Data center rack assembly support with l-shaped sheet metal connection
Patent Information
- Application Number
- CN202522486976.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-24
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-11-24
AI Technical Summary
1、本实用新型在后期因上方机柜数量增加,或者机柜内部设备增加,以此需要提高其承载能力时,则将副支撑件嵌至相应的支架内,先将上下方的连接架展至水平状态后,将其横向移动,从而将端部的插接端插接至相邻上支撑竖梁侧壁上的插孔内,以此进行连接,之后再将同侧的限位板向端部滑动,以此将其表面的限位块卡至相邻的连接架和端架之间,从而对连接架进行限位,随后便可旋转转筒,使其带动外壁的固定架旋转至两个限位板之间,以此将限位板进行支撑限位,随后便可旋转螺纹环,使其螺纹套接至转筒的外壁,从而完成装配固定,无需使用焊接、螺栓等需要工具的固定结构,用户可在后期自行装配;
Smart Images

Figure CN224760477U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of computer room facilities technology, and in particular to a data center raised floor anti-vibration cabinet assembly bracket with L-shaped sheet metal connection. Background Technology
[0002] In data center operation, server racks need to be fixed to the raised floor area by mounting brackets to achieve neat placement of equipment. Currently used server rack mounting brackets are mostly designed with fixed load-bearing capacity. When the number of server racks increases or the internal equipment of the server racks is expanded, welding or additional bolts and other connecting parts are required to enhance the load-bearing capacity. These procedures are cumbersome and require specialized tools, making them difficult for users to complete quickly on their own. Users often need to contact the seller for secondary assembly.
[0003] Therefore, a rack mounting bracket with stable structure, flexible load-bearing capacity and convenient installation is designed to solve the above-mentioned problems in the existing technology. Utility Model Content
[0004] This utility model provides a data center raised floor anti-vibration cabinet assembly bracket with L-shaped sheet metal connection, the purpose of which is to solve the shortcomings of the existing technology, such as fixed support capacity and inconvenience of later adjustment.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: Data center raised floor anti-vibration cabinet assembly bracket with L-shaped sheet metal connection, including: Multiple pillars arranged in a matrix; Multiple upper support beams and multiple lower support beams are all located between multiple columns on the same side in the transverse direction and are respectively located on the upper and lower sides; Multiple upper support vertical beams are fixedly connected between two adjacent upper support horizontal beams above; Multiple lower support vertical beams are fixedly connected between two adjacent lower support horizontal beams below; Multiple L-shaped sheet metal plates are fixed between the column and the upper support beam; Multiple auxiliary support components, each including a main frame and end frames fixed to both ends of the main frame. The side walls of the end frames are provided with transverse sliding holes, and the two ends of the end frames are provided with connecting frames. The connecting frames are fixed with movable ends that cooperate with the transverse sliding holes. The lower support vertical beam and the upper support vertical beam are provided with insertion holes, and the ends of the connecting frames are fixed with insertion ends that are inserted into the insertion holes.
[0006] Preferably, the lower support crossbeam and the lower support vertical beam are connected to the ground via a Z-shaped bracket and bolts.
[0007] Preferably, adjacent horizontal beams, vertical beams and columns are connected by triangular brackets and bolts.
[0008] Preferably, the horizontal section of the L-shaped sheet metal plate is connected to the upper support vertical beam and the upper support horizontal beam by bolts. The inner side of the vertical section is in contact with the side wall of the upper support horizontal beam, and the outer side is provided with an integral connecting end. The upper support horizontal beams of adjacent brackets overlap the same horizontal section of the L-shaped sheet metal plate to achieve transition.
[0009] Preferably, the same inclined support frame is provided between two adjacent support columns, and the inclined support frame is connected to the support column by a fixing hoop to improve the support's resistance to lateral displacement.
[0010] Preferably, the auxiliary support further includes a limiting plate slidably sleeved on the main frame, the main frame is fixedly connected to a limiting block inserted between the connecting frame and the end frame, the main frame has a vertical sliding hole, and the limiting plate is fixedly connected to a sliding rod located in the vertical sliding hole; The limiting block can limit and fix the connecting frame.
[0011] Preferably, the auxiliary support further includes a rotating cylinder and a fixed frame fixed to the outer wall of the rotating cylinder. The main frame is cylindrical in the middle, the rotating cylinder is rotatably sleeved on the outside of the cylindrical shape, and threaded rings are threaded on both sides of the cylindrical shape. The rotating drum causes the fixed frame to abut against the limiting plate, and the rotating drum is then fixed by a threaded ring to complete the support of the limiting plate.
