An inspection device for electrical energy storage

By combining the drive mechanism and the rotation mechanism, and utilizing the design of the extrusion plate and the positioning gripper, the problem of inconvenient angle adjustment of the power storage detection device is solved, achieving precise control and efficient detection.

CN224383321UActive Publication Date: 2026-06-19SHANDONG XINTONG CLOUD DIGITAL TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANDONG XINTONG CLOUD DIGITAL TECHNOLOGY CO LTD
Filing Date
2025-07-23
Publication Date
2026-06-19

AI Technical Summary

Technical Problem

Existing power storage detection devices are prone to accidental touches of control keys or require inconvenient head and body movements when adjusting the angle, resulting in inconvenience and low efficiency.

Method used

The device employs a drive mechanism to move the movable plate, combined with the extrusion plate and positioning gripper design in the rotation mechanism. The angle is precisely locked through the plastic deformation of the extrusion plate, and the extrusion plate status can be quickly changed and observed through the linkage structure of the observation hole and the lever.

Benefits of technology

It achieves precise control of angle adjustment, avoids accidental touches, improves detection efficiency, and reduces maintenance costs.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224383321U_ABST
    Figure CN224383321U_ABST
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Abstract

The utility model relates to electric power detection technical field, concretely is a kind of electric power energy storage inspection device, including pedestal, support plate is arranged on the pedestal, driving mechanism is arranged in the support plate, driving mechanism is arranged in movable plate, it further includes rotating mechanism, is arranged on movable plate, rotating mechanism includes sleeve that is arranged on the bottom surface of movable plate, center shaft is arranged in the sleeve, evenly distributed positioning gripper is arranged on the center shaft, this electric power energy storage inspection device, through the linkage of extruding piece, positioning gripper, placement plate and connecting plate and so on structure, when rotating placement plate, positioning gripper and extruding piece produce extrusion, cause the plastic deformation of extruding piece, so that multiple extruding piece constantly separates and enters positioning gripper inside, so it is convenient to rotate simultaneously, also have certain locking force, when detecting at keeping an angle, can be well avoided that the deviation angle caused by the detection person error touch, and simple structure, maintenance cost is low.
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Description

Technical Field

[0001] This utility model relates to the field of power detection technology, specifically to a power energy storage inspection device. Background Technology

[0002] Electric energy storage devices are devices used to store electrical energy and release it when needed. They can convert electrical energy into other forms of energy so that it can be converted back into electrical energy for later use. When testing electric energy storage devices, staff need to move the devices to a workbench at a certain height for testing. At the same time, when testing the devices in different directions, manual rotation is required, which is time-consuming, labor-intensive, and inefficient.

[0003] A search revealed Chinese patent CN221631491U, which discloses a power storage testing device. This device includes a support assembly, a moving assembly, and a rotating assembly. The support assembly includes a first bracket and a recessed clearance portion at the front end of the first bracket. The moving assembly is located at the rear end of the upper surface of the support assembly and includes a fixing plate fixed to the rear end of the upper surface of the first bracket, an elongated slot at the front end of the fixing plate, and a connecting block inserted into the elongated slot. The rotating assembly is located at the front end of the moving assembly and includes a second bracket located at the front end of the connecting block, a rotating shaft rotatably connected to the upper surface of the second bracket, and a turntable fixed to the top of the rotating shaft. This power storage testing device offers advantages such as good flexibility of use, high efficiency in the testing process, and reduced manpower requirements.

[0004] However, it was found in use that the above-mentioned existing technology uses a motor to drive the workpiece to rotate. When adjusting the angle, it is necessary to press the control key to instruct the workpiece to rotate. If the control key is designed to be close to the workpiece, it is easy to accidentally touch the control key during manual inspection, causing the workpiece to rotate. If the control key is far away, the user needs to swing their head and body to press the control key. The adjustment process is out of the user's own inspection perspective, so multiple adjustments are required, which is inconvenient to use. Therefore, we propose an inspection device for power storage. Utility Model Content

[0005] To solve the above-mentioned technical problems, this application provides an inspection device for power storage, including a base, a support plate on the base, a drive mechanism inside the support plate, and a movable plate on the drive mechanism;

[0006] It also includes a rotating mechanism mounted on the movable plate. The rotating mechanism includes a sleeve mounted on the bottom surface of the movable plate. A central shaft is mounted inside the sleeve. Positioning grippers are evenly distributed on the central shaft. A rotating ring is rotatably mounted inside the sleeve. Extrusion plates are evenly distributed inside the rotating ring and cooperate with the positioning grippers. A placement plate is mounted on the rotating ring, and a fixing mechanism is mounted on the placement plate.

[0007] In some embodiments, the extrusion sheet is configured as an elastic structure.

[0008] In some embodiments, the extrusion sheet has a guide hole.

[0009] In some embodiments, a uniformly distributed connecting plate is provided between the rotating ring and the placement plate.

