertical transmission rod. The mechanism table is provided with a horizontal grinding wheel shaft frame on one side, and the horizontal grinding wheel shaft is connected in the horizontal grinding wheel shaft frame. The second bevel gear is fixed on the shaft rod end of the horizontal grinding wheel. The second bevel gear is in engagement transmission with the first bevel gear. The rotating driving motor drives the vertical grinding wheel and the horizontal grinding wheel to rotate synchronously through the gear.
[0010] The translation mechanism comprises guide rails and sliding blocks. Two guide rails are arranged on both sides of the front end of the wire coil film wrapping stand. The sliding blocks are sleeved on the two guide rails. The sliding blocks are fixed on both sides of the lower end of the wire coil bracket.
[0011] The wire coil bracket is provided with a plurality of groups of supporting rollers arranged in a U-shaped array on the upper end. Limiting edge wheels are arranged on the outer side edges of each group of supporting rollers. The limiting edge wheels are supported towards the center of the circle by supporting springs.
[0012] The technical solution provides a cable packaging structure, which comprises a base, a wire coil film wrapping stand, a wire coil film wrapping mechanism, a rotating driving mechanism frame, a wire coil rotating driving mechanism, a translation mechanism and a wire coil bracket. The wire coil film wrapping stand is a C-shaped component and is vertically fixed on the rear of the upper end surface of the base. The wire coil film wrapping mechanism is arranged on the wire coil film wrapping stand and comprises a film covering driving motor and a film covering belt frame. The wire coil bracket is slidably translated on the base through the translation mechanism. The wire coil bracket can support the cable coil. The rotating driving motor in the wire coil rotating driving mechanism can drive the cable coil to rotate around the vertical axis. The film covering driving motor drives the wire coil film to rotate around the horizontal axis, and the wire coil film spirally covers the cable coil. The horizontally placed cable coil is not easy to be scattered, and it is more convenient for users to package. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 is a working state schematic diagram of a cable packaging structure of the utility model;
[0014] Figure 2 is a whole schematic diagram of a cable packaging structure of the utility model;
[0015] Figure 3 is a wire spool bracket structure schematic diagram of a cable packaging structure of the utility model;
[0016] Figure 4 is a wire spool rotation driving mechanism schematic diagram of a cable packaging structure of the utility model;
[0017] Figure 5 is a wire spool film wrapping mechanism schematic diagram of a cable packaging structure of the utility model;
[0018] Figure 6 is a wire spool film wrapping bracket local structure schematic diagram of a cable packaging structure of the utility model;
[0019] In the drawing: 1, base, 11, foot prop pad, 13, main control switch, 2, wire spool film wrapping stand, 21, stand opening part, 22, C-shaped slide rail, 31, C-shaped rotating bracket, 311, C-shaped slide groove, 312, rotating bracket meshing tooth, 32, film wrapping belt bracket, 321, film wrapping belt roller, 322, belt film roll cover, 323, cover connecting rod, 324, magnetic attraction, 33, film wrapping driving motor, 341, main driving gear, 342, first transmission gear, 343, second transmission gear, 344, first driven gear, 345, second driven gear, 4, rotation driving mechanism bracket, 41, mechanism table surface, 51, rotation driving motor, 52, rotation driving gear, 53, driven meshing gear, 54, vertical transmission rod, 55, first bevel gear wheel, 56, vertical grinding wheel, 57, second bevel gear wheel, 58, horizontal grinding wheel, 6, translation mechanism, 61, guide rail, 62, sliding block, 7, wire spool bracket, 71, U-shaped opening, 72, driving bracket slide groove, 73, supporting roller, 74, limiting edge wheel, 75, jacking spring, 76, handle, 77, starting button. DETAILED DESCRIPTION
[0020] The technical solutions will be further clearly and completely described below in combination with the drawings of the technical solutions, and the described embodiments are only a part of the technical solutions, but not all the embodiments, and all other embodiments obtained by those skilled in the art without creative labor based on the technical solutions belong to the protection scope of the utility model.
[0021] Embodiment 1
[0022] Referring to Figures 1 to 6As shown, a cable packaging structure comprises a base 1, a cable film packaging stand 2, a cable film packaging mechanism, a rotary drive mechanism frame 4, a cable roll rotary drive mechanism, a translation mechanism 6, a cable roll carrier 7;
[0023] The four corners of the lower end surface of the base 1 are provided with foot support pads 11. The cable film packaging stand 2 is a C-shaped member, and is vertically fixed to the rear of the upper end surface of the base 1. The base 1 is further provided with a power input end and a main control switch 13 on one side.
