Anti-seismic reinforcing and supporting structure of electric power metering equipment

By designing an adjustable support structure, the problem of inconvenient height adjustment of the power metering equipment bracket was solved, achieving stable installation and safe connection of the equipment.

CN224120933UActive Publication Date: 2026-04-14STATE GRID SHAANXI ELECTRIC POWER CO LTD XIXIAN NEW DISTRICT POWER SUPPLY CO
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
STATE GRID SHAANXI ELECTRIC POWER CO LTD XIXIAN NEW DISTRICT POWER SUPPLY CO
Filing Date
2025-05-17
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

The height of the existing power metering equipment bracket is inconvenient to adjust, which reduces the stability of the connection with the circuit and increases safety hazards.

Method used

An anti-seismic reinforcement support structure was designed, comprising a base, support column, support block, support rod, fixing block, crossbar, and support plate. The adjustable height support block and limiting rod enable stable installation and height adjustment of the power metering equipment.

Benefits of technology

This improves the safety and stability of power metering equipment during installation, enhances the stability of its connection with circuits, and reduces potential safety hazards.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of electric power metering equipment fixing, in particular to an electric power metering equipment anti-seismic reinforcing supporting structure which comprises a base, a supporting column, a supporting block, supporting rods, a fixing block, two transverse rods and a supporting plate, the number of the transverse rods is two, the two transverse rods are located between the two supporting rods respectively so that the supporting rods can be supported conveniently, and the fixing block is arranged on the base. The two sides of the two supporting plates are attached to the outer walls of the two bases correspondingly so that the bases can be conveniently supported, the two bases are arranged in parallel, the two supporting columns are arranged above each base in parallel, the supporting blocks with the adjustable height are installed in the two supporting columns, the supporting rods are supported by the upper portions of the two supporting blocks, and the supporting rods are arranged on the upper portions of the two supporting blocks. The two supporting rods are arranged above the two bases in parallel, and the height of the electric power metering equipment during installation can be conveniently adjusted by adjusting the height of the supporting rods, so that the safety and the stability of installation of the electric power metering equipment can be better improved.
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Description

Technical Field

[0001] This utility model relates to the field of fixed power metering equipment, and in particular to a seismic reinforcement support structure for power metering equipment. Background Technology

[0002] Electricity metering equipment refers to the general term for devices used to measure, record and monitor electricity consumption and related parameters. It is an indispensable basic equipment in the power system's generation, transmission, distribution and consumption links, and is directly related to electricity trade settlement, energy efficiency management and power grid safe operation.

[0003] Electricity metering equipment is generally divided into several types: industrial high-voltage metering equipment, residential low-voltage metering equipment, and distributed energy (photovoltaic, wind power) grid-connected metering equipment. Among them, industrial high-voltage metering equipment is relatively heavy and has a high voltage, so it needs to be fixed during use. Existing brackets are generally formed by welding multiple angle irons together, and then the electricity metering equipment is placed on the bracket. During the installation process, the height of the electricity metering equipment needs to be adjusted to facilitate connection with the circuit. However, because the height adjustment of the bracket is inconvenient, it can easily reduce the stability of the connection between the electricity metering equipment and the circuit, increasing safety hazards.

[0004] Therefore, a seismic-resistant reinforcement support structure for power metering equipment is proposed to solve the above problems. Utility Model Content

[0005] The purpose of this utility model is to provide a seismic reinforcement support structure for power metering equipment to solve the above-mentioned problems. This improves the problem that during the installation process, the height of the power metering equipment needs to be adjusted to facilitate connection with the circuit. However, due to the inconvenience of adjusting the height of the support, the connection stability between the power metering equipment and the circuit is easily reduced, increasing the safety hazards.

[0006] This utility model achieves the above-mentioned objective through the following technical solution: a seismic reinforcement support structure for power metering equipment, comprising: a base, support columns, support blocks, support rods, and fixing blocks. Two bases and two support rods are provided, with each support rod located above one of the two fixing blocks. Four support columns, four support blocks, and four fixing blocks are provided. The four support blocks slide within the four support columns, and the lower parts of the four support columns move relative to the upper parts of the two bases. The four support blocks move relative to the lower parts of the four support rods.