[0010] In some embodiments, a sealing plate is rotatably mounted on the pedestal, a cover plate is provided inside the movable plate, and observation holes that are evenly distributed and corresponding are provided through the cover plate and the sealing plate. A toggle block is provided on the sealing plate, and a movable groove is provided on the movable plate, with the toggle block slidably assembled in the movable groove.

[0011] In some embodiments, the movable plate is provided with a slot, and the slot is connected to the movable groove. The toggle block is provided with a baffle, and the baffle is inserted into the slot and slidably engaged.

[0012] In some embodiments, magnetic blocks are symmetrically arranged in the movable slot, and the magnetic blocks are magnetically engaged with the toggle block.

[0013] This utility model has at least the following beneficial effects:

[0014] Through the linkage of structures such as the extrusion plate, positioning gripper, placement plate and connecting plate, when the placement plate is rotated, the positioning gripper and extrusion plate are squeezed, causing the extrusion plate to undergo plastic deformation, so that multiple extrusion plates continuously detach and enter the interior of the positioning gripper. This facilitates rotation while also having a certain locking force. When maintaining an angle for testing, it can effectively prevent the tester from accidentally touching the angle and causing deviation. Moreover, the structure is simple and the maintenance cost is low.

[0015] By observing the linkage of structures such as the observation hole, cover plate, and sealing plate, and rotating the toggle block to rotate the sealing plate, the observation holes on the cover plate and the sealing plate are aligned, exposing the space inside the sleeve. Users can clearly observe which extrusion piece has lost its elasticity, so the corresponding extrusion piece can be quickly replaced during maintenance. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the rotating mechanism of this utility model;

[0018] Figure 3 This is an exploded view of the rotating mechanism structure of this utility model;

[0019] Figure 4 This is a schematic diagram of the internal structure of the rotating mechanism of this utility model;

[0020] Figure 5 This is a schematic diagram of the positioning gripper and extrusion plate structure of this utility model;

[0021] Figure 6 This is a schematic diagram of the position and structure of the magnetic block of this utility model.

[0022] In the diagram: 1. Base; 2. Support plate; 3. Drive mechanism; 4. Movable plate; 5. Rotating mechanism; 6. Placement plate; 7. Fixing mechanism; 8. Sealing plate; 9. Pulley; 10. Movable groove; 11. Baffle; 12. Connecting plate; 13. Observation hole; 14. Cover plate; 15. Rotating ring; 16. Extrusion plate; 17. Sleeve; 18. Central shaft; 19. Positioning gripper; 20. Guide hole; 21. Magnetic block; 22. Slot. 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] Example 1

[0025] Please see Figures 1-6 This utility model provides a technical solution:

[0026] An inspection device for power storage includes a base 1, a support plate 2 on the base 1, a drive mechanism 3 inside the support plate 2, and a movable plate 4 on the drive mechanism 3. The drive mechanism 3 adopts a motor screw mechanism, which can drive the movable plate 4 to reciprocate on the support plate 2.

[0027] It also includes a rotating mechanism 5, which is mounted on the movable plate 4. The rotating mechanism 5 includes a sleeve 17 mounted on the bottom surface of the movable plate 4. A central shaft 18 is mounted inside the sleeve 17, and evenly distributed positioning grippers 19 are mounted on the central shaft 18. A rotating ring 15 is rotatably mounted inside the sleeve 17, and evenly distributed extrusion plates 16 are mounted inside the rotating ring 15. The extrusion plates 16 cooperate with the positioning grippers 19 and are elastic. A placement plate 6 is mounted on the rotating ring 15, and evenly distributed connecting plates 12 are provided between the rotating ring 15 and the placement plate 6. Through the rigid connection of the connecting plates 12, the placement plate 6 and the rotating ring 15 are connected. Thus, when the placement plate 6 is rotated, it can drive the rotating ring 15 to rotate synchronously inside the sleeve 17. Correspondingly, during the process, the rotating ring 15 will also drive the extrusion plates 16 to rotate synchronously. Since the rotating ring 15 is made of elastic material and its shape is adapted to the shape of the positioning grippers 19, which accommodate the extrusion plates 16, multiple extrusion plates 16 can be rotated simultaneously. When the extrusion plates are tightly arranged within the rotating ring 15, the compression between them and the positioning gripper 19 ensures that the extrusion plates 16 can only be within the positioning gripper 19, thus forming a fixed engagement with the positioning gripper 19. Therefore, the force generated by the rotation can push the extrusion plates 16 to compress the positioning gripper 19 and deform, thereby disengaging them from the positioning gripper 19 and displacing them to the outside of the positioning gripper 19. Similarly, the extrusion plates 16 located on the outside will enter the positioning gripper 19 through plastic deformation. This alternation ensures that each time the rotation stops, there is an extrusion plate 16 located within the positioning gripper 19. The locking force generated by the engagement of the two requires a certain amount of force to smoothly rotate the placement plate 6 and the electronic components being tested on the placement plate 6, thereby preventing accidental touches that could cause the placement plate 6 to rotate. It has a strong locking force. Based on the number of extrusion plates 16, the rotation accuracy of the placement plate 6 can be controlled, and the rotation angle is the same each time, making it easier for the electronic components to be reset normally and for various precise angle adjustments to be made.

