Compatible power turnover box

By designing a compatible power turnover box, the poor versatility caused by the diverse specifications of the meter are solved, and compatible storage and safe transportation of various meters are achieved, which reduces production costs and improves transportation efficiency.

CN223187959UActive Publication Date: 2025-08-05SUZHOU YING CHUANG POWER TECH
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Patent Information

Application Number
CN202421815622.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-08-05
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

Due to the diverse specifications of the existing meter turnover boxes, they have poor versatility. They need to open the mold design to adapt to various types of meters, which increases production costs.

Method used

A compatible power turnover box is designed, including an outer box, a meter carrier and a bottom plate. A crisscrossing rib strips are arranged on the inner side of the outer box. The crisscrossing ribs are distinguished by the storage space by the crisscrossing ribs, and a positioner and a buffer pad are installed to ensure the safety and stability of the meter during the transmission process.

Benefits of technology

It realizes compatibility storage of various types of electricity meters, reduces production costs, improves transportation safety and operation efficiency, reduces meter damage, and extends service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of logistics turnover boxes, in particular to a compatible electric power turnover box which comprises a turnover box body, the turnover box body is composed of an outer box body, an electric meter carrying support and a bottom plate, and transverse ribs and longitudinal ribs are arranged on the bottom wall of the inner side of the outer box body in a criss-cross mode. The electric meter carrier is divided into a plurality of electric meter storage spaces by crisscrossed transverse ribs and longitudinal ribs, transverse protruding blocks and longitudinal protruding blocks are arranged at the two ends and the middles of the transverse ribs and the longitudinal ribs respectively, and a plurality of positioners are further arranged on the outer box body. According to the electric meter turnover box, various electric meters are contained through cooperation of the transverse ribs, the longitudinal ribs, the transverse protruding blocks, the longitudinal protruding blocks and the positioners, the problems that an electric meter turnover box cannot be suitable for storage of various electric meters and is poor in universality are solved, the turnover box can be suitable for storage of various electric meters at the same time, compatibility is high, and the turnover box is convenient to use. And the electricity meter in transmission can be protected, so that the safety is high.
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Description

Technical Field

[0001] The utility model relates to the technical field of logistics turnover boxes, in particular to a compatible power turnover box. Background Art

[0002] Turnover boxes are the most typical products of supporting equipment in the logistics industry chain. They play an important role in the turnover, storage, and transportation of electricity meters in the logistics field. However, with the continuous development of my country's power market, its rich variety of electricity meters are facing the problem of increased logistics management costs.

[0003] After long-term use, meter turnover boxes have been found to have shortcomings. This is primarily due to the diverse specifications of meters, such as single-phase meters, three-phase meters, and conversion and collection terminals / concentrators. Due to the dimensional differences between these meters, existing meter turnover boxes lack universality. To accommodate the storage needs of these various meter sizes, custom molds must be designed to match the appearance of each meter, which in turn increases production costs. Utility Model Content

[0004] The purpose of the utility model is to solve the shortcomings of the prior art and to propose a compatible power turnover box.

[0005] In order to achieve the above purpose, the present invention adopts the following technical solutions:

[0006] A compatible power turnover box includes a turnover box body, the turnover box body consisting of an outer box body, an electric meter holder, and a bottom plate, wherein the electric meter holder is embedded in the outer box body, and the bottom plate is fixedly mounted on the bottom of the outer box body, wherein:

[0007] The outer box body is a double-layer board-wrapped structure, and the outer box body is provided with reinforcing ribs on the upper half of its long sides and short sides. The four corners of the outer box body are designed as hollow grooves, and the outer box body is provided with through holes on the top surface of the four corners, and the through holes are connected to the hollow grooves;

[0008] The inner bottom wall of the outer box is provided with crisscrossing transverse and longitudinal ribs. The meter carrier is divided into a plurality of storage spaces for the meters by the crisscrossing transverse and longitudinal ribs. The ends and the middle of the transverse and longitudinal ribs are provided with transverse and longitudinal protrusions, respectively. The tops of the transverse and longitudinal protrusions are designed as chamfered prism-shaped structures.