[0007] There are two crossbars, which are respectively located between the two support rods to support the support rods;

[0008] There are two support plates, and the two sides of the two support plates are respectively attached to the outer walls of the two bases to support the bases.

[0009] Preferably, a first limiting groove is provided above each of the two bases, and multiple first limiting grooves are provided at equal intervals. A base plate is fixedly connected to the bottom of the support column, and a fixing bolt is threaded into the inside of the base plate. One end of the fixing bolt is inserted into the inside of the first limiting groove.

[0010] Preferably, a second limiting groove is provided equidistantly above the two bases, the second limiting groove is located above a plurality of first limiting grooves, and the base plate slides inside the second limiting groove.

[0011] Preferably, the outer walls of the support column and the support block are provided with a plurality of third limiting grooves, and the bottom groove is provided below the support block, with the plurality of fixing bolts located inside the plurality of third limiting grooves respectively.

[0012] Preferably, a top block is fixedly connected above the support block, the top of the top block is in contact with the bottom of the support rod, and the top block and the support rod are fixedly connected by bolts.

[0013] Preferably, the two crossbars are located above the two support plates, and the two sides of the crossbars extend downward.

[0014] Preferably, limit rods are fixedly connected to both sides of the support plate, and multiple limit rods are inserted into the interior of the two bases respectively.

[0015] The beneficial effects of this utility model are:

[0016] 1. Two bases are placed in parallel, and two support columns are placed in parallel on top of each base. The two support columns are equipped with adjustable support blocks. Support rods are supported on top of the two support blocks. The two support rods are placed in parallel on top of the two bases. The height of the power metering equipment can be adjusted by adjusting the height of the support rods, so as to better increase the safety and stability of the power metering equipment installation.

[0017] 2. After the base is installed, place the two support plates between the two bases. The limiting rods fixed on both sides of the support plates are inserted into the interior of the two bases respectively. The surface of the limiting rods inserted into the base is threaded and fixed with nuts. The side of the two limiting rods that are far apart from each other fits against the inner wall of the base, restricting the movement of the limiting rods and support plates and increasing the stability of the installation of the two bases. Attached Figure Description

[0018] Figure 1This is a schematic diagram of the overall structure of this utility model;

[0019] Figure 2 This utility model Figure 1 An enlarged view of point A in the diagram;

[0020] Figure 3 This is a schematic diagram of the top block structure of this utility model;

[0021] Figure 4 This is a schematic diagram of the bottom structure of the support block of this utility model.

[0022] In the diagram: 100, base; 101, first limiting groove; 102, second limiting groove; 200, support column; 201, base plate; 202, fixing bolt; 300, support block; 301, third limiting groove; 302, bottom groove; 303, top block; 400, support rod; 500, fixing block; 600, crossbar; 700, support plate; 701, limiting rod. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0024] In practical implementation: such as Figure 1-4 As shown, a seismic reinforcement support structure for power metering equipment includes: a base 100, support columns 200, support blocks 300, support rods 400, fixing blocks 500, crossbars 600, and support plates 700. Two bases 100 and two support rods 400 are provided, each located above one fixing block 500. Four support columns 200, four support blocks 300, and four fixing blocks 500 are provided. Four support blocks 300 slide inside the four support columns 200, and the lower parts of the four support columns 200 move above the two bases 100. Four support blocks 300 move below the four support rods 400. Two crossbars 600 are provided, each located between two support rods 400 to support the support rods 400. Two support plates 700 are provided, with their sides respectively attached to the outer walls of the two bases 100 to support the bases 100.

[0025] It should be noted that the power metering equipment in this application is an industrial high-voltage metering device. Industrial high-voltage metering devices are mainly used for power metering at voltage levels of 10kV and above, and are widely used in high-voltage power transmission and distribution systems, industrial power consumption monitoring, and trade settlement. Its core functions include power metering, anti-theft, and remote monitoring, ensuring the safety and economy of power system operation.

[0026] When it is necessary to install the power metering equipment, first place the two bases 100 parallel to each other on the ground. The cross-section of the two bases 100 is C-shaped. The bases 100 are welded with baffles on both sides, which gives the bases 100 good load-bearing capacity. The bases 100 also have inward grooves, which can facilitate the fixing of bolts.

