Electric power material storage equipment

By constructing the moment pit on the ground and installing lifting components in the moment pit, the underground rack can move vertically up and down, solving the problem of space utilization and convenience in the storage and management of large-scale power supply accessories, and achieving efficient space utilization and convenient access process.

CN120096978APending Publication Date: 2025-06-06TAIHU COUNTY POWER ENG BRANCH OF ANQING HENGJIANG GRP CO LTD +1
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Patent Information

Application Number
CN202311656547.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-12-05
Publication Date
2025-06-06

AI Technical Summary

Technical Problem

The prior art is difficult to effectively store and manage large-scale power supplies accessories, especially in terms of space utilization and convenience of access.

Method used

A power material storage equipment is designed. By constructing a moment pit on the ground and installing lifting components in the moment pit, the underground rack can move vertically up and down, thereby achieving the stacking of large accessories and effective use of space.

Benefits of technology

It realizes efficient stacking and space utilization of large accessories, ensures safety and convenience, and avoids inconvenience and waste of space when placing large parts flat.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses electric power material storage equipment, and relates to the technical field of electric power material storage equipment. The rectangular pit is constructed on the ground, and the lifting assembly is installed in the rectangular pit to provide vertical movement of the underground shelf, so that large accessories can be stacked like being placed on a common goods shelf, and vertical space is utilized; wherein the lifting underground shelf in the rectangular pit has the effects that on one hand, it can be guaranteed that even if the underground shelf topples over, people or other spare and accessory parts cannot be hurt, and on the other hand, when accessories flatly laid on the ground are placed on the underground shelf in the rectangular pit, the underground shelf can be lifted up and down; when a forklift needs to be adopted to select a certain accessory, only the lifting assembly needs to be driven to take out the large accessory located on the upper layer of the underground shelf, and the situation that the forklift can reach a target position only by moving away the large accessory on the side when one type of the large accessory is selected like a plurality of horizontally-placed large accessories is not needed.
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Description

Technical Field

[0001] The present invention relates to the technical field of electric power material storage equipment, and in particular to electric power material storage equipment. Background Art

[0002] As the functional department to ensure the stability of power supply lines, the power grid unit needs to store a certain amount of material accessories in the logistics support to supply daily loss and replacement. The existing technology has intelligent storage systems for power material storage, that is, intelligent robots can be used to quickly sort and remove spare parts on the underground shelves, but this is only for small accessories. For large accessories, such as transformers and other material parts, storage is a huge problem.

[0003] First of all, for large accessories, considering the safety, they cannot be placed on various underground shelves like small accessories, and the intelligent storage system cannot carry such heavy accessories. If placed in an ordinary warehouse, multiple pieces are neatly arranged in a square shape, the space utilization rate is too small, and it is very inconvenient to find the required model of accessories among a pile of parts lying flat on the ground, and other accessories need to be moved to get them. In response to this actual problem, the present application provides a power material storage equipment. Summary of the invention

[0004] In order to achieve the above-mentioned purpose, the present invention specifically adopts the following technical solutions: A power material storage device, comprising: A concrete floor, on which a plurality of matrix-arranged matrix pits are constructed; A lifting assembly, the lifting assembly is installed in the rectangular pit, and an underground shelf is placed in the rectangular pit, the lifting assembly is used to move the underground shelf vertically upward and downward, and the number of layers of the underground shelf for containing large accessories is not less than two; A rain shelter is erected above the matrix pits arranged in a matrix to shield against rain and sunlight.

[0005] Furthermore, the lifting assembly includes a U-shaped frame, a pair of vertical guide rails are fixed on two opposite sides of the frame, a support plate that can move vertically is movably arranged in the guide rails, top plates flush with the ground are fixed at the U-shaped ends of the frame, the bottom screws of the frame are equipped with a bottom plate fixed to the bottom of the matrix pit, reinforcement frames are connected and fixed between the two top plates and the bottom plates, a lead screw is rotatably installed between one of the top plates and the bottom plate, a wire drum threadedly connected to the lead screw is fixed on the back side of the support plate, and a servo motor is installed on the bottom plate and fixed to the end of the lead screw through a coupling.

[0006] Furthermore, the support plate includes a vertical plate, and a pair of rollers rollingly arranged in a guide rail are installed on the sides of the vertical plate, and a carrier plate connected to the bottom of the underground shelf is vertically fixed to the bottom of the vertical plate.

