CN210490293U - Auxiliary threading device for burying highway construction cable underground - Google Patents

Auxiliary threading device for burying highway construction cable underground Download PDF

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Publication number
CN210490293U
CN210490293U CN201921519336.3U CN201921519336U CN210490293U CN 210490293 U CN210490293 U CN 210490293U CN 201921519336 U CN201921519336 U CN 201921519336U CN 210490293 U CN210490293 U CN 210490293U
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shell
semicircular shell
cable
plate
semicircle
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王燕
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Anhui Binjiang Road And Bridge Engineering Co ltd
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Individual
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Abstract

The utility model discloses an auxiliary threading device for burying a road construction cable, which comprises a lower semicircular shell and an upper semicircular shell, wherein one end of the lower semicircular shell is hinged with one end of the upper semicircular shell, the other end of the lower semicircular shell is connected with the other end of the upper semicircular shell through a connecting device, a balancing device is arranged at an equal angle between the outer surface of the lower semicircular shell and the outer surface of the upper semicircular shell, a driving device is arranged at the middle position of the outer surface of the lower semicircular shell and comprises a first rotating shaft, a long plate, a vertical plate and a driving wheel, a first deep groove is arranged on the outer surface of the lower semicircular shell, the cable can be clamped in the middle by the lower semicircular shell and the upper semicircular shell of the auxiliary threading device for burying a road construction cable, the device can drive the cable to move in a cable threading pipe, the driving wheel can push the cable to move, and can save more labor and improve the threading efficiency, and moreover, the labor cost can be reduced, and the surface layer of the cable can be protected.

