Combined distribution automation control cabinet
Through the combined design of the distribution automation control cabinet, the cabinet body is detachable and assembled with the sliding groove and stud nut structure, solving the deformation and space occupation problems of the cabinet body during the handling process, and improving transportation efficiency and use flexibility.
Patent Information
- Application Number
- CN202422171255.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-09-05
AI Technical Summary
The existing power distribution automation control cabinet cabinets are usually integrated, which makes it easy to deform during handling or transportation and takes up a large space.
The combined design adopts a combination design, and the cabinet body is assembled through the connecting components of the upper and lower side plates, the front and rear side plates and the left and right side plates. The combined structure of the slide groove and the stud nut is adjusted and fixed to form a detachable cabinet structure.
It reduces the risk of deformation of the cabinet during transportation, reduces the use of transportation space, and improves the flexibility of cabinet size and use flexibility.
Smart Images

Figure CN223079583U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of distribution automation control cabinets, and particularly relates to a combined distribution automation control cabinet. Background Art
[0002] A distribution automation control cabinet is a device that can operate on its own without direct manual control. It includes an electrical automatic control cabinet, a full-automatic control cabinet, a sewage pump automatic control cabinet, a PLC automatic control cabinet, and a generator full-automatic control cabinet, etc. This kind of control cabinet can select different control methods according to different scenario requirements, and select different components to form according to the number of devices. It has functions such as power protection, start-stop control, frequency adjustment, and operating status display. The power protection function can cut off the power supply to prevent danger when overload, short circuit, etc. occur during the operation of the device. The start-stop control allows setting the start and stop times of the device on the panel for convenient management. The frequency adjustment function can adjust the speed of the motor as needed. The operating status display enables users to understand the real-time status of the device through ammeters, voltmeters, etc. on the panel and make timely adjustments. This kind of control cabinet is widely used in the control of electromechanical equipment, power distribution, and electrical protection in the industrial automation production process.
[0003] The cabinet body of the existing distribution automation control cabinet is usually integral, which leads to deformation and other phenomena of the cabinet body when the cabinet body of the distribution automation control cabinet is carried or transported and collides. Because when the cabinet body is carried or transported, the cabinet body is in a hollow state. Therefore, a combined distribution automation control cabinet is invented. Summary of the Utility Model
[0004] In view of the above and / or existing problems in a combined distribution automation control cabinet, the present utility model is proposed.
[0005] Therefore, the purpose of the present utility model is to provide a combined distribution automation control cabinet that can solve the above-mentioned existing problems.
[0006] To solve the above technical problems, according to one aspect of the present utility model, the following technical solutions are provided:
[0007] A combined distribution automation control cabinet, which includes a cabinet body. The cabinet body is composed of two upper and lower side plates, two front and rear side plates, and two left and right side plates. The upper and lower side plates are connected to the front and rear side plates through a first connection component, the upper and lower side plates are connected to the left and right side plates through a second connection component, and the front and rear side plates are connected to the left and right side plates through a third connection component.
[0008] As a preferred embodiment of the combined power distribution automation control cabinet of the present utility model, wherein: the upper and lower side plates include:
[0009] The first support plate;
[0010] The second support plate, both ends of the first support plate are slidably connected to the second support plate.
[0011] As a preferred embodiment of the combined power distribution automation control cabinet of the present utility model, wherein: a first sliding groove is provided on the first support plate, a first stud is fixedly installed on one side of the second support plate, and the first stud is slidably connected in the first sliding groove, and one end of the first stud is threadedly connected with a first nut.
[0012] As a preferred embodiment of the combined power distribution automation control cabinet of the present utility model, wherein: the front and rear side plates include:
[0013] The third support plate;
[0014] The fourth support plate, both ends of the third support plate are slidably connected to the fourth support plate.
[0015] As a preferred embodiment of the combined power distribution automation control cabinet of the present utility model, wherein: a second sliding groove is provided on the third support plate, a second stud is fixedly installed on one side of the fourth support plate, and the second stud is slidably connected in the second sliding groove, and one end of the second stud is threadedly connected with a second nut.
[0016] As a preferred embodiment of the combined power distribution automation control cabinet of the present utility model, wherein: the first connection component includes:
[0017] The fifth stud, both ends of the second support plate are fixedly installed with the fifth stud, and one end of the fifth stud passes through the fourth support plate;
[0018] The fifth nut, one end of the fifth stud is threadedly connected with the fifth nut.
