CN215956010U - Cable pipe laying guiding device - Google Patents

Cable pipe laying guiding device Download PDF

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Publication number
CN215956010U
CN215956010U CN202122074535.1U CN202122074535U CN215956010U CN 215956010 U CN215956010 U CN 215956010U CN 202122074535 U CN202122074535 U CN 202122074535U CN 215956010 U CN215956010 U CN 215956010U
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CN
China
Prior art keywords
supporting disk
cable
clamp
pipe
supporting
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CN202122074535.1U
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Chinese (zh)
Inventor
张志杰
高建明
赵地阳
赵伟
高斌
刘玥岚
胡怡飞
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Linfen Liaoyuan City Lighting Co ltd
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Linfen Liaoyuan City Lighting Co ltd
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Priority to CN202122074535.1U priority Critical patent/CN215956010U/en
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Publication of CN215956010U publication Critical patent/CN215956010U/en
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Abstract

The utility model discloses a cable pipe laying guiding device, and belongs to the technical field of cable pipe laying. The cable laying device solves the problems that in the prior art, when a cable is laid through a cable pipe, the cable is difficult to drag in a long distance and the inner wall of the cable pipe easily scratches a cable insulating layer. It mainly includes first supporting disk and second supporting disk, install the pipe clamp between first supporting disk and the second supporting disk, the pipe clamp can be dismantled with first supporting disk and be connected, first supporting disk is connected with the second supporting disk, and the gyro wheel is all installed in the outside of first supporting disk and second supporting disk.

