Linkage door and liquid cooling outdoor cabinet
By designing a linkage door between the electrical silo door of the liquid-cooled outdoor cabinet and the silo door of the liquid-cooled outdoor cabinet, the linkage between the two doors is achieved by using the embedding structure of the flange plate, the problem of unrelated doors in the existing technology requires multiple access control, and the number of access control is reduced.
Patent Information
- Application Number
- CN202422029591.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-21
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-08-21
AI Technical Summary
At this stage, the upper and lower doors of liquid-cooled outdoor cabinets are designed in separate design, resulting in the unrelatedness of the upper and lower doors. Two access controls are needed to achieve control, which increases the number of access controls used.
A linkage door is designed, by flanking the side of the electrical bin door close to the liquid-cooling unit bin door, forming a flange plate and embedded into the inner side of the liquid-cooling unit bin door, realizing the linkage between the electrical bin door and the liquid-cooling unit bin door, and two doors can be opened with a shared access control.
The linkage between the electrical silo door and the liquid-cooling unit silo door is realized, reducing the number of access control used and improving the coordinated control efficiency of the door.
Smart Images

Figure CN223039428U_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the technical field of interlocking doors, and in particular, to an interlocking door and a liquid-cooled outdoor cabinet. Background Art
[0002] The liquid-cooled outdoor cabinet adopts advanced liquid-cooling technology and dissipates heat through liquid circulation, greatly improving the heat dissipation efficiency of energy storage devices and ensuring their long-term stable operation in high-temperature environments. As an efficient, safe, and environmentally friendly energy storage technology solution, the liquid-cooled outdoor cabinet has broad application prospects and market demands. With the continuous development of new energy technologies and the growth of application demands, the application of liquid-cooled outdoor cabinets in the energy storage field will become more and more extensive.
[0003] At present, the door panels of the upper and lower doors of the liquid-cooled outdoor cabinet are basically designed in a split manner. The upper and lower doors are not related, and two access controls are required to achieve control, increasing the number of access controls used. Summary of the Utility Model
[0004] To solve the above problems, it is necessary to provide an interlocking door and a liquid-cooled outdoor cabinet. The design of the electrical compartment door is adjusted. On the side of the electrical compartment door close to the liquid-cooled unit compartment door, the electrical compartment door is flanged upwards to form a flanging plate, which is embedded inside the liquid-cooled unit compartment door. The liquid-cooled unit compartment door will press on the electrical compartment door, so as to achieve the interlock of the two doors of the electrical compartment door and the liquid-cooled unit compartment door, and solve the problem that the upper and lower doors are not related and two access controls are required to achieve control.
[0005] According to one aspect of the present application, there is provided an interlocking door, including:
[0006] A liquid-cooled unit compartment door, on the side surface of which a first hidden hinge is movably and concealably installed;
[0007] An electrical compartment door, on the side surface of which a second hidden hinge is movably and concealably installed;
[0008] An interlocking component, which is arranged between the liquid-cooled unit compartment door and the electrical compartment door, and is used for the interlock of the liquid-cooled unit compartment door and the electrical compartment door;
[0009] An access control, which is installed on the liquid-cooled unit compartment door and is used for the switch control of the liquid-cooled unit compartment door and the electrical compartment door.
[0010] In some embodiments, first stiffening plates for improving the strength of the liquid-cooled unit compartment door are welded around the inner wall of the liquid-cooled unit compartment door.
[0011] In some embodiments, an upper door lock is installed on the liquid-cooled unit compartment door, and a lower door lock is installed on the surface of the electrical compartment door. The upper door lock and the lower door lock are electrically connected to the access control.
[0012] In some embodiments, second stiffening plates for enhancing the strength of the electrical cabinet door are welded around the inner wall of the electrical cabinet door, and third stiffening plates are installed inside the electrical cabinet door.
[0013] In some embodiments, the linkage assembly is composed of a flanging plate and an embedding groove. The flanging plate is welded to the top of the electrical cabinet door, and an embedding groove cooperating with the flanging plate is provided on the inner wall of the bottom side of the liquid cooling unit cabinet door.
[0014] According to another aspect of the present application, a liquid cooling outdoor cabinet is further provided, which includes a cabinet body and the linkage door described in any one of the above. The linkage door is arranged on the side wall of the cabinet body.
