Mounting assembly and high-current output copper bar for cabinet
By setting limit blocks and limit bayonets on the copper busbar mounting frame, combined with the screw connection between the copper busbar fixing frame and the insulating column, the stable installation and convenient disassembly of the high-current output copper busbar are achieved, solving the problem of complex installation of existing copper busbars.
Patent Information
- Application Number
- CN202422873207.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-25
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-11-25
AI Technical Summary
The maximum output current of existing copper busbars is only 1000A, which is complicated to install and difficult to disassemble.
An installation assembly is designed, including a mounting base, a copper busbar mounting frame, a limit plug and a limit bayonet. By snapping the limit plug and the limit bayonet together, combined with the screw connection of the copper busbar fixing frame and the insulating column, the copper busbar can be stably installed and removed.
The stable installation and convenient disassembly of the large current output copper busbar are realized, solving the problem of complex installation of the existing copper busbar.
Smart Images

Figure CN223487533U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of copper busbar technology for server racks, specifically to an installation component and a high-current output copper busbar for server racks. Background Technology
[0002] Copper busbars generally refer to copper busbars, which are indispensable conductive materials in the power field for manufacturing motor windings, high and low voltage electrical appliances, switch contacts, and wires for power supply and distribution installation, power transmission and transformation, electrical equipment, etc. They have good mechanical properties, electrical conductivity, thermal conductivity, corrosion resistance, electroplating properties, and brazing properties.
[0003] However, the maximum output current of existing copper busbars is only 1000A, and most of them need to be installed from the inside, which is complicated and difficult to disassemble in the cabinet.
[0004] Therefore, we need a high-current output copper busbar for mounting components and cabinets to solve the existing installation problems of current output copper busbars and also to enable the removal of current output copper busbars inside the cabinet. Utility Model Content
[0005] The purpose of this utility model is to provide a high-current output copper busbar for installation components and cabinets to solve the problem of sealing and dust prevention in existing junction boxes mentioned in the background art, and also to realize the installation and clamping of wire harnesses inside the junction box.
[0006] To achieve the above objectives, the present invention provides the following technical solution: an installation component, including an installation base, the installation base being disposed inside the cabinet body, a copper busbar mounting bracket being fixedly connected to the inner surface of the cabinet body, a limit plug being fixedly connected to the surface of the copper busbar mounting bracket, the surface of the limit plug engaging with the surface of a limit slot, the limit slot being opened inside the installation base, and a copper busbar body being disposed on the surface of the installation base.
[0007] Preferably, the cross-section of the limiting plug is convex, the surface of the limiting plug is in close contact with the surface of the limiting slot, and there are two limiting slots, which are symmetrically arranged along the center point of the mounting base.
[0008] Preferably, the surface of the copper busbar body is provided with a through hole, the through hole of the copper busbar body passes through the surface of the aluminum bolt, the surface of the aluminum bolt is screwed into the insulating post, the end face of the insulating post is fixedly connected to the surface of the copper busbar fixing frame, the ends of the two side plates of the copper busbar fixing frame are fixedly connected to the surface of the clip, the surface of the clip is inserted into the surface of the slot, and the slot is opened inside the mounting base.
[0009] Preferably, the top surface of the mounting base is provided with a movable groove, and a limiting baffle is movably connected to the surface of the movable groove. The bottom surface of the limiting baffle abuts against the top surface of the locking block. The movable groove and the locking groove are connected. An integrally formed actuating block is provided on the top surface of the limiting baffle. The limiting baffle and the actuating block are arranged in an "L" shape.
[0010] Preferably, the slot does not completely penetrate the top surface of the mounting base, the slot has a "convex" shaped cross-section, and the surface of the slot is in close contact with the surface of the card block.
[0011] Preferably, there are four copper busbar bodies, and the four copper busbar bodies are evenly distributed at equal intervals on the surface of the copper busbar mounting frame.
[0012] A high-current output copper busbar for server racks, including mounting components.
