Splicing power distribution cabinet

By designing splicing blocks, magnetic strips, and fixing components for the modular power distribution cabinet, the problem of gaps caused by collisions in traditional power distribution cabinets is solved, achieving stability of wire connections and dustproof and heat dissipation effects, ensuring the normal use of the power distribution cabinet.

CN223797760UActive Publication Date: 2026-01-13SHANDONG RUISHI ELECTRICAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520001431.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-02
Publication Date
2026-01-13
Estimated Expiration
2035-01-02

AI Technical Summary

Technical Problem

Traditional power distribution cabinets are prone to gaps due to accidental collisions when used side by side, causing wires to fall off the components and affecting normal use.

Method used

A modular power distribution cabinet was designed, which uses modular blocks, magnetic strips and fixing components to fix multiple cabinets together. Magnetic attraction and latch structure prevent gaps from appearing, and the support frame reduces the impact of moisture. The wiring assembly and dustproof net prevent dust and insects from entering.

Benefits of technology

It effectively prevents gaps caused by collisions, ensures stable wire connections, reduces damage to components from moisture and dust, and ensures the normal operation of the distribution cabinet.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a power distribution cabinet capable of being spliced, which comprises a cabinet body, a cabinet door and a splicing mechanism, and is characterized in that the cabinet door is pivotally connected with the cabinet body; the splicing mechanism comprises a splicing block, a first magnetic strip, a splicing groove, a second magnetic strip and a fixing assembly, and the splicing block is arranged on the side wall of the cabinet body; a first mounting groove is formed in the side wall of the splicing block; a first magnetic strip is mounted in the first mounting groove; a splicing groove is formed in the side wall of the other side of the cabinet body; the second magnetic strips are mounted in the splicing grooves; the fixing assembly is arranged on the side wall of the cabinet body. According to the splicing power distribution cabinet provided by the embodiment of the utility model, two or more power distribution cabinets can be fixed together when being used side by side, so that a gap between the power distribution cabinets caused by unintentional collision of a worker during working can be prevented; therefore, the circuit connected in series or in parallel falls off from the electronic component to prevent the electronic component from being used normally.
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Description

Technical Field

[0001] This utility model relates to the technical field of power distribution cabinets, and in particular to a modular power distribution cabinet. Background Technology

[0002] A distribution cabinet is the final stage equipment in a power distribution system, and it is a general term for the motor control center. Distribution cabinets are suitable for situations where the load is relatively dispersed and there are few circuits. In the process of using distribution cabinets, multiple distribution cabinets are often connected together for joint use.

[0003] Currently, when multiple traditional power distribution cabinets need to be placed together for use, the staff will simply place them side by side. Although this method is extremely simple to operate, unintentional collisions during the work process may cause gaps to appear in the power distribution cabinets placed side by side. If the internal wires are tightly connected, the wires may fall off the components, thus affecting the normal use of the power distribution cabinet. Utility Model Content

[0004] This utility model aims to at least partially solve one of the technical problems in the above-mentioned technologies.

[0005] Therefore, one objective of this utility model is to provide a modular power distribution cabinet that can be fixed together when two or more power distribution cabinets are used side by side. This can prevent unintentional collisions by workers during operation from causing gaps between the power distribution cabinets, which could lead to the series or parallel circuits falling off the electronic components and prevent them from becoming unusable.

[0006] To achieve the above objectives, the first aspect of this utility model provides a modular power distribution cabinet, comprising: a cabinet body, a cabinet door, and a modular assembly, wherein the cabinet door is pivotally connected to the cabinet body; the modular assembly includes a modular block, a first magnetic strip, a modular groove, a second magnetic strip, and a fixing component, wherein the modular block is disposed on a side wall of the cabinet body; a first mounting groove is formed in the side wall of the modular block; a first magnetic strip is installed in the first mounting groove; a modular groove is formed in the other side wall of the cabinet body; the second magnetic strip is installed in the modular groove; and the fixing component is disposed on a side wall of the cabinet body.

[0007] In addition, the modular power distribution cabinet proposed above according to this utility model may also have the following additional technical features:

[0008] Specifically, the fixing component includes a connecting block, two sets of springs, and two sets of latches. The connecting block is disposed on the side wall of the cabinet. The side wall of the connecting block has two symmetrically opened limiting holes. The two sets of springs are respectively installed in the corresponding limiting holes. The two sets of latches are respectively connected to the other end of the corresponding springs. The other side wall of the cabinet has a connecting groove. The side wall of the cabinet has two symmetrically opened locking holes.

[0009] Specifically, a support frame is provided at the bottom of the cabinet.