Description

Auxiliary threading device for burying highway construction cable underground
Technical Field
The utility model relates to an auxiliary threading device technical field specifically is an auxiliary threading device buried underground by highway construction cable.
Background
The electric wire and cable is used for transmitting electricity (magnetism) ability, information and the wire rod product that realizes the electromagnetic energy conversion, the cable threading pipe, the device of protection cable, distinguish cable function device, convenient wiring, the pipe of maintenance, generally can use the anticorrosion, the stereoplasm PVC rubber tube of anticreep, in addition according to different use scenes also use iron, stainless steel, tubular product such as carbon steel, when carrying out the threading to the cable when highway construction now, most directly draw and drag, friction between cable and the cable threading pipe can make the threading hard, threading is inefficient, the cost of labor is high, still can damage the cable top layer.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to overcome current defect, provide a supplementary threading device buried underground by highway construction cable, lower semicircle shell and first semicircle shell can press from both sides the cable in the centre, and the device can take the cable to move in the cable threading pipe, and the action wheel can also promote the cable to remove simultaneously, can be more laborsaving, improves threading efficiency to can also reduce the cost of labor, protect the cable top layer, can effectively solve the problem in the background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a supplementary threading device that highway construction cable was buried underground, includes lower semicircle shell and last semicircle shell, the one end of lower semicircle shell is articulated with the one end of last semicircle shell, the other end of lower semicircle shell passes through connecting device with the other end of last semicircle shell to be connected, the surface of lower semicircle shell and the impartial angle of surface of last semicircle shell are provided with balancing unit, the surface intermediate position of lower semicircle shell is provided with drive arrangement.
Drive arrangement includes first pivot, rectangular board, riser and action wheel, first deep groove has been seted up to the surface of lower semicircular shell, the one end of first deep groove and rectangular board is passed through first pivot and is rotated the connection, the upper end fixed connection of connecting plate and riser is passed through to the other end of rectangular board, the round hole has been seted up to the side surface of riser, is provided with gear motor in the round hole, gear motor's input is connected with external control switch's output electricity, gear motor's power output shaft coaxial fixation has the action wheel, the surface of lower semicircular shell and the position that first deep groove is in same axis are provided with the deep groove of second, the deep groove medial surface of second rotates through the second pivot with the stiff end of second extensible member to be connected, the flexible end of second extensible member is articulated with the side of rectangular board.
As an optimized technical scheme of the utility model, the internal surface of lower semicircle shell and the internal surface of last semicircle shell all are provided with interior welt.
As a preferred technical scheme of the utility model, a plurality of rectangular channels have been seted up to interior welt piece such as side that is close to the action wheel, and the internal surface of lower semicircle shell and the internal surface of first semicircle shell all are fixed with curved knot, curved knot and rectangular channel sliding connection.
As a preferred technical scheme of the utility model, the square hole has all been seted up to the position that the action wheel was kept away from to the internal surface of lower semicircle shell and the internal surface of last semicircle shell, and sliding connection has vertical fastener in the square hole.
As a preferred technical scheme of the utility model, balancing unit includes first extensible member and gyro wheel, the circular slot has all been seted up to the surface of lower semicircle shell and the surface of last semicircle shell, the circular slot inboard with the stiff end fixed connection of first extensible member, the flexible end of first extensible member passes through the circle hub rotation with the gyro wheel and is connected.
As a preferred technical scheme of the utility model, connecting device includes connecting shell, lower connecting shell and connecting piece, and first semicircle shell surface is close to the position of second semicircle shell and the side fixed connection of last connecting shell, and lower semicircle shell surface is close to the position of first semicircle shell and the side fixed connection of lower connecting shell, and the side equidistance that the connecting piece is close to first semicircle shell is fixed with a plurality of swash plate, and the lower extreme of connecting piece runs through the bottom surface of last connecting shell and the upper surface of lower connecting shell in proper order, and the square groove has been seted up to lower connecting shell lower surface, and the square inslot is provided with latch device.
As a preferred technical scheme of the utility model, latch device includes third extensible member, bottom plate, diaphragm, castellated plate and cylinder, the stiff end of third extensible member and the medial surface fixed connection of connecting the shell side groove down, the flexible end of third extensible member and one side fixed connection of bottom plate, the opposite side of bottom plate is fixed with the castellated plate, and the castellated plate joint is between two adjacent swash plates, the bottom plate side is located the position and the cylindrical one end fixed connection of castellated plate both sides, the cylindrical other end run through down connect the shell and with the side fixed connection of diaphragm.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses the supplementary threading device that highway construction cable was buried underground, lower semicircle shell and last semicircle shell can press from both sides the cable in the centre, and the device can take the cable to move in the cable threading pipe, and the action wheel can also promote the cable and remove simultaneously, can be more laborsaving, improves threading efficiency to can also reduce the cost of labor, protection cable top layer.
2. The utility model discloses supplementary threading device that highway construction cable was buried underground, interior backing member can make the device more tight with the cable centre gripping, can also be through the cable of the different diameters of interior backing member centre gripping of changing different thickness simultaneously for the device has higher suitability.
3. The utility model discloses supplementary threading device that highway construction cable was buried underground, balancing unit can be so that the device is in the intraductal keep balance of cable threading to reduce the friction between device and the cable threading inside pipe wall, make the threading laborsaving quick more.
4. The utility model discloses the supplementary threading device that highway construction cable was buried underground, connecting device can adjust the distance between lower semicircle shell and the last semicircle shell, and the lock is convenient, easy operation.
Drawings
Fig. 1 is a schematic view of the bottom structure of the present invention;
FIG. 2 is a schematic top view of the present invention;
FIG. 3 is a schematic view of the present invention in a partial cross-sectional view;
fig. 4 is an enlarged view of a structure shown in fig. 3.
