CN218783471U - Auxiliary frame body structure for cable laying - Google Patents

Auxiliary frame body structure for cable laying Download PDF

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Publication number
CN218783471U
CN218783471U CN202223376224.1U CN202223376224U CN218783471U CN 218783471 U CN218783471 U CN 218783471U CN 202223376224 U CN202223376224 U CN 202223376224U CN 218783471 U CN218783471 U CN 218783471U
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China
Prior art keywords
lifting
cable
rotary
assembly
driving
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CN202223376224.1U
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Chinese (zh)
Inventor
刘文元
李世凯
徐钧
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Tianjin Huaze Ruiwei Information Technology Co ltd
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Tianjin Huaze Ruiwei Information Technology Co ltd
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Abstract

The utility model discloses a cable laying assists support body structure, include: the movable plate is provided with a driving lifting auxiliary structure; the auxiliary structure for driving lift comprises: the device comprises a bottom supporting tube, a mounting cavity, a rotary lifting assembly, a mounting plate, a cable lifting fixing frame and a lifting driving assembly; the utility model relates to a cable laying device technical field, present case beneficial effect does: the problem of current cable lifting device need carry out the lifting to it through external equipment when using is solved, and the rethread gyro wheel carries out the transmission to the cable and lifts, and it is very inconvenient to use, and the limitation is great, need cooperate the external lifting device to use, and the effect is relatively poor, and easily causes the destruction to the cable when lifting.