[0019] As a preferred embodiment of the combined power distribution automation control cabinet of the present utility model, wherein: the second connection component includes:
[0020] The third stud, the third stud is fixedly installed on one side of the second support plate, and one end of the third stud passes through the left and right side plates;
[0021] The third nut, one end of the third stud is threadedly connected with the third nut.
[0022] As a preferred embodiment of the combined power distribution automation control cabinet of the present utility model, wherein: the third connection component includes:
[0023] The fourth stud, one side of the fourth support plate is fixedly installed with the fourth stud, and one end of the fourth stud passes through the left and right side plates;
[0024] The fourth nut, one end of the fourth stud is threadedly connected with the fourth nut.
[0025] Compared with the prior art:
[0026] By assembling the upper and lower side plates, the front and rear side plates and the left and right side plates into the cabinet body of the distribution automation control cabinet, it is possible to solve the problem that the cabinet body of the existing distribution automation control cabinet is usually integrated. It can not only reduce the space occupied by the transportation of the cabinet body, but also make the cabinet body not easily deformed to a certain extent. In addition, by adjusting the lengths of the upper and lower side plates and the left and right side plates, it is possible to adjust the size of the cabinet body and improve the flexibility of use. Brief Description of the Drawings
[0027] Figure 1 It is a front view schematic diagram of the structure of the present invention;
[0028] Figure 2 For the present invention Figure 1 The enlarged schematic diagram of the structure at A in the figure;
[0029] Figure 3 It is a top view schematic diagram of the structure of the present invention;
[0030] Figure 4 For the present invention Figure 3 The enlarged schematic diagram of the structure at B in the figure.
[0031] In the figure: the first support plate 10, the second support plate 11, the first chute 12, the first stud 13, the first nut 14, the third support plate 20, the fourth support plate 21, the second chute 22, the second stud 23, the second nut 24, the left and right side plates 30, the third stud 31, the third nut 32, the fourth stud 33, the fourth nut 34, the fifth stud 40, the fifth nut 41. Detailed Description of the Embodiments
[0032] In order to make the purpose, technical solutions and advantages of the present invention clearer, the embodiments of the present invention will be further described in detail below with reference to the drawings.
[0033] The present invention provides a combined distribution automation control cabinet. Please refer to Figures 1 - 4, including a cabinet body, which is composed of two sets of upper and lower side plates, two sets of front and rear side plates, and two sets of left and right side plates 30. The upper and lower side plates are connected by a first connecting component, the upper and lower side plates are connected to the left and right side plates 30 by a second connecting component, and the front and rear side plates are connected to the left and right side plates 30 by a third connecting component. Among them, a set of left and right side plates 30 is provided with a cabinet door (not marked in the figure), and the cabinet door is provided with a handle (not marked in the figure).
[0034] The upper and lower side plates include: a first support plate 10, a second support plate 11, a first chute 12, a first stud 13, and a first nut 14;
[0035] Both ends of the first support plate 10 are slidably connected to the second support plate 11. A first chute 12 is formed on the first support plate 10. One side of the second support plate 11 is fixedly installed with a first stud 13, and the first stud 13 is slidably connected in the first chute 12. One end of the first stud 13 is threadedly connected with a first nut 14.
[0036] The front and rear side plates include: a third support plate 20, a fourth support plate 21, a second chute 22, a second stud 23, and a second nut 24;
[0037] Both ends of the third support plate 20 are slidably connected to the fourth support plate 21. A second chute 22 is formed on the third support plate 20. One side of the fourth support plate 21 is fixedly installed with a second stud 23, and the second stud 23 is slidably connected in the second chute 22. One end of the second stud 23 is threadedly connected with a second nut 24.
[0038] The first connecting component includes: a fifth stud 40 and a fifth nut 41;
[0039] Both ends of the second support plate 11 are fixedly installed with a fifth stud 40, and one end of the fifth stud 40 passes through the fourth support plate 21. One end of the fifth stud 40 is threadedly connected with a fifth nut 41.
[0040] The second connecting component includes: a third stud 31 and a third nut 32;
[0041] One side of the second support plate 11 is fixedly installed with a third stud 31, and one end of the third stud 31 passes through the left and right side plates 30. One end of the third stud 31 is threadedly connected with a third nut 32.