In the figure: 1 lower semicircle shell, 2 upper semicircle shell, 3 first extensible member, 4 gyro wheels, 5 vertical fasteners, 6 interior lining parts, 7 upper connecting shell, 8 lower connecting shell, 9 transverse plates, 10 sloping plates, 11 connecting pieces, 12 first rotating shafts, 13 long plates, 14 gear motors, 15 vertical plates, 16 driving wheels, 17 second rotating shafts, 18 second deep grooves, 19 first deep grooves, 20 toothed plates, 21 second extensible members, 22 bent buckles, 23 third extensible members, 24 bottom plates and 25 cylinders.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: an auxiliary threading device for burying a highway construction cable comprises a lower semicircular shell 1 and an upper semicircular shell 2, wherein one end of the lower semicircular shell 1 is hinged with one end of the upper semicircular shell 2, the other end of the lower semicircular shell 1 is connected with the other end of the upper semicircular shell 2 through a connecting device, a balancing device is arranged on the outer surface of the lower semicircular shell 1 and the outer surface of the upper semicircular shell 2 at equal angles, a driving device is arranged at the middle position of the outer surface of the lower semicircular shell 1 and comprises a first rotating shaft 12, a long plate 13, a vertical plate 15 and a driving wheel 16, a first deep groove 19 is formed in the outer surface of the lower semicircular shell 1, the first deep groove 19 and one end of the long plate 13 are rotatably connected through the first rotating shaft 12, the other end of the long plate 13 is fixedly connected with the upper end of the vertical plate 15 through a connecting plate, a round hole is formed in the side surface of the vertical plate 15, a speed reducing motor 14 is arranged in the round hole, a driving wheel 16 is coaxially fixed on a power output shaft of the speed reducing motor 14, a second deep groove 18 is arranged at the position, on the same axis, of the outer surface of the lower semicircular shell 1 and the first deep groove 19, the inner side surface of the second deep groove 18 is rotatably connected with the fixed end of a second telescopic part 21 through a second rotating shaft 17, the telescopic end of the second telescopic part 21 is hinged with the side surface of the long plate 13, the lower semicircular shell 1 is clamped below a cable, the upper semicircular shell 2 is rotated to be clamped above the cable and then connected through a connecting device, the device is plugged into a cable threading pipe, an external switch is controlled to open the speed reducing motor 14, the speed reducing motor 14 drives the driving wheel 16 to rotate, the driving wheel 16 pushes the device to move, the driving device and the lower pushing cable threading pipe of an external worker, the lower semicircular shell 1 and the upper semicircular shell 2 of the auxiliary threading device for road construction cable embedding can clamp the cable in the middle, the device can take the cable to move in the cable threading pipe, and action wheel 16 can also promote the cable to remove simultaneously, can be more laborsaving, improves threading efficiency to can also reduce the cost of labor, protect the cable top layer.
The inner surface of the lower semicircular shell 1 and the inner surface of the upper semicircular shell 2 are both provided with lining pieces 6, the side surfaces, close to a driving wheel 16, of the lining pieces 6 are equiangularly provided with a plurality of rectangular grooves, the inner surfaces of the lower semicircular shell 1 and the upper semicircular shell 2 are both fixed with buckles 22, the buckles 22 are in sliding connection with the rectangular grooves, the inner surfaces of the lower semicircular shell 1 and the upper semicircular shell 2 are both provided with square holes at positions far away from the driving wheel 16, the square holes are in sliding connection with vertical fasteners 5, lining pieces 6 with proper thickness are selected according to the diameters of cables, then the lining pieces 6 are clamped on the buckles 22, then the vertical fasteners 5 are pressed to limit the other side of the lining pieces 6, the lining pieces 6 of the auxiliary threading device embedded in the highway construction cables can enable the device to clamp the cables more tightly, and meanwhile, cables with different diameters can be clamped by replacing the lining pieces 6 with different thicknesses, making the device more adaptable.
Balancing unit includes first extensible member 3 and gyro wheel 4, the circular slot has all been seted up to the surface of lower semicircle shell 1 and the surface of last semicircle shell 2, the circular slot inboard is connected with the stiff end fixed connection of first extensible member 3, the flexible end of first extensible member 3 is connected through the rotation of circle axle with gyro wheel 4, gyro wheel 4 contacts with cable threading pipe inner wall under the spring force effect of first extensible member 3, this supplementary threading device balancing unit that highway construction cable was buried underground can make the device keep balance in cable threading pipe, and reduce the friction between device and the cable threading pipe inner wall, make the threading more laborsaving quick.
The connecting device comprises an upper connecting shell 7, a lower connecting shell 8 and a connecting piece 11, the position of the outer surface of the upper semicircular shell 2 close to the lower semicircular shell 1 is fixedly connected with the side surface of the upper connecting shell 7, the position of the outer surface of the lower semicircular shell 1 close to the upper semicircular shell 2 is fixedly connected with the side surface of the lower connecting shell 8, a plurality of inclined plates 10 are fixed on the side surface of the connecting piece 11 close to the upper semicircular shell 2 at equal intervals, the lower end of the connecting piece 11 sequentially penetrates through the bottom surface of the upper connecting shell 7 and the upper surface of the lower connecting shell 8, a square groove is formed in the lower surface of the lower connecting shell 8, a clamping device is arranged in the square groove and comprises a third telescopic piece 23, a bottom plate 24, a transverse plate 9, a toothed plate 20 and a cylinder 25, the fixed end of the third telescopic piece 23 is fixedly connected with the inner side surface of the square groove of the lower connecting shell 8, the telescopic end of the third telescopic piece 23 is fixedly connected with one side of, the toothed plate 20 is clamped between two adjacent inclined plates 10, the positions of the side surfaces of the bottom plate 24, which are positioned at the two sides of the toothed plate 20, are fixedly connected with one end of a cylinder 25, the other end of the cylinder 25 penetrates through the lower connecting shell 8 and is fixedly connected with the side surface of the transverse plate 9, the lower semicircular shell 1 is clamped below a cable, the upper semicircular shell 2 is rotated to be clamped above the cable, then the connecting piece 11 is pressed down to penetrate through the lower connecting shell 8, the connecting piece 11 drives the upper semicircular shell 2 to be close to the lower semicircular shell 1 so as to clamp the cable, the toothed plate 20 is clamped between the two inclined plates 10 so as to prevent the connecting piece 11 from retracting, when the cable penetrates out from the other side, the transverse plate 9 is pressed down to separate the toothed plate 20 from the inclined plates 10, then the connecting piece 11 is drawn out to separate the lower semicircular shell 1 from the upper semicircular shell 2 so as to be taken down from the surface of the cable, the auxiliary threading device for burying the cable in road construction can adjust the, and the lock is convenient and the operation is simple.
The first 3, second 21 and third 23 telescopic elements are all shock absorbing spring elements.
The geared motor 14 is sized and powered to actually require replacement.
