CN219971454U - Winding device for cable processing - Google Patents

Winding device for cable processing Download PDF

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Publication number
CN219971454U
CN219971454U CN202320510475.XU CN202320510475U CN219971454U CN 219971454 U CN219971454 U CN 219971454U CN 202320510475 U CN202320510475 U CN 202320510475U CN 219971454 U CN219971454 U CN 219971454U
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CN
China
Prior art keywords
side parts
shaped base
bidirectional screw
fixing blocks
screw rod
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CN202320510475.XU
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Chinese (zh)
Inventor
刘雄飞
曹战力
赵伟伟
郑占卫
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Dongfang Xinsheng Cable Co ltd
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Dongfang Xinsheng Cable Co ltd
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Priority to CN202320510475.XU priority Critical patent/CN219971454U/en
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Abstract

The utility model discloses a winding device for cable processing, which relates to the technical field of cable production equipment and comprises a U-shaped base and a return plate, wherein two transmission cavities are formed in the U-shaped base, and first bidirectional screw rods are installed on the inner walls of side parts, away from each other, of the two transmission cavities in a common rotation mode. When the wire spool is used, the wire spool is rolled into the U-shaped base, the two sliding blocks and the two fixing blocks move in opposite directions under the action of the first transmission component, the four concave rollers are driven to move, when the concave rollers are aligned with the edge of the wire spool, the two second motors are started, the two second bidirectional screw rods are driven to rotate, the two concave rollers are driven to move in opposite directions, the wire spool is supported away from the ground under the combined action of the four concave rollers, the return plates are lowered to a proper distance, the two bearings are inserted into through holes on two sides of the wire spool, and after winding is finished, the steps are operated in opposite directions, so that the wire spool is placed on the ground.