[0015] Compared with the prior art, the electrical cabinet door and the liquid cooling unit cabinet door on the outdoor liquid cooling cabinet of the present disclosure adopt a linkage design to realize the linkage of the upper and lower doors and reduce the use of access control. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] These and / or other aspects and advantages of the present application will become clearer and easier to understand from the following detailed description of the embodiments of the present application in conjunction with the accompanying drawings, in which:
[0017] Figure 1 is a front three-dimensional structural schematic diagram of the linkage door disclosed in the present application;
[0018] Figure 2 is a structural schematic diagram of the back of the linkage door disclosed in the present application;
[0019] Figure 3 is a rear view of the linkage door disclosed in the present application;
[0020] Figure 4 is a structural schematic diagram of the connection between the electrical cabinet door and the liquid cooling unit cabinet door disclosed in the present application.
[0021] In the figure: 11. Liquid cooling unit cabinet door; 2. Electrical cabinet door; 3. Flanging plate; 4. Access control; 5. Upper door lock; 6. First concealed hinge; 7. First stiffening plate; 8. Lower door lock; 9. Second concealed hinge; 10. Second stiffening plate; 11. Third stiffening plate. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0022] In order to enable those skilled in the art to better understand the present application, the present application will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.
[0023] First, a brief overview of the basic background of the method and usage technology for the linkage door in the present application is given.
[0024] As described above, at the current stage, the door panel designs of the upper and lower doors of the liquid-cooled outdoor cabinet are basically split designs. The upper and lower doors have no connection and require two access controls to achieve control, increasing the number of access controls used. Therefore, there is an urgent need for a linkage door that links the electrical compartment door and the liquid-cooled unit compartment door. In order to achieve the linkage of the electrical compartment door and the liquid-cooled unit compartment door in the liquid-cooled outdoor cabinet, the design of the electrical compartment door is now adjusted. On the side of the electrical compartment door close to the liquid-cooled unit compartment door, the electrical compartment door is flanged upwards to form a flanging plate, which is embedded inside the liquid-cooled unit compartment door. The liquid-cooled unit compartment door will press on the electrical compartment door, so as to achieve the linkage of the two doors of the electrical compartment door and the liquid-cooled unit compartment door.
[0025] Figure 1 Fig. shows the overall structural schematic diagram of the linkage door of the disclosed embodiment of the present application.
[0026] As Figures 1-4 shown, the linkage door disclosed in the present application includes a liquid-cooled unit compartment door 1, an electrical compartment door 2, a linkage component, and an access control 4. A first concealed hinge 6 that can be movably and hiddenly installed is provided on the side surface of the liquid-cooled unit compartment door 1; a second concealed hinge 9 that can be movably and hiddenly installed is provided on the side surface of the electrical compartment door 2; the linkage component is arranged between the liquid-cooled unit compartment door 1 and the electrical compartment door 2, and the linkage component is used for the linkage of the liquid-cooled unit compartment door 1 and the electrical compartment door 2; the access control 4 is installed on the liquid-cooled unit compartment door 1, and the access control 4 is used for the switch control of the liquid-cooled unit compartment door 1 and the electrical compartment door 2. On the side of the electrical compartment door 2 close to the liquid-cooled unit compartment door 1, a linkage component is provided. The linkage component is clamped inside the liquid-cooled unit compartment door 1, and the liquid-cooled unit compartment door 1 will press on the electrical compartment door 2, so as to achieve the linkage of the two doors of the electrical compartment door 2 and the liquid-cooled unit compartment door 1. To open the electrical compartment door 2, the liquid-cooled unit compartment door 1 must be opened first, and only one access control 4 is needed at the liquid-cooled unit compartment door 1.
[0027] Preferably, as Figures 2-3 shown, first stiffening plates 7 for improving the strength of the liquid-cooled unit compartment door 1 are welded around the inner wall of the liquid-cooled unit compartment door 1. The provided first stiffening plates 7 can also improve the strength and stability of the liquid-cooled unit compartment door 1, and the first stiffening plates 7 help to extend the service life of the liquid-cooled unit compartment door 1.
[0028] Furthermore, as Figures 1-3 shown, an upper door lock 5 is installed on the liquid-cooled unit compartment door 1, and a lower door lock 8 is installed on the surface of the electrical compartment door 2. The upper door lock 5 and the lower door lock 8 are electrically connected to the access control 4. The upper door lock 5 and the lower door lock 8 are electromagnetic locks. By setting one access control 4, the switch control of the upper door lock 5 and the lower door lock 8 can be achieved, which is convenient for opening the liquid-cooled unit compartment door 1 and the electrical compartment door 2.