[0013] Compared with the prior art, the beneficial effects of this utility model are as follows: By setting a limiting block on the surface of the copper busbar mounting bracket, and then snapping the surface of the limiting block onto the surface of the limiting slot, the mounting base can be inserted from the surface of the copper busbar mounting bracket. By setting the copper busbar body on the surface of the mounting base, the copper busbar body can be detached from the surface of the copper busbar mounting bracket. When the actuating block on the surface of the limiting baffle is moved, the bottom surface of the limiting baffle can abut against the surface of the locking block, so the locking block is locked on the surface of the slot, thereby allowing the copper busbar body to be securely locked on the surface of the copper busbar mounting bracket for support and installation. This further solves the existing problem of current output copper busbar installation and also realizes the disassembly of the current output copper busbar in the cabinet. Attached Figure Description
[0014] Figure 1 This is a three-dimensional schematic diagram of the overall structure of this utility model:
[0015] Figure 2 Diagram showing the connection between the cabinet body and the copper busbar mounting bracket:
[0016] Figure 3 Diagram showing the connection between the copper busbar mounting bracket and the copper busbar body:
[0017] Figure 4 This is a schematic diagram showing the connection between the mounting base and the locking block;
[0018] Figure 5 This is a schematic diagram showing the connection between the copper busbar body and the copper busbar fixing frame.
[0019] In the diagram: 1. Cabinet body; 2. Copper busbar mounting bracket; 3. Limiting plug; 4. Limiting slot; 5. Mounting base; 6. Copper busbar body; 7. Aluminum bolt; 8. Slot; 9. Block; 10. Limiting baffle; 11. Movable slot; 12. Copper busbar fixing bracket; 13. Insulating post; 14. Actuating block. Detailed Implementation
[0020] To make the objectives, technical solutions, and advantages of this utility model clear and complete, the embodiments of this utility model will be further described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only some, not all, embodiments of this utility model, and are merely used to explain the embodiments of this utility model. They are not intended to limit the embodiments of this utility model. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0021] Example 1, please refer to Figure 1-Figure 5 This utility model provides a technical solution: an installation component including an installation base 5, which is disposed inside a cabinet body 1. A copper busbar mounting bracket 2 is fixedly connected to the inner surface of the cabinet body 1. A limiting plug 3 is fixedly connected to the surface of the copper busbar mounting bracket 2. The surface of the limiting plug 3 engages with the surface of a limiting slot 4, which is located inside the installation base 5. A copper busbar body 6 is disposed on the surface of the installation base 5. By setting the limiting plug 3 on the surface of the copper busbar mounting bracket 2 and then engaging the surface of the limiting plug 3 with the surface of the limiting slot 4, the installation base 5 can be inserted from the surface of the copper busbar mounting bracket 2. By providing the copper busbar body 6 on the surface of the installation base 5, the copper busbar body 6 can be detached from the surface of the copper busbar mounting bracket 2.
[0022] Example 2, see attached document Figures 1 to 5 Based on Embodiment 1, in order to enable the copper busbar body 6 to be detached from the surface of the mounting base 5, a through hole is provided on the surface of the copper busbar body 6. The through hole on the surface of the copper busbar body 6 passes through the surface of the aluminum bolt 7. The surface of the aluminum bolt 7 is screwed into the insulating post 13. The end face of the insulating post 13 is fixedly connected to the surface of the copper busbar fixing frame 12. The ends of the two side plates of the copper busbar fixing frame 12 are fixedly connected to the surface of the locking block 9. The surface of the locking block 9 is inserted into the surface of the locking groove 8. The locking groove 8 is opened inside the mounting base 5.
[0023] By fixing the end of the copper busbar fixing bracket 12 to the surface of the copper busbar body 6, and screwing the aluminum bolt 7 into the interior of the insulating post 13, the copper busbar body 6 is securely installed on the surface of the mounting base 5. When the locking block 9 is pulled upward from the surface of the locking slot 8, the copper busbar body 6 can be removed from the surface of the mounting base 5.
[0024] Example 3, refer to Appendix Figures 1 to 5Based on Embodiment 2, in order to allow the bottom surface of the limiting baffle 10 to abut against the surface of the locking block 9, the top surface of the mounting base 5 is provided with a movable groove 11, the surface of the movable groove 11 is movably connected to the limiting baffle 10, the bottom surface of the limiting baffle 10 abuts against the top surface of the locking block 9, the movable groove 11 and the locking groove 8 are connected, and the top surface of the limiting baffle 10 is provided with an integrally formed actuating block 14, the limiting baffle 10 and the actuating block 14 are arranged in an "L" shape.
