Wall-mounted energy storage battery shell
Through the combined structure of the sleeve, telescopic cylinder and airbag, the battery case is pushed to move to the wall position by using air pressure, which solves the problem of inconvenient installation of the battery case in the prior art, and realizes a convenient and safe installation process.
Patent Information
- Application Number
- CN202422165872.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-09-04
AI Technical Summary
There are inconveniences during installation of existing energy storage battery cases, especially large and heavier batteries that are difficult to install without auxiliary tools.
The combined structure of sleeve, telescopic cylinder, airbag and one-way valve is adopted to generate a negative pressure effect by stepping on the airbag, and the air pressure is used to push the telescopic cylinder to move until the battery case reaches the height of the wall.
It realizes convenient installation of the battery case and improves installation efficiency and safety.
Smart Images

Figure CN223218397U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of new energy, and in particular to a wall-mounted energy storage battery casing. Background Art
[0002] An energy storage battery is a device that converts electrical energy into chemical energy, physical energy or kinetic energy, stores it and then releases it into electrical energy when needed.
[0003] According to patent publication number CN218448291U, a wall-mounted energy storage battery box includes a box body and a battery module; the box body defines an installation cavity, and the battery module is installed and fixed in the installation cavity; the box body is provided with a handle structure, and the handle structure includes a fixing portion and a gripping portion; the box body is provided with a notch adapted to the shape of the fixing portion, the fixing portion is fixedly connected to the notch, and the gripping portion is fixed to the fixing portion, and the outer surface of the gripping portion is parallel to the outer contour of the box body or located within the outer contour of the box body; the outer surface of the gripping portion is a smooth surface with a smooth transition. The above patent achieves better user comfort by providing a handle with a smooth contour; however, when installing the battery shell, the user still needs to pull it hard to install it. During the installation of the battery shell, especially without auxiliary tools, if the battery is large and heavy, it may cause inconvenience to the user, making the installation of the entire battery more difficult.
[0004] In view of the above-mentioned existing patents, it is necessary to provide a wall-mounted energy storage battery housing that is easy to install. Utility Model Content
[0005] In order to overcome the disadvantage of inconvenient installation, the utility model provides a wall-mounted energy storage battery housing.
[0006] The solution of the utility model is: a wall-mounted energy storage battery shell, including a battery shell body, a sleeve, a telescopic cylinder, a connecting plate and a support rod, the upper part of the connecting plate is symmetrically connected to the sleeve, a plurality of telescopic cylinders are slidably connected inside the sleeve, the innermost telescopic cylinder is slidably connected to the support rod, the upper parts of the two support rods are connected to the battery shell body, and also include an air outlet valve, a one-way valve I, an airbag and a one-way valve II, the upper part of the connecting plate is symmetrically placed, the rear side of the airbag is connected to the one-way valve I, the one-way valve I passes through the sleeve, the front side of the airbag is connected to the one-way valve II, and the rear side of the sleeve is connected to the air outlet valve.
[0007] Furthermore, it also includes a rotating shaft, a pressure plate and a torsion spring. The sleeve is rotatably connected to the rotating shaft, the pressure plate is connected to the rotating shaft, and a torsion spring is connected between the sleeve and the rotating shaft.
[0008] Furthermore, a clamping plate is included, and the lower part of the battery shell body is connected to the clamping plate in a left-right symmetrical rotation.
[0009] Furthermore, a fixing groove is provided on the outer side of the connecting plate, and the clamping plate is engaged with the fixing groove.
[0010] Furthermore, the front side of the top of the pressing plate is convex.
[0011] Furthermore, the airbag is made of rubber material.
[0012] The beneficial effect of the present utility model is as follows: through the cooperation of the one-way valve I, the airbag and the one-way valve II, the user needs to step on the airbag to compress and deform the airbag. When the airbag is compressed to a predetermined volume, the foot is removed and the airbag begins to return to its original shape. During the recovery of the airbag, the negative pressure effect it generates causes external air to be sucked into the one-way valve II, and then the air enters the airbag and finally enters the interior of the sleeve through the one-way valve I. As the air enters the sleeve, the air pressure in the sleeve rises, which can push the telescopic cylinder to move along the sleeve, and the telescopic cylinder drives the adjacent telescopic cylinder to move, and this is repeated until the battery housing moves to the required wall-hanging height, and then the battery housing is fastened to the wall with fixing screws to ensure the convenience of the wall-hanging installation operation of the battery housing. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model.
[0014] Figure 2 It is a three-dimensional structural diagram of the sleeve, connecting plate, airbag and other components of the utility model.
[0015] Figure 3 It is a three-dimensional structural diagram of the components such as the rotating shaft, pressure plate and torsion spring of the utility model.
[0016] In the accompanying drawings: 1-battery housing body, 2-sleeve, 3-telescopic cylinder, 4-connecting plate, 5-support rod, 6-rotating shaft, 7-pressure plate, 8-torsion spring, 9-air outlet valve, 10-one-way valve I, 11-air bag, 12-one-way valve II, 13-clamping plate. DETAILED DESCRIPTION
[0017] The present invention will be described in detail below with reference to the accompanying drawings and specific embodiments.