[0012] This utility model has the following beneficial effects: 1. When the load-bearing capacity needs to be increased due to the increase in the number of upper cabinets or the increase in equipment inside the cabinets, the auxiliary support is embedded in the corresponding bracket. First, the upper and lower connecting frames are unfolded to a horizontal state and then moved laterally so that the end plug-in end is inserted into the plug hole on the side wall of the adjacent upper support vertical beam to make a connection. Then, the limiting plate on the same side is slid to the end so that the limiting block on its surface is locked between the adjacent connecting frame and the end frame to limit the connecting frame. Then, the rotating cylinder can be rotated so that it drives the fixing frame on the outer wall to rotate between the two limiting plates to support and limit the limiting plates. Then, the threaded ring can be rotated so that its thread is threaded onto the outer wall of the rotating cylinder to complete the assembly and fixation. No welding, bolts or other tool-required fixing structures are required. Users can assemble it themselves in the later stage. 2. This utility model uses matrix-arranged pillars as basic support, combined with the frame structure formed by the upper and lower horizontal and vertical beams, and also sets up diagonal support frames, which can effectively distribute the force on each component, ensure its overall lateral displacement resistance and structural stability, thereby resisting the action of external forces such as earthquakes. 3. This utility model uses an L-shaped sheet metal plate to be fixedly connected to the upper support beam and vertical beam, so that adjacent supports can share a single L-shaped sheet metal plate, achieving a stable transition between adjacent supports, thereby ensuring the convenience of on-site assembly and subsequent expansion. 4. This utility model is equipped with an auxiliary support component that can be added later. When it is necessary to increase the load-bearing capacity, the auxiliary support component can be installed into the bracket through a simple operation. No welding or professional tools are required. Users can directly complete the assembly themselves, so as to flexibly adjust the support strength according to actual needs and adapt to different cabinets. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the main structure of this utility model; Figure 2 This utility model Figure 1 Enlarged view of the structure of section A; Figure 3 This is a schematic diagram of the main structure of the secondary support component of this utility model; Figure 4 This is an exploded structural diagram of the secondary support component of this utility model; Figure 5 for Figure 4 Enlarged view of the structure of part A in the middle.
[0014] In the diagram: 1. Support column; 2. Lower support crossbeam; 3. Lower support vertical beam; 4. Diagonal support frame; 5. Insertion hole; 6. Upper support vertical beam; 7. Upper support crossbeam; 8. Secondary support component; 9. L-shaped sheet metal plate; 10. Connecting end; 11. Connecting frame; 12. Limiting plate; 13. Fixing frame; 14. Main frame; 15. Rotary cylinder; 16. Insertion end; 17. Threaded ring; 18. Cylindrical shape; 19. Movable end; 20. End frame; 21. Horizontal sliding hole; 22. Limiting block; 23. Sliding rod; 24. Vertical sliding hole. Detailed Implementation
[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0016] In Example 1: Reference Figure 1 The assembly bracket includes components such as column 1, lower support beam 2, lower support vertical beam 3, upper support beam 7, upper support vertical beam 6, L-shaped sheet metal plate, secondary support component 8, and diagonal support frame 4.
[0017] Multiple support columns 1 are set up and evenly distributed in a matrix arrangement to form the basic support structure of the support frame. Multiple lower support beams 2 are set up. Each lower support beam 2 is connected to the end of multiple support columns 1 on the same side of the transverse direction and is located below the support columns 1. Correspondingly, multiple upper support beams 7 are also provided, and they correspond vertically to the lower support beams 2, connecting to the ends of multiple support columns 1 on the same horizontal side, and located above the support columns 1. Multiple lower support vertical beams 3 are provided. Each lower support vertical beam 3 is connected between two adjacent lower support horizontal beams 2 below, and together with the lower support horizontal beams 2, they form the lower frame of the support. Multiple upper support vertical beams 6 are provided, and each upper support vertical beam 6 is connected between two adjacent upper support horizontal beams 7 above. Together with the upper support horizontal beams 7, they form the upper frame of the bracket. The upper frame is used to support equipment such as cabinets.
[0018] The lower support beam 2 and the lower support vertical beam 3 are fixedly connected to the ground by a Z-shaped bracket and bolts. Adjacent beams, vertical beams and columns 1 are connected by triangular brackets and bolts to ensure the structural strength of the connection points of each component and improve the overall seismic performance.