Description

Winding device for cable processing
Technical Field
The utility model relates to the technical field of cable production equipment, in particular to a winding device for cable processing.
Background
With the development of society, cables are generally made of one or more conductors insulated from each other and an outer insulating protective layer, wires for transmitting power or information from one place to another, each set of wires being insulated from each other and often twisted around a center, the whole outer being covered with a highly insulating cover. The cable has an inner energized, outer insulated feature.
When processing the cable, need coil winding to it often, the patent of publication number CN211812744U among the prior art discloses a winding device that cable processing production was used, and it can lift the wire reel, then fixes it through connecting rod drive bearing, but when the rolling, the weight of wire reel can increase, and then can cause stronger pressure to the connecting rod, because the bottom does not have the support thing, easily causes the connecting rod to warp, to above-mentioned problem, so put forward a winding device for cable processing.
Disclosure of Invention
The utility model aims to provide a winding device for cable processing, which solves the problems that the weight of a wire spool is increased during winding, and a connecting rod is stressed more strongly, and the connecting rod is deformed easily because a support is not arranged at the bottom of the wire spool.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a coiling mechanism for cable processing, includes U-shaped base, return plate, two transmission chamber have been seted up in the U-shaped base, two common rotation is installed on the lateral part inner wall that the transmission chamber kept away from each other has first two-way lead screw, the lateral part of U-shaped base is installed first motor, the output shaft of first motor with the tip of first two-way lead screw is connected, two sliders are installed to the screw thread on the first two-way lead screw, two sliders all with U-shaped base looks adaptation, two the both sides inner wall in transmission chamber all rotates jointly and installs threaded sleeve, two threaded sleeve with all be connected through first transmission subassembly between the first two-way lead screw, two in the threaded sleeve all threaded mounting have telescopic screw, the tip of two telescopic screw all extends extremely U-shaped base is outer and installs the fixed block respectively, and the second two looks adaptation the fixed block with the lateral part that the slider is close to each other has the second two-way lead screw, two fixed block's lateral part motor have two the second two-way lead screw, two square-way lead screw two side plate, two square-way lead screw two are installed to the both side plate, two square-way lead screw assembly has two to install two side parts each other, two square-way lead screw assembly has two side parts to install mutually, two square screw assembly has two square screw assembly to install mutually, two side part, the U-shaped base with be connected through lifting unit between the back shaped board, the bottom of back shaped board is installed in two rectangular plates, two the lateral part that the rectangular plate is close to each other rotates jointly and installs the two-way lead screw of third, two slide are installed to the screw thread on the two-way lead screw of third, two the second direction subassembly is all installed to the lateral part of slide, two the circle axle is all installed to the lateral part that the slide is close to each other, two all fixed the cup joint bearing on the circle axle.
Preferably, the first transmission assembly comprises two first gears, the two first gears are respectively and fixedly sleeved on the first bidirectional screw rod and the threaded sleeve, and the two first gears are jointly meshed with each other and provided with a first chain.
Preferably, the first guide assembly comprises a first guide rod, two ends of the first guide rod are respectively fixed on the side parts of the sliding block, which are close to each other, of the fixed block, the side parts of the two square blocks are provided with guide holes, and the first guide rod is slidably mounted in the two guide holes.
Preferably, the lifting assembly comprises four support columns, the bottoms of the four support columns are all installed at the top of the U-shaped base, screw rods are all installed at the tops of the four support columns in a threaded mode, the other ends of the four screw rods are all installed on the inner wall of the top of the circular plate in a rotating mode, and the four screw rods are connected through a second transmission assembly.
Preferably, the second transmission assembly comprises four second gears, the four second gears are respectively and fixedly sleeved on the four screw rods, a third motor is installed at the top of the rectangular plate, an output shaft of the third motor is connected with one end part of one screw rod, and a second chain is installed on the four second gears in a meshed mode.
Preferably, one end of the third bidirectional screw rod extends out of one of the rectangular plates and is provided with a rocking handle.
Preferably, the second guiding assembly comprises a second guiding rod, two ends of the second guiding rod are respectively arranged at two side parts of the rectangular plate, which are close to each other, second guiding holes are respectively formed in two side parts of the sliding plate, and the second guiding rod is slidably arranged in the two second guiding holes.
In summary, the utility model has the technical effects and advantages that:
