CN217720452U - Insulation frame for power equipment maintenance convenient for stably placing articles - Google Patents

Insulation frame for power equipment maintenance convenient for stably placing articles Download PDF

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Publication number
CN217720452U
CN217720452U CN202221413809.3U CN202221413809U CN217720452U CN 217720452 U CN217720452 U CN 217720452U CN 202221413809 U CN202221413809 U CN 202221413809U CN 217720452 U CN217720452 U CN 217720452U
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tool box
toolbox
frame
insulating frame
power equipment
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CN202221413809.3U
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Chinese (zh)
Inventor
许荣枝
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Ruifeng Group Co ltd
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Ruifeng Group Co ltd
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Abstract

The utility model discloses an insulating frame for power equipment maintenance convenient for stably placing objects, which comprises an insulating frame, wherein a lifting groove is arranged in the insulating frame, a tool box is arranged in the lifting groove in a sliding manner, a mounting plate is also arranged in the lifting groove, a first lifting driving device for driving the tool box to lift is arranged below the mounting plate, a placing cavity is arranged at two sides in the tool box and is formed by separating a separating component, the separating component comprises a partition plate and a connecting spring which are arranged in the tool box in a sliding manner, the partition plate can slide transversely in the tool box, one end of the connecting spring is connected with the partition plate, and the other end of the connecting spring is connected with the tool box; the staff can place the intracavity in placing of toolbox with instrument or part of pulling down, and it is more convenient to use, and the baffle can carry out the centre gripping to instrument or part under connecting spring's effect for instrument and part can not rock in the toolbox, make the toolbox rise or descend the in-process, and instrument and part are more stable.