[0024] The cable film packaging stand 2 is provided with a cable film packaging mechanism. The front side of the cable film packaging stand 2 is provided with a stand opening portion 21. The inner side of the stand opening portion 21 is provided with a surrounding portion, and the edge of the surrounding portion is provided with a C-shaped sliding rail 22. The cross section of the C-shaped sliding rail 22 is T-shaped.
[0025] The cable film packaging mechanism comprises a C-shaped rotating frame 31, a film belt frame 32, a film drive motor 33, and a drive gear set.
[0026] The C-shaped rotating frame 31 is provided with a rotating frame opening portion on one side, and the width of the rotating frame opening portion is the same as that of the stand opening portion 21.
[0027] The C-shaped rotating frame 31 is provided with a C-shaped sliding groove 311 on one side. The outer arc of the C-shaped rotating frame 31 is provided with a rotating frame meshing tooth 312. The cross section of the C-shaped sliding groove 311 is T-shaped, and the C-shaped sliding groove 311 is adapted to the C-shaped sliding rail 22. The C-shaped sliding groove 311 is sleeved on the C-shaped sliding rail 22. That is, the center of the C-shaped sliding rail 22 coincides with the center of the C-shaped rotating frame 31, and the C-shaped rotating frame 31 is arranged on the C-shaped sliding rail 22. The film belt frame 32 is arranged on one side of the rotating frame opening portion.
[0028] The film belt frame 32 is provided with a film belt roller 321 on one side. The film belt roller is provided with a film roll cover 322 on one side. The film roll cover 322 is provided with a cover connecting rod 323 on one side. The end of the cover connecting rod 323 is provided with a magnetic attraction 324. The connecting rod sleeve opening in the film belt roller 321 is provided with a magnetic connecting component. The magnetic attraction 323 can be magnetically connected with the magnetic connecting component. That is, the connecting rod 322 is sleeved in the connecting rod sleeve opening, and the film roll cover 322 is connected with the film belt frame 32 through magnetic attraction.
[0029] The film drive motor 33 is fixed on one side of the cable film packaging stand 2, and the drive gear set is arranged on the other side of the cable film packaging stand 2. The film drive motor 33 is engaged and transmitted with the rotating frame meshing tooth 312 through the drive gear set.
[0030] The drive gear set comprises a main drive gear 341, a first transmission gear 342, a second transmission gear 343, a first driven gear 344, and a second driven gear 345.
[0031] The main drive gear 341 is connected with the main shaft of the film drive motor 33; the first transmission gear 342 and the second transmission gear 343 are respectively shaft-connected on both sides of the main drive gear 341, and the main drive gear 341 is engaged with the first transmission gear 342 and the second transmission gear 343 respectively; the first driven gear 344 is arranged on one side of the first transmission gear 342, and the first transmission gear 342 and the first driven gear 344 are engaged; the second driven gear 345 is arranged on one side of the second transmission gear 343, and the second driven gear 345 and the second transmission gear 343 are engaged.
[0032] The first transmission gear 342 and the second transmission gear 343 have the same tooth number ratio; the main drive gear 341, the first driven gear 344 and the second driven gear 345 have the same tooth number ratio; the main drive gear 341 is engaged with the first driven gear 344 and the second driven gear 345 through two transmission gears respectively, and the main drive gear 341, the first driven gear 344 and the second driven gear 345 are engaged with the rotating rack engagement tooth 312 at the same speed.
[0033] The rotating drive mechanism rack 4 is an inverted L-shaped rack, and the rotating drive mechanism rack 4 can also be a T-shaped rack; the rotating drive mechanism rack 4 is provided with a mechanism table 41 at the upper end, and the wire reel rotating drive mechanism is arranged in the mechanism table 41.
[0034] The wire reel rotating drive mechanism comprises a rotating drive motor 51, a rotating drive gear 52, a driven engagement gear 53, a vertical transmission rod 54, a first bevel gear 55, a vertical grinding wheel 56, a second bevel gear 57 and a horizontal grinding wheel 58.
[0035] The rotating drive motor 51 is fixed on one side of the upper end surface of the mechanism table 41, and the rotating drive gear 52 and the driven engagement gear 53 are arranged below the mechanism table 41; the electric main shaft of the rotating drive motor 51 penetrates through the mechanism table 41, and the rotating drive gear 52 is fixed on the electric main shaft of the rotating drive motor 51.
