CN213125384U - High-altitude cable overhauling device - Google Patents

High-altitude cable overhauling device Download PDF

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Publication number
CN213125384U
CN213125384U CN202021914697.0U CN202021914697U CN213125384U CN 213125384 U CN213125384 U CN 213125384U CN 202021914697 U CN202021914697 U CN 202021914697U CN 213125384 U CN213125384 U CN 213125384U
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block
fixed
sliding
cell body
groove
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CN202021914697.0U
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Chinese (zh)
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张月娥
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Shenmu Xikai Industry and Trade Co.,Ltd.
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Individual
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Abstract

The utility model belongs to the cable groove box field, especially, high altitude cable overhauls device, it is inconvenient to dismantle to the cable box body, the problem of the maintenance efficiency that influences the cable maintenance, the scheme is put forward at present, it includes the cell body and locates the capping at cell body top, be fixed with the groove pipe rack between the both sides inner wall of cell body, the both sides inner wall of cell body has all been seted up two and has been the symmetric distribution sliding tray, the inner wall of each sliding tray all is fixed with the slide bar, the sliding block has been cup jointed in the surface slip of slide bar, be fixed with clamping spring between one side inner wall of sliding tray and the slide bar, the bottom of capping is fixed with the fixed block with the sliding block one-to-one; the utility model discloses in through upwards pulling L type ejector pin for the sliding block removes towards the both sides of cell body, and the limiting displacement to the fixed block has been removed to lug on the sliding block, and simultaneously, the tight clamp of fixed block is removed to the clamp lever, and at this moment, extract the capping and can accomplish the separation between capping and the cell body.