[0029] Specifically, as Figures 2-3As shown, second stiffeners 10 for enhancing the strength of the electrical compartment door 2 are welded around the inner wall of the electrical compartment door 2. A third stiffener 11 is installed inside the electrical compartment door 2. The second stiffeners 10 and the third stiffeners 11 provided can also enhance the strength and stability of the electrical compartment door 2, and the first stiffener 7 helps to extend the service life of the electrical compartment door 2.
[0030] In some embodiments, as Figures 2-4 shown, the linkage assembly consists of a flanging plate 3 and an embedding groove. The flanging plate 3 is welded to the top of the electrical compartment door 2. An embedding groove for cooperating with the flanging plate 3 is provided on the inner wall of the bottom side of the liquid cooling unit compartment door 1. On the side of the electrical compartment door 2 close to the liquid cooling unit compartment door 1, the electrical compartment door 2 is flanged upwards to form a flanging plate 3, which is embedded into the embedding groove inside the liquid cooling unit compartment door 1. The liquid cooling unit compartment door 1 will press on the electrical compartment door 2, so that the linkage of the two doors, namely the electrical compartment door 2 and the liquid cooling unit compartment door 1, can be achieved. To open the electrical compartment door 2, the liquid cooling unit compartment door 1 must be opened first, and only one access control 4 is needed at the liquid cooling unit compartment door 1.
[0031] When the linkage door of the present application is in use, first stiffeners 7 for enhancing the strength of the liquid cooling unit compartment door 1 are welded around the inner wall of the liquid cooling unit compartment door 1. The first stiffeners 7 provided can also enhance the strength and stability of the liquid cooling unit compartment door 1, and the first stiffeners 7 help to extend the service life of the liquid cooling unit compartment door 1. In order to achieve in the liquid cooling outdoor cabinet, second stiffeners 10 for enhancing the strength of the electrical compartment door 2 are welded around the inner wall of the electrical compartment door 2. A third stiffener 11 is installed inside the electrical compartment door 2. The second stiffeners 10 and the third stiffeners 11 provided can also enhance the strength and stability of the electrical compartment door 2, and the first stiffener 7 helps to extend the service life of the electrical compartment door 2. For the linkage of the electrical compartment door 2 and the liquid cooling unit compartment door 1, the design of the electrical compartment door 2 is adjusted. On the side of the electrical compartment door 2 close to the liquid cooling unit compartment door 1, the electrical compartment door 2 is flanged upwards to form a flanging plate 3, which is embedded inside the liquid cooling unit compartment door 1. The liquid cooling unit compartment door 1 will press on the electrical compartment door 2, so that the linkage of the two doors, namely the electrical compartment door 2 and the liquid cooling unit compartment door 1, can be achieved. To open the electrical compartment door 2, the liquid cooling unit compartment door 1 must be opened first, and only one access control 4 is needed at the liquid cooling unit compartment door 1.
[0032] The basic principle of the present application has been described above in combination with specific embodiments. However, it should be noted that the advantages, advantages, effects, etc. mentioned in the present application are only examples and not limitations. It cannot be considered that these advantages, advantages, effects, etc. are essential for each embodiment of the present application. In addition, the above disclosed specific details are only for the purpose of illustration and easy understanding, rather than limitations. The above details do not limit the present application to necessarily adopt the above specific details to implement. In addition, the features from one embodiment can be combined with the features of another or more embodiments to obtain more embodiments.
[0033] The block diagrams of the devices, apparatuses, equipment, and systems involved in this application are only illustrative examples and are not intended to require or imply that they must be connected, arranged, and configured in the manner shown in the block diagrams. As those skilled in the art will recognize, these devices, apparatuses, equipment, and systems can be connected, arranged, and configured in any manner. Words such as "including," "comprising," "having," etc. are open-ended terms that mean "including but not limited to" and can be used interchangeably with each other. The words "or" and "and" used herein mean "and / or" and can be used interchangeably with it, unless the context clearly indicates otherwise. The phrase "such as" used herein means "such as but not limited to" and can be used interchangeably with it.
[0034] In addition, as used herein, the "or" used in the listing of items starting with "at least one" indicates a disjunctive listing. For example, the listing of "at least one of A, B, or C" means A or B or C, or AB or AC or BC, or ABC (i.e., A and B and C). Further, the term "exemplary" does not mean that the examples described are preferred or better than other examples.