[0036] The vertical transmission rod 54 is shaft-connected on one side of the mechanism table 41, and the driven engagement gear 53 is fixed on the lower end of the vertical transmission rod 54; the rotating drive gear 52 and the driven engagement gear 53 are engaged and driven;
[0037] The first bevel gear 55 and the vertical grinding wheel 56 are fixed above the vertical transmission rod 54; the mechanism table 41 is provided with a horizontal grinding wheel shaft rack 42 on one side, and the horizontal grinding wheel 58 is shaft-connected in the horizontal grinding wheel shaft rack 42; the second bevel gear 57 is fixed on the shaft rod end of the horizontal grinding wheel 58; the second bevel gear 57 is engaged and driven with the first bevel gear 55.
[0038] The rotating drive motor 51 drives the vertical grinding wheel 56 and the horizontal grinding wheel 58 to rotate through gear synchronization.
[0039] The translation mechanism 6 comprises guide rails 61 and sliding blocks 62. The guide rails 61 are provided with two guide rails 61 arranged on the two sides of the front end of the wire coil film wrapping stand 2. The two guide rails 61 are each sleeved with a sliding block 62. The lower ends of the wire coil bracket 7 are fixedly connected with the sliding blocks 62. The wire coil bracket 7 can translate forward and backward on the guide rails 61.
[0040] The rear end of the wire coil bracket 7 is provided with a U-shaped opening 71 corresponding to the wire coil film wrapping stand 2. The U-shaped opening 71 slides on the left and right sides of the wire coil film wrapping stand 2. The right side of the rear end of the wire coil bracket 7 is provided with a drive frame sliding groove 72. The lower end of the mechanism table top 41 is adapted to the structure of the drive frame sliding groove 72. The lower end of the mechanism table top 41 can slide in the drive frame sliding groove 72.
[0041] The upper end of the wire coil bracket 7 is provided with a plurality of groups of U-shaped array supporting rollers 73 and limiting edge wheels 74.
[0042] The supporting rollers 73 and the limiting edge wheels 74 are each provided with a plurality of groups. The plurality of groups of supporting rollers 73 and limiting edge wheels 74 are arranged in a circular array with the same center. Each group of supporting rollers 73 is provided with a limiting edge wheel 74 on the outer side edge. The limiting edge wheel 74 is supported towards the center by a supporting spring 75.
[0043] The covering angle of the roller circular array of the supporting rollers 73 and the limiting edge wheels 74 is about 225 degrees. The wire coil rotating drive mechanism, the supporting rollers 73 and the limiting edge wheels 74 increase the covering angle of the roller circular array to about 300 degrees.
[0044] The wire coil rotating drive mechanism, the supporting rollers 73 and the limiting edge wheels 74 make the wire coil not easy to fall off from the wire coil bracket 7 when the wire coil rotates in the wire coil bracket 7.
[0045] The front end of the wire coil bracket 7 is provided with a handle 76. The handle 76 is provided with a start button 77. The main control switch 13 is connected with the start button 77 through a cable. The film driving motor 33 and the rotating drive motor 51 are synchronously started and stopped through the start button 77.
[0046] The wire coil bracket 7 is pulled out from the side of the wire coil film wrapping stand 2. Then the bundled wire coil 9 is placed on the upper end surface center of the translation mechanism 6. The wire coil 9 is annular, that is, the upper and lower ends of the middle part of the wire coil 9 are connected. A plurality of groups of supporting rollers 73 support the wire coil 9. The limiting edge wheels 74 cover about five-sixths (the covering angle is about 300 degrees) of the outer diameter end surface of the wire coil 9. This avoids the wire coil 9 from falling off from the wire coil bracket 7 when the wire coil rotating drive mechanism drives the wire coil 9 to rotate along the vertical axis.
[0047] The rotary driving motor 51 and the film driving motor 33 are started through the start button 77 arranged on the handle 76, when the cable roll 9 rotates along the vertical axis, the cable roll sealing film 8 in the cable roll film wrapping mechanism is wound on the annular cable roll 9 to wrap the film; the cable roll is wrapped by the film sealing spiral; the horizontally placed cable roll is not easy to be scattered, and is more convenient for the user to package.
Claims
1. A cable packaging structure comprising: The machine base (1), the wire coil wrapping stand (2), the wire coil wrapping mechanism; The rotating drive mechanism frame (4), the wire coil rotating drive mechanism, the translation mechanism (6), the wire coil bracket (7); characterized in that: the wire coil wrapping stand (2) is a C-shaped component, and the wire coil wrapping stand (2) is vertically fixed on the rear of the upper end surface of the machine base (1); the wire coil wrapping mechanism is provided with a C-shaped rotating frame (31), a film wrapping belt frame (32), a film wrapping drive motor (33), and a drive gear set, the film wrapping belt frame (32) is fixed on the wire coil wrapping stand (2) through the C-shaped rotating frame (31), and the wire coil film wrapping (8) is shaft-connected to the film wrapping belt frame (32); the wire coil bracket (7) is slidably translated on the machine base (1) through the translation mechanism (6); The cable coil (9) can be placed on the wire coil bracket (7), and the wire coil rotating drive mechanism is provided with a rotating drive motor (51); a start button (77) is arranged on a handle (76) arranged at the front end of the wire coil bracket (7), and the start button (77) starts the film wrapping drive motor (33) and the rotating drive motor (51); the rotating drive motor (51) drives the cable coil (9) to rotate along a vertical axis, and the film wrapping drive motor (33) drives the wire coil film wrapping (8) to rotate along a horizontal axis, and the wire coil film wrapping (8) spirally wraps the cable coil (9) with a film.