Description

Auxiliary frame body structure for cable laying
Technical Field
The utility model relates to a cable laying device technical field specifically is a cable laying assists support body structure.
Background
The cable laying refers to a process of laying and installing cables along a surveyed route to form a cable line, and can be divided into a plurality of laying modes such as overhead, underground (pipelines and direct burial), water bottom, walls, tunnels and the like according to use occasions, and the reasonable selection of the laying mode of the cables is very important for ensuring the transmission quality, reliability, construction maintenance and the like of the line; the utility model discloses a current utility model with publication number CN208345700U discloses a portable cable unwrapping wire lifting devices, including the pole of lifting, worn the cable drum in the middle of the pole of lifting, respectively install fixing device about the pole of lifting, fixing device includes the fixing base, and open the fixing base lower extreme has the fork hole, and it is fixed that fork truck fork passes the fork hole and passes through the fork safety lock, and the fixing base upper end is equipped with U type groove, installs mated supporting roller in the U type inslot, and the pole of lifting is placed on mated supporting roller and fixed through the pole clamp plate of lifting of fixing base upper end. The utility model provides a movable cable paying-off and lifting device which can easily pay off and lift; its structure need carry out the lifting to it through external equipment when using, and the rethread gyro wheel carries out the transmission to the cable and lifts, and it is very inconvenient to use, and the limitation is great, need cooperate the outside equipment of lifting to use, and the effect is relatively poor, and easily causes the destruction to the cable when lifting.
SUMMERY OF THE UTILITY MODEL
In order to achieve the above purpose, the utility model discloses a following technical scheme realizes: the utility model provides a cable laying assists support body structure, includes: the movable plate is provided with a driving lifting auxiliary structure;
the auxiliary structure for driving lift comprises: the device comprises a bottom supporting tube, a mounting cavity, a rotary lifting assembly, a mounting plate, a cable lifting fixing frame and a lifting driving assembly;
the bottom support tube is installed on the wall of the movable plate, the installation cavity is formed inside the bottom support tube, the rotary lifting assembly is installed inside the installation cavity, the mounting plate is installed at the top end of the rotary lifting assembly, the cable lifting fixing frame is installed on the wall of the mounting plate, the lifting driving assembly is installed at the side position of the bottom support tube, and the lifting driving assembly is connected with the rotary lifting assembly.
Preferably, the moving plate is provided with a universal wheel for position movement.
Preferably, the cable lifting fixing frame is of an arc-shaped structure.
Preferably, the rotary lifting assembly comprises: the three-way lifting device comprises three rotary bearings, a thread rotary sleeve, a thread lifting rod, a lifting connecting seat and a limiting pipe sleeve;
the three rotating bearings are embedded on the inner wall surface of the installation cavity, the threaded rotating sleeve is installed on the three rotating bearings, the threaded lifting rod is installed inside the threaded rotating sleeve, the lifting connecting seat is installed at the top end position of the threaded lifting rod, the limiting pipe sleeve is movably sleeved on the outer wall surface of the bottom supporting pipe, and the upper end of the limiting pipe sleeve is fixedly installed on the lifting connecting seat.
Preferably, a stop lever used for clamping the limiting pipe sleeve to prevent the shifting is arranged on the bottom supporting pipe.
Preferably, the lift drive assembly comprises: the device comprises a motor box, a rotary driving motor, a first transmission chain wheel, a connecting rod, a second transmission chain wheel and a transmission chain;
the motor case is installed on the movable plate, and the motor case is located bottom support tube side position, and the rotation driving motor is installed inside the motor case, and first drive sprocket is installed on the rotation driving motor output, and the connecting rod is installed on the wall under the screw thread rotating sleeve, and second drive sprocket installs on the connecting rod, and drive chain suit is on first drive sprocket and second drive sprocket.
Advantageous effects
The utility model provides a cable laying assists support body structure possesses following beneficial effect: this scheme has used the drive to lift auxiliary structure, carry out lifting of cable through using portable mechanical structure, reach the purpose of laying, equipment structure is simple, be convenient for remove, and can lift the operation to the cable fast, high durability and convenient use, solve hungry current cable lifting device and need carry out the lifting to it through external equipment when using, the rethread gyro wheel carries out the transmission to the cable and lifts, it is very inconvenient to use, the limitation is great, need cooperate the outside equipment usage that lifts, the effect is relatively poor, and easily cause the problem of destruction to the cable when lifting.
Drawings
Fig. 1 is the utility model relates to a cable laying assists support body structure's front view sectional structure schematic.
Fig. 2 is the utility model relates to a cable laying assists bottom sprag tube spatial structure sketch map of support body structure.
Fig. 3 is the utility model relates to a partial enlarged structure schematic diagram of section view is looked at in cable laying assists support body structure's front view.
In the figure: 1-moving the board; 2-bottom support tube; 3-installing a cavity; 4-mounting a plate; 5-lifting the fixed mount by the cable; 6-universal wheel; 7-a rotational bearing; 8-a threaded rotating sleeve; 9-a threaded lifting rod; 10-lifting the connecting seat; 11-a limit pipe sleeve; 12-a stop lever; 13-a motor case; 14-a rotary drive motor; 15-a first drive sprocket; 16-a connecting rod; 17-a second drive sprocket; 18-a drive chain.
Detailed Description
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.
Example (b): please refer to fig. 1-3; the main components of the scheme are as follows: the device comprises a movable plate 1, wherein a driving lifting auxiliary structure is arranged on the movable plate 1;
the auxiliary structure for driving lift comprises: the device comprises a bottom supporting tube 2, an installation cavity 3, a rotary lifting assembly, an installation plate 4, a cable lifting fixing frame 5 and a lifting driving assembly;
bottom stay tube 2 is installed on the wall on movable plate 1, and installation cavity 3 is seted up inside bottom stay tube 2, and rotatory lift subassembly is installed inside installation cavity 3, and mounting panel 4 is installed in rotatory lift subassembly top position, and the cable lifts mount 5 and installs on mounting panel 4 on the wall, lifts the drive assembly and installs in 2 side positions of bottom stay tube, lifts the drive assembly and lifts the subassembly with rotatory lift and be connected.
It should be noted that, when the driving lifting auxiliary structure is used, the universal wheel 6 installed at the bottom of the moving plate 1 is used for moving the equipment to a fixed position, cables to be lifted are placed in the cable lifting fixing frame 5 installed on the installation plate 4, a controller matched with the equipment is operated to start the equipment, the lifting driving component installed on the moving plate 1 drives the rotary lifting component installed on the bottom support tube 2 to start an upward lifting height, and the cable lifting fixing frame 5 is used for driving the cable to lift, so that the purpose of auxiliary laying is achieved.
In the implementation process, a universal wheel 6 for position movement is further mounted on the moving plate 1.
In the specific implementation process, further, the cable lifting fixing frame 5 is of an arc-shaped structure.
In a specific implementation, further, the rotary lifting assembly comprises: the three-way lifting device is provided with three rotary bearings 7, a thread rotary sleeve 8, a thread lifting rod 9, a lifting connecting seat 10 and a limiting pipe sleeve 11;
three swivel bearings 7 are embedded on the inner wall surface of the mounting cavity 3, a threaded swivel sleeve 8 is installed on the three swivel bearings 7, a threaded lifting rod 9 is installed inside the threaded swivel sleeve 8, a lifting connecting seat 10 is installed at the top end position of the threaded lifting rod 9, a limiting pipe sleeve 11 is movably sleeved on the outer wall surface of the bottom supporting pipe 2, and the upper end of the limiting pipe sleeve 11 is fixedly installed on the lifting connecting seat 10.
It should be noted that, when the rotary lifting assembly is used, under the driving of the lifting driving assembly, the screw thread rotary sleeve 8 rotates in the three rotary bearings 7, the position of the screw thread rotary sleeve 8 is fixed and rotates, when the screw thread rotary sleeve 8 rotates, the screw thread lifting rod 9 cannot rotate through the lifting connecting seat 10 and the limiting function of the limiting pipe sleeve 11 installed on the outer wall surface of the bottom supporting pipe 2 on the lifting connecting seat 10, so that the screw thread rotary sleeve 8 can move up and down, and the purpose of auxiliary laying in lifting is realized by matching with the cable lifting fixing frame 5 on the mounting plate 4.
In the specific implementation process, a stop rod 12 for clamping the limiting pipe sleeve 11 to prevent movement is further arranged on the bottom support pipe 2.
In one embodiment, the lift driving assembly comprises: the device comprises a motor box 13, a rotary driving motor 14, a first transmission chain wheel 15, a connecting rod 16, a second transmission chain wheel 17 and a transmission chain 18;
the motor case 13 is installed on the movable plate 1, the motor case 13 is located the 2 side positions of bottom support pipe, the rotation driving motor 14 is installed inside the motor case 13, the first driving sprocket 15 is installed on the output end of the rotation driving motor 14, the connecting rod 16 is installed on the lower wall surface of the thread rotating sleeve 8, the second driving sprocket 17 is installed on the connecting rod 16, and the driving chain 18 is sleeved on the first driving sprocket 15 and the second driving sprocket 17.
It should be noted that, when the lifting driving assembly is used, the rotation driving motor 14 installed in the motor box 13 is started to rotate, the rotation driving motor 14 drives the first transmission chain wheel 15 installed on the output end of the rotation driving motor to rotate, the first transmission chain wheel 15 drives the second transmission chain wheel 17 to rotate through the transmission chain 18, and the second transmission chain wheel 17 cooperates with the connecting rod 16 to drive the threaded rotating sleeve 8 to rotate, so as to achieve the purpose of lifting driving.
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 (6)

