Distributed air-cooled energy storage cabinet convenient to position and install

By setting U-shaped positioning grooves and swing-type positioning plates on the lower part of both side walls of the air-cooled energy storage cabinet, the drive component is used to realize the rapid and stable installation and disassembly of the air-cooled energy storage cabinet, which solves the problem of inconvenient installation of existing energy storage cabinets and meets the needs for flexible and efficient position replacement.

CN223639482UActive Publication Date: 2025-12-05ZHEJIANG SHUOWEI TRACK CO LTD
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Patent Information

Application Number
CN202422807611.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-12-05
Estimated Expiration
2034-11-18

AI Technical Summary

Technical Problem

Existing air-cooled energy storage cabinets are inconvenient to disassemble during installation and relocation, making it impossible to quickly respond to load demands and deploy them flexibly and efficiently.

Method used

A structure including an air-cooled energy storage cabinet and a positioning base was designed. By setting U-shaped positioning grooves and swing-type positioning plates on the lower part of the two side walls of the cabinet, the positioning plates are driven to swing and descend in the positioning grooves using a drive component, so as to achieve quick and stable installation and disassembly.

Benefits of technology

It enables quick and convenient installation and disassembly of air-cooled energy storage cabinets, meets the need for flexible and efficient location replacement, and improves installation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of energy storage cabinets, in particular to a distributed air-cooled energy storage cabinet convenient to position and install, which comprises an air-cooled energy storage cabinet body and a positioning base. U-shaped positioning grooves are symmetrically formed in the lower portions of the two side walls of the air-cooled energy storage cabinet body, a set of positioning plates are arranged on one sides of the middles of the positioning grooves in a swinging mode, the ends, away from the positioning grooves, of the positioning plates are connected with driving assemblies, and the driving assemblies are arranged on the positioning base and comprise rotating columns connected to the bottoms of the ends of the positioning plates; the bottom end of the rotating column is connected with threaded columns arranged in the positioning base at intervals, one side of each threaded column is connected with a rotating piece arranged in the positioning base in an engaged mode, and one side of each rotating column is provided with a rotating positioning piece used for controlling the rotating column to rotate and ascend and descend, that is, after the positioning plate swings into the positioning groove, the positioning plate is driven to fall. Therefore, the cabinet body of the air-cooled energy storage cabinet can be quickly and stably positioned.
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Description

TECHNICAL FIELD

[0001] The utility model relates to energy storage cabinet technical field, specifically a kind of distributed air-cooled energy storage cabinet of positioning installation convenient. BACKGROUND

[0002] Air-cooled energy storage cabinet is a kind of equipment for storing and managing electric energy, usually applied in renewable energy systems (such as wind energy, solar energy) and power dispatching. Its main function is to store electric energy and release when needed to meet load demand or balance the power grid.

[0003] Some existing air-cooled energy storage cabinets are fixedly installed during installation and use, which is not convenient for disassembly during subsequent position replacement or migration maintenance. Moreover, for some energy storage cabinets suitable for renewable energy sources such as wind energy and solar energy, they need to be quickly responsive to load demand for flexible and efficient deployment, but most existing energy storage cabinets cannot meet this requirement.

[0004] Therefore, in view of the above problems, the present technical solution provides a distributed air-cooled energy storage cabinet convenient for positioning and installation. SUMMARY

[0005] The utility model aims at providing a distributed air-cooled energy storage cabinet convenient for positioning and installation to solve the problems raised in the background.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a distributed air-cooled energy storage cabinet convenient for positioning and installation, comprising an air-cooled energy storage cabinet body and a positioning base. A U-shaped positioning slot is symmetrically formed in the lower part of the two side walls of the air-cooled energy storage cabinet body. A set of positioning plates is swingably arranged on one side of the middle part of the positioning slot. The end of the positioning plate away from the positioning slot is connected with a driving assembly. The driving assembly is arranged on the positioning base. When the air-cooled energy storage cabinet body is installed with the positioning base, the driving assembly is manually controlled to run, which drives the positioning plate to swing into the positioning slot and then to descend. The positioning plate and the positioning slot are pressed and positioned. The driving assembly comprises a rotating column connected to the end of the positioning plate. The bottom end of the rotating column is connected with a threaded column arranged in the positioning base. A rotating member arranged in the positioning base is connected to one side of the threaded column. The rotating member drives the threaded column to rotate, thereby controlling the rotation and swing of the rotating column and the positioning plate. A rotary positioning member is arranged on one side of the rotating column to control the rotation and lifting of the rotating column. After the positioning plate is swung into the positioning slot, it is driven to fall down and make full contact with the bottom of the positioning slot, thereby realizing the quick and stable positioning of the air-cooled energy storage cabinet body.