Description

Insulation frame for power equipment maintenance convenient for stably placing articles
Technical Field
The utility model relates to an electric power is established and is examined and repaired the instrument field, specifically indicates a power equipment overhauls uses insulating frame convenient to stably place the article.
Background
The power system mainly comprises two categories of power generation equipment and power supply equipment, wherein the power generation equipment mainly comprises a power station boiler, a steam turbine, a gas turbine, a water turbine, a generator, a transformer and the like, and the power supply equipment mainly comprises power transmission lines, transformers, contactors and the like with various voltage grades.
Some electrical equipment is installed at a higher height, when needing to overhaul the electrical equipment, a worker usually backs on a tool box, the tool box ascends to the height corresponding to the electrical equipment through a ladder or other tools to overhaul the electrical equipment, but the tool box is heavy in weight, and when the electrical equipment is overhauled, the overhauled tool usually needs to be taken in and taken out, and meanwhile, when the electrical equipment is disassembled, the disassembled parts also need to be placed, so that an insulating frame used for placing the tools and the parts during overhauling is urgently needed.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome the aforesaid not enough, provide an electrical equipment overhauls and uses insulating frame convenient to stably place the article.
The utility model discloses an electrical equipment overhauls and uses insulating frame convenient to stably place article, including insulating frame, be provided with the lift groove in this insulating frame, it is provided with the toolbox with insulating frame sliding connection to slide in this lift groove, this lift inslot still is provided with the mounting panel that is located the toolbox below, this mounting panel below is provided with the first lift drive arrangement that drives the toolbox and goes up and down, both sides are provided with places the chamber in this toolbox, and place the chamber and separate the formation through separating the subassembly, should separate the subassembly including sliding baffle and the coupling spring that sets up in the toolbox, this baffle can be in toolbox lateral sliding, and this coupling spring one end is connected with the baffle, the other end is connected with the toolbox.
Preferably, each is placed the chamber bottom and all is provided with jacking device.
Preferably, this jacking device is including setting up the lifter plate in placing the chamber bottom, and this lifter plate is close to one side of toolbox lateral wall and toolbox lateral wall through drive assembly sliding connection, and this drive assembly can drive the lifter plate and place the intracavity and go up and down.
Preferably, the partition comprises a connecting plate slidably connected to the tool box, and a rotating plate rotatably disposed at a top end of the connecting plate, wherein the rotating plate is rotated downward such that an upper surface of the partition is flush with an inner surface of the tool box.
Preferably, a conveying port is formed through the tool box, and a tool conveying device is provided below the conveying port.
Preferably, the tool conveying device comprises a second lifting driving device arranged in the tool box and a conveying frame arranged below the conveying opening, the conveying frame is connected with the second lifting driving device, and the second lifting driving device can drive the conveying frame to lift.
Preferably, the second lifting driving device comprises two rotary drums rotatably arranged in the tool box, two second pull ropes wound on the two rotary drums and a handle rotatably arranged outside the tool box, the two pull ropes penetrate through the tool box and are connected with two sides of the conveying frame, and the handle is in transmission connection with the rotary drums through a gear mechanism.
Preferably, the first lifting driving device comprises a driving motor arranged at the bottom of the lifting groove and positioned below the mounting plate, and two first pull ropes movably arranged on two outer sides of the insulating frame, the two first pull ropes are movably connected with the insulating frame through a pulley mechanism, one end of each of the two first pull ropes penetrates through the insulating frame and is wound at the output end of the driving motor, and the other end of each of the two first pull ropes bypasses the side wall of the insulating frame and extends into the lifting groove to be connected with the tool box.
By adopting the technical scheme, the beneficial effects of the utility model are that: when the staff need overhaul the power equipment of eminence, can start first lift drive arrangement and drive the toolbox at lift groove rebound, make the toolbox remove to required height, when the staff overhauls power equipment, the staff can place instrument or the part of pulling down at the intracavity of placing of toolbox, it is more convenient to use, and the baffle can carry out the centre gripping to instrument or part under coupling spring's effect, make instrument and part can not rock in the toolbox, make the toolbox at the in-process that rises or descends, instrument and part are more stable.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only one or several embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to such drawings without creative efforts.
FIG. 1 is a schematic view of the structure of the insulating frame of the present invention;
FIG. 2 is an enlarged view of the point A in FIG. 1 according to the present invention;
fig. 3 is a schematic view of a distribution structure of a second lifting driving device of the present invention;
fig. 4 is the schematic structural diagram of the jacking device of the present invention.
Description of the main reference numerals: 1 insulating frame, 2 lifting grooves, 3 tool boxes, 4 mounting plates, 5 first lifting driving devices, 51 driving motors, 52 first pull ropes, 6 placing cavities, 7 separating assemblies, 71 connecting plates, 72 rotating plates, 8 connecting springs, 9 lifting plates, 10 conveying ports, 11 conveying frames, 12 rotating cylinders, 13 second pull ropes and 14 handles.
Detailed Description
The following detailed description will be made with reference to the accompanying drawings and examples, so as to solve the technical problems by applying technical means to the present invention, and to fully understand and implement the technical effects of the present invention. It should be noted that, as long as no conflict is formed, the embodiments and the features in the embodiments of the present invention may be combined with each other, and the technical solutions formed are all within the scope of the present invention.
In the following description, for purposes of explanation, numerous specific details are set forth in order to provide a thorough understanding of the embodiments of the invention. It will be apparent, however, to one skilled in the art, that the present invention may be practiced without some of these specific details or with other methods described,
