Intelligent calculation center cabling rack

By designing a smart computing center cable tray with a semi-circular mounting groove and shock absorption and heat dissipation structure, the problems of poor cable fixing and insufficient heat dissipation were solved, achieving stable cable fixing and efficient heat dissipation, and improving maintenance convenience.

CN223625516UActive Publication Date: 2025-12-02BEIJING SMART CLOUD TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423214531.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-12-02
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

The existing cable trays in the intelligent computing center have poor cable fixation, inadequate heat dissipation, and are prone to cable misalignment due to vibration, affecting maintenance.

Method used

A cable tray consisting of side guards and mounting plates was designed. It uses a semi-circular mounting groove to store cables, combined with a shock-absorbing rod and heat dissipation groove structure. It is connected to the wall through a fixing ring, uses a rotating seat to adapt to different roof slopes, and achieves stable fixation and heat dissipation through multi-layer stacking and sliding linkage.

Benefits of technology

It achieves stable cable fixation and efficient heat dissipation, reduces cable misalignment caused by vibration, and improves maintenance convenience and overall performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an intelligent calculation center cabling rack, which relates to the technical field of cable cabling racks, and is characterized in that the intelligent calculation center cabling rack comprises side protection plates and a mounting plate, the side protection plates are located on the two sides of the mounting plate, and the inner side of the mounting plate is provided with a plurality of groups of mounting grooves used for accommodating cables. A fixing ring is fixed to the side, away from the mounting plate, of the side protection plate and used for being connected with a wall, a limiting plate is arranged on the side, away from the fixing ring, of the side protection plate, located below the mounting plate and used for supporting the mounting plate, a sliding groove is formed in the upper end of the limiting plate, and a sliding connecting rod is movably connected to the inner side of the sliding groove. A through hole is formed in the inner side of the mounting plate and connected with the sliding connecting rod in a sleeving mode, a groove is formed in the inner side of the side protection plate, a damping rod is fixed to the inner side of the groove, a spring is fixed to the outer side of the damping rod in a sleeving mode, and the damping rod is used for reducing transverse movement of the mounting plate and guaranteeing stable placement of the cable. The LED lamp has the advantages of being convenient to install and fix and improving the overall heat dissipation effect at the same time.
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Description

Technical Field

[0001] This utility model relates to the field of cable tray technology, and in particular to a cable tray for a smart computing center. Background Technology

[0002] With the development of internet technology, more and more large enterprises are building intelligent computing centers to assist in their operations. Setting up such centers allows for the efficient and concise integration of resources, facilitating diverse computing needs and reducing overall operating costs. However, most intelligent computing centers require extensive cabling to connect with various devices. Currently, existing cable management systems are often relatively sealed, resulting in poor heat dissipation. Furthermore, the relatively fixed cable routing makes them susceptible to misalignment and disorganization due to vibrations, hindering subsequent maintenance and failing to meet current practical needs. Utility Model Content

[0003] The purpose of this utility model is to provide a cable tray for a smart computing center, which solves the technical problems of poor cable fixing and poor heat dissipation in the prior art, and achieves the technical effect of convenient cable fixing and heat dissipation.

[0004] To achieve the aforementioned objectives, the technical solution adopted by this utility model is as follows:

[0005] A cable tray for a smart computing center includes side panels and a mounting plate. The side panels are located on both sides of the mounting plate and are symmetrically arranged along the axis of the mounting plate. The inner side of the mounting plate has multiple sets of mounting slots, which are arranged along the axis of the mounting plate and are semi-circular in shape for storing cables. A fixing ring is fixed to the side of the side panel away from the mounting plate for connection to a wall. A limiting plate is provided on the side of the side panel away from the fixing ring, located below the mounting plate for supporting the mounting plate. The upper end of the plate has a sliding groove, the direction of which is perpendicular to the axis of the mounting plate and opposite to it. A sliding connecting rod is movably connected to the inner side of the sliding groove. The inner side of the mounting plate has a through hole that is sleeved and connected to the sliding connecting rod. The sliding connecting rod is used to limit the lateral movement of the mounting plate. The inner side of the side guard plate has a groove, and a shock-absorbing rod is fixed inside the groove. A spring is sleeved and fixed outside the shock-absorbing rod. One end of the spring abuts against the groove, and the other end is connected to the countersunk hole of the mounting plate. The shock-absorbing rod is used to reduce the lateral movement of the mounting plate and ensure the stable placement of the cable.

[0006] As an improvement, the upper end of the side guard plate has multiple connecting grooves, which are used to install the top cover plate with the connecting plate. A rotating seat is fixed on the side of the fixing ring near the side guard plate. The rotating seat is rotatably connected to the side guard plate and is used to fix the roof with different slopes.