[0007] Furthermore, the underground shelf includes a pair of side frames and a plurality of supporting plates, wherein the plurality of supporting plates are equidistantly arranged between the two side frames and fixed by welding, and a plurality of triangular reinforcement rods are fixed on the side frames.

[0008] Furthermore, the rain shelter includes a side enclosure fixedly arranged around the rectangular pit and a ceiling installed on the top of the side enclosure, and one side of the side enclosure is open for installing a rolling shutter door.

[0009] Furthermore, the concrete floor is higher than the ground and a slope is constructed on the side where the rolling shutter door is installed.

[0010] Furthermore, it also includes a drying system, which includes a connecting port opened on the side wall of each rectangular pit, and a vertical port vertically constructed on the concrete floor, the connecting port is used to connect multiple rectangular pits, and two groups of vertical ports are provided and connected to the rectangular pits, one of the vertical ports is used to install an air intake fan, and the other group of vertical ports is used to install an air outlet fan, and a desiccant is placed at the bottom of the rectangular pit.

[0011] The beneficial effects of the present invention are as follows: The present invention constructs a rectangular pit on the ground, and installs an underground shelf in the rectangular pit which is provided with a lifting assembly to provide up and down movement of the underground shelf. Then, large accessories can be stacked like being placed on ordinary shelves, thereby achieving the utilization of vertical space. The role of lifting the underground shelf in the rectangular pit is, firstly, to ensure that even if the underground shelf falls over, it will not cause harm to personnel or other spare parts. Secondly, when the accessories laid flat on the ground are placed on the underground shelf in the rectangular pit, when a forklift is needed to select a certain accessory, it is only necessary to drive the lifting assembly to take out the large accessory located on the upper layer of the underground shelf. There is no need to move the large spare parts on the side when selecting one model, as is the case with multiple large spare parts laid flat.

[0012] The side enclosure and the ceiling are arranged for shielding against wind and rain, and the concrete floor is higher than the outside ground to prevent rainwater from flowing back into the concrete floor when it rains.

[0013] The present invention installs an air inlet fan and an air outlet fan at two vertical openings, and cooperates with a dryer inside the matrix pit to effectively remove moisture and ensure internal ventilation. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention; Figure 2It is a schematic diagram of the three-dimensional structure of the present invention after the rain shelter is removed; Figure 3 It is a schematic diagram of the three-dimensional structure of the concrete floor of the present invention; Figure 4 is a three-dimensional half-section view of the present invention; Figure 5 It is a schematic diagram of the three-dimensional structure of the lifting assembly and the underground shelf of the present invention; Figure 6 It is a schematic diagram of the three-dimensional structure of the underground shelf of the present invention; Figure 7 It is a three-dimensional structural schematic diagram of the lifting assembly of the present invention; Figure 8 It is a front view of the underground shelf of the present invention; Figure numerals: 1. Concrete floor; 101. Slope; 2. Matrix pit; 3. Lifting assembly; 301. Frame; 302. Guide rail; 303. Support plate; 3031. Vertical plate; 3032. Roller; 3033. Carrying plate; 304. Top plate; 305. Bottom plate; 306. Reinforcement frame; 307. Lead screw; 308. Wire drum; 309. Servo motor; 4. Underground shelf; 401. Side frame; 402. Support plate; 403. Triangular reinforcement rod; 5. Awning; 501. Side enclosure; 502. Ceiling; 6. Drying system; 601. Connecting port; 602. Vertical port. DETAILED DESCRIPTION

[0015] To make the purpose, technical solution and advantages of the embodiments of the present invention more clear, the technical solution in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention.