[0042] The third connecting component includes: a fourth stud 33 and a fourth nut 34;
[0043] One side of the fourth support plate 21 is fixedly installed with a fourth stud 33, and one end of the fourth stud 33 passes through the left and right side plates 30. One end of the fourth stud 33 is threadedly connected with a fourth nut 34.
[0044] The composition process is as follows:
[0045] Step 1: Slide the first stud 13 in the first chute 12 until the first support plate 10 and the second support plate 11 reach an appropriate length, and then fix the lengths of the first support plate 10 and the second support plate 11 with the first nut 14. Thus, the upper and lower side plates are obtained.
[0046] Step 2: Slide the second stud 23 in the second chute 22 until the third support plate 20 and the fourth support plate 21 reach an appropriate length, and then fix the lengths of the third support plate 20 and the fourth support plate 21 with the second nut 24. Thus, the front and rear side plates are obtained.
[0047] Step 3: Pass one end of the fifth stud 40 through the fourth support plate 21 and thread the fifth nut 41 onto one end of the fifth stud 40. Thus, the upper and lower side plates are connected to the front and rear side plates.
[0048] Step 4: Pass one end of the third stud 31 through the left and right side plates 30 and thread the third nut 32 onto one end of the third stud 31. Thus, the upper and lower side plates are connected to the left and right side plates 30.
[0049] Step 5: Pass one end of the fourth stud 33 through the left and right side plates 30 and thread the fourth nut 34 onto one end of the fourth stud 33. Thus, the front and rear side plates are connected to the left and right side plates 30.
[0050] Although the present invention has been described above with reference to the embodiments, various improvements can be made to it and its components can be replaced with equivalents without departing from the scope of the present invention. In particular, as long as there is no structural conflict, the features in the embodiments disclosed in the present invention can be combined with each other in any way. The exhaustive description of these combinations is not given in this specification only for the sake of saving space and resources. Therefore, the present invention is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.
Claims
1. A combined distribution automation control cabinet, comprising a cabinet body, characterized in that, The cabinet body is composed of two sets of upper and lower side plates, two sets of front and rear side plates, and two sets of left and right side plates (30). The upper and lower side plates are connected to the front and rear side plates through a first connection component. The upper and lower side plates are connected to the left and right side plates (30) through a second connection component. The front and rear side plates are connected to the left and right side plates (30) through a third connection component.
2. The combined power distribution automation control cabinet according to claim 1, characterized in that, The upper and lower side plates include: A first support plate (10); A second support plate (11), with both ends of the first support plate (10) slidably connected to the second support plate (11).
3. The combined power distribution automation control cabinet according to claim 2, characterized in that, A first chute (12) is provided on the first support plate (10). A first stud (13) is fixedly installed on one side of the second support plate (11), and the first stud (13) is slidably connected in the first chute (12). One end of the first stud (13) is threadedly connected to a first nut (14).
4. A combined distribution automation control cabinet according to claim 3, characterized in that, The front and rear side plates include: A third support plate (20); A fourth support plate (21), with both ends of the third support plate (20) slidably connected to the fourth support plate (21).
5. The combined power distribution automation control cabinet according to claim 4, characterized in that, A second chute (22) is provided on the third support plate (20). A second stud (23) is fixedly installed on one side of the fourth support plate (21), and the second stud (23) is slidably connected in the second chute (22). One end of the second stud (23) is threadedly connected to a second nut (24).
6. The combined distribution automation control cabinet according to claim 5, characterized in that, The first connection component includes: A fifth stud (40), with both ends of the second support plate (11) fixedly installed with the fifth stud (40), and one end of the fifth stud (40) passing through the fourth support plate (21); A fifth nut (41), with one end of the fifth stud (40) threadedly connected to the fifth nut (41).
7. A combined power distribution automation control cabinet according to claim 5, characterized in that, The second connection component includes: A third stud (31), with the third stud (31) fixedly installed on one side of the second support plate (11), and one end of the third stud (31) passing through the left and right side plates (30); A third nut (32), with one end of the third stud (31) threadedly connected to the third nut (32).
8. The combined power distribution automation control cabinet according to claim 5, characterized in that, The third connection component includes: A fourth stud (33), with the fourth stud (33) fixedly installed on one side of the fourth support plate (21), and one end of the fourth stud (33) passing through the left and right side plates (30); A fourth nut (34), with one end of the fourth stud (33) threadedly connected to the fourth nut (34).