[0027] Four support columns 200 and four support blocks 300 are placed above two bases 100 respectively. The support blocks 300 will slide inside the support columns 200. The support columns 200 limit and support the support blocks 300, and the height of the four support blocks 300 can be adjusted. Two support rods 400 are supported above the four support blocks 300 respectively. The two support rods 400 are parallel to the two bases 100. The height of the fixed block 500 can be changed by adjusting the distance between the bases 100 and the support rods 400.

[0028] Multiple fixing blocks 500 can slide above the support rod 400. Multiple slots are provided above the support rod 400. These slots can adjust the spacing between the multiple fixing blocks 500. The multiple fixing blocks 500 can be fixed to the feet of the power metering equipment by bolts, thereby increasing the fixing efficiency of the power metering equipment.

[0029] The two bases 100 are fixed together by the support plate 700, so that the two bases 100 are in a parallel state, which increases the support stability between the two bases 100. The two crossbars 600 support the two support rods 400. The two sides of the crossbars 600 extend outward and are located above the support rods 400. The top of the crossbars 600 can support the bottom of the power metering equipment, relieve the pressure on the fixing block 500, and improve safety.

[0030] like Figure 1 , Figure 2 and Figure 3 As shown, a first limiting groove 101 is provided above each of the two bases 100. Multiple first limiting grooves 101 are provided at equal intervals. A base plate 201 is fixedly connected to the bottom of the support column 200. A fixing bolt 202 is threaded into the inside of the base plate 201. One end of the fixing bolt 202 is inserted into the inside of the first limiting groove 101.

[0031] The support column 200 is erected vertically above the base 100, with the bottom of the base plate 201 parallel to the top of the base 100. This increases the stability of the connection between the base 100 and the support column 200. The fixing bolt 202 is inserted through the base plate 201 into the groove of the base 100, and then a nut is installed on the bottom of the fixing bolt 202 to facilitate the connection between the fixing bolt 202 and the base 100.

[0032] like Figure 1 , Figure 3 and Figure 4 As shown, two bases 100 are provided with second limiting grooves 102 at equal intervals above them. The second limiting grooves 102 are located above a plurality of first limiting grooves 101. The base plate 201 slides inside the second limiting grooves 102. A plurality of third limiting grooves 301 are provided on the outer walls of the support column 200 and the support block 300. A bottom groove 302 is provided below the support block 300. A plurality of fixing bolts 202 are located inside the plurality of third limiting grooves 301 respectively.

[0033] When the base plate 201 is installed with the base 100, the base plate 201 will be located inside the second limiting groove 102, and the two sides of the base plate 201 will slide against the inner wall of the base 100, so that the fixing hole of the base plate 201 can slide stably above the first limiting groove 101, making it convenient to insert the fixing bolt 202.

[0034] During the sliding process, the outer wall of the support block 300 will slide against the inner wall of the support column 200, increasing the stability of the support block 300 during the support process. The third limiting grooves 301 opened on the support block 300 and the support column 200 are on the same vertical line. When the two third limiting grooves 301 are at the same height, bolts can be inserted to fix the positions of the support block 300 and the support column 200, improving the installation efficiency.

[0035] like Figure 1 , Figure 2 and Figure 4 As shown, a top block 303 is fixedly connected to the top of the support block 300. The top of the top block 303 fits against the bottom of the support rod 400, and the top block 303 and the support rod 400 are fixedly connected by bolts.

[0036] The upper surface of the top block 303 is parallel to the lower part of the support rod 400. The two sides of the support rod 400 are bent downward to increase the structural strength of the support rod 400. The inner walls of the two sides of the support rod 400 are located on both sides of the top block 303 to increase the structural stability of the connection between the top block 303 and the support rod 400. Then, bolts are inserted. The bolts are inserted through the bottom groove 302 at the bottom of the top block 303 to facilitate the fixing of the support rod 400 and the top block 303.

[0037] like Figure 1 and Figure 2 As shown, two crossbars 600 are located above two support plates 700 respectively. The two sides of the crossbars 600 extend downwards. Limiting rods 701 are fixedly connected to both sides of the support plates 700 respectively. Multiple limiting rods 701 are inserted into the interior of the two bases 100 respectively.