[0016] The present application provides a power material storage equipment, which is mainly used to solve the problems of space utilization and allocation in the storage of large spare parts by power functional departments, and provides the following technical solutions. Figure 1-Figure 8 Make a detailed description: A power material storage device includes a concrete floor 1, which is formed by digging a rectangular pit on the original land and then pouring concrete. During construction, waterproof and moisture-proof measures used in underground buildings are adopted. During pouring, a plurality of matrix-arranged rectangular pits 2 are reserved as areas for installing lifting components 3, and the lifting components 3 are used to lift underground shelves 4 placed in the rectangular pits 2. In order to avoid rain erosion, a rain shelter 5 is provided on the top, and the number of layers of the underground shelves 4 used to carry large accessories is not less than two. The present application constructs a rectangular pit 2 on the concrete floor 1, and installs an underground shelf 4 in the rectangular pit 2 for up and down movement provided by the lifting component 3, so that the large accessories can be stacked like they are placed on ordinary shelves, thereby achieving the utilization of vertical space. The function of lifting the underground shelf 4 in the rectangular pit 2 is to ensure that even if the underground shelf 4 falls over, it will not cause personnel Or cause damage to other spare parts. Secondly, when the accessories laid flat on the ground (if there is no such device) are placed on the underground shelf 4 in the matrix pit 2, when a forklift is needed to select a certain accessory, it is only necessary to drive the lifting component 3 to take out the large accessories located on the upper layer of the underground shelf 4. There is no need to move the large spare parts on the side when selecting one model like multiple large spare parts placed flat. When using it specifically, it should be noted that each of the underground shelves 4 here is used to place a large accessory of a certain model, and the large accessories above need to be used first. When a certain model of large transformer is needed, first determine which matrix pit 2 it is in, and then use the lifting component 3 to lift the underground shelf until the plane with the large accessories is flush with the concrete floor 1, call the forklift in and fork it out, because the underground shelves 4 in other matrix pits 2 are all underground and will not affect the movement of the forklift.

[0017] like Figure 5 , Figure 6 , Figure 7 , Figure 8As shown, the structure of the lifting assembly 3 is described in detail here. The lifting assembly 3 includes a frame 301 constructed in a U shape. A pair of vertical guide rails 302 are fixed on two opposite sides of the frame 301. A support plate 303 that can move vertically is movably arranged in the guide rails 302. The support plate 303 here includes a vertical plate 3031. A pair of rollers 3032 rollingly arranged in the guide rails 302 are installed on the sides of the vertical plate 3031. A carrier plate 3033 connected to the bottom of the underground shelf 4 is vertically fixed to the bottom of the vertical plate 3031. The U-shaped mouth ends of the frame 301 are fixed with a top plate 304 flush with the ground. The bottom screws of the frame 301 are assembled with a bottom plate 305 fixed to the bottom of the rectangular pit 2. The two top plates A reinforcement frame 306 is connected and fixed between 304 and the bottom plate 305, a lead screw 307 is rotatably installed between one of the top plates 304 and the bottom plate 305, a wire drum 308 threadedly connected to the lead screw 307 is fixed on the back side of the support plate 303, and also includes a servo motor 309 installed on the bottom plate 305 and fixed to the end of the lead screw 307 through a coupling; when the underground shelf 4 is to be raised or lowered, the servo motor 309 is started, which drives the lead screw 307 to rotate, and then the wire drum 308 drives the vertical plate 3031 and the carrier plate 3033 to drag the underground shelf 4 to move in the vertical direction. It should be noted that a power switch for controlling the servo motor 309 is also provided here (it is an existing circuit wiring method, so it will not be elaborated in detail).

[0018] like Figure 2 , Figure 5 , Figure 6 As shown, the specific structure of the underground shelf 4 is described in detail here. The underground shelf 4 includes a pair of side frames 401, a plurality of supporting plates 402, and the plurality of supporting plates 402 are equidistantly arranged between the two side frames 401 and welded and fixed. A plurality of triangular reinforcement rods 403 are fixed on the side frames 401. The reason for setting only a pair of side frames 401 here is that in actual operation, a forklift can fork from two directions. At the same time, under the guidance of the guide rail 302 and the roller 3032, the up and down movement of the underground shelf 4 is very stable, and the triangular reinforcement rod 403 is used to increase the strength of the side frame 401.

[0019] like Figure 1 As shown, in order to further illustrate the technical solution, the awning 5 here includes a side enclosure 501 fixedly arranged around the rectangular pit 2 and a ceiling 502 installed on the top of the side enclosure 501. One side of the side enclosure 501 is open for installing a rolling shutter door. At the same time, the concrete floor 1 is higher than the ground and a slope 101 is constructed on the side where the rolling shutter door is installed. The side enclosure 501 and the ceiling 502 are both provided to shelter from wind and rain. At the same time, the concrete floor 1 is higher than the outside ground to prevent rainwater from flowing back into it when it rains.