Description

High-altitude cable overhauling device
Technical Field
The utility model relates to a cable tray technical field especially relates to an overhaul device of high altitude cable.
Background
With the rapid development of society, the use of cables is more and more extensive, and whether the running safety of cable lines is directly related to the safety of people's lives and properties. The cable faults mainly include four types of external force damage, cable construction quality, cable and accessory quality and cable body insulation aging, the cable is carefully overhauled, and many operation faults can be avoided. The maintenance of the cable is therefore of great importance for the safe use of the cable.
The cable trough box is widely used for laying control cables, pipe cables and the like of computer cables, communication cables, thermocouple cables and other high-sensitivity systems; the cable trough box in the prior art is generally composed of a trough body and a cover body above the trough body, wherein the trough body and the cover body are mutually matched and clamped; generally, a plurality of wires, cables and the like are arranged in the same groove body, once a fault occurs and the maintenance is needed, on one hand, the cover body is troublesome to disassemble and needs to be careful so as to avoid breaking the cover body, on the other hand, the number of the cables, the wires and the like in the groove body is too many, and the cables and the wires are often of different types, so that the difference is troublesome and the maintenance time is delayed.
Therefore, a high-altitude cable maintenance device is needed to solve the problem that the cable box body is inconvenient to disassemble and the maintenance efficiency of cable maintenance is affected.
SUMMERY OF THE UTILITY MODEL
The utility model provides a pair of high altitude cable's maintenance device has solved the cable box body and has dismantled inconveniently, influences the maintenance efficiency's of cable maintenance problem.
In order to achieve the above purpose, the utility model adopts the following technical scheme: an overhaul device for high-altitude cables comprises a groove body and a groove cover arranged at the top of the groove body, wherein a groove pipe placing frame is fixed between the inner walls of the two sides of the groove body, the inner walls of the two sides of the groove body are respectively provided with two sliding grooves which are symmetrically distributed, the inner wall of each sliding groove is fixed with a sliding rod, the outer surface of each sliding rod is sleeved with a sliding block in a sliding manner, a clamping spring is fixed between each sliding block and the inner wall of one side of each sliding groove, the bottom end of the groove cover is fixedly provided with a fixed block which corresponds to each sliding block one by one, the opposite side surfaces of each fixed block and each sliding block are respectively fixed with a lug, the lugs on the sliding blocks and the lugs on the fixed blocks are vertically distributed, the groove body is arranged between the two adjacent sliding blocks and is provided with an ejection groove, and an adjusting piece, and a clamping piece matched with the adjusting piece is installed at the top end of the groove body.
Preferably, the adjusting part comprises an L-shaped ejector rod slidably connected with the ejection groove, a moving block is fixedly sleeved on the outer surface of the L-shaped ejector rod, an ejection spring is fixed between the moving block and the ejection groove, and a connecting rod is hinged between one side of the moving block and the adjacent sliding block.
Preferably, the clamping piece includes two sloping blocks that respectively with cell body sliding connection, two be provided with the kicking block fixed with L type ejector pin top between the sloping block, one side that the sloping block is kept away from the kicking block is fixed with the clamping rod, the tip of clamping rod with the side contact of fixed block.
Preferably, the two lugs are hemispherical, the outer surfaces of the two lugs are in contact, and the end parts of the two lugs are positioned on the same vertical horizontal line.
Preferably, the cross section of the top block is in an inverted isosceles trapezoid shape, and the contact surface of the top block and the adjacent inclined block is an adaptive inclined surface.
Preferably, the lower surface of the fixing block is in contact with the upper surface of the groove body.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses in when dismantling capping and cell body, through upwards spurting L type ejector pin, can drive movable block compression ejection spring, simultaneously through the effect of connecting rod, make the sliding block move towards the both sides of cell body, at this moment, the limiting displacement to the fixed block has been removed to the lug on the sliding block, and simultaneously, the clamp lever removes the clamp to the fixed block tightly, at this moment, extract the capping and can accomplish the separation between capping and the cell body, and easy operation dismantles easily, thereby improve the maintenance speed to the cable to a certain extent.
2. The utility model discloses in upwards stimulate L type ejector pin, can drive movable block compression ejection spring, simultaneously through the effect of connecting rod, make the sliding block remove towards the both sides of cell body, thereby be convenient for the installation of capping and cell body, loosen the effort to L type ejector pin, can be through ejection spring and clamping spring's elastic action, spacing through two lugs, form the clamp tight of sliding block to the fixed block, thereby make capping and cell body accomplish the installation, and simultaneously, make the kicking block accomplish the back to capping and cell body installation, the clamping rod contacts the side of fixed block tightly, make capping and cell body stability when installing the use better.
Drawings
Fig. 1 is a schematic side sectional structure view of an overhaul device for overhead cables provided by the utility model;
FIG. 2 is an enlarged view of area A of FIG. 1;
fig. 3 is a schematic view of a front view structure of an overhaul device for overhead cables provided by the utility model;
fig. 4 is the utility model provides a high altitude cable's maintenance device look sideways at schematic structure diagram.
In the figure: 1. a trough body; 2. a slot cover; 3. placing a grooved tube rack; 4. a sliding groove; 5. a slide bar; 6. a slider; 7. a clamping spring; 8. a fixed block; 9. a bump; 10. ejecting the groove; 11. an adjustment member; 111. an L-shaped ejector rod; 112. a moving block; 113. ejecting a spring; 114. a connecting rod; 12. a clamping member; 121. a sloping block; 122. a top block; 123. the clamping rod.
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.