When in use: according to the diameter of the cable, an inner lining part 6 with proper thickness is selected, then the inner lining part 6 is clamped on a curved buckle 22, then a vertical fastener 5 is pressed down to limit the other side of the inner lining part 6, then a lower semicircular shell 1 is clamped below the cable, an upper semicircular shell 2 is rotated to be clamped above the cable, then a connecting part 11 is pressed down to penetrate through a lower connecting shell 8, the connecting part 11 drives the upper semicircular shell 2 to be close to the lower semicircular shell 1 to clamp the cable, a tooth-shaped plate 20 is clamped between two inclined plates 10 to prevent the connecting part 11 from retracting, then the device is plugged into the cable threading pipe, a roller 4 is contacted with the inner wall of the cable threading pipe under the spring force of a first telescopic part 3, a long plate 13 is expanded under the acting force of a second telescopic part 21 to enable a driving wheel 16 to be contacted with the inner wall of the cable threading pipe, then an external switch is controlled to open a speed reducing motor 14, the speed reducing motor, the driving wheel 16 pushes the device to move, and the cable penetrating pipe is pushed under the resultant force of the driving device and external workers.
When the cable is passed out from the other side, the cross plate 9 is pressed down to disengage the toothed plate 20 from the sloping plate 10, and then the connecting member 11 is pulled out to separate the lower and upper half shells 1 and 2, thereby being removed from the surface of the cable.
The utility model discloses lower semicircle shell 1 and last semicircle shell 2 can press from both sides the cable in the centre, and the device can take the cable to move in the cable threading pipe, and action wheel 16 can also promote the cable and remove simultaneously, can be more laborsaving, improves threading efficiency to can also reduce the cost of labor, protection cable top layer.
The lining member 6 can enable the device to clamp the cables more tightly, and meanwhile, the lining member 6 with different thicknesses can also be replaced to clamp cables with different diameters, so that the device has higher applicability.
The balancing device can keep the device balanced in the cable threading pipe, and reduce friction between the device and the inner wall of the cable threading pipe, so that threading is more labor-saving and faster.
The connecting device can adjust the distance between the lower semicircular shell 1 and the upper semicircular shell 2, and is convenient to buckle and simple to operate.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides a supplementary threading device that highway construction cable was buried underground, includes lower semicircle shell (1) and last semicircle shell (2), its characterized in that: one end of the lower semicircular shell (1) is hinged with one end of the upper semicircular shell (2), the other end of the lower semicircular shell (1) is connected with the other end of the upper semicircular shell (2) through a connecting device, a balancing device is arranged at equal angles on the outer surface of the lower semicircular shell (1) and the outer surface of the upper semicircular shell (2), and a driving device is arranged in the middle of the outer surface of the lower semicircular shell (1);
the driving device comprises a first rotating shaft (12), a long plate (13), a vertical plate (15) and a driving wheel (16), wherein a first deep groove (19) is formed in the outer surface of the lower semicircular shell (1), one end of the first deep groove (19) and one end of the long plate (13) are rotatably connected through the first rotating shaft (12), the other end of the long plate (13) is fixedly connected with the upper end of the vertical plate (15) through a connecting plate, a round hole is formed in the side surface of the vertical plate (15), a speed reducing motor (14) is arranged in the round hole, the input end of the speed reducing motor (14) is electrically connected with the output end of an external control switch, the driving wheel (16) is coaxially fixed on a power output shaft of the speed reducing motor (14), a second deep groove (18) is formed in the position, in which the outer surface of the lower semicircular shell (1) and the first deep groove (19) are located on the same axis, the inner side surface of the second deep groove (18) is rotatably connected with the fixed, the telescopic end of the second telescopic piece (21) is hinged with the side surface of the long plate (13).
2. The auxiliary threading device for road construction cable burying according to claim 1, wherein: and lining pieces (6) are arranged on the inner surfaces of the lower semicircular shell (1) and the upper semicircular shell (2).
3. The auxiliary threading device for road construction cable burying according to claim 2, wherein: the side surface of the lining piece (6) close to the driving wheel (16) is provided with a plurality of rectangular grooves at equal angles, the inner surfaces of the lower semicircular shell (1) and the upper semicircular shell (2) are both fixed with bent buckles (22), and the bent buckles (22) are in sliding connection with the rectangular grooves.
4. The auxiliary threading device for road construction cable burying according to claim 2, wherein: the position that the action wheel (16) was kept away from to the internal surface of lower semicircle shell (1) and the internal surface of last semicircle shell (2) has all seted up the square hole, and sliding connection has vertical fastener (5) in the square hole.
5. The auxiliary threading device for road construction cable burying according to claim 1, wherein: balancing unit includes first extensible member (3) and gyro wheel (4), the circular slot has all been seted up to the surface of lower semicircle shell (1) and the surface of last semicircle shell (2), the circular slot inboard with the stiff end fixed connection of first extensible member (3), the flexible end of first extensible member (3) is connected through the rotation of circle axle with gyro wheel (4).
6. The auxiliary threading device for road construction cable burying according to claim 1, wherein: connecting device includes connecting shell (7), lower connecting shell (8) and connecting piece (11), the position that first semicircle shell (2) surface is close to first semicircle shell (1) down and the side fixed connection of last connecting shell (7), the position that first semicircle shell (1) surface is close to first semicircle shell (2) down and the side fixed connection of lower connecting shell (8), side equidistance that connecting piece (11) are close to first semicircle shell (2) is fixed with a plurality of swash plate (10), the lower extreme of connecting piece (11) runs through the bottom surface of last connecting shell (7) and the upper surface of lower connecting shell (8) in proper order, the square groove has been seted up to lower connecting shell (8) lower surface, the square inslot is provided with latch device.
7. The auxiliary threading device for road construction cable burying according to claim 6, wherein: clamping device includes third extensible member (23), bottom plate (24), diaphragm (9), toothed plate (20) and cylinder (25), the stiff end of third extensible member (23) and the medial surface fixed connection who connects shell (8) square groove down, the flexible end of third extensible member (23) and one side fixed connection of bottom plate (24), the opposite side of bottom plate (24) is fixed with toothed plate (20), and toothed plate (20) joint is between two adjacent swash plates (10), the position that bottom plate (24) side is located toothed plate (20) both sides and the one end fixed connection of cylinder (25), the other end of cylinder (25) runs through down connect shell (8) and with the side fixed connection of diaphragm (9).
CN201921519336.3U 2019-09-12 2019-09-12 Auxiliary threading device for burying highway construction cable underground Active CN210490293U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921519336.3U CN210490293U (en) 2019-09-12 2019-09-12 Auxiliary threading device for burying highway construction cable underground