Description

Cable pipe laying guiding device
Technical Field
The utility model relates to the technical field of cable pipe laying, in particular to a cable pipe laying guiding device.
Background
In the lighting construction, most cables are hidden underground, and although later maintenance is considered in the municipal construction process, the cables are limited to urban construction, and the detection and maintenance of cable faults are not convenient. Therefore, cable laying is a critical project, and the quality of the cable laying plays a great role in later use. At present, the conventional method for penetrating a cable in a cable pipe is to continuously drag the cable by overcoming the friction force between the cable and the inner wall of the pipeline through manpower or machinery. This kind of mode is not only hard, often can appear laying behind certain length just can't continue to drag the cable condition moreover, and field work personnel's usual solution just is to cut the cable after this kind of condition appears, makes cable joint with the broken end, but because cable joint resistance increases, causes cable joint to generate heat, uses for a long time and can bring the potential safety hazard. If the inner wall of the cable tube has burrs or the roughness of the inner wall of the cable tube cannot meet the requirement, the cable insulation layer is damaged when sliding friction is carried out on the inner wall of the cable tube, and the service life of the cable is shortened.
Disclosure of Invention
The utility model aims to provide a cable pipe laying guide device to solve the problems that in the prior art, when cables are laid through cable pipe laying, the cables are difficult to drag for a long distance and the inner walls of the cable pipes are easy to scratch cable insulation layers.
The utility model is realized by adopting the following technical scheme: the utility model provides a cable pipe laying guider, includes first supporting disk and the second supporting disk of being connected with first supporting disk, install the pipe clamp between first supporting disk and the second supporting disk, the pipe clamp can be dismantled with first supporting disk and be connected, the gyro wheel is all installed in the outside of first supporting disk and the outside of second supporting disk.
Further, the pipe clamp comprises a clamp sheet, the clamp sheet is provided with an opening, and the clamp sheet is connected with the first supporting disc through a bolt.
Furthermore, the inner side surface of the hoop sheet is provided with a rubber layer.
Further, the roller is cylindrical or spherical.
Furthermore, a plug-and-buckle structure is arranged between the first supporting disk and the second supporting disk and connected through the plug-and-buckle structure.
Further, it is articulated through the articulated shaft between first supporting disk and the second supporting disk, and be equipped with fixed knot between first supporting disk and the second supporting disk and construct.
Compared with the prior art, the utility model has the beneficial effects that:
the utility model provides a cable pipe laying guiding device, which has the following beneficial effects:
1. according to the utility model, the rollers are arranged in the circumferential direction of the outer sides of the first supporting disk and the second supporting disk, so that when the cable moves in the cable tube, the rollers directly contact with the inner wall of the cable tube in a rolling manner, and the cable is prevented from contacting with the cable tube, thereby reducing the friction resistance generated when the cable moves in the cable tube, reducing the tensile stress borne by the cable, lengthening the one-time laying length of the cable, reducing the cable joint, reducing the labor intensity of constructors and accelerating the construction speed.
2. The utility model avoids the direct contact between the cable and the cable tube, thereby effectively avoiding the cable from being scratched, ensuring the surface quality of the cable and prolonging the service life of the cable.
3. The utility model can be continuously left in the cable tube after the cable is laid, thereby facilitating the later maintenance and updating of the cable.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a front view of the present invention;
FIG. 3 is a front view of another configuration of the present invention;
FIG. 4 is a state diagram of the use of the present invention;
FIG. 5 is a schematic view of a roller buffering structure according to the present invention.
In the figure: 1. a first support tray; 2. a second support disc; 3. a roller; 4. a clip sheet; 5. an opening; 6. an upper insertion rod; 7. a lower inserted link; 8. a first arc-shaped hoop; 9. an upper clamping groove; 10. an elastic shaft; 11. a second arc-shaped hoop; 12. a circular tube; 13. a support bar; 14. an inner convex edge; 15. an outer convex edge; 16. a spring.
Detailed Description
The utility model will be further explained with reference to the drawings.
The utility model provides a cable pipe laying guider, includes first supporting disk 1 and second supporting disk 2, install the pipe clamp between first supporting disk 1 and the second supporting disk 2, the pipe clamp can be dismantled with first supporting disk 1 and be connected, first supporting disk 1 is connected with second supporting disk 2, and the outside of first supporting disk 1 and the outside of second supporting disk 2 all install gyro wheel 3.
The utility model is used as an auxiliary tool for laying the cable in the cable tube and is arranged between the cable and the cable tube. The cable penetrates through the pipe clamp and is clamped by the pipe clamp, so that the pipe clamp, the first supporting plate 1 and the second supporting plate 2 can be driven to move simultaneously when the cable moves in the cable pipe; the roller 3 extends out of the outer side surfaces of the first supporting disc 1 and the second supporting disc 2, so that the roller 3 is always contacted with the inner wall of the cable tube when the first supporting disc 1 and the second supporting disc 2 move in the cable tube; when the device is used, the pipe clamp and the first supporting disc 1 can be fixed, then a cable is fixed in the pipe clamp, and finally the first supporting disc 1 and the second supporting disc 2 are fixedly connected with each other; the distance between two adjacent cables can be controlled between 10 and 15 meters according to construction conditions during cable construction.
The pipe clamp comprises a clamp piece 4, the clamp piece 4 is provided with an opening 5, and the clamp piece 4 is connected with the first supporting disc 1 through a bolt.
The clamp piece 4 has elasticity, when a cable needs to be placed into the clamp piece 4, people can move the two ends of the clamp piece 4 up and down to enlarge the opening 5 of the clamp piece 4, so that the cable is placed into the clamp piece 4 and clamped by the clamp piece 4, the clamp piece 4 can be opened with a fastening hole, the first support disc 1 is opened with a threaded hole, and the fastening hole and the threaded hole are internally provided with a fastening bolt; the structure of the pipe clamp can be various, such as: the pipe clamp includes first arc clamp 8 and second arc clamp 11, and the equal fixed mounting engaging lug in both ends of the both ends of first arc clamp 8 and second arc clamp 11 passes through bolt and nut fastening, and engaging lug on the first arc clamp 8 and the engaging lug on the second arc clamp 11 pass through the bolt and nut fastening, first arc clamp 8 is connected with first supporting disk 1 through the bolt, the medial surface of first arc clamp 8 and the medial surface of second arc clamp 11 are equipped with the rubber layer respectively.
And a rubber layer is arranged on the inner side surface of the clamp piece 4.
The clamping force of the pipe clamp can be increased by arranging the rubber layer.
The roller 3 is cylindrical or spherical.
The roller 3 is a cylindrical roller or a spherical roller, and the roller is in contact with the inner wall of the cable pipe to generate rolling friction, so that the friction resistance is reduced.
And a plug-in structure is arranged between the first supporting disk 1 and the second supporting disk 2 and is connected through the plug-in structure.
The eye-splice structure comprises an upper inserted link 6 and a lower inserted link 7 which are arranged on a first supporting disc 1, a gap is arranged between the upper inserted link 6 and the lower inserted link 7, the upper inserted link 6 and the lower inserted link 7 are both elastic, conical tenons are arranged at one end of the upper inserted link 6 and one end of the lower inserted link 7, a horizontal groove is formed in a second supporting disc 2, an upper clamping groove 9 and a lower clamping groove are respectively formed at one end of the horizontal groove of the second supporting disc 2, the maximum vertical distance between the upper inserted link 6 and the lower inserted link 7 is smaller than the height of the horizontal groove, the maximum vertical distance between the conical tenons on the upper inserted link 6 and the lower inserted link 7 is larger than the height of the horizontal groove, when the upper inserted link 6 and the lower inserted link 7 are inserted into the horizontal groove, the conical tenons on the upper inserted link 6 and the lower inserted link 7 are respectively subjected to downward and upward forces, so that the upper inserted link 6 and the lower inserted link 7 are respectively inclined inwards until the tenons on the upper inserted link 6 and the lower inserted link 7 are respectively inserted into the upper inserted into the lower inserted link 9 and the lower inserted into the horizontal groove 9 and the lower link 7 In (1).
Articulated through the articulated shaft between first supporting disk 1 and the second supporting disk 2, and be equipped with fixed knot between first supporting disk 1 and the second supporting disk 2 and construct.
The fixing structure of the utility model can be a bolt and a nut.
The roller 3 is also provided with a buffer structure, wherein one buffer structure comprises an elastic shaft 10, the roller 3 is arranged on the elastic shaft 10 and rotates relative to the elastic shaft 10, the elastic shaft 10 is connected with the first supporting disk 1 or the second supporting disk 2, and when a protrusion is arranged in the cable tube, the roller 3 can press the elastic shaft 10 to deform the elastic shaft 10; another kind of buffer structure includes the pipe 12 that is connected with first supporting disk 1 or second supporting disk 2, insert bracing piece 13 in the pipe 12, bracing piece 13 bottom installation pivot, installation gyro wheel 3 in the pivot, the interior side-mounting spring 16 of bracing piece 13 of pipe 12, protruding edge 14 in the installation of pipe 12 bottom, the last protruding edge 15 of installation of bracing piece 13, can restrict bracing piece 13 downstream through protruding edge 14 in 14 and the evagination along 15, when there is the protrusion in the cable duct, gyro wheel 3 can act on bracing piece 13 and further compress the spring, thereby reach the cushioning effect.