[0010] Specifically, the side wall of the cabinet is provided with a wire threading assembly, wherein the wire threading assembly has a sealing plate and multiple bolts, wherein the side wall of the cabinet has a second mounting groove; the inner bottom wall of the second mounting groove has a wire threading groove; the sealing plate is installed on the inner side wall of the second mounting groove; the multiple bolts pass through the side wall of the sealing plate and are threadedly connected to the cabinet.

[0011] Specifically, a third mounting groove is provided on the side wall of the cabinet door; and heat dissipation holes are provided at equal intervals on the inner bottom wall of the third mounting groove.

[0012] Specifically, a dustproof net is installed on the inner wall of the third mounting groove.

[0013] Compared with the prior art, the present invention has the following beneficial effects: The modular power distribution cabinet of the present invention can fix two or more power distribution cabinets together when they are used side by side. This can prevent unintentional collisions by workers during work from causing gaps between the power distribution cabinets, which could lead to the series or parallel circuits falling off the electronic components and prevent them from becoming unusable.

[0014] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0015] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the following description of the embodiments taken in conjunction with the accompanying drawings, in which:

[0016] Figure 1 This is a schematic diagram of a modular power distribution cabinet structure according to an embodiment of the present invention;

[0017] Figure 2 This is a schematic diagram of the structure of a modular power distribution cabinet fixing component according to an embodiment of the present invention;

[0018] Figure 3 This is a schematic diagram of the wiring assembly structure of a modular power distribution cabinet according to an embodiment of the present invention;

[0019] Figure 4 This is a schematic diagram of the structure of a modular power distribution cabinet door and a dustproof net used in conjunction with an embodiment of the present invention.

[0020] Figure 5 This is a schematic diagram of the splicing mechanism of a splicable power distribution cabinet according to an embodiment of the present invention.

[0021] Reference numerals in the attached drawings: 1. Cabinet body; 2. Cabinet door; 211. Third mounting groove; 222. Ventilation hole; 3. Support frame; 4. Fixing component; 41. Connecting block; 42. Limiting hole; 43. Spring; 44. Bolt; 45. Connecting groove; 46. Locking hole; 5. Splicing mechanism; 51. Splicing block; 52. First mounting groove; 53. First magnetic strip; 54. Splicing groove; 55. Second magnetic strip; 6. Wiring assembly; 61. Second mounting groove; 62. Wiring groove; 63. Sealing plate; 64. Bolt; 7. Dustproof net. Detailed Implementation

[0022] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model.

[0023] The following describes an embodiment of the modular power distribution cabinet with reference to the accompanying drawings.

[0024] like Figures 1-5 As shown, the modular power distribution cabinet of this utility model embodiment includes: cabinet body 1, cabinet door 2 and modular assembly mechanism 5.

[0025] Cabinet door 2 is pivotally connected to cabinet body 1.

[0026] The splicing mechanism 5 includes a splicing block 51, a first magnetic strip 53, a splicing groove 54, and a fixing component 4.

[0027] The splicing block 51 is disposed on the side wall of the cabinet 1, and the side wall of the splicing block 51 has a first mounting groove 52, in which a first magnetic strip 53 is installed.

[0028] A splicing groove 54 is provided on the other side wall of the cabinet 1. The second magnetic strip 55 is installed in the splicing groove 54, and the fixing component 4 is set on the side wall of the cabinet 1.

[0029] The fixing component 4 includes a connecting block 41, two sets of springs 43, and two sets of latches 44. Among them,

[0030] The connecting block 41 is set on the side wall of the cabinet 1. Two limiting holes 42 are symmetrically opened on the side wall of the connecting block 41. Two sets of springs 43 are respectively installed in the corresponding limiting holes 42. Two sets of latches 44 are respectively connected to the other end of the corresponding springs 43. A connecting groove 45 is opened on the other side wall of the cabinet 1. Two locking holes 46 are symmetrically opened on the side wall of the cabinet 1.

[0031] Specifically, when two or more power distribution cabinets need to be spliced ​​together for use, the relevant personnel can snap the splicing block 51 of one power distribution cabinet into the splicing slot 54 of another power distribution cabinet. At this time, the splicing slot 54 in the splicing slot 54 will be tightly attracted to the first magnetic strip 53 in the first mounting slot 52, thereby splicing the two power distribution cabinets together. Then the relevant personnel can repeat this operation to splice multiple power distribution cabinets together.

[0032] When splicing one power distribution cabinet to another, the relevant personnel need to align the connecting block 41 of this power distribution cabinet with the connecting groove 45 of the other power distribution cabinet, and then press the latch 44. At this time, the latch 44 slides along the inner wall of the limiting hole 42, while compressing the spring 43, until the latch 44 is fully retracted into the limiting hole 42. Then the two power distribution cabinets are spliced ​​together. When the limiting hole 42 coincides with the locking hole 46, the spring 43 rebounds, thereby driving the latch 44 to reset. When the latch 44 locks into the locking hole 46, the two power distribution cabinets are fixed together.