[0007] Compared with the prior art, the beneficial effects of the utility model are: through the mode that two groups of positioning plates are swung and then descended between the positioning grooves by manually rotating the rotating handle, the air-cooled energy storage cabinet body is fixed, and then when separating, the rotating handle is reversely rotated to separate the positioning plates from the positioning grooves and swing out, thereby realizing the quick and convenient mounting and dismounting positioning between the air-cooled energy storage cabinet body and the positioning base. BRIEF DESCRIPTION OF DRAWINGS

[0008] Figure 1 It is a three-dimensional structure schematic diagram of the distributed air-cooled energy storage cabinet convenient to position and install.

[0009] Figure 2 It is a top view structure schematic diagram of the distributed air-cooled energy storage cabinet convenient to position and install.

[0010] Figure 3 It is a partial structure schematic diagram of the distributed air-cooled energy storage cabinet convenient to position and install.

[0011] Figure 4 It is a partial structure schematic diagram of the positioning base in the distributed air-cooled energy storage cabinet convenient to position and install.

[0012] Figure 5 It is Figure 1 It is an enlarged structure schematic diagram of A.

[0013] Figure 6 It is Figure 3 It is an enlarged structure schematic diagram of B.

[0014] Among them: air-cooled energy storage cabinet body 10, positioning base 11, positioning groove 12, rotating handle 13, positioning pin plate 14, moving rod 15, screw rod 16, rotating shaft 17, internal thread hole 18, positioning plate 19, threaded column 20, side rack 21, L-shaped pin rail 22, positioning pin 23, pin cap 24, rotating column 25. DETAILED DESCRIPTION

[0015] It should be noted that the embodiments in the utility model and the features in the embodiments can be combined with each other without conflict.

[0016] In the description of the utility model, need understanding is, the term "center", "longitudinal", "lateral", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "internal", "external" and so on indicate the orientation or positional relation based on the orientation or positional relation shown in the drawing, just for the convenience of describing the utility model and simplifying the description, and not indicate or imply that the device or element indicated must have a particular orientation, construct and operate in a particular orientation, therefore can not be understood as the limitation to the utility model. In addition, the term "first", "second" and so on are only for the purpose of description, and can not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" and so on can explicitly or implicitly include one or more features. In the description of the utility model, unless otherwise specified, the meaning of "a plurality of" is two or more.

[0017] In the description of the utility model, it should be explained that, unless otherwise expressly provided and limited, the terms "mounting", "connecting", "connection" should be understood broadly, for example, can be fixed connection, can also be detachable connection, or integrally connected, can be mechanical connection, can also be electrical connection, can be directly connected, can also be indirectly connected through intermediate medium, can be the communication inside two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood through specific circumstances.

[0018] The utility model will be described in detail below with reference to the drawings and in combination with embodiments.

[0019] Please refer to Figures 1-6The application discloses a distributed air-cooled energy storage cabinet convenient to position and install, which comprises an air-cooled energy storage cabinet body 10 and a positioning base 11. The bottom of the threaded column 20 is spaced apart from the inner bottom of the positioning base 11, the distance between the threaded column 20 and the inner bottom of the positioning base 11 is equivalent to the moving distance of the positioning plate 19, meanwhile, the inner bottom of the positioning base 11 corresponding to the rotating part is provided with a rotating cavity, the rotating cavity is communicated with the positioning base 11 at the position corresponding to the threaded column 20, the two ends of the rotating cavity are provided in an open shape, an internal thread hole 18 is formed in the inner bottom of one end of the rotating cavity, the rotating part comprises a screw rod 16 which is rotatably connected in the internal thread hole 18, the outer end of the screw rod 16 is connected with a rotating handle 13, the screw rod 16 is axially moved in the internal thread hole 18 by controlling a moving rod 15, a rotating shaft 17 is mounted in the inner end of the screw rod 16, the moving rod 15 of the semicircular structure is limitingly connected with the end of the rotating shaft 17, the side surface of the moving rod 15 facing the threaded column 20 is provided with a side rack 21 which is meshingly connected with the threaded column 20, the screw rod 16 is rotated by rotating the rotating handle 13, then the axial movement of the screw rod 16 is controlled, then the side rack 21 on one side of the moving rod 15 is meshingly moved with the threaded column 20, so that the threaded column 20 is driven to rotate, and then the swinging of the positioning plate 19 is controlled.