[0020] like Figure 2 , Figure 3As shown, in order to further optimize the technical solution, a drying system 6 is also included, and the drying system 6 includes a connecting port 601 opened at the side wall of each matrix pit 2, and a vertical port 602 vertically constructed on the concrete floor 1, the connecting port 601 is used to connect multiple matrix pits 2, and two groups of vertical ports 602 are provided and connected to the matrix pits 2, one of the vertical ports 602 is used to install an air intake fan, and the other group of vertical ports 602 is used to install an air outlet fan, and a desiccant is placed at the inner bottom of the matrix pit 2. By installing an air intake fan and an air outlet fan at the two vertical ports 602, the dryer inside the matrix pit 2 can be used to effectively remove moisture and ensure internal ventilation. It should be noted that temperature and humidity sensors and other monitoring equipment can also be installed in the matrix pit 2 to ensure that the internal storage environment is suitable.

[0021] The above description of the disclosed embodiments enables one skilled in the art to implement or use the present invention. Various modifications to these embodiments will be apparent to one skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to the embodiments shown herein, but rather to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A power material storage equipment, It is characterized in that include: A concrete floor (1), wherein a plurality of matrix-arranged matrix pits (2) are constructed on the concrete floor (1); A lifting assembly (3), the lifting assembly (3) being installed in the rectangular pit (2), and an underground shelf (4) being placed in the rectangular pit (2), the lifting assembly (3) being used to move the underground shelf (4) vertically upward and downward, and the number of layers of the underground shelf (4) containing large accessories is not less than two; A rain shelter (5), wherein the rain shelter (5) stands above the matrix-arranged rectangular pits (2) and is used to shield rain and sunlight.

2. The electric power material storage equipment according to claim 1, It is characterized in that The lifting assembly (3) comprises a frame (301) having a U-shaped structure, a pair of vertical guide rails (302) being fixed on two opposite sides of the frame (301), a support plate (303) being movable in the vertical direction being arranged in the guide rail (302), a top plate (304) being flush with the ground being fixed at the U-shaped opening end of the frame (301), and a bottom plate being screwed to the bottom of the rectangular pit (2). (305), a reinforcement frame (306) is connected and fixed between the two top plates (304) and the bottom plate (305), a lead screw (307) is rotatably installed between one of the top plates (304) and the bottom plate (305), a wire drum (308) threadedly connected to the lead screw (307) is fixed on the back side of the support plate (303), and a servo motor (309) is installed on the bottom plate (305) and fixed to the end of the lead screw (307) through a coupling.

3. The electric power material storage equipment according to claim 2, It is characterized in that The support plate (303) comprises a vertical plate (3031) fixed to the wire drum (308), a pair of rollers (3032) rollingly arranged in the guide rail (302) are installed on the side surfaces of the vertical plate (3031), and a carrier plate (3033) connected to the bottom of the underground shelf (4) is vertically fixed to the bottom of the vertical plate (3031).

4. The electric power material storage equipment according to claim 1, It is characterized in that The underground layer frame (4) comprises a pair of side frames (401) and a plurality of support plates (402). The plurality of support plates (402) are equidistantly arranged between the two side frames (401) and fixed by welding. A plurality of triangular reinforcement rods (403) are fixed on the side frames (401).

5. The electric power material storage equipment according to claim 1, It is characterized in that The rain shelter (5) comprises a side enclosure (501) fixedly arranged around the rectangular pit (2) and a ceiling (502) installed on the top of the side enclosure (501); one side of the side enclosure (501) is open for installing a rolling shutter door.

6. The electric power material storage equipment according to claim 1, It is characterized in that The concrete floor (1) is higher than the ground and a slope (101) is configured on the side where the rolling shutter door is installed.

7. The electric power material storage equipment according to claim 1, It is characterized in that The invention also comprises a drying system (6), the drying system (6) comprising a connecting port (601) opened on the side wall of each matrix pit (2), and a vertical port (602) vertically constructed on the concrete floor (1), the connecting port (601) being used to connect a plurality of matrix pits (2), and two groups of vertical ports (602) being provided and connected to the matrix pits (2), one of the vertical ports (602) being used to install an air intake fan, and the other group of vertical ports (602) being used to install an air outlet fan, and a desiccant being placed at the bottom of the matrix pit (2).