[0033] like Figure 1 As shown in the figure, the modular power distribution cabinet of this utility model has a support frame 3 at the bottom of the cabinet body 1.

[0034] It is understandable that by setting up the support frame 3, the contact area between the cabinet 1 and the ground is reduced, thereby reducing the damage caused by moisture to the distribution cabinet.

[0035] like Figure 1 and Figure 3 As shown in the figure, the modular power distribution cabinet of this utility model has a wiring assembly 6 provided on the side wall of the cabinet body 1.

[0036] The threading assembly 6 includes a sealing plate 63 and multiple bolts 64.

[0037] The cabinet 1 has a second mounting groove 61 on its side wall, and a wire-passing groove 62 on the inner bottom wall of the second mounting groove 61. A sealing plate 63 is installed on the inner side wall of the second mounting groove 61, and multiple bolts 64 pass through the side wall of the sealing plate 63 and are threaded to the cabinet 1.

[0038] Specifically, when it is necessary to connect electronic components between two or more distribution boxes in parallel or series, the relevant personnel can pass the wires through the cable tray 62 to connect them. When no connection is needed, the relevant personnel can install the sealing plate 63 into the second mounting slot 61, and then pass multiple bolts 64 through the sealing plate 63 and thread them to the cabinet 1 to fix the sealing plate 63 into the second mounting slot 61.

[0039] like Figure 4 As shown, in the modular power distribution cabinet of this utility model embodiment, a third mounting groove 211 is provided on the side wall of the cabinet door 2, and heat dissipation holes 222 are provided at equal intervals on the inner bottom wall of the third mounting groove 211.

[0040] It is understandable that the heat generated by the operation of the electronic components inside the cabinet 1 can be dissipated through the heat dissipation holes 222.

[0041] like Figure 1 and Figure 4 As shown, in the modular power distribution cabinet of this embodiment, a dustproof net 7 is installed on the inner wall of the third mounting slot 211.

[0042] Understandably, by setting up the dustproof net 7, dust or insects can be reduced from entering the cabinet 1 through the heat dissipation holes 222 and causing damage to the electronic components.

[0043] In summary, the modular power distribution cabinet of this utility model can fix two or more power distribution cabinets together when they are used side by side. This can prevent unintentional collisions by workers during operation from causing gaps between the power distribution cabinets, which could lead to the series or parallel circuits falling off the electronic components and prevent them from becoming unusable.

[0044] In the description of this specification, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this utility model, "a plurality of" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0045] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0046] Although embodiments of the present invention have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present invention.

Claims

1. A spliceable electrical distribution cabinet, characterized in that, The utility model relates to a cabinet, cabinet door and splicing mechanism, wherein, The cabinet door is pivotally connected with the cabinet body; The splicing mechanism comprises a splicing block, a first magnetic strip, a splicing groove, a second magnetic strip and a fixing assembly, wherein, The splicing block is arranged on the side wall of the cabinet body; The side wall of the splicing block is provided with a first mounting groove; The first magnetic strip is mounted in the first mounting groove; The other side wall of the cabinet body is provided with a splicing groove; The second magnetic strip is mounted in the splicing groove; The fixing assembly is arranged on the side wall of the cabinet body. The fixing assembly comprises a connecting block, two groups of springs and two groups of clamping bolts, wherein, 2. The spliceable switchgear cabinet of claim 1, wherein, The connecting block is arranged on the side wall of the cabinet body; The side wall of the connecting block is symmetrically provided with two limiting holes; Two groups of springs are respectively mounted in the corresponding limiting holes; Two groups of clamping bolts are respectively connected with the other end of the corresponding spring; The other side wall of the cabinet body is provided with a connecting groove; The side wall of the cabinet body is symmetrically provided with two clamping holes. The bottom of the cabinet body is provided with a supporting frame.

3. The spliceable switchgear cabinet of claim 1, wherein, The side wall of the cabinet body is provided with a threading assembly, wherein, 4. The spliceable switchgear cabinet of claim 1, wherein, The threading assembly comprises a sealing plate and a plurality of bolts, wherein, The side wall of the cabinet body is provided with a second mounting groove; The inner bottom wall of the second mounting groove is provided with a threading groove; The sealing plate is mounted on the inner side wall of the second mounting groove; A plurality of bolts are respectively screwed into the cabinet body through the side wall of the sealing plate. The side wall of the cabinet door is provided with a third mounting groove; 5. The spliceable switchgear cabinet of claim 1, wherein, The inner bottom wall of the third mounting groove is provided with a plurality of heat dissipation holes at equal intervals. The inner side wall of the third mounting groove is provided with a dustproof screen.

6. The spliceable switchgear cabinet of claim 5, wherein, ​