[0018] Example: A wall-mounted energy storage battery housing, such as Figure 1-Figure 3As shown, it includes a battery shell body 1, a sleeve 2, a telescopic cylinder 3, a connecting plate 4, a support rod 5, a rotating shaft 6, a pressure plate 7, a torsion spring 8, an exhaust valve 9, a one-way valve I 10, an air bag 11, a one-way valve II 12 and a card plate 13. The upper part of the connecting plate 4 is symmetrically connected to the sleeve 2, and a plurality of telescopic cylinders 3 are slidably connected inside the sleeve 2. The innermost telescopic cylinder 3 is slidably connected to the support rod 5. The upper parts of the two support rods 5 are connected to the battery shell body 1. The sleeve 2 is rotatably connected to the rotating shaft 6, and the rotating shaft 6 is connected to the pressure plate 7. The front side of the top of the pressure plate 7 is convex to facilitate the user's footsteps. A torsion spring 8 is connected between the sleeve 2 and the rotating shaft 6. The upper part of the connecting plate 4 is symmetrical An airbag 11 is placed, and the airbag 11 is made of rubber material. The airbag 11 can use the negative pressure effect generated inside to cause external air to be sucked into the one-way valve II 12. The rear side of the airbag 11 is connected to a one-way valve I 10, and the one-way valve I 10 passes through the sleeve 2. The front side of the airbag 11 is connected to a one-way valve II 12, and the rear side of the sleeve 2 is connected to an outlet valve 9, so that the gas in the sleeve 2 is discharged. The lower part of the battery casing body 1 is connected to a card plate 13 for symmetrical rotation. When the battery casing body 1 does not move to the wall hanging height, the card plate 13 fixes the battery casing body 1. A fixing groove is opened on the outside of the connecting plate 4, and the card plate 13 is engaged with the fixing groove to form a stable locking state.
[0019] When it is necessary to use this device to mount the battery casing on the wall, the user places the device against the predetermined wall position to ensure that the device is positioned accurately, and then the user pulls the card plate 13 to rotate along the battery casing. When the card plate 13 rotates to disengage from the fixing groove on the connecting plate 4, the user needs to step on the pressure plate 7 to apply a downward force, prompting the pressure plate 7 to drive the rotating shaft 6 to rotate, and the torsion spring 8 is deformed. While the pressure plate 7 is pressed down, the pressure plate 7 contacts the airbag 11 and squeezes the airbag 11, causing the airbag 11 to be compressed. When the airbag 11 is compressed to an appropriate size, the user removes his foot from the pressure plate 7. Under the reset of the torsion spring 8, the rotating shaft 6 drives the pressure plate 7 to rotate in the opposite direction to the initial position. At the same time, the airbag 11 begins to slowly return to its original state. During the recovery process of the airbag 11, the airbag 11 uses the negative pressure effect generated inside to prompt The outside air is sucked into the one-way valve II 12, and then the air enters the airbag 11, and then the air in the airbag 11 enters the inside of the sleeve 2 through the one-way valve I 10, and the operation of stepping on the pressure plate 7 and removing the foot from the pressure plate 7 is repeated, so that a large amount of gas slowly enters the inside of the sleeve 2. As the gas enters, the air pressure in the sleeve 2 gradually increases, so that the increased air pressure pushes the telescopic cylinder 3 to move upward along the sleeve 2, and the telescopic cylinder 3 drives the adjacent telescopic cylinder 3 to move upward, and so on is repeated until the support rod 5 moves upward along the innermost telescopic cylinder 3 to a suitable height. At the same time as the support rod 5 moves, the support rod 5 drives the battery casing to move upward until the battery casing moves to the required wall-hanging height, and then the battery casing is fixed with fixing screws to ensure that it is firmly mounted on the wall, thereby ensuring the convenience of the battery casing wall-hanging installation operation.
[0020] Although the present invention has been described in detail with reference to the above embodiments, it will be apparent to those skilled in the art from this disclosure that various changes or modifications may be made to the present invention without departing from the principles and spirit of the present invention as defined in the claims. Therefore, the detailed description of the disclosed embodiments is intended to illustrate rather than limit the present invention, which shall be defined by the claims.
Claims
1. A wall-mounted energy storage battery housing, comprising a battery housing body (1), a sleeve (2), a telescopic cylinder (3), a connecting plate (4) and a support rod (5), wherein the upper portion of the connecting plate (4) is symmetrically connected to the sleeve (2), a plurality of telescopic cylinders (3) are slidably connected inside the sleeve (2), a support rod (5) is slidably connected inside the innermost telescopic cylinder (3), and a battery housing body (1) is arranged between the upper portions of the two support rods (5), wherein the battery housing body (1) is arranged between the upper portions of the two support rods (5), and wherein the battery housing body (1) is characterized in that: The invention also includes an air outlet valve (9), a one-way valve I (10), an air bag (11) and a one-way valve II (12). The air bags (11) are symmetrically placed on the upper part of the connecting plate (4). The rear side of the air bag (11) is connected to the one-way valve I (10). The one-way valve I (10) passes through the sleeve (2). The front side of the air bag (11) is provided with a one-way valve II (12). The rear side of the sleeve (2) is connected to the air outlet valve (9).
2. A wall-mounted energy storage battery housing according to claim 1, characterized in that: The utility model also comprises a rotating shaft (6), a pressure plate (7) and a torsion spring (8); the rotating shaft (6) is rotatably connected to the sleeve (2); the pressure plate (7) is connected to the rotating shaft (6); and the torsion spring (8) is connected between the sleeve (2) and the rotating shaft (6).
3. A wall-mounted energy storage battery housing as claimed in claim 2, characterized in that: It also includes a clamping plate (13), and the lower part of the battery housing body (1) is connected to the clamping plate (13) in a left-right symmetrical rotation.
4. A wall-mounted energy storage battery housing as claimed in claim 3, characterized in that: A fixing groove is provided on the outer side of the connecting plate (4), and the clamping plate (13) is clamped and matched with the fixing groove.
5. The wall-mounted energy storage battery housing according to claim 4, characterized in that: The front side of the top of the pressing plate (7) is convex.
6. A wall-mounted energy storage battery housing as claimed in claim 5, characterized in that: The air bag (11) is made of rubber material.
Citation Information
Patent Citations
Wall-mounted energy storage battery box
CN218448291U