[0028] The extrusion sheet 16 has a guide hole 20. The design of 20 makes the 16 lack the support of the corresponding material, which makes it easier to deform. In addition, the specific shape design of 20 also has the function of guiding the deformation direction of (16). When (16) deforms in the same way each time, its service life can be naturally extended.

[0029] The placement plate 6 is provided with a fixing mechanism 7, which can fix electronic components on the placement plate 6.

[0030] Example 2

[0031] Please see Figures 1-6 This utility model provides a technical solution:

[0032] A sealing plate 8 is rotatably mounted on the base 1. A cover plate 14 is provided inside the movable plate 4. Evenly distributed and corresponding observation holes 13 are provided through the cover plate 14 and the sealing plate 8. A lever 9 is provided on the sealing plate 8, and a movable groove 10 is provided on the movable plate 4. The lever 9 is slidably fitted into the movable groove 10. When the observation holes 13 on the cover plate 14 and the sealing plate 8 are aligned, the engagement of the extrusion plate 16 and the positioning gripper 19 inside the sleeve 17 can be observed through the observation holes 13. Since the positioning gripper 19 is stationary, it is responsible for sealing the cover plate 8. The observation hole 13 on the cover plate 14 only needs to correspond to the positioning gripper 19. By rotating the lever 9, it automatically swings in the movable groove 10, so that the observation hole 13 on the cover plate 8 and the observation hole 13 on the cover plate 14 are misaligned, which can match the closed state of the rotating ring 15. When both are open, the condition of the extrusion piece 16 inside the rotating ring 15 can be observed through the observation hole 13, so that the extrusion piece 16 with insufficient elasticity or problems can be quickly identified and replaced in time. When both are closed, dust and debris can be prevented from entering the rotating ring 15.

[0033] Magnetic blocks 21 are symmetrically arranged in the movable groove 10, and the magnetic blocks 21 are magnetically engaged with the lever 9. With this design, when the lever 9 is moved, it can automatically attract the lever 9 when it is aligned with the observation hole 13 on the cover plate 14, thereby maintaining its position and preventing it from shifting.

[0034] The movable plate 4 has a slot 22, which is connected to the movable groove 10. The lever 9 has a baffle 11, which is inserted into the slot 22 and slides in cooperation. The baffle 11 can block the movable groove 10 to prevent dust and debris from entering the movable groove 10. With the connection between the baffle 11 and the lever 9, when the lever 9 is turned, the baffle 11 can slide in the slot 22, continuously blocking the movable groove 10.

[0035] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention.

Claims

1. An inspection device for power storage, comprising a base (1), a support plate (2) disposed on the base (1), a drive mechanism (3) disposed within the support plate (2), and a movable plate (4) disposed on the drive mechanism (3), characterized in that: It also includes a rotating mechanism (5) set on the movable plate (4). The rotating mechanism (5) includes a sleeve (17) set on the bottom surface of the movable plate (4). A central shaft (18) is set inside the sleeve (17). A positioning gripper (19) is evenly distributed on the central shaft (18). A rotating ring (15) is rotatably installed inside the sleeve (17). An extrusion plate (16) is evenly distributed inside the rotating ring (15). The extrusion plate (16) cooperates with the positioning gripper (19). A placement plate (6) is set on the rotating ring (15). A fixing mechanism (7) is set on the placement plate (6).

2. The power storage inspection device according to claim 1, characterized in that: The extrusion sheet (16) is configured as an elastic structure.

3. The power storage inspection device according to claim 1, characterized in that: The extrusion sheet (16) is provided with a guide hole (20).

4. The power storage inspection device according to claim 1, characterized in that: A uniformly distributed connecting plate (12) is provided between the rotating ring (15) and the placement plate (6).

5. The power storage inspection device according to claim 1, characterized in that: A sealing plate (8) is rotatably mounted on the base (1). A cover plate (14) is provided inside the movable plate (4). Observation holes (13) are evenly distributed and correspondingly provided through the cover plate (14) and the sealing plate (8). A lever (9) is provided on the sealing plate (8). A movable groove (10) is provided on the movable plate (4), and the lever (9) is slidably assembled in the movable groove (10).

6. The power storage inspection device according to claim 5, characterized in that: The movable plate (4) has a slot (22) and the slot (22) is connected to the movable groove (10). The lever (9) has a baffle (11) and the baffle (11) is inserted into the slot (22) and slides in cooperation.

7. The power storage inspection device according to claim 5, characterized in that: Magnetic blocks (21) are symmetrically arranged in the movable groove (10), and the magnetic blocks (21) are magnetically engaged with the toggle block (9).

Citation Information

Patent Citations

  • Electric energy storage detection device

    CN221631491U