[0038] After the base 100 is installed, two support plates 700 are placed between the two bases 100. The limiting rods 701 fixed on both sides of the support plate 700 are inserted into the interior of the two bases 100 respectively. The surface of the limiting rods 701 inserted into the interior of the base 100 is threaded and fixed by nuts. The side of the two limiting rods 701 that is far away from each other fits against the inner wall of the base 100, restricting the movement of the limiting rods 701 and the support plate 700 and increasing stability.

[0039] After the two support rods 400 are installed, the two crossbars 600 are placed between the two support rods 400. The crossbars 600 are pressed down, and the folded edges on both sides of the crossbars 600 will also support the space between the two support rods 400, thereby controlling the distance between the two support rods 400 and increasing stability.

[0040] In use, the present invention is as follows: First, two bases 100 are placed in parallel. Two support columns 200 are placed in parallel above each base 100. Adjustable support blocks 300 are installed inside the two support columns 200. Support rods 400 are supported above the two support blocks 300. The two support rods 400 are placed in parallel above the two bases 100. By adjusting the height of the support rods 400, the height of the power metering equipment can be adjusted during installation, so as to better increase the safety and stability of the power metering equipment installation.

[0041] The two support rods 400 are limited by a crossbar 600, and the two bases 100 are limited by a support plate 700. Both the crossbar 600 and the support plate 700 are stabilizing components used to increase structural stability. The crossbar 600 also supports the bottom of the power metering equipment to relieve the pressure on the fixing block 500. The fixing block 500 can be movably installed above the support rods 400 and its direction can be adjusted. Multiple fixing blocks 500 support the bottom of the power metering equipment, improving the flexibility and stability of the power metering equipment during installation.

[0042] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A seismic-resistant reinforcement support structure for power metering equipment, characterized in that, include: The system comprises a base (100), a support column (200), a support block (300), a support rod (400), and a fixing block (500). Two bases (100) and two support rods (400) are provided. The two support rods (400) are located above the two fixing blocks (500). Four support columns (200), four support blocks (300), and four fixing blocks (500) are provided. The four support blocks (300) slide within the four support columns (200). The lower parts of the four support columns (200) move relative to the upper parts of the two bases (100). The four support blocks (300) move relative to the lower parts of the four support rods (400). There are two crossbars (600), which are respectively located between the two support rods (400) to support the support rods (400); There are two support plates (700), and the two sides of the two support plates (700) are respectively attached to the outer walls of the two bases (100) to support the bases (100).

2. The seismic reinforcement support structure for power metering equipment according to claim 1, characterized in that: Each of the two bases (100) has a first limiting groove (101) on its upper part. Multiple first limiting grooves (101) are equally spaced. A base plate (201) is fixedly connected to the lower part of the support column (200). A fixing bolt (202) is threaded into the inside of the base plate (201). One end of the fixing bolt (202) is inserted into the inside of the first limiting groove (101).

3. The seismic reinforcement support structure for power metering equipment according to claim 2, characterized in that: The two bases (100) are provided with second limiting grooves (102) at equal intervals above them. The second limiting grooves (102) are located above the plurality of first limiting grooves (101). The base plate (201) slides inside the second limiting grooves (102).

4. The seismic reinforcement support structure for power metering equipment according to claim 2, characterized in that: Multiple third limiting grooves (301) are provided on the outer walls of the support column (200) and the support block (300), and a bottom groove (302) is provided below the support block (300). Multiple fixing bolts (202) are respectively located inside the multiple third limiting grooves (301).

5. The seismic reinforcement support structure for power metering equipment according to claim 1, characterized in that: A top block (303) is fixedly connected above the support block (300). The top of the top block (303) fits against the bottom of the support rod (400). The top block (303) and the support rod (400) are fixedly connected by bolts.

6. The seismic reinforcement support structure for power metering equipment according to claim 1, characterized in that: The two crossbars (600) are located above the two support plates (700) respectively, and the two sides of the crossbars (600) extend downward.

7. The seismic reinforcement support structure for power metering equipment according to claim 6, characterized in that: Limiting rods (701) are fixedly connected to both sides of the support plate (700), and multiple limiting rods (701) are inserted into the interior of the two bases (100).