[0007] As an improvement, a mounting base is provided at the upper end of the mounting plate near the fixing ring. The mounting base has bolts on both sides that can be detachably connected to the mounting plate. A right-angle plate is fixed at the upper end of the mounting base. The right-angle plate is used to stack the mounting plates to achieve multi-layer fixed placement.

[0008] As an improvement, a sliding block is fixed to the side of the shock absorber rod near the mounting plate. The lower end of the mounting plate has an inclined surface, which is designed to cooperate with the sliding block. A limiting protrusion is provided at the lower end of the inclined surface. The limiting protrusion is fixedly connected to the mounting plate. The end of the limiting protrusion away from the mounting plate is hemispherical and is set towards the sliding block. One side of the sliding block has a hemispherical groove, which is used to cooperate with the placement of the limiting protrusion, facilitating the connection between the mounting plate and the side guard plate.

[0009] As an improvement, the mounting plate is provided with a heat dissipation groove on its inner side, the heat dissipation groove is located between the mounting grooves, the opening of the heat dissipation groove is set downward, a heat dissipation plate is fixed on the inner side of the heat dissipation groove, the heat dissipation plate is set along the axial direction of the mounting groove, and the heat dissipation plate is used to reduce the overall temperature of the mounting plate.

[0010] The beneficial effects of this utility model are as follows: the installation of the whole unit is facilitated by setting the side guard plate and the mounting plate, the laying of cables is facilitated by setting the mounting groove and the heat dissipation groove, and the heat dissipation plate can further improve the overall heat dissipation effect. Attached Figure Description

[0011] Figure 1 This is a top view of a smart computing center cabling frame according to the present invention;

[0012] Figure 2 for Figure 1 Enlarged structural diagram of Part A;

[0013] Figure 3 This is a left sectional view of the shock-absorbing rod portion of a cable tray for a smart computing center according to this utility model;

[0014] Figure 4 This is a left sectional view of the mounting slot plate portion of the intelligent computing center wiring rack of this utility model.

[0015] In the diagram: 1. Side guard plate; 2. Mounting plate; 3. Rotary seat; 4. Fixing ring; 5. Mounting groove; 6. Heat dissipation groove; 7. Mounting seat; 8. Shock absorber rod; 9. Sliding connecting rod; 10. Connecting groove; 11. Limiting protrusion; 12. Cable; 13. Heat dissipation plate; 14. Sliding block. Detailed Implementation

[0016] To make the content of this utility model easier to understand, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of this utility model. Identical components are represented by the same reference numerals. It should be noted that the terms "front," "rear," "left," "right," "up," and "down" used in the following description refer to directions in the accompanying drawings, while the terms "inner" and "outer" refer to directions toward or away from the geometric center of a specific component, respectively.

[0017] like Figures 1 to 4 As shown, a cable tray for a smart computing center includes a side guard plate 1 and a mounting plate 2. The side guard plates 1 are located on both sides of the mounting plate 2 and are symmetrically arranged around the axis of the mounting plate 2. The inner side of the mounting plate 2 has multiple sets of mounting grooves 5, which are arranged along the axis of the mounting plate 2. The mounting grooves 5 are semi-circular in shape and are used to store cables 12. A fixing ring 4 is fixed on the side of the side guard plate 1 away from the mounting plate 2. The fixing ring 4 is used to connect to the wall. A limiting plate is provided on the side of the side guard plate 1 away from the fixing ring 4. The limiting plate is located below the mounting plate 2 and is used to support the mounting plate 2. The upper end of the limiting plate has a sliding groove, the direction of which is perpendicular to the axis of the mounting plate 2 and opposite to it. A sliding connecting rod 9 is movably connected to the inner side of the sliding groove. The inner side of the mounting plate 2 has a through hole that is sleeved and connected to the sliding connecting rod 9. The sliding connecting rod 9 is used to limit the lateral movement of the mounting plate 2. The inner side of the side guard plate 1 has a groove, and a shock-absorbing rod 8 is fixed inside the groove. A spring is sleeved and fixed outside the shock-absorbing rod 8. One end of the spring abuts against the groove, and the other end is connected to the countersunk hole of the mounting plate 2. The shock-absorbing rod 8 is used to reduce the lateral movement of the mounting plate 2 and ensure the stable placement of the cable 12. The side guard plate 1 is made of lightweight alloy and has a hollow internal structure. The thickness of the side guard plate 1 is greater than the thickness of the mounting plate 2.