1. The utility model provides a cable laying assists support body structure, includes: the movable plate is characterized in that a driving lifting auxiliary structure is arranged on the movable plate;
the auxiliary structure for driving lift comprises: the device comprises a bottom supporting tube, a mounting cavity, a rotary lifting assembly, a mounting plate, a cable lifting fixing frame and a lifting driving assembly;
the bottom support tube is installed on the wall of the movable plate, the installation cavity is formed inside the bottom support tube, the rotary lifting assembly is installed inside the installation cavity, the mounting plate is installed at the top end of the rotary lifting assembly, the cable lifting fixing frame is installed on the wall of the mounting plate, the lifting driving assembly is installed at the side position of the bottom support tube, and the lifting driving assembly is connected with the rotary lifting assembly.
2. The cable laying auxiliary frame body structure according to claim 1, wherein the movable plate is provided with a universal wheel for position movement.
3. The auxiliary frame structure for cable laying according to claim 1, wherein the cable lifting fixing frame is an arc-shaped structure.
4. A cable laying subframe structure according to claim 1 wherein the rotary elevation assembly comprises: the three-way lifting device is provided with three rotary bearings, a threaded rotary sleeve, a threaded lifting rod, a lifting connecting seat and a limiting pipe sleeve;
the three rotating bearings are embedded on the inner wall surface of the installation cavity, the threaded rotating sleeve is installed on the three rotating bearings, the threaded lifting rod is installed inside the threaded rotating sleeve, the lifting connecting seat is installed at the top end position of the threaded lifting rod, the limiting pipe sleeve is movably sleeved on the outer wall surface of the bottom supporting pipe, and the upper end of the limiting pipe sleeve is fixedly installed on the lifting connecting seat.
5. The auxiliary frame body structure for cable laying according to claim 4, wherein the bottom support tube is provided with a stop lever for clamping the limiting tube sleeve to prevent movement.
6. The auxiliary frame structure for cable laying according to claim 1, wherein the lifting driving assembly comprises: the device comprises a motor box, a rotary driving motor, a first transmission chain wheel, a connecting rod, a second transmission chain wheel and a transmission chain;
the motor case is installed on the movable plate, and the motor case is located bottom support tube side position, and the rotation driving motor is installed inside the motor case, and first drive sprocket is installed on the rotation driving motor output, and the connecting rod is installed on the wall under the screw thread rotating sleeve, and second drive sprocket installs on the connecting rod, and drive chain suit is on first drive sprocket and second drive sprocket.
CN202223376224.1U 2022-12-08 2022-12-08 Auxiliary frame body structure for cable laying Active CN218783471U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223376224.1U CN218783471U (en) 2022-12-08 2022-12-08 Auxiliary frame body structure for cable laying

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223376224.1U CN218783471U (en) 2022-12-08 2022-12-08 Auxiliary frame body structure for cable laying

Publications (1)

Publication Number Publication Date
CN218783471U true CN218783471U (en) 2023-03-31

Family

ID=85723233

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223376224.1U Active CN218783471U (en) 2022-12-08 2022-12-08 Auxiliary frame body structure for cable laying

Country Status (1)

Country Link
CN (1) CN218783471U (en)

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