[0025] By opening a movable groove 11 inside the mounting base 5, and then movably connecting the surface of the limiting baffle 10 to the inside of the movable groove 11, when the toggle block 14 on the surface of the limiting baffle 10 is moved, the bottom surface of the limiting baffle 10 can abut against the surface of the locking block 9, so the locking block 9 is locked on the surface of the locking groove 8, thereby allowing the copper busbar body 6 to be securely locked on the surface of the copper busbar mounting bracket 2 for support and installation.
[0026] Example 4: A high-current output copper busbar for server racks, including mounting components.
[0027] In actual use, by setting a limiting plug 3 on the surface of the copper busbar mounting bracket 2, and then snapping the surface of the limiting plug 3 onto the surface of the limiting slot 4, the mounting base 5 can be inserted from the surface of the copper busbar mounting bracket 2. Since the copper busbar body 6 is provided on the surface of the mounting base 5, the copper busbar body 6 can be detached from the surface of the copper busbar mounting bracket 2. The end of the copper busbar fixing bracket 12 is fixedly connected to the surface of the copper busbar body 6. When the aluminum bolt 7 is screwed into the interior of the insulating post 13, the copper busbar body 6 is securely installed on the surface of the mounting base 5. When the locking block 9 is pulled upward from the surface of the slot 8, the copper busbar body 6 can be removed from the surface of the mounting base 5. By opening a movable slot 11 inside the mounting base 5, and then movably connecting the surface of the limiting baffle 10 to the inside of the movable slot 11, when the actuating block 14 on the surface of the limiting baffle 10 is moved, the bottom surface of the limiting baffle 10 can abut against the surface of the locking block 9, so the locking block 9 is locked on the surface of the slot 8, thereby allowing the copper busbar body 6 to be securely locked on the surface of the copper busbar mounting bracket 2 for support and installation.
[0028] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A mounting assembly, comprising a mounting base (5) disposed inside a cabinet body (1), characterized in that: The inner surface of the cabinet body (1) is fixedly connected to a copper busbar mounting bracket (2), and the surface of the copper busbar mounting bracket (2) is fixedly connected to a limiting plug (3). The surface of the limiting plug (3) is engaged with the surface of the limiting slot (4). The limiting slot (4) is opened inside the mounting base (5), and the surface of the mounting base (5) is provided with a copper busbar body (6).
2. The mounting assembly according to claim 1, characterized in that: The cross section of the limiting plug (3) is convex. The surface of the limiting plug (3) is in close contact with the surface of the limiting slot (4). There are two limiting slots (4), and the two limiting slots (4) are symmetrically arranged along the center point of the mounting base (5).
3. The mounting assembly according to claim 1, characterized in that: The surface of the copper busbar body (6) is provided with a through hole, and the through hole of the copper busbar body (6) passes through the surface of the aluminum bolt (7). The surface of the aluminum bolt (7) is screwed into the insulating post (13). The end face of the insulating post (13) is fixedly connected to the surface of the copper busbar fixing frame (12). The ends of the two side plates of the copper busbar fixing frame (12) are fixedly connected to the surface of the card block (9). The surface of the card block (9) is inserted into the surface of the card slot (8). The card slot (8) is opened inside the mounting base (5).
4. The mounting assembly according to claim 1, characterized in that: The top surface of the mounting base (5) is provided with a movable groove (11), and a limiting baffle (10) is movably connected to the surface of the movable groove (11). The bottom surface of the limiting baffle (10) abuts against the top surface of the locking block (9). The movable groove (11) and the locking groove (8) are connected. An integrally formed actuating block (14) is provided on the top surface of the limiting baffle (10). The limiting baffle (10) and the actuating block (14) are arranged in an "L" shape.
5. The mounting assembly according to claim 4, characterized in that: The slot (8) does not completely penetrate the top surface of the mounting base (5). The cross-section of the slot (8) is convex. The surface of the slot (8) is in close contact with the surface of the block (9).
6. The mounting assembly according to claim 1, characterized in that: The copper busbar body (6) is configured as four, and the four copper busbar bodies (6) are evenly distributed at equal intervals on the surface of the copper busbar mounting frame (2).
7. A high-current output copper busbar for server racks, characterized in that: Includes the installation component described in any one of claims 1-6 above.