[0009] The outer box body is also provided with several positioners, which are composed of a base, a fixed column and a sliding sleeve. The base is arranged on the inner bottom wall of the outer box body, two fixed columns are provided and are both installed vertically, and the sliding sleeve is elastically inserted downward from the top of the fixed column. The two sliding sleeves extend upward from the meter support, and the two sliding sleeves are respectively located on both sides of the longitudinal protrusions corresponding to the meter support.

[0010] In a preferred technical solution, the outer box body is respectively provided with multiple silk-screened surfaces on the outer walls of its long sides and short sides, and the silk-screened surfaces protrude outward along the surface of the outer box body. The outer box body is respectively provided with label surfaces at both ends of its long sides and short sides, and the label surfaces are recessed inward to form a sunken surface.

[0011] In a preferred technical solution, the outer box body is further provided with handles at the middle portions of the two short sides thereof, and workers lift the outer box body by means of the handles.

[0012] In a preferred technical solution, the outer box body is provided with positioning grooves on its two short sides respectively, and correspondingly, the outer box body is provided with ribs adapted to the positioning grooves on both sides of its bottom, and the positioning grooves and the ribs are both located on one side of the central axis of the short side of the outer box body.

[0013] In a preferred technical solution, a plurality of clip mounting holes are provided on the surface of the base plate, clips are installed in the clip mounting holes, a clip locking hole is opened on the electric meter support, the clip extends upward from the bottom of the outer box body, and is fixed to the clip locking hole reserved on the electric meter support to adapt to it.

[0014] In a preferred technical solution, a plurality of first arrows are engraved on the outer box body, and the directions of the first arrows are consistent.

[0015] In a preferred technical solution, the bottom wall of each meter storage space divided by the transverse ribs and the longitudinal ribs on the meter carrier is engraved with a second arrow, and the direction of the second arrow is consistent.

[0016] In a preferred technical solution, the sliding sleeve is an integrated structure composed of a quadrangular prism at the lower half and a quadrangular pyramid at the upper half. The interior of the fixed column is hollow and a spring is reserved therein. The upper end of the spring abuts against the upper sliding sleeve.

[0017] In a preferred technical solution, a plurality of water outlet holes are provided on the outer box, the electric meter support and the bottom plate.

[0018] In a preferred technical solution, the electric meter carrier is further provided with a plurality of buffer pads embedded in each electric meter storage space therein.

[0019] In a preferred technical solution, the inner bottom wall of the outer box body is further provided with array-distributed fixing cylinders, and the bottom of the spring pad is embedded in the corresponding fixing cylinder below.

[0020] In a preferred technical solution, both side edges of the bottom plate are warped upward to form warped edges.

[0021] The beneficial effects of the utility model are:

[0022] 1. The turnover box has high strength, strong anti-collision ability, and high buffering capacity, which can provide protection for the built-in electric meter and reduce the probability of damage to the electric meter during transportation. At the same time, the warped edges on both sides of the bottom plate can ensure a smooth transition of the turnover box and reduce the noise when running on the automatic roller line.

[0023] 2. It can meet the storage needs of various specifications of electric meters. This week's transfer box only needs to be molded once to realize the storage of various electric meters of different specifications and sizes (including single-phase electric energy meters, three-phase electric energy meters, concentrators, conversion and collection terminals, etc.), which can greatly reduce production costs.

[0024] 3. The guide surface can prevent the placed meter from jumping out and ensure that the meter is in the appropriate position. On the other hand, it can increase the tolerance of the robot in placing the meter. When the robot is packing the meter, it can be placed in the designated position smoothly if it deviates by more than 5mm, which makes it convenient for the robot to accurately grasp the meter in the corresponding position, and can improve the operating efficiency of various meters.

[0025] 4. Reduce the risk of impacting the roller during operation, effectively protect the box and warehouse line, and extend service life.