[0035] It should also be noted that in the devices and methods of this application, each component or each step can be decomposed and / or recombined. These decompositions and / or recombinations should be regarded as equivalent solutions of this application.
[0036] For those of ordinary skill in the art, it is possible to understand all or any part of the methods and devices of this application, which can be implemented in any computing device (including a processor, a storage medium, etc. or a network of computing devices, in hardware, firmware, software, or any combination thereof. The hardware can be a general-purpose processor designed to perform the functions described herein, a digital signal processor (DSP), an ASIC, a field-programmable gate array signal (FPGA), or other programmable logic device (PLD), discrete gate or transistor logic, discrete hardware components, or any combination thereof. The general-purpose processor can be a microprocessor, but alternatively, the processor can be any commercially available processor, controller, microcontroller, or state machine. The processor can also be implemented as a combination of computing devices, such as a combination of a DSP and a microprocessor, multiple microprocessors, one or more microprocessors cooperating with a DSP core, or any other such configuration. The software can exist in any form of tangible computer-readable storage medium. By way of example and not limitation, such a tangible computer-readable storage medium can include RAM, ROM, EEPROM, CD-ROM, or other optical disk storage, magnetic disk storage, or other magnetic storage devices, or any other tangible medium that can be used to carry or store the desired program code in the form of instructions or data structures and can be accessed by a computer. As used herein, a disk includes a compact disk (CD), a laser disk, an optical disk, a digital versatile disk (DVD), a floppy disk, and a Blu-ray disk.
[0037] Various changes, substitutions, and alterations to the technology described herein can be made without departing from the teachings defined by the appended claims. Additionally, the scope of the claims of this application is not limited to the specific aspects of the processes, machines, manufactures, compositions of events, means, methods, and acts described above. Processes, machines, manufactures, compositions of events, means, methods, or acts that are currently available or later to be developed that perform substantially the same function or achieve substantially the same result as the corresponding aspects described herein can be utilized. Accordingly, the appended claims include such processes, machines, manufactures, compositions of events, means, methods, or acts within their scope.
[0038] The foregoing description of the disclosed aspects is provided to enable any person skilled in the art to make or use this application. Various modifications to these aspects will be readily apparent to those skilled in the art, and the general principles defined herein can be applied to other aspects without departing from the scope of this application. Thus, this application is not intended to be limited to the aspects shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
[0039] The foregoing description has been presented for purposes of illustration and description. It is not intended to limit the embodiments of this application to the forms disclosed herein. Although numerous example aspects and embodiments have been discussed above, those skilled in the art will recognize some of their variations, modifications, alterations, additions, and subcombinations.
Claims
1. A linkage door, wherein: include: A liquid cooling unit door (1), wherein a first concealed hinge (6) is provided on a side surface of the liquid cooling unit door (1); An electrical compartment door (2), wherein a second concealed hinge (9) is provided on a side surface of the electrical compartment door (2); A linkage component, the linkage component being arranged between the liquid cooling unit compartment door (1) and the electrical compartment door (2), the linkage component being used for the linkage of the liquid cooling unit compartment door (1) and the electrical compartment door (2); An access control (4) is installed on the liquid cooling unit compartment door (1), and the access control (4) is used for opening and closing control of the liquid cooling unit compartment door (1) and the electrical compartment door (2).
2. The linkage door according to claim 1, wherein: A first rib plate (7) for increasing the strength of the liquid cooling unit door (1) is welded around the inner wall of the liquid cooling unit door (1).
3. The linkage door according to claim 1, wherein: An upper door lock (5) is installed on the liquid cooling unit compartment door (1), and a lower door lock (8) is installed on the surface of the electrical compartment door (2). The upper door lock (5) and the lower door lock (8) are electrically connected to the access control (4).
4. The linkage door according to claim 1, wherein: A second rib plate (10) for increasing the strength of the electrical compartment door (2) is welded around the inner wall of the electrical compartment door (2), and a third rib plate (11) is installed inside the electrical compartment door (2).
5. The linkage door according to claim 1, wherein: The linkage assembly is composed of a flange plate (3) and an embedding groove, the flange plate (3) is welded to the top of the electrical compartment door (2), and the bottom inner wall of the liquid cooling unit compartment door (1) is provided with an embedding groove that cooperates with the flange plate (3).
6. A liquid-cooled outdoor cabinet, wherein: It comprises a cabinet body and the linkage door according to any one of claims 1 to 5, wherein the linkage door is arranged on the side wall of the cabinet body.