[0020] In the embodiment of the application, a corrugated structure is arranged on the inner bottom of the positioning groove 12, so that the friction force when the positioning plate 19 is contacted is increased, and the stability of the longitudinal positioning is improved.

[0021] The bottom of the threaded column 20 is spaced apart from the inner bottom of the positioning base 11, the distance between the threaded column 20 and the inner bottom of the positioning base 11 is equivalent to the moving distance of the positioning plate 19, meanwhile, the inner bottom of the positioning base 11 corresponding to the rotating part is provided with a rotating cavity, the rotating cavity is communicated with the positioning base 11 at the position corresponding to the threaded column 20, the two ends of the rotating cavity are provided in an open shape, an internal thread hole 18 is formed in the inner bottom of one end of the rotating cavity, the rotating part comprises a screw rod 16 which is rotatably connected in the internal thread hole 18, the outer end of the screw rod 16 is connected with a rotating handle 13, the screw rod 16 is axially moved in the internal thread hole 18 by controlling a moving rod 15, a rotating shaft 17 is mounted in the inner end of the screw rod 16, the moving rod 15 of the semicircular structure is limitingly connected with the end of the rotating shaft 17, the side surface of the moving rod 15 facing the threaded column 20 is provided with a side rack 21 which is meshingly connected with the threaded column 20, the screw rod 16 is rotated by rotating the rotating handle 13, then the axial movement of the screw rod 16 is controlled, then the side rack 21 on one side of the moving rod 15 is meshingly moved with the threaded column 20, so that the threaded column 20 is driven to rotate, and then the swinging of the positioning plate 19 is controlled.

[0022] Specifically, the two ends of the moving rod 15 are provided with cylinders, the end of the rotating shaft 17 is provided with a rotating groove in the corresponding cylinder, and the rotating shaft 17 is fiber-connectingly connected in the rotating groove.

[0023] In one example of the present application, the rotating positioning member comprises an L-shaped pin rail 22 provided on the axial outer wall of the rotating column 25, a positioning pin plate 14 is fixedly installed on one side of the positioning base 11, a positioning pin 23 is threadedly connected to the middle part of the positioning pin plate 14 corresponding to the vertical segment of the L-shaped pin rail 22, the end of the positioning pin 23 extends into the L-shaped pin rail 22 and slides along the inside of the rotating column 25, when the rotating column 25 rotates, the L-shaped pin rail 22 is driven to rotate synchronously, then the rotating column 25 is controlled to rotate into the positioning groove 12 by using the rotating restriction of the positioning pin 23 in the L-shaped pin rail 22, and the L-shaped structure of the L-shaped pin rail 22 drives the positioning plate 19 to move longitudinally;

[0024] Specifically, the length of the vertical segment of the L-shaped pin rail 22 is equal to the distance between the bottom of the threaded column 20 and the inside of the positioning base 11, that is, the distance of the up and down movement of the positioning plate 19;

[0025] The end of the positioning pin 23 away from the rotating column 25 is connected with a pin cap 24, that is, the transverse distance of the positioning pin 23 is controlled by rotating the pin cap 24, which is convenient for replacing the positioning pin 23 and controlling the depth of the end of the positioning pin 23 placed in the L-shaped pin rail 22.