[0026] To sum up, the power turnover box proposed in this solution solves the problem that the meter turnover box cannot be used to store various types of meters and has poor versatility. On the one hand, this turnover box can be used to store various types of meters at the same time and has strong compatibility. On the other hand, it can provide protection for meters in transit and has high safety. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 This is a schematic diagram of the overall structure of a compatible power turnover box proposed by the utility model;

[0028] Figure 2 This is a schematic diagram of the main structure of a compatible power turnover box proposed by the utility model;

[0029] Figure 3 This is a structural diagram of the assembly of the outer box body of a compatible power turnover box and an electric meter support proposed by the present invention;

[0030] Figure 4 This is a schematic structural diagram of the outer box of a compatible power turnover box proposed in the utility model from a bottom-up perspective;

[0031] Figure 5 This is a structural schematic diagram of a half-section state of an electric meter support of a compatible electric power turnover box proposed by the present invention;

[0032] Figure 6This is a structural diagram of a positioner for a compatible power turnover box proposed in the present utility model;

[0033] Figure 7 This is a structural diagram of a compatible power turnover box proposed by the utility model for storing the status of various types of electricity meters.

[0034] In the figure: 1. Turnover box body; 2. Outer box body; 3. Electric meter support; 4. Bottom plate; 5. Warped edge; 6. Buckle mounting hole; 7. Reinforcement rib; 8. Silk screen surface; 9. Label surface; 10. Handle; 11. Insert rib; 12. Positioning groove; 13. Through hole; 14. Hollow groove; 15. Horizontal rib; 16. Longitudinal rib; 17. Buckle; 18. Fixing tube; 19. First arrow; 20. Buckle locking hole; 21. Buffer pad; 22. Second arrow; 23. Horizontal rib; 24. Longitudinal rib; 25. Horizontal raised block; 26. Longitudinal raised block; 27. Positioner; 28. Base; 29. Fixing column; 30. Sliding sleeve; 31. Water outlet. DETAILED DESCRIPTION

[0035] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0036] In this embodiment, refer to Figure 1-6 A compatible electric power turnover box includes a turnover box body 1, which is composed of an outer box body 2, an electric meter holder 3 and a bottom plate 4, wherein the electric meter holder 3 is embedded in the outer box body 2, and the bottom plate 4 is fixedly installed at the bottom of the outer box body 2. The connection between the bottom plate 4 and the outer box body 2 is connected by a snap 17, and the two are connected into an integral structure.

[0037] From the attached Figure 2 It can be seen that the two side edges of the bottom plate 4 are raised to form warped edges 5. The purpose of the design of the warped edges 5 is to prevent the turnover box from hitting the line when sliding along the X direction, to achieve a smooth transition, and to reduce the risk of hitting the roller during operation, effectively protecting the box body and the warehouse line body, and extending the service life.

[0038] As attached Figure 1 or attached Figure 2 As shown, the outer box body 2 is provided with reinforcing ribs 7 on the upper half of its long sides and short sides. The function of the reinforcing ribs 7 is to increase the strength of the overall frame of the outer box body 2 and improve its durability.

[0039] The outer box body 2 is provided with multiple silk screen surfaces 8 on the outer walls of its long sides and short sides. The silk screen surfaces 8 protrude outward along the surface of the outer box body 2. In this way, when silk screen printing, the silk screen roller can accurately fit the plane and press it tightly, thereby ensuring the integrity of the silk screen.

[0040] The outer box body 2 is respectively provided with label surfaces 9 at both ends of its long side and short side. The label surface 9 is concave inward to form a sunken surface. The label surface 9 is concave inward, and there is a misalignment between the surface of the outer box body 2 and the label surface 9. In this way, when labeling, the staff only needs to stick along the misaligned edge to ensure that the label is aligned.

[0041] The outer box body 2 is also provided with handles 10 in the middle of its two short sides. Figure 1 or attached Figure 2 As shown, the handle 10 is ergonomically designed. The handle 10 is concave and slightly tilted outward, which makes it easier for workers to lift the outer box 2 through the handle 10 .

[0042] The outer box body 2 is a double-layer plate edging structure, and the four corners of the outer box body 2 are designed as hollow grooves 14. The four corners are smooth and rounded, and the interior is hollow. This can provide a buffer for adjacent turnover boxes when transported on the conveyor line, reducing the damage of collision.

[0043] The outer box body 2 has through holes 13 on its top surface at each of its four corners, which are connected to the hollow grooves 14. When cleaning the entire turnover box, the through holes 13 are used to discharge water. During the cleaning process, the airflow passing through the through holes 13 will produce a sharp hissing sound. Therefore, the design of the hollow grooves 14 can release the airflow, thereby effectively suppressing the sound and reducing noise.