the utility model discloses an insulation support is used in power equipment maintenance convenient to stably place article, refer to fig. 1, including insulating frame 1, be provided with lift groove 2 in this insulating frame 1, it is provided with toolbox 3 with 1 sliding connection of insulating frame to slide in this lift groove 2, still be provided with the mounting panel 4 that is located toolbox 3 below in this lift groove 2, this mounting panel 4 below is provided with the first lift drive 5 that driving tool case 3 goes up and down, this first lift drive 5 is including setting up at 2 bottoms of lift groove and being located the driving motor 51 of mounting panel 4 below, the activity sets up two first stay cords 52 in the two outsides of insulating frame 1, two first stay cords 52 pass through pulley mechanism and 1 swing joint of insulating frame, and two first stay cords 52 one end passes insulating frame 1 output at driving motor 51, the other end is walked around insulating frame 1 lateral wall and is extended to lift groove 2 in and is connected with toolbox 3, rotate the first stay cord 52 that drives both sides through driving motor 51 and move, then realize the lift rolling of toolbox 3 in lift groove 2.
The two sides in the tool box 3 are provided with placing cavities 6, the placing cavities 6 are formed by separating through separating components 7, each separating component 7 comprises a partition board and a connecting spring 8, the partition boards are arranged in the tool box 3 in a sliding mode and can slide in the tool box 3 transversely, one end of each connecting spring 8 is connected with each partition board, and the other end of each connecting spring is connected with the tool box 3; when the staff need overhaul the power equipment of eminence, can start first lift drive arrangement 5 and drive toolbox 3 at lift groove 2 rebound, make toolbox 3 remove to required height, when the staff overhauls power equipment, the staff can place instrument or the part of pulling down in toolbox 3 places chamber 6, it is more convenient to use, and the baffle can carry out the centre gripping to instrument or part under coupling spring 8's effect, make instrument and part can not rock in toolbox 3, make toolbox 3 rising or decline in-process, instrument and part are more stable.
Referring to fig. 1, 2 and 4, the bottom of each placing cavity 6 is provided with a jacking device. The jacking device comprises a lifting plate 9 arranged at the bottom of a placement cavity 6, wherein one side of the lifting plate 9, which is close to the side wall of a tool box 3, is in sliding connection with the side wall of the tool box 3 through a driving assembly, the driving assembly can drive the lifting plate 9 to lift in the placement cavity 6, the jacking device is mainly used for starting the jacking device to eject a workpiece or a part under the conditions that the tool or the part is heavy in weight and a partition plate is tightly clamped, the driving assembly adopts a screw rod driving mechanism to carry out transmission, mainly rotates a screw rod, then drives a nut block to slide, then drives the lifting plate 9 to lift, and ejects the tool or the part, the structure of the specific driving assembly can also adopt other transmission structures for technicians in the field, the driving assembly is common knowledge for the technicians in the field, and the description is not described in detail.
Referring to fig. 2, the partition board includes a connecting plate 71 slidably connected to the tool box 3 (the connecting plate 71 is slidably connected to the inner surface of the tool box 3), and a rotating plate 72 rotatably disposed at the top end of the connecting plate 71, wherein when the rotating plate 72 rotates downward, the upper surface of the partition board is flush with the inner surface of the tool box 3, and when the tool or component is large in size and the placing cavity 6 is not placed, the rotating plate 72 can rotate downward, so that the rotating plate 72 is flush with the inner surface of the tool box 3, and thus the partition board does not play a role of partitioning, in other words, the space for placing the cavity 6 is larger, and a tool or component larger in size than the original placing cavity 6 can be placed.
Referring to fig. 1, a conveyance port 10 is provided through the tool box 3, and a tool conveyance device is provided below the conveyance port 10. The tool conveying device comprises a second lifting driving device arranged in the tool box 3 and a conveying frame 11 arranged below the conveying opening 10, wherein the conveying frame 11 is connected with the second lifting driving device, and the second lifting driving device can drive the conveying frame 11 to lift. The second lifting driving device comprises two rotary drums 12 rotatably arranged in the tool box 3, two second pull ropes 13 wound on the two rotary drums 12 and a handle 14 rotatably arranged outside the tool box 3, the two pull ropes penetrate through the tool box 3 and are connected with two sides of the conveying frame 11, and the handle 14 is in transmission connection with the rotary drums 12 through a gear mechanism. When a worker overhauls the electric equipment at a high place, if the number of parts detached from the electric equipment is large, part of the parts need to be placed on the ground, or in the process of overhauling, when tools need to be supplemented, the worker needs to go back and forth, not only is the overhauling efficiency low, but also the overhauling safety is low, when the worker needs to convey the parts to the ground or needs to convey the tools on the ground onto the insulating frame, the parts can be placed on the conveying frame 11 through the conveying port 10, then the rotary drums 12 on the two sides are driven to rotate through the rotating handle 14, finally the conveying frame 11 descends to the mounting plate 4 under the action of the second pull ropes 13 on the two sides, the workers on the ground can take the tools, when the tools need to be conveyed onto the insulating frame, the tools are placed on the conveying frame 11, then the handle 14 is rotated, the handle 14 drives the rotary drums 12 on the two sides to rotate to wind the second pull-up the two conveying frames 11, the handle 14 is pulled to the corresponding position, the handle 14 can be fixed through the bolt (when the handle 14 needs to be rotated, the bolt can be taken out, the fixed structure of the common handle 14 can be taken out of course, and the overhauling tools can be taken directly taken from the conveying frame 11, and the overhauling workers can be taken conveniently.
It should be noted that in the above description, numerous specific details are set forth in order to provide a thorough understanding of the present invention, however, the present invention may be practiced in other ways than those specifically described herein, and therefore the scope of the present invention is not limited by the specific embodiments disclosed above.