[0026] The working principle of the present application is as follows: all the driving members, i.e. power elements, electrical devices and matched power supply are connected by wires at the idle place of the device, the electrical devices are sequentially connected in working order, the detailed connection means is a known technology in the field, the working principle and process are mainly introduced below, and the electrical control is not described, when installing, the air-cooled energy storage cabinet body 10 is directly placed on the top of the positioning base 11, then the screw rod 16 is controlled to rotate by manually rotating the rotating handle 13 on both sides, so as to drive the side rack 21 on the moving rod 15 to engage with the corresponding threaded column 20, at this time, the rotating column 25 is driven to rotate, and the positioning pin 23 is synchronously slid in the L-shaped pin rail 22, when rotating, the positioning pin 23 slides in the horizontal segment of the L-shaped pin rail 22, until the positioning plate 19 is swung into the positioning groove 12, with the continuation of the rotation, the end of the positioning pin 23 slides in the vertical segment of the L-shaped pin rail 22, the positioning plate 19 is controlled to descend by using the engagement between the threaded column 20 and the side rack 21, so as to tightly contact with the inside of the positioning groove 12, and the air-cooled energy storage cabinet body 10 is fixed on the positioning base 11.

[0027] The preferred embodiments of the present application are described in detail above, but the present application is not limited to the above embodiments, various changes can be made within the knowledge of those skilled in the art without departing from the purpose of the present application.

Claims

1. A distributed air-cooled energy storage cabinet for easy positioning installation, characterized in that, The application relates to a wind-cooled energy storage cabinet, which comprises a wind-cooled energy storage cabinet body (10) and a positioning base (11), wherein U-shaped positioning grooves (12) are symmetrically arranged at the lower parts of the two side walls of the wind-cooled energy storage cabinet body (10), a group of positioning plates (19) are swingably arranged at one side of the middle part of the positioning grooves (12), drive assemblies are connected to the end parts of the positioning plates (19) away from the positioning grooves (12), the drive assemblies are arranged on the positioning base (11), the drive assemblies comprise rotating columns (25) connected to the end bottom parts of the positioning plates (19), the bottom ends of the rotating columns (25) are connected with screw columns (20) which are arranged at intervals in the inside of the positioning base (11), one side of the screw columns (20) is engaged with rotating members arranged in the inside of the positioning base (11), and one side of the rotating column (25) is provided with rotating positioning members used for controlling the rotation and lifting of the rotating column (25).

2. The distributed air-cooled energy storage cabinet of claim 1, wherein, A corrugated structure is arranged on the inner bottom part of the positioning groove (12).

3. The distributed air-cooled energy storage cabinet of claim 2, wherein, The bottom part of the screw column (20) is arranged at an interval from the inner bottom part of the positioning base (11), the distance between the screw column (20) and the inside of the positioning base (11) is equivalent to the moving distance of the positioning plate (19) up and down, a rotating bin is arranged in the inside of the positioning base (11) corresponding to the rotating member, the rotating bin is communicated with the positioning base (11) at the position corresponding to the screw column (20), the two ends of the rotating bin are arranged in an open shape, and an internal screw hole (18) is arranged in the inside of one end of the rotating groove.

4. The distributed air-cooled energy storage cabinet of claim 3, wherein, The rotating member comprises a screw rod (16) rotatably connected in the internal screw hole (18), the outer end part of the screw rod (16) is connected with a rotating handle (13), the inner end of the screw rod (16) is provided with a rotating shaft (17), the end part of the rotating shaft (17) is limitingly connected with a semicircular structure of a moving rod (15), the side surface of the moving rod (15) facing the screw column (20) is provided with a side gear rack (21), and the side gear rack (21) is engagedly connected with the screw column (20).

5. The distributed air-cooled energy storage cabinet of claim 4, wherein, Cylinders are arranged at the two ends of the moving rod (15), a rotating groove is arranged in the cylinder corresponding to the end part of the rotating shaft (17), and the rotating shaft (17) is fiber-connectingly arranged in the rotating groove.

6. The distributed air-cooled energy storage cabinet of claim 5, wherein, The rotating positioning member comprises an L-shaped pin rail (22) arranged on the axial outer wall of the rotating column (25), a positioning pin plate (14) is fixedly arranged on one side of the positioning base (11) of the rotating column (25), a positioning pin (23) is threadedly connected to the vertical section of the L-shaped pin rail (22) at the middle part of the positioning pin plate (14), the end part of the positioning pin (23) extends into the L-shaped pin rail (22) and slides along the inside of the rotating column (25).

7. The distributed air-cooled energy storage cabinet of claim 6, wherein, The length of the vertical section of the L-shaped pin rail (22) is equivalent to the distance between the bottom part of the screw column (20) and the inside of the positioning base (11), and the end part of the positioning pin (23) away from the rotating column (25) is connected with a pin cap (24).