Referring to fig. 1-4, an overhead cable maintenance device comprises a tank body 1 and a tank cover 2 arranged at the top of the tank body 1, wherein a tank pipe placing frame 3 is fixed between the inner walls of two sides of the tank body 1, specifically, the placing ends of the tank pipe placing frame 3 are distributed in a U shape and used for placing cables, and the tank cover 2 and the tank body 1 form a closed state; the inner walls of two sides of the groove body 1 are respectively provided with two sliding grooves 4 which are symmetrically distributed, the inner wall of each sliding groove 4 is fixedly provided with a sliding rod 5, the outer surface of each sliding rod 5 is sleeved with a sliding block 6 in a sliding way, a clamping spring 7 is fixed between each sliding block 6 and the inner wall of one side of each sliding groove 4, the bottom end of the groove cover 2 is fixedly provided with a fixed block 8 which is in one-to-one correspondence with each sliding block 6, the opposite side surfaces of each fixed block 8 and each sliding block 6 are respectively and fixedly provided with a lug 9, each lug 9 positioned on each sliding block 6 and each lug 9 positioned on each fixed block 8 are vertically distributed, the groove body 1 is provided with an ejection groove 10 positioned between two adjacent sliding blocks 6, the inside of the ejection groove 10 is provided with an adjusting part 11 which is connected with the two adjacent sliding blocks 6, the top end of the groove body 1 is provided with a clamping part 12, by adjusting the clamping piece 12, the slot cover 2 is placed above the slot body 1, at this time, the lug 9 on the sliding block 6 is compressed by the lug 9 on the fixed block 8, so that the sliding block 6 moves towards two sides of the slot body 1, when the lug 9 on the fixed block 8 is positioned below the lug 9 on the sliding block 6, the clamping of the sliding block 6 on the fixed block 8 is formed through the elastic action of the clamping spring 7 and the limit of the two lugs 9, so that the groove cover 2 and the groove body 1 are installed, the adjusting piece 11 can be adjusted by adjusting the adjusting piece 11 without pressing through the convex block 9 on the fixing block 8, the sliding block 6 can move towards the two sides of the groove body 1, so that the groove cover 2 and the groove body 1 can be conveniently installed, and the clamping effect of the fixing block 8 is further improved due to the arrangement of the clamping element 12, so that the installation of the groove cover 2 and the groove body 1 is more stable; when needs are separated to capping 2 and cell body 1, adjust adjusting part 11, remove the tight spacing effect of clamp to fixed block 8, extract capping 2 and can accomplish with the separation of cell body 1, it is convenient to dismantle to improve the maintenance speed to the cable to a certain extent.
The adjusting part 11 comprises an L-shaped ejector rod 111 slidably connected with the ejection groove 10, a moving block 112 is fixedly sleeved on the outer surface of the L-shaped ejector rod 111, an ejection spring 113 is fixed between the moving block 112 and the ejection groove 10, a connecting rod 114 is hinged between one side of the moving block 112 and the adjacent sliding block 6, specifically, the L-shaped ejector rod 111 is pulled upwards to drive the moving block 112 to compress the ejection spring 113, and meanwhile, through the action of the connecting rod 114, the sliding block 6 moves towards the two sides of the groove body 1, so that the installation of the groove cover 2 and the groove body 1 is facilitated, the acting force on the L-shaped ejector rod 111 is released, the elastic action of the ejection spring 113 and the clamping spring 7 can be achieved, the limit of the two sliding block lugs 9 is achieved, the clamping of the fixing block 8 by the ejection spring 6 is formed, and.
Clamping piece 12 includes two sloping blocks 121 with cell body 1 sliding connection respectively, be provided with between two sloping blocks 121 with the fixed kicking block 122 in L type ejector pin 111 top, one side that sloping block 121 kept away from kicking block 122 is fixed with clamping rod 123, the tip of clamping rod 123 contacts with the side of fixed block 8, it is specific, when capping 2 and cell body 1 form the installation, through ejecting spring 113's elastic force effect this moment, it produces the contact extrusion with the sloping block 121 of both sides to drive kicking block 122, can make clamping rod 123 contact with fixed block 8, make capping 2 and cell body 1 through the clamp to fixed block 8 spacing, accomplish the installation to capping 2 and cell body 1, make capping 2 and cell body 1 installation stability better.
Two lugs 9 all are the hemisphere, and the surface of two lugs 9 contacts, and on the same vertical water line of tip equal position of two lugs 9, it is concrete, the setting of the shape of lug 9 for sliding block 6 and fixed block 8 form limiting displacement through lug 9, stability when effectively having guaranteed the installation of capping 2 with cell body 1, the hemisphere, the better dismantlement of capping 2 and cell body 1 of being convenient for.
The cross-section of kicking block 122 is the isosceles trapezoid that handstands, and kicking block 122 is the inclined plane of looks adaptation with the contact surface of adjacent sloping block 121, and is concrete, the cooperation of kicking block 122 and sloping block 121 shape for kicking block 122 is accomplishing the back in the installation to capping 2 and cell body 1, and clamping rod 123 contacts the side of fixed block 8 and presss from both sides tightly, makes capping 2 and cell body 1 stability when the installation is used better.
The lower surface of fixed block 8 contacts with the upper surface of cell body 1, and is concrete, through the area of contact of fixed block 8 increase capping 2 with cell body 1 for the stability of capping 2 with the installation of cell body 1 is higher.
The working principle is as follows: when the slot cover 2 and the slot body 1 are installed, a cable is placed on the slot tube placing frame 3 in the slot body 1, the L-shaped ejector rod 111 is pulled upwards to drive the moving block 112 to compress the ejector spring 113, meanwhile, the sliding block 6 is moved towards two sides of the slot body 1 under the action of the connecting rod 114, so that the slot cover 2 and the slot body 1 can be conveniently installed, the acting force on the L-shaped ejector rod 111 is released, the sliding block 6 can clamp the fixed block 8 through the elastic action of the ejector spring 113 and the clamping spring 7 and the limiting of the two convex blocks 9, the slot cover 2 and the slot body 1 are installed, meanwhile, after the top block 122 completes the installation of the slot cover 2 and the slot body 1, the clamping rod 123 is used for clamping the side face of the fixed block 8 in a contact mode, and the stability of the slot cover 2 and the slot body 1 is better when the slot cover and the slot; when dismantling capping 2 and cell body 1, through upwards pulling L type ejector pin 111, can drive movable block 112 compression ejection spring 113, simultaneously through the effect of connecting rod 114, make sliding block 6 remove towards the both sides of cell body 1, at this moment, the limiting displacement to fixed block 8 has been relieved to lug 9 on sliding block 6, and simultaneously, clamping rod 123 relieves the clamp of fixed block 8, at this moment, extract capping 2 and can accomplish the separation between capping 2 and cell body 1, and is simple in operation, and it is easy to dismantle, thereby improve the maintenance speed to the cable to a certain extent.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (6)