[0044] As attached Figure 3 As shown, the inner bottom wall of the outer box body 2 is provided with crisscrossing transverse ribs 15 and longitudinal ribs 16. The transverse ribs 15 and longitudinal ribs 16 are designed to strengthen the strength of the outer box body 2 and prevent it from deformation.

[0045] It should be noted that, as Figure 3 As shown, the inner bottom wall of the outer box body 2 is further provided with array-distributed fixing cylinders 18 , and the bottom surface of the electric meter support 3 is provided with guide columns adapted to each fixing cylinder 18 .

[0046] In addition, a plurality of clip mounting holes 6 are provided on the surface of the base plate 4, clips 17 are installed in the clip mounting holes 6, and a clip locking hole 20 is opened on the meter carrier 3. The clip 17 extends upward from the bottom of the outer box body 2 and is fixed to the clip locking hole 20 reserved on the meter carrier 3 to fit in.

[0047] When installing the meter support 3, push the meter support 3 downward into the outer box 2. After the meter support 3 is pushed into place, lock it with the buckle 17, so that the meter support 3 and the outer box 2 are fixedly connected as a whole.

[0048] Combined with attachment Figure 3As can be seen, the meter carrier 3 is divided into several storage spaces for the meters by crisscrossing transverse ribs 23 and longitudinal ribs 24. The transverse ribs 23 and longitudinal ribs 24 are used to block or separate, play an isolation role, and prevent the stored meters from contacting each other.

[0049] The bottom wall of each meter storage space on the meter support 3, which is divided by the transverse ribs 23 and the longitudinal ribs 24, is engraved with a second arrow 22, and the second arrow 22 is oriented in the same direction. The transverse ribs 23 and the longitudinal ribs 24 are used to increase the strength of the meter support 3. Since a number of meters need to be placed on the meter support 3, when the number of meters increases, the meter support 3 will sag downward under pressure. The design of the transverse ribs 23 and the longitudinal ribs 24 can increase the support strength of the meter support 3, prevent the meter support 3 from sagging or deformation, and prevent the meter support 3 from being attached. Figure 5 It can be seen that both the transverse ribs 23 and the longitudinal ribs 24 are in an inverted U-shaped structure with a hollow cavity inside. This design is much stronger than adding a rib plate to the bottom of the meter support 3. In addition, the second arrow 22 is used to indicate the installation orientation of various types of meters.

[0050] Transverse protrusions 25 and longitudinal protrusions 26 are respectively provided at both ends and the middle of the transverse ribs 23 and the longitudinal ribs 24. The tops of the transverse protrusions 25 and the longitudinal protrusions 26 are designed as chamfered prism-shaped structures. This design can prevent the electric meter from falling off during transportation.

[0051] The outer box body 2 is also provided with several positioners 27. The outer box body 2 is also provided with several positioners 27. The positioner 27 consists of a base 28, a fixed column 29 and a sliding sleeve 30. The base 28 is provided on the inner bottom wall of the outer box body 2. There are two fixed columns 29 and both are installed vertically. The sliding sleeve 30 is elastically inserted downward from the top of the fixed column 29. The two sliding sleeves 30 extend upward from the meter carrier 3, and the two sliding sleeves 30 are respectively on both sides of the longitudinal protrusion 26 corresponding to the meter carrier 3.

[0052] Symmetrical sliding sleeves 30 are arranged on both sides of the same longitudinal protrusion block 26 . The sliding sleeves 30 are sufficiently close to the longitudinal protrusion block 26 but do not contact it. The sliding sleeves 30 can slide freely in the vertical direction on the fixing column 29 .

[0053] The structure of the sliding sleeve 30 needs to be explained in detail. The sliding sleeve 30 is an integrated structure composed of a quadrangular prism at the lower half and a quadrangular pyramid at the upper half. The interior of the fixed column 29 is hollow and has a spring reserved therein. The upper end of the spring abuts against the upper sliding sleeve 30 .

