Mounting part suitable for control cabinet switch of electrochemical energy storage system
By using plate-like structural parts in the electrochemical energy storage system control cabinet, combined with the design of the switch installation studs, wire holes and heat dissipation holes, the problems of cumbersome installation and poor stability are solved, and the space utilization and heat dissipation effect are improved.
Patent Information
- Application Number
- CN202422193971.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-09
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-09-09
AI Technical Summary
The installation method of the switch in the control cabinet of the existing electrochemical energy storage system is cumbersome and inconvenient for disassembly. The welding quality is affected by the technical level of the operator, resulting in poor stability of the cabinet.
The body of the plate-like structural part is equipped with switch installation studs, wire bolts, heat dissipation holes and bending structures. It is installed through nut locking, and is fixed by module-digital circular holes and wire bolts. The heat dissipation holes improve the heat dissipation effect.
It realizes full utilization of the space in the control cabinet, facilitates construction, prevents structural parts from being damaged, and improves installation stability and heat dissipation effect.
Smart Images

Figure CN223080097U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an installation part of a switch, in particular to an installation part applicable to a switch of an electrochemical energy storage system control cabinet. Background Art
[0002] In recent years, with the increase of China's energy demand and the rapid development of new energy, energy storage technology has gradually become the focus of attention in various fields. The control cabinet is the control unit in the energy storage system and plays an important role. Its main structure consists of a frame, a panel, a door, etc. The frame usually adopts crossbeams, columns, welding, etc. to form a locked frame. Due to the requirements for the performance of the control cabinet, different components will be added inside the cabinet to meet the needs of different customers.
[0003] A switch is a network device that can connect multiple devices to a computer network and send its data to the destination through data exchange. There are many types of commonly used switches, and the size of the switch will affect the usable space inside the control cabinet. In order to adapt to the installation of the switch, installation parts are usually added inside the control cabinet.
[0004] Currently, most installation materials and installation parts are usually fixed inside the control cabinet by welding. First, the entire installation material is welded and then electroplated. This method not only has a cumbersome process, but also is not conducive to disassembly if the component model is changed later. At the same time, due to the different technical levels of operators, the welding quality varies, directly affecting the stability of the cabinet body. Summary of the Utility Model
[0005] In order to solve the deficiencies of the above technologies, the utility model provides an installation part applicable to a switch of an electrochemical energy storage system control cabinet.
[0006] In order to solve the above technical problems, the technical solution adopted by the utility model is: an installation part applicable to a switch of an electrochemical energy storage system control cabinet, including a structural part body in the shape of a plate. On the plate surface of the structural part body, switch installation studs are processed, and wire tying holes and heat dissipation holes are also formed on the plate surface of the structural part body. Bending structures are integrally formed at the left and right ends of the structural part body respectively, and modulus circular holes are opened on the bending structures.
[0007] Further, the thickness of the structural part body is not less than 3 mm.
[0008] Further, the switch installation studs are implemented in a manner of being locked through nuts and installed with the front-end structure.
[0009] Further, the bending structure includes a bending vertical plate perpendicular to the structural part body and a bending parallel plate perpendicular to the bending vertical plate.
[0010] Further, the bent vertical plate is bent towards the side where the switch installation stud is not provided.
[0011] Further, the bent parallel plate is bent towards the side away from the main body of the structural member.
[0012] Further, the number of modular circular holes is multiple, and the multiple modular circular holes are arranged at intervals in a row on the bent parallel plate of the single-side bent structure.
[0013] Further, the number of wire tying holes is multiple, and the multiple wire tying holes are arranged in columns at intervals. Wire tying holes arranged in columns are provided near both side bent structures.
[0014] Further, the number of heat dissipation holes is multiple, and the multiple heat dissipation holes are arranged in columns at intervals and are located beside the wire tying holes arranged in columns on one side.
[0015] An installation member applicable to a switch of an electrochemical energy storage system control cabinet. Compared with a conventional installation structural member, this embodiment can make full use of the space inside the control cabinet, facilitating production and construction; the heat dissipation holes corresponding to the switch can effectively prevent the power supply from overheating; the bent structure 3 can effectively prevent the situation that the corners of the structural member cause damage to the structural member due to the force acting on one point during the load-bearing process. Brief Description of the Drawings
[0016] Figure 1 It is a structural schematic diagram of the present utility model.
[0017] Figure 2 It is a top view of the present utility model.
[0018] In the figure: 1, main body of the installation member; 2, switch installation stud; 3, bent structure; 4, bent parallel plate; 5, bent vertical plate; 6, modular circular hole; 7, wire tying hole; 8, heat dissipation hole. Detailed Description of the Embodiment
[0019] The present utility model will be further described in detail below with reference to the drawings and the detailed description of the embodiment.
[0020] As Figure 1-2 Collectively shown, this embodiment relates to an installation member applicable to a switch of an electrochemical energy storage system control cabinet, including a structural member main body 1 in the shape of a plate. A switch installation stud 2 is processed on the plate surface of the structural member main body 1. Wire tying holes 7 and heat dissipation holes 8 are also formed on the plate surface of the structural member main body 1. Bent structures 3 are integrally formed at the left and right ends of the structural member main body 1 respectively, and modular circular holes 6 are provided on the bent structures 3.
[0021] Preferably, the thickness of the structural member main body 1 is not less than 3 mm, and in this embodiment, the material is selected as galvanized aluminum plate.