1. according to the utility model, when the wire spool is used, the wire spool is rolled into the U-shaped base, the two sliding blocks and the two fixing blocks are enabled to move oppositely under the action of the first transmission component, the four concave rollers are driven to move, when the concave rollers are aligned with the edges of the wire spool, the two second motors are started, the two second bidirectional screw rods are driven to rotate, the two square blocks are driven to move oppositely, the two concave rollers are driven to move oppositely, the wire spool is supported away from the ground under the combined action of the four concave rollers, the return plate is lowered to a proper distance under the action of the lifting component, the two bearings are aligned with through holes on two sides of the wire spool, the third bidirectional screw rod is rotated, the two bearings are inserted into the through holes on two sides of the wire spool, after winding is finished, the wire spool is reversely operated, the wire spool is placed on the ground, the wire spool is not required to be lifted manually, and the bottom of the wire spool can be supported.
2. According to the utility model, the rocking handle is arranged at the end part of the third bidirectional screw rod, so that when a worker needs to rotate the third bidirectional screw rod, the rocking handle can be used for easily controlling the third bidirectional screw rod, and the rocking handle is more labor-saving in operation, so that the worker can operate the rocking handle practically.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic view of a U-shaped base of the present utility model in partial cutaway;
FIG. 3 is an enlarged schematic view of the structure of FIG. 2A according to the present utility model;
FIG. 4 is a schematic view of the connection structure between the threaded sleeve and the square block according to the present utility model;
FIG. 5 is a schematic view of the cut-away structure of the return-type plate of the present utility model;
fig. 6 is an enlarged schematic view of a second gear and a second chain according to the present utility model.
In the figure: 1. a U-shaped base; 2. a first bidirectional screw rod; 3. a threaded sleeve; 4. a first gear; 5. a slide block; 6. a telescopic screw; 7. a fixed block; 8. a second bidirectional screw rod; 9. square blocks; 10. a first guide bar; 11. a mounting block; 12. a side plate; 13. concave idler wheels; 14. a support column; 15. a screw; 16. a return plate; 17. a second gear; 18. a second chain; 19. a rectangular plate; 20. a third bidirectional screw rod; 21. a slide plate; 22. a second guide bar; 23. a rocking handle; 24. and (3) a bearing.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Examples: referring to fig. 1-6, a winding device for cable processing comprises a U-shaped base 1, a return plate 16, two transmission cavities are arranged in the U-shaped base 1, a first bidirectional screw rod 2 is installed on the inner walls of the side parts of the two transmission cavities far away from each other in a co-rotating way, a first motor is installed on the side part of the U-shaped base 1, an output shaft of the first motor is connected with the end part of the first bidirectional screw rod 2, two sliding blocks 5 are installed on the first bidirectional screw rod 2 in a threaded way, the two sliding blocks 5 are matched with the U-shaped base 1, threaded sleeves 3 are installed on the inner walls of the two sides of the two transmission cavities in a co-rotating way, the two threaded sleeves 3 are connected with the first bidirectional screw rod 2 through a first transmission assembly, telescopic screw rods 6 are installed in the two threaded sleeves 3 in a threaded way, the end parts of the two telescopic screw rods 6 are extended out of the U-shaped base 1 and are respectively provided with fixing blocks 7, the side parts of every two matched fixing blocks 7 and the sliding blocks 5, which are close to each other, are jointly rotatably provided with second bidirectional screw rods 8, the side parts of the two fixing blocks 7 are respectively provided with a second motor, output shafts of the two second motors are respectively connected with the end parts of the two second bidirectional screw rods 8, the two second bidirectional screw rods 8 are respectively provided with a fixing component in a threaded manner, each fixing component comprises two square blocks 9, the two square blocks 9 are respectively and spirally arranged on the second bidirectional screw rods 8, the side parts of the two square blocks 9 are respectively and fixedly provided with a first guiding component, the side parts of the two square blocks 9 are respectively and fixedly provided with a mounting block 11, the side parts of the two mounting blocks 11 are respectively and fixedly provided with two side plates 12, the side parts of each two matched side plates 12, which are close to each other, are respectively and fixedly connected with a rotating rod, the U-shaped base 1 and the return plate 16 are rotatably sleeved on the rotating rod through a lifting component, the bottom of return plate 16 is installed in two rectangular plates 19, and the lateral part that two rectangular plates 19 are close to each other rotates jointly and installs third two-way lead screw 20, and two slide 21 are installed to the screw thread on the third two-way lead screw 20, and the second direction subassembly is all installed to the lateral part of two slide 21, and the circle axle is all installed to the lateral part that two slide 21 are close to each other, has all fixed sleeve joint bearing 24 on two circles axles.
By means of the structure, when the wire spool is used, firstly, the wire spool rolls into the U-shaped base 1, the first motor is started, the two sliding blocks 5 and the two fixing blocks 7 move in opposite directions under the action of the first transmission component, then the four concave idler wheels 13 are driven to move, when the concave idler wheels 13 are aligned with the edges of the wire spool, the two second motors are started, the two second bidirectional screw rods 8 are driven to rotate, the two square blocks 9 on the same second bidirectional screw rods 8 are driven to move in opposite directions, the two concave idler wheels 13 are driven to move in opposite directions, the wire spool is supported away from the ground under the combined action of the four concave idler wheels 13, the third motor is started, the return plate 16 is lowered to a proper distance under the action of the lifting component, the two bearings 24 are aligned with through holes on two sides of the wire spool, the third bidirectional screw rods 20 are rotated, the two bearings 24 are inserted into the through holes on two sides of the wire spool, after winding is finished, the wire spool is reversely operated, the wire spool is placed on the ground, and the wire spool is manually lifted, and meanwhile, the bottom of the wire spool can be supported, and the spool is prevented from being damaged by the large weight due to the fact that the spool and the spool is damaged.