[0054] The tops of the transverse protrusions 25, the longitudinal protrusions 26 and the sliding sleeve 30 are all prism-shaped. The purpose of this design is to facilitate and quickly place the electric meter on the electric meter carrier 3. In addition, during the transportation of the turnover box, bumps may occur. The guide surface design of the above-mentioned prism-shaped structure can also ensure that even if bumps occur, the electric meter can automatically fall back to its original position when it falls back, thereby ensuring that the subsequent robot arm can accurately grasp each electric meter.

[0055] Furthermore, it should be noted that, as Figure 3 As shown, the meter carrier 3 is equipped with multiple cushions 21 embedded within each meter storage space. The inner bottom wall of the outer box 2 is also provided with an array of fixed cylinders 18, with the bottoms of the spring pads 21 embedded in corresponding fixed cylinders 18. The cushions 21 provide shock absorption for the meter during transport, reducing vibration-related damage.

[0056] It should be noted that there are several first arrows 19 engraved on the outer box body 2, and the direction of the first arrows 19 is consistent. The direction of the first arrows 19 is the placement direction of the turnover box body 1. In order to specifically explain the function of the first arrows 19, it is necessary to explain the design of the ribs 11 and the positioning grooves 12: Figure 3 And attached Figure 4 As shown, the outer box body 2 has positioning grooves 12 on its two short sides. Correspondingly, the outer box body 2 has ribs 11 on both sides of its bottom that match the positioning grooves 12. The positioning grooves 12 and the ribs 11 are both located on one side of the central axis of the short side of the outer box body 2. The positioning grooves 12 and the ribs 11 provided on all outer boxes 2 are in the same position and are located on the left or right side of the central axis of the short side of the outer box body 2. When stacking the turnover box body 1, it is necessary to stack them according to the position of the first arrow 19. Once the box is placed in the wrong direction, the ribs 11 on the upper layer will not be able to be accurately inserted into the positioning grooves 12 on the lower layer. This design is a fool-proof design that ensures that all turnover boxes maintain a consistent stacking direction.

[0057] Finally, it should be noted that a plurality of water outlet holes 31 are provided on the outer box body 2 , the electric meter support 3 and the bottom plate 4 . When the entire turnover box body 1 is cleaned, the placement of the water outlet holes 31 can ensure that the water leaks away quickly.

[0058] In actual application, the storage space divided by the transverse ribs 23 and the longitudinal ribs 24 can be used to place electric meters of the same specifications. The positions of the transverse ribs 23 and the longitudinal ribs 24 are used to limit the electric meters so that the electric meters are in a relatively independent space to avoid collision.

[0059] When a larger meter is required, as shown in the attached Figure 3As shown, the side of the electric meter close to the positioner 27 is against the B surface, which is equivalent to using the sliding sleeve 30 and the transverse ribs 23 and the longitudinal ribs 24 of the positioner 27 to limit the electric meter of this size, and also allows the electric meter to be in a relatively independent space to avoid collision.

[0060] When a larger meter is required, as shown in the attached Figure 3 As shown, the electric meter presses the sliding sleeve 30 on one side of the locator 27 downward, and the side of the electric meter is against the A surface of the longitudinal protrusion block 26, which is equivalent to using the longitudinal protrusion block 26 and the transverse ribs 23 and the longitudinal ribs 24 to limit the electric meter of this size, and can also make the electric meter in a relatively independent space to avoid collision.

[0061] Finally, since a number of transverse protrusions 25 and longitudinal protrusions 26 are arranged on the transverse ribs 23 and the longitudinal ribs 24 respectively, one side of the electric meter to be placed is against the inner wall of the outer box body 2, and the other three sides of the electric meter can be against the corresponding transverse protrusions 25 and longitudinal protrusions 26 respectively.

[0062] The final form is as follows Figure 7 Compatible storage conditions for each meter are shown.

[0063] At the end of the transmission line, a robotic arm is often used to clamp the electric meters. Since the transverse ribs 23, the longitudinal ribs 24, the transverse protrusions 25, the longitudinal protrusions 26 and the sliding sleeve 30 themselves have a certain width, there will be a certain distance between adjacent electric meters. This can increase the tolerance of the robotic arm in placing the electric meters. When the robotic arm is packing the electric meters, any deviation of more than 5mm can be successfully placed in the designated position, and finally the robotic arm can smoothly grab each electric meter.