[0022] The switch installation stud 2 is implemented by being locked with a nut through the front-end structure, that is, the switch installation stud 2 is passed through the front-end structure and then locked with a nut to install the structural member body 1 and the front-end switch.
[0023] The bending structure 3 includes a bending vertical plate 5 perpendicular to the structural member body 1 and a bending parallel plate 4 perpendicular to the bending vertical plate 5. It can be understood that the bending structure 3 undergoes two consecutive bends; specifically, Figure 2 As shown, the bending vertical plate 5 bends towards the side where the switch installation stud 2 is not provided, that is, the extending direction of the bending vertical plate 5 is opposite to the extending direction of the switch installation stud 2; the bending parallel plate 4 bends towards the side away from the structural member body 1, that is to say, the bending parallel plate 4 increases the width of the structural member body 1; it should be noted that the bending parallel plate 4 and the bending vertical plate 5 are integrally formed.
[0024] As Figure 1 shown, the number of modular circular holes 6 is multiple, and multiple modular circular holes 6 are arranged at intervals in a row on the bending parallel plate 4 of the unilateral bending structure 3. During actual installation, bolts are passed through the modular circular holes 6 and locked with the press riveting nuts on the front-end installation structure to be installed on the front-end cabinet.
[0025] As Figure 1 shown, the wire tying holes 7 are long strip holes and the number is multiple. Multiple wire tying holes 7 are arranged at intervals in a row. Wire tying holes 7 arranged in a row are provided near both bending structures 3. The wire tying holes 7 are used for fixing the cables connecting the switch and the components in the control cabinet.
[0026] As Figure 1 shown, the number of heat dissipation holes 8 is multiple. Multiple heat dissipation holes 8 are arranged at intervals in a row and are located beside the wire tying holes 7 arranged in a row on one side. In this embodiment, the position of the heat dissipation holes 8 is adapted to the position of the front-end switch, and specifically, they are opened below the switch, which can achieve a better heat dissipation effect.
[0027] During the installation of this embodiment, first, align the modular circular holes 6 on the bending parallel plates 4 on both sides with the installation parts of the front-end cabinet, and lock and install them with screws and nuts; secondly, connect the switch installation stud 2 to the corresponding front-end switch and lock the connection with a nut; finally, tie and fix the cables of the components through the wire tying holes 7 to keep the cables horizontal and vertical, preventing the cables from being messy due to the lack of tying points.
[0028] The present application discloses a mounting member applicable to a switch of an electrochemical energy storage system control cabinet. Compared with conventional mounting structural members, this embodiment can make full use of the space inside the control cabinet, facilitating production and construction; the heat dissipation holes corresponding to the switch can effectively prevent the power supply from overheating; the bending structure 3 can effectively prevent the situation where the corners of the structural member cause the force to act on a single point during the load-bearing process, resulting in damage to the structural member.
[0029] The above embodiments are not limitations on the present utility model, and the present utility model is not limited to the above examples either. Changes, modifications, additions, or substitutions made by those skilled in the art within the scope of the technical solution of the present utility model also fall within the protection scope of the present utility model.
Claims
1. An installation part applicable to a switch of an electrochemical energy storage system control cabinet, characterized in that: It includes a structural member body (1) in the shape of a plate. On the plate surface of the structural member body (1), switch installation studs (2) are machined. On the plate surface of the structural member body (1), cable tie holes (7) and heat dissipation holes (8) are also formed. At the left and right ends of the structural member body (1), bending structures (3) are integrally formed respectively. Modular circular holes (6) are formed in the bending structures (3).
2. The mounting member applicable to the switch of the electrochemical energy storage system control cabinet according to claim 1, wherein: The thickness of the structural member body (1) is not less than 3 mm.
3. The mounting part applicable to the switch of the electrochemical energy storage system control cabinet according to claim 1, characterized in that: The switch installation studs (2) are implemented in a way that they are locked with nuts and installed with the front-end structure.
4. The mounting part applicable to the switch of the control cabinet of the electrochemical energy storage system according to claim 1, characterized in that: The bending structure (3) includes a bending vertical plate (5) perpendicular to the structural member body (1) and a bending parallel plate (4) perpendicular to the bending vertical plate (5).
5. The mounting part applicable to the switch of the electrochemical energy storage system control cabinet according to claim 4, wherein: The bending vertical plate (5) bends towards the side where the switch installation studs (2) are not arranged.
6. The mounting member applicable to the switch of the control cabinet of the electrochemical energy storage system according to claim 4, wherein: The bending parallel plate (4) bends towards the side away from the structural member body (1).
7. The mounting part applicable to the switch of the electrochemical energy storage system control cabinet according to claim 6, characterized in that: The number of the modular circular holes (6) is multiple, and the multiple modular circular holes (6) are arranged at intervals in a line on the bending parallel plate (4) of the unilateral bending structure (3).
8. The mounting part applicable to the switch of the control cabinet of the electrochemical energy storage system according to claim 1, characterized in that: The number of the cable tie holes (7) is multiple, and the multiple cable tie holes (7) are arranged in columns at intervals in a line. Cable tie holes (7) arranged in columns are formed at positions close to the two bending structures (3).
9. The mounting member applicable to the switch of the electrochemical energy storage system control cabinet according to claim 8, wherein: The number of the heat dissipation holes (8) is multiple, and the multiple heat dissipation holes (8) are arranged in columns at intervals in a line and are located beside the cable tie holes (7) arranged in columns on one side.