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921519336.3U CN210490293U (en) 2019-09-12 2019-09-12 Auxiliary threading device for burying highway construction cable underground

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115800105A (en) * 2022-10-27 2023-03-14 贵州电网有限责任公司 Auxiliary device is put in cable exhibition
CN116154679A (en) * 2022-12-13 2023-05-23 中建新疆建工(集团)有限公司 Cable laying system and method based on artificial intelligence technology

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115800105A (en) * 2022-10-27 2023-03-14 贵州电网有限责任公司 Auxiliary device is put in cable exhibition
CN116154679A (en) * 2022-12-13 2023-05-23 中建新疆建工(集团)有限公司 Cable laying system and method based on artificial intelligence technology
CN116154679B (en) * 2022-12-13 2023-10-27 中建新疆建工(集团)有限公司 Cable laying system and method

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GR01 Patent grant
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Effective date of registration: 20200617

Address after: 1702, unit 2, No. 12, Xiangshan Road, Laoshan District, Qingdao, Shandong Province

Patentee after: Shandong Tiancheng Traffic Engineering Co.,Ltd.

Address before: 450008 No. 1, building 30, No. 37, seven street, Zhengzhou, Henan

Patentee before: Wang Yan

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TR01 Transfer of patent right

Effective date of registration: 20221101

Address after: 246000 No. 1366, Wangjiang Avenue, Huayang Town, Wangjiang County, Anqing City, Anhui Province

Patentee after: Anhui Binjiang Road and Bridge Engineering Co.,Ltd.

Address before: 266000 1702, Unit 2, No. 12, Xiangshan Road, Laoshan District, Qingdao, Shandong

Patentee before: Shandong Tiancheng Traffic Engineering Co.,Ltd.