[0064] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A compatible power turnover box, characterized in that: The utility model comprises a turnover box body (1), wherein the turnover box body (1) is composed of an outer box body (2), an electric meter support (3) and a bottom plate (4), wherein the electric meter support (3) is embedded in the outer box body (2), and the bottom plate (4) is fixedly installed on the bottom of the outer box body (2), wherein: The two side edges of the bottom plate (4) are warped upwards to form warped edges (5); The outer box body (2) is a double-layer plate-wrapped structure. The outer box body (2) is provided with reinforcing ribs (7) on the upper half of its long sides and short sides. The four corners of the outer box body (2) are designed as hollow grooves (14). The outer box body (2) is provided with through holes (13) on the top surfaces of the four corners. The through holes (13) are connected to the hollow grooves (14). The inner bottom wall of the outer box body (2) is provided with crisscrossing transverse ribs (15) and longitudinal ribs (16); The electric meter carrier (3) is divided into a plurality of storage spaces for electric meters by crisscrossing transverse ribs (23) and longitudinal ribs (24), and transverse protrusions (25) and longitudinal protrusions (26) are respectively provided at both ends and in the middle of the transverse ribs (23) and longitudinal ribs (24), and the tops of the transverse protrusions (25) and longitudinal protrusions (26) are both designed as prism-shaped structures with chamfers. The outer box (2) is also provided with a plurality of positioners (27), the positioners (27) being composed of a base (28), a fixed column (29) and a sliding sleeve (30), the base (28) being provided on the inner bottom wall of the outer box (2), two fixed columns (29) being provided and both being vertically installed, the sliding sleeve (30) being elastically inserted downward from the top of the fixed column (29), the two sliding sleeves (30) extending upward from the electric meter support (3), and the two sliding sleeves (30) being respectively located on both sides of the longitudinal protrusion (26) corresponding to the electric meter support (3).

2. A compatible power turnover box according to claim 1, characterized in that: The outer box body (2) is provided with a plurality of silk screen surfaces (8) on the outer walls of its long sides and short sides, respectively. The silk screen surfaces (8) protrude outward along the surface of the outer box body (2). The outer box body (2) is provided with label surfaces (9) at both ends of its long sides and short sides, respectively. The label surfaces (9) are recessed inward to form a sunken surface.

3. The compatible power turnover box according to claim 1, characterized in that: The outer box body (2) is also provided with handles (10) at the middle parts of its two short sides, and workers lift the outer box body (2) through the handles (10).

4. The compatible power turnover box according to claim 1, characterized in that: The outer box body (2) is provided with positioning grooves (12) on its two short sides, and correspondingly, the outer box body (2) is provided with insertion ribs (11) adapted to the positioning grooves (12) on both sides of its bottom, and the positioning grooves (12) and the insertion ribs (11) are both located on one side of the central axis of the short side of the outer box body (2).

5. The compatible power turnover box according to claim 1, characterized in that: A plurality of buckle mounting holes (6) are provided on the surface of the base plate (4), buckles (17) are installed in the buckle mounting holes (6), a buckle locking hole (20) is provided on the electric meter support (3), and the buckle (17) extends upward from the bottom of the outer box (2) and is fixed to fit the buckle locking hole (20) reserved on the electric meter support (3).

6. The compatible power turnover box according to claim 1, characterized in that: A plurality of first arrows (19) are engraved on the outer box body (2), and the directions of the first arrows (19) are consistent.

7. The compatible power turnover box according to claim 1, characterized in that: The bottom walls of each meter storage space divided by the transverse ribs (23) and the longitudinal ribs (24) on the meter carrier (3) are all engraved with a second arrow (22), and the directions of the second arrows (22) are consistent.

8. The compatible power turnover box according to claim 1, characterized in that: The sliding sleeve (30) is an integrated structure composed of a quadrangular prism at the lower half and a quadrangular pyramid at the upper half. The interior of the fixed column (29) is hollow and contains a spring, the upper end of which abuts against the upper sliding sleeve (30).

9. The compatible power turnover box according to claim 1, characterized in that: A plurality of water outlet holes (31) are provided on the outer box (2), the electric meter support (3) and the bottom plate (4).