As shown in fig. 3, the first transmission assembly includes two first gears 4, the two first gears 4 are respectively fixedly sleeved on the first bidirectional screw rod 2 and the threaded sleeve 3, and the two first gears 4 are jointly meshed with each other to install a first chain, so that the first transmission assembly has the advantages that the linkage function of the first bidirectional screw rod 2 and the threaded sleeve 3 can be realized through the arrangement of the two first gears 4 and the first chain, the first bidirectional screw rod 2 and the threaded sleeve 3 can synchronously rotate, and then the sliding block 5 and the fixed block 7 can synchronously move.
As shown in fig. 3, the first guide assembly includes a first guide rod 10, two ends of the first guide rod 10 are respectively fixed on the side portions of the sliding block 5, which are close to each other in the fixed block 7, guide holes are formed in the side portions of the two square blocks 9, and the first guide rod 10 is slidably mounted in the two guide holes, so that the first guide rod 10 has the advantage that, through the arrangement of the first guide rod 10, the second bidirectional screw rod 8 can play a certain limiting role on the square blocks 9 during rotation, and the second bidirectional screw rod 8 is prevented from driving the square blocks 9 to synchronously rotate during rotation.
As shown in fig. 1, the lifting assembly comprises four support columns 14, the bottoms of the four support columns 14 are all installed at the top of the U-shaped base 1, screw rods 15 are all installed at the tops of the four support columns 14 in a threaded mode, the other ends of the four screw rods 15 are all rotatably installed on the inner wall of the top of the return-type plate 16, the four screw rods 15 are connected through the second transmission assembly, and the lifting assembly has the advantages that lifting of the return-type plate 16 can be achieved through the arrangement of the four support columns 11 and the four screw rods 15, and position adjustment of the bearing 24 is achieved through adjustment of the return-type plate 16.
As shown in fig. 6, the second transmission assembly includes four second gears 17, the four second gears 17 are fixedly sleeved on the four screws 15 respectively, a third motor is installed at the top of the return plate 16, an output shaft of the third motor is connected with the end part of one of the screws 15, and the four second gears 17 are jointly meshed with and installed with a second chain 18, so that the four screws 15 can synchronously rotate through the arrangement of the four second gears 17 and the second chain 18, and the return plate 16 is prevented from tilting or jamming in the lifting process.
As shown in fig. 1, one end of the third bidirectional screw rod 20 extends out of one of the rectangular plates 19 and is provided with a rocking handle 23, so that the rocking handle 23 is arranged at one end of the bidirectional screw rod 20, convenient rotation of the third bidirectional screw rod 20 can be realized, and practical operation of staff is facilitated.
As shown in fig. 1, the second guide assembly comprises a second guide rod 22, two ends of the second guide rod 22 are respectively installed at the side parts of the two rectangular plates 19, which are close to each other, the side parts of the two sliding plates 21 are provided with second guide holes, and the second guide rod 22 is slidably installed in the two second guide holes.
Working principle: when the wire spool is used, firstly, the wire spool rolls into the U-shaped base 1, the first motor is started, under the action of the four first gears 4 and the two first chains, the two sliding blocks 5 and the two fixing blocks 7 move in opposite directions, the four concave rollers 13 are driven to move, when the concave rollers 13 are aligned with the edges of the wire spool, the two second motors are started, the two second bidirectional screw rods 8 are driven to rotate, the two square blocks 9 on the same second bidirectional screw rods 8 are driven to move in opposite directions, the two concave rollers 13 are driven to move in opposite directions, the wire spool is supported away from the ground under the combined action of the four concave rollers 13, the third motor is started, the return plate 16 is lowered to a proper distance under the action of the four second gears 17 and the second chains 18, the two bearings 24 are aligned with through holes on two sides of the wire spool, the rocking handle 23 is rotated, the two sliding plates 21 are driven to move in opposite directions, the two bearings 24 are driven to be inserted into through holes on two sides of the wire spool, after winding is finished, the wire spool is reversely operated, the spool is placed to the ground, and the spool is supported by manpower, and the spool is not required to be damaged by the spool, so that the spool is supported by the spool, and the spool is not required to be damaged by the spool.
Finally, it should be noted that: the foregoing description of the preferred embodiments of the present utility model is not intended to be limiting, but rather, although the present utility model has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described, or equivalents may be substituted for elements thereof, and any modifications, equivalents, improvements or changes may be made without departing from the spirit and principles of the present utility model.