Claims (8)

1. The utility model provides an electrical equipment overhauls and uses insulating frame convenient to stably place article which characterized in that: including insulating frame, be provided with the lift groove in this insulating frame, it is provided with the toolbox with insulating frame sliding connection to slide in this lift groove, still be provided with the mounting panel that is located the toolbox below in this lift groove, this mounting panel below is provided with the first lift drive device that drives the toolbox and goes up and down, both sides are provided with places the chamber in this toolbox, and place the chamber and separate the formation through separating the subassembly, should separate the subassembly including sliding baffle and the coupling spring who sets up in the toolbox, this baffle can be in the toolbox lateral sliding, and this coupling spring one end is connected with the baffle, the other end is connected with the toolbox.
2. The insulation frame for electric power equipment overhaul convenient for stably placing the object according to claim 1, characterized in that: each is placed the chamber bottom and all is provided with jacking device.
3. The insulation frame for overhauling electric power equipment with convenient and stable placement of objects as claimed in claim 2, wherein: this jacking device passes through drive assembly sliding connection including setting up the lifter plate in placing the chamber bottom, and this lifter plate is close to one side and the toolbox lateral wall of toolbox lateral wall, and this drive assembly can drive the lifter plate and is placing the intracavity and go up and down.
4. The insulation frame for overhauling electric power equipment with convenient and stable placement of objects as claimed in claim 1, wherein: the partition board comprises a connecting plate which is in sliding connection with the tool box and a rotating plate which is rotatably arranged at the top end of the connecting plate, and when the rotating plate rotates downwards, the upper surface of the partition board can be flush with the inner surface of the tool box.
5. The insulation frame for electric power equipment overhaul convenient for stably placing the object according to claim 1, characterized in that: a conveying opening is arranged in the tool box in a penetrating way, and a tool conveying device is arranged below the conveying opening.
6. The insulation frame for overhauling electric power equipment with convenient and stable placement of objects as claimed in claim 5, wherein: the tool conveying device comprises a second lifting driving device arranged in the tool box and a conveying frame arranged below the conveying opening, wherein the conveying frame is connected with the second lifting driving device, and the second lifting driving device can drive the conveying frame to lift.
7. The insulation frame for electric power equipment overhaul convenient for stably placing the object according to claim 6, wherein: the second lifting driving device comprises two rotary drums rotatably arranged in the tool box, two second pull ropes wound on the two rotary drums and a handle rotatably arranged outside the tool box, the two pull ropes penetrate through the tool box and are connected with two sides of the conveying frame, and the handle is in transmission connection with the rotary drums through a gear mechanism.
8. The insulation frame for overhauling electric power equipment with convenient and stable placement of objects as claimed in claim 1, wherein: the first lifting driving device comprises a driving motor arranged at the bottom of the lifting groove and positioned below the mounting plate, and two first pull ropes movably arranged on two outer sides of the insulating frame, wherein the two first pull ropes are movably connected with the insulating frame through a pulley mechanism, one end of each of the two first pull ropes penetrates through the insulating frame and is wound at the output end of the driving motor, and the other end of each of the two first pull ropes bypasses the side wall of the insulating frame and extends into the lifting groove to be connected with the tool box.
CN202221413809.3U 2022-06-07 2022-06-07 Insulation frame for power equipment maintenance convenient for stably placing articles Active CN217720452U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221413809.3U CN217720452U (en) 2022-06-07 2022-06-07 Insulation frame for power equipment maintenance convenient for stably placing articles

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221413809.3U CN217720452U (en) 2022-06-07 2022-06-07 Insulation frame for power equipment maintenance convenient for stably placing articles

Publications (1)

Publication Number Publication Date
CN217720452U true CN217720452U (en) 2022-11-01

Family

ID=83801447

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221413809.3U Active CN217720452U (en) 2022-06-07 2022-06-07 Insulation frame for power equipment maintenance convenient for stably placing articles

Country Status (1)

Country Link
CN (1) CN217720452U (en)

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