Claims (6)

1. The utility model provides a cable pipe laying guider which characterized in that: including first supporting disk (1) and second supporting disk (2) be connected with first supporting disk (1), install the pipe clamp between first supporting disk (1) and second supporting disk (2), the pipe clamp can be dismantled with first supporting disk (1) and be connected, gyro wheel (3) are all installed in the outside of first supporting disk (1) and the outside of second supporting disk (2).
2. A cable laying guide according to claim 1, wherein: the pipe clamp comprises a clamp piece (4), the clamp piece (4) is provided with an opening (5), and the clamp piece (4) is connected with the first supporting disc (1) through a bolt.
3. A cable laying guide according to claim 2, wherein: and a rubber layer is arranged on the inner side surface of the clamp sheet (4).
4. A cable laying guide according to claim 1, wherein: the roller (3) is cylindrical or spherical.
5. A cable laying guide according to claim 1, wherein: and a plug-in structure is arranged between the first supporting disk (1) and the second supporting disk (2) and is connected through the plug-in structure.
6. A cable laying guide according to claim 1, wherein: the first supporting disk (1) is hinged to the second supporting disk (2) through a hinge shaft, and a fixing structure is arranged between the first supporting disk (1) and the second supporting disk (2).
CN202122074535.1U 2021-08-31 2021-08-31 Cable pipe laying guiding device Active CN215956010U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122074535.1U CN215956010U (en) 2021-08-31 2021-08-31 Cable pipe laying guiding device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122074535.1U CN215956010U (en) 2021-08-31 2021-08-31 Cable pipe laying guiding device

Publications (1)

Publication Number Publication Date
CN215956010U true CN215956010U (en) 2022-03-04

Family

ID=80431218

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122074535.1U Active CN215956010U (en) 2021-08-31 2021-08-31 Cable pipe laying guiding device

Country Status (1)

Country Link
CN (1) CN215956010U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114614405A (en) * 2022-05-11 2022-06-10 国网山东省电力公司菏泽供电公司 Cable installation device for power distribution network construction
CN118117509A (en) * 2024-03-04 2024-05-31 长缆科技集团股份有限公司 High-voltage cable penetrating pipe laying method

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114614405A (en) * 2022-05-11 2022-06-10 国网山东省电力公司菏泽供电公司 Cable installation device for power distribution network construction
CN114614405B (en) * 2022-05-11 2022-08-02 国网山东省电力公司菏泽供电公司 Cable installation device for power distribution network construction
CN118117509A (en) * 2024-03-04 2024-05-31 长缆科技集团股份有限公司 High-voltage cable penetrating pipe laying method

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