1. The utility model provides an overhaul device of high altitude cable, includes cell body (1) and locates capping (2) at cell body (1) top, a serial communication port, be fixed with between the both sides inner wall of cell body (1) slotted pipe rack (3), two sliding tray (4) that are the symmetric distribution are all seted up to the both sides inner wall of cell body (1), every the inner wall of sliding tray (4) all is fixed with slide bar (5), sliding block (6) have been cup jointed in the surface slip of slide bar (5), sliding block (6) with be fixed with clamping spring (7) between one side inner wall of sliding tray (4), the bottom mounting of capping (2) has fixed block (8) with sliding block (6) one-to-one, fixed block (8) with the opposite flank of sliding block (6) all is fixed with lug (9), is located on sliding block (6) lug (9) with be located on fixed block (8) lug (9) are upper and lower distribution The ejection groove (10) is formed between two adjacent sliding blocks (6) and located in the groove body (1), an adjusting piece (11) connected with the two adjacent sliding blocks (6) is installed inside the ejection groove (10), and a clamping piece (12) matched with the adjusting piece (11) is installed on the top end of the groove body (1).
2. The aerial cable overhauling device as claimed in claim 1, wherein the adjusting part (11) comprises an L-shaped ejector rod (111) slidably connected with the ejecting groove (10), a moving block (112) is fixedly sleeved on the outer surface of the L-shaped ejector rod (111), an ejecting spring (113) is fixed between the moving block (112) and the ejecting groove (10), and a connecting rod (114) is hinged between one side of the moving block (112) and the adjacent sliding block (6).
3. The aerial cable overhauling device as claimed in claim 1, wherein the clamping piece (12) comprises two inclined blocks (121) which are respectively connected with the groove body (1) in a sliding manner, an ejector block (122) fixed with the top end of the L-shaped ejector rod (111) is arranged between the two inclined blocks (121), a clamping rod (123) is fixed on one side, far away from the ejector block (122), of each inclined block (121), and the end part of each clamping rod (123) is in contact with the side surface of the fixing block (8).
4. The maintenance device for the aerial cable according to claim 1, wherein the two bumps (9) are hemispherical, the outer surfaces of the two bumps (9) are in contact, and the ends of the two bumps (9) are positioned on the same vertical horizontal line.
5. The aerial cable overhauling device as claimed in claim 3, wherein the cross section of the top block (122) is in an inverted isosceles trapezoid shape, and the contact surface of the top block (122) and the adjacent inclined block (121) is a matched inclined surface.
6. The maintenance device of the overhead cable according to claim 1, wherein the lower surface of the fixing block (8) is in contact with the upper surface of the tank body (1).
CN202021914697.0U 2020-09-04 2020-09-04 High-altitude cable overhauling device Active CN213125384U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021914697.0U CN213125384U (en) 2020-09-04 2020-09-04 High-altitude cable overhauling device

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Application Number Priority Date Filing Date Title
CN202021914697.0U CN213125384U (en) 2020-09-04 2020-09-04 High-altitude cable overhauling device

Publications (1)

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CN213125384U true CN213125384U (en) 2021-05-04

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CN202021914697.0U Active CN213125384U (en) 2020-09-04 2020-09-04 High-altitude cable overhauling device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113853080A (en) * 2021-09-09 2021-12-28 利晟(杭州)科技有限公司 Full-automatic high-pressure hydrogen storage analyzer

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113853080A (en) * 2021-09-09 2021-12-28 利晟(杭州)科技有限公司 Full-automatic high-pressure hydrogen storage analyzer

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Effective date of registration: 20230822

Address after: 719313 2203, Unit 3, Building 30, Shennan Huafu, Binhe New Area, Shenmu City, Yulin City, Shaanxi Province

Patentee after: Shenmu Xikai Industry and Trade Co.,Ltd.

Address before: 510000 3404, No.19, 1st Street, phase 5, Xingnan Avenue, Nancun Town, Panyu District, Guangzhou City, Guangdong Province

Patentee before: Zhang Yuee