[0019] refer to Figure 2 Multiple L-shaped sheet metal plates 9 are provided and installed between the support column 1 and the upper support beam 7. The horizontal section of the L-shaped sheet metal plate 9 is fixedly connected to the adjacent upper support vertical beam 6 and upper support horizontal beam 7 by bolts. The inner side of its vertical section is attached to the side wall of the upper support horizontal beam 7 to ensure the firmness of the connection. The outer side of the vertical section of the L-shaped sheet metal plate 9 has an integrally formed connecting end 10. The surface of the connecting end 10 is provided with mounting holes for overlapping and connecting the external beam. The upper support beams 7 of adjacent brackets overlap on the transverse section of the same L-shaped sheet metal plate 9, realizing the connection and splicing between adjacent brackets and ensuring the consistency and stability of the overall layout.
[0020] refer to Figure 1 A common inclined support frame 4 is set between two adjacent support columns 1. The inclined support frame 4 is connected and fixed to the support column 1 by a fixing hoop. It is used to improve the overall lateral displacement resistance and seismic performance of the support and avoid structural deformation under the action of external forces such as earthquakes.
[0021] refer to Figures 3-5 The auxiliary support component 8 includes a main frame 14, two end frames 20, two connecting frames 11, two limiting plates 12, a rotating cylinder 15, and two fixing frames 13; Two end frames 20 are fixedly installed at both ends of the main frame 14. Both sides of the side wall of the end frame 20 are provided with transverse sliding holes 21. The connecting frame 11 is set at both ends of the end frame 20. The side wall of the connecting frame 11 is fixedly installed with a movable end 19. The movable end 19 cooperates with the transverse sliding hole 21, so that the connecting frame 11 can move along the transverse sliding hole 21. The side walls of the lower support vertical beam 3 and the upper support vertical beam 6 are provided with multiple insertion holes 5. The end of the connecting frame 11 is fixedly installed with a plug-in end 16. The plug-in end 16 can cooperate with the insertion hole 5 to achieve plug-in fixation. The limiting plate 12 is slidably sleeved on the outer wall of the main frame 14. Two limiting blocks 22 are fixedly installed on the surface of the main frame 14 near the connecting frame 11 on the same side. The limiting blocks 22 can be inserted between the adjacent connecting frame 11 and the end frame 20 to limit the connecting frame 11. Vertical sliding holes 24 are opened at both ends of the side wall of the main frame 14. A sliding rod 23 is fixedly installed inside the limiting plate 12. The sliding rod 23 is located inside the vertical sliding hole 24, so that the limiting plate 12 can slide along the length direction of the main frame 14. The middle part of the main frame 14 is set as a cylinder 18. The rotating cylinder 15 is rotatably sleeved on the middle position of the outer wall of the cylinder 18. Two fixing brackets 13 are respectively fixedly installed on both sides of the outer wall of the rotating cylinder 15. The two ends of the fixing brackets 13 can abut against the limiting plate 12. Both sides of the outer wall of the cylinder 18 are threaded with threaded rings 17. The threaded rings 17 can be threaded on the outer wall of the rotating cylinder 15 to fix the rotating cylinder 15.
[0022] When the number of upper cabinets increases or the number of internal equipment in the cabinets increases and it is necessary to increase the load-bearing capacity of the bracket, the secondary support 8 can be installed into the corresponding bracket. Specifically, first unfold the upper and lower connecting frames 11 to a horizontal state, then push the connecting frames 11 to move laterally along the transverse sliding hole 21, and insert the plug end 16 at the end of the connecting frame 11 into the plug hole 5 on the side wall of the adjacent upper support vertical beam 6 or lower support vertical beam 3 to complete the initial connection. Then, the limiting plate 12 on the same side is slid along the main frame 14 toward the end, so that the limiting block 22 on the main frame 14 is engaged between the adjacent connecting frame 11 and the end frame 20, thereby limiting and fixing the connecting frame 11 to prevent it from moving laterally. Then, the rotating cylinder 15 is rotated, which drives the fixing frame 13 on the outer wall of the rotating cylinder 15 to rotate between the two limiting plates 12. The fixing frame 13 is used to support and limit the limiting plate 12 to prevent it from sliding. Finally, the threaded rings 17 on both sides of the outer wall of the cylindrical 18 are rotated so that the threaded rings 17 are threaded onto the outer wall of the rotating cylinder 15, thereby fixing the rotating cylinder 15 and realizing the overall assembly and fixing of the secondary support 8. The entire assembly process does not require welding, professional bolt tools, etc., and the user can complete the assembly by himself.
[0023] This application can be used in the field of computer room facilities, or in other fields applicable to this application.