Claims (7)

1. The utility model provides a coiling mechanism for cable processing, includes U-shaped base (1), returns shaped plate (16), its characterized in that: two transmission cavities are formed in the U-shaped base (1), a first bidirectional screw rod (2) is installed on the inner walls of the side parts, away from each other, of the two transmission cavities in a co-rotating mode, a first motor is installed on the side parts of the U-shaped base (1), an output shaft of the first motor is connected with the end parts of the first bidirectional screw rod (2), two sliding blocks (5) are installed on the first bidirectional screw rod (2) in a threaded mode, the two sliding blocks (5) are matched with the U-shaped base (1) in a threaded mode, threaded sleeves (3) are installed on the inner walls of the two sides of the transmission cavities in a co-rotating mode, the two threaded sleeves (3) are connected with the first bidirectional screw rod (2) through first transmission components, telescopic screws (6) are installed in threads in the two threaded sleeves (3), the end parts of the two telescopic screws (6) are extended out of the U-shaped base (1) and are respectively provided with fixing blocks (7), the two fixing blocks (7) are installed on the two sides of each fixing block in a threaded mode, the two fixing blocks (7) are installed on the two side parts of the two fixing blocks in a threaded mode, the two fixing blocks (8) are installed on the two side parts of the two fixing blocks are in a threaded mode, the two fixing blocks (8) are installed on the two side parts are in a threaded mode, the two fixing blocks are installed on the two side parts are in a threaded mode, and the two fixing blocks are connected with two side parts are in a threaded mode, and two fixing blocks are installed on the two fixing blocks are respectively, and opposite to the two fixing blocks are respectively and opposite to each fixing assembly respectively, and the two fixing assembly and are respectively. Two square piece (9) all screw thread install in on the two bidirectional screw rod (8) of second, two first direction subassembly is all installed to the lateral part of square piece (9), two installation piece (11) are all installed to the lateral part of square piece (9), two curb plate (12) are all installed to the lateral part of installation piece (11), every two looks adaptation the bull stick is all installed jointly to the lateral part that curb plate (12) are close to each other, it cup joints concave roller (13) to rotate on the bull stick, U-shaped base (1) with be connected through lifting unit between return plate (16), install in two rectangular plate (19) the bottom of return plate (16), two the lateral part that rectangular plate (19) are close to each other rotates jointly and installs third bidirectional screw rod (20), screw thread installs two slide (21) on third bidirectional screw rod (20) the lateral part that slide (21) are all installed the bull stick, two slide (21) are close to each other the lateral part has cup jointed concave roller (13), two slide (21) are all installed on the circle axle (24) and are all cup jointed.
2. The winding device for cable processing according to claim 1, wherein: the first transmission assembly comprises two first gears (4), the two first gears (4) are respectively and fixedly sleeved on the first bidirectional screw rod (2) and the threaded sleeve (3), and the two first gears (4) are meshed together to install a first chain.
3. The winding device for cable processing according to claim 1, wherein: the first guide assembly comprises a first guide rod (10), two ends of the first guide rod (10) are respectively fixed on the side parts of the sliding block (5) close to each other in the fixed block (7), guide holes are formed in the side parts of the two square blocks (9), and the first guide rod (10) is slidably mounted in the two guide holes.
4. The winding device for cable processing according to claim 1, wherein: the lifting assembly comprises four supporting columns (14), the bottoms of the four supporting columns (14) are all installed at the top of the U-shaped base (1), screw rods (15) are all installed at the top of the four supporting columns (14) in a threaded mode, the other ends of the four screw rods (15) are all installed on the inner wall of the top of the return plate (16) in a rotating mode, and the four screw rods (15) are connected through a second transmission assembly.
5. The winding device for cable processing according to claim 4, wherein: the second transmission assembly comprises four second gears (17), the four second gears (17) are fixedly sleeved on the four screw rods (15) respectively, a third motor is installed at the top of the square plate (16), an output shaft of the third motor is connected with one end part of one screw rod (15), and a second chain (18) is installed on the four second gears (17) in a mutual meshed mode.
6. The winding device for cable processing according to claim 1, wherein: one end of the third bidirectional screw rod (20) extends out of one rectangular plate (19) and is provided with a rocking handle (23).
7. The winding device for cable processing according to claim 1, wherein: the second guide assembly comprises a second guide rod (22), two ends of the second guide rod (22) are respectively arranged at two side parts of the rectangular plate (19) close to each other, second guide holes are respectively formed in two side parts of the sliding plate (21), and the second guide rod (22) is slidably arranged in the two second guide holes.
CN202320510475.XU 2023-03-16 2023-03-16 Winding device for cable processing Active CN219971454U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320510475.XU CN219971454U (en) 2023-03-16 2023-03-16 Winding device for cable processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320510475.XU CN219971454U (en) 2023-03-16 2023-03-16 Winding device for cable processing

Publications (1)

Publication Number Publication Date
CN219971454U true CN219971454U (en) 2023-11-07

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320510475.XU Active CN219971454U (en) 2023-03-16 2023-03-16 Winding device for cable processing

Country Status (1)

Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN119541963A (en) * 2025-01-22 2025-02-28 昆明明超电缆有限公司 A rolling production equipment and production method for medium voltage fire-resistant cable production

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN119541963A (en) * 2025-01-22 2025-02-28 昆明明超电缆有限公司 A rolling production equipment and production method for medium voltage fire-resistant cable production

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