2. The cable packaging structure of claim 1, wherein: The wire coil wrapping stand (2) is provided with a stand opening portion (21) on one side; a surrounding portion is arranged on the inner side of the stand opening portion (21), and a C-shaped sliding rail (22) is arranged at the edge of the surrounding portion; the film wrapping drive motor (33) and the drive gear set are arranged on one side of the C-shaped sliding rail (22); the C-shaped rotating frame (31) is sleeved on the C-shaped sliding rail (22); the C-shaped rotating frame (31) is provided with a rotating frame opening portion on one side, and the width of the rotating frame opening portion is the same as that of the stand opening portion (21); the film wrapping belt frame (32) is arranged on one side of the rotating frame opening portion.
3. The cable packaging structure of claim 2, wherein: The film wrapping belt frame (32) is provided with a film roll cover (322), the wire coil film wrapping (8) can be shaft-connected to the film wrapping belt frame (32), and the film roll cover (322) is magnetically connected to the film wrapping belt frame (32).
4. The cable packaging structure of claim 3, wherein: The film wrapping drive motor (33) is fixed on one side of the wire coil wrapping stand (2); The drive gear set is arranged on the other side of the wire coil wrapping stand (2); The drive gear set comprises a main drive gear (341), a first driven gear (344), and a second driven gear (345); the main drive gear (341) is connected with the main shaft of the film wrapping drive motor (33); the main drive gear (341) is in synchronous meshing transmission with the first driven gear (344) and the second driven gear (345) through two transmission gears, respectively; the outer arc of the C-shaped rotating frame (31) is provided with a rotating frame meshing tooth (312); the rotating frame meshing tooth (312) is in meshing transmission with the main drive gear (341), the first driven gear (344), and the second driven gear (345).
5. The cable packaging structure of claim 4, wherein: The rotating drive mechanism frame (4) is provided with a mechanism table top (41) on the upper end, and the wire coil rotating drive mechanism is arranged in the mechanism table top (41). The wire coil rotating drive mechanism comprises a rotating drive motor (51), a rotating drive gear (52), a driven meshing gear (53), a vertical transmission rod (54), a first bevel gear wheel (55), a vertical grinding wheel (56), a second bevel gear wheel (57), and a horizontal grinding wheel (58). The rotating drive motor (51) is fixed on one side of the upper end surface of the mechanism table (41), and the rotating drive gear (52) is fixed on the electric spindle of the rotating drive motor (51). The driven meshing gear (53) is fixed on the lower end of the vertical transmission rod (54). The rotating drive gear (52) and the driven meshing gear (53) are in meshing transmission. The first bevel gear wheel (55) and the vertical grinding wheel (56) are fixed above the vertical transmission rod (54). The mechanism table (41) is provided with a horizontal grinding wheel shaft support (42) on one side, and the horizontal grinding wheel (58) is connected to the horizontal grinding wheel shaft support (42). The second bevel gear wheel (57) is fixed on the shaft rod end of the horizontal grinding wheel (58). The second bevel gear wheel (57) is in meshing transmission with the first bevel gear wheel (55). The rotating drive motor (51) drives the vertical grinding wheel (56) and the horizontal grinding wheel (58) to rotate through gear synchronization.
6. The cable packaging structure of claim 5, wherein: The translation mechanism (6) comprises guide rails (61) and sliding blocks (62). Two guide rails (61) are arranged on both sides of the front end of the wire coil film wrapping stand (2). The two guide rails (61) are each sleeved with a sliding block (62). The sliding blocks (62) are fixed on both sides of the lower end of the wire coil bracket (7).
7. The cable packaging structure of claim 6, wherein: The wire coil bracket (7) is provided with a U-shaped array of multiple groups of supporting rollers (73) on the upper end. Each group of supporting rollers (73) is provided with a limiting edge wheel (74) on the outer side edge. The limiting edge wheel (74) is supported towards the center by a supporting spring (75).