[0024] In Example 2: The data center raised floor anti-vibration cabinet assembly bracket with L-shaped sheet metal connection is applied to the field of computer room facilities. The outer wall of the main frame 14 can be provided with limiting structures such as limiting ends (not shown in the figure) to ensure that the user can rotate the rotating drum 15 to the designated position and use it in conjunction with the threaded ring 17.
[0025] Furthermore, the insertion hole 5 can be opened on the crossbeam, and the corresponding size of the secondary support 8 can be installed according to its own needs, thereby increasing its flexibility.
[0026] The accompanying drawings in this application are for illustrative purposes only. The dimensions and shapes of the components shown are not actual limitations but are merely schematic representations. In actual implementation, the components can be reasonably configured and adjusted according to specific needs and actual conditions.
[0027] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A data center raised floor seismic-resistant cabinet assembly bracket with L-shaped sheet metal connection, characterized in that, include: Multiple pillars arranged in a matrix (1); Multiple upper support beams (7) and multiple lower support beams (2) are all located between multiple pillars (1) on the same side of the transverse direction and are located on the upper and lower sides respectively; Multiple upper support vertical beams (6) are fixed between two adjacent upper support horizontal beams (7); Multiple lower support vertical beams (3) are fixed between two adjacent lower support horizontal beams (2) below; Multiple L-shaped sheet metal plates (9) are fixed between the support column (1) and the upper support beam (7); Multiple auxiliary support components (8) are provided. The auxiliary support components (8) include a main frame (14) and end frames (20) fixed to both ends of the main frame (14). The side wall of the end frame (20) is provided with a transverse sliding hole (21). The end frames (20) are provided with connecting frames (11) at both ends. The connecting frames (11) are fixed with a movable end (19) that cooperates with the transverse sliding hole (21). The lower support vertical beam (3) and the upper support vertical beam (6) are provided with insertion holes (5). The end of the connecting frame (11) is fixed with an insertion end (16) that is inserted into the insertion hole (5).
2. The data center raised floor seismic-resistant cabinet assembly bracket with L-shaped sheet metal connection according to claim 1, characterized in that, The lower support crossbeam (2) and the lower support vertical beam (3) are connected to the ground by a Z-shaped bracket and bolts.
3. The data center raised floor seismic-resistant cabinet assembly bracket with L-shaped sheet metal connection according to claim 1, characterized in that, The adjacent horizontal beams, vertical beams and columns (1) are all connected by triangular brackets and bolts.
4. The data center raised floor seismic-resistant cabinet assembly bracket with L-shaped sheet metal connection according to claim 1, characterized in that, The horizontal section of the L-shaped sheet metal plate (9) is connected to the upper support vertical beam (6) and the upper support horizontal beam (7) by bolts. The inner side of the vertical section is attached to the side wall of the upper support horizontal beam (7), and the outer side is provided with an integral connection end (10). The upper support horizontal beams (7) of adjacent brackets overlap on the same horizontal section of the L-shaped sheet metal plate (9) to achieve transition.
5. The data center raised floor seismic-resistant cabinet assembly bracket with L-shaped sheet metal connection according to claim 4, characterized in that, The same inclined support frame (4) is provided between two adjacent support columns (1). The inclined support frame (4) is connected to the support column (1) by a fixing hoop to improve the support's resistance to lateral displacement.
6. The data center raised floor seismic-resistant cabinet assembly bracket with L-shaped sheet metal connection according to any one of claims 1 to 5, characterized in that, The auxiliary support (8) also includes a limiting plate (12) that is slidably sleeved on the main frame (14). The main frame (14) is fixedly connected to a limiting block (22) that is inserted between the connecting frame (11) and the end frame (20). The main frame (14) has a vertical sliding hole (24). The limiting plate (12) is fixedly connected to a sliding rod (23) located in the vertical sliding hole (24). The limiting block (22) can limit and fix the connecting frame (11).
7. The data center raised floor seismic-resistant cabinet assembly bracket with L-shaped sheet metal connection according to claim 6, characterized in that, The auxiliary support (8) also includes a rotating cylinder (15) and a fixed frame (13) fixed to the outer wall of the rotating cylinder (15). The main frame (14) is cylindrical (18) in the middle. The rotating cylinder (15) is rotatably sleeved on the outside of the cylindrical (18). Threaded rings (17) are threaded on both sides of the cylindrical (18). The rotating drum (15) causes the fixed frame (13) to abut against the limiting plate (12), and the rotating drum (15) is fixed by the threaded ring (17) to complete the support of the limiting plate (12).