[0018] The upper end of the side guard plate 1 has multiple connecting slots 10, which are used to install the top cover plate with the connecting plate. A rotating seat 3 is fixed to the side of the fixing ring 4 near the side guard plate 1. The rotating seat 3 is rotatably connected to the side guard plate 1 and is used for fixed connections to roofs with different slopes. The upper end of the mounting plate 2 is provided with a mounting seat 7 near the fixing ring 4. The mounting seat 7 has bolts on both sides for detachable connection to the mounting plate 2. A right-angle plate is fixed to the upper end of the mounting seat 7. The right-angle plate is used to stack the mounting plates 2, achieving multi-layer fixed placement. The mounting plates 2 can be fixed by insertion using the right-angle plates. Mounting seats 7 can also be erected on top of these for further stacking, facilitating the laying of a large number of cables 12.

[0019] A sliding block 14 is fixed to the side of the shock absorber 8 near the mounting plate 2. The lower end of the mounting plate 2 has an inclined surface, which is configured to cooperate with the sliding block 14. A limiting protrusion 11 is provided at the lower end of the inclined surface. The limiting protrusion 11 is fixedly connected to the mounting plate 2. The end of the limiting protrusion 11 away from the mounting plate 2 is hemispherical and faces the sliding block 14. One side of the sliding block 14 has a hemispherical groove, which is used to cooperate with the placement of the limiting protrusion 11, facilitating the connection between the mounting plate 2 and the side guard plate 1. A heat dissipation groove 6 is provided on the inner side of the mounting plate 2. The heat dissipation groove 6 is located between the mounting grooves 5. The opening of the heat dissipation groove 6 is set downward. A heat dissipation plate 13 is fixed on the inner side of the heat dissipation groove 6. The heat dissipation plate 13 is arranged along the axial direction of the mounting groove 5. The heat dissipation plate 13 is used to reduce the overall temperature of the mounting plate 2. Three sets of shock absorber 8 are symmetrically arranged. Bolts can be installed on the inner side of the heat dissipation groove 6 to cooperate with the connecting ring to further fix the cable 12.

[0020] In use, the operator can drill holes in the corresponding mounting wall, and then fix the relative positions of the side guard plate 1 using the connecting rod and fixing ring 4. The operator can then tilt the mounting plate 2 and align the through hole and limiting protrusion with the sliding connecting rod 9 and sliding block 14 on one side respectively. The other side is then pressed down to engage with the sliding block 14 for connection and fixation. The operator can then lay the cable 12 along the mounting groove 5 on the inner side. When multi-layer connection and fixation are required, another set of mounting plates 2 can be stacked on top of the mounting base 7 and then fixed with bolts. An outer dust cover can also be installed in conjunction with the connecting groove 10. When series connection is required, connecting plates can be directly connected via the sliding connecting rod 9, and then mounting plates 2 can be installed on the upper part of the connecting plates, thus achieving a lateral connection between the mounting plates 2.

[0021] The above description is only a preferred embodiment of this utility model patent and is not intended to limit this utility model patent. Any modifications, equivalent substitutions and improvements made within the spirit and principles of this utility model patent should be included within the protection scope of this utility model patent.

Claims

1. A cable tray for a smart computing center, characterized in that, The device includes a side guard plate (1) and a mounting plate (2). The side guard plate (1) is located on both sides of the mounting plate (2) and is symmetrically arranged with respect to the axis of the mounting plate (2). The inner side of the mounting plate (2) has multiple sets of mounting grooves (5). The mounting grooves (5) are arranged along the axis of the mounting plate (2) and are semi-circular in shape for storing cables (12). A fixing ring (4) is fixed on the side of the side guard plate (1) away from the mounting plate (2). The fixing ring (4) is used to connect to the wall. A limiting plate is provided on the side of the side guard plate (1) away from the fixing ring (4). The limiting plate is located below the mounting plate (2) and is used to support the mounting plate (2). The upper end of the limiting plate has a sliding groove, the direction of which is perpendicular to the axis of the mounting plate (2) and opposite to it. A sliding connecting rod (9) is movably connected to the inner side of the sliding groove. The inner side of the mounting plate (2) has a through hole that is sleeved and connected to the sliding connecting rod (9). The sliding connecting rod (9) is used to restrict the lateral movement of the mounting plate (2). The inner side of the side guard plate (1) has a groove, and a shock-absorbing rod (8) is fixed inside the groove. A spring is sleeved and fixed outside the shock-absorbing rod (8). One end of the spring abuts against the groove, and the other end is connected to the countersunk hole of the mounting plate (2). The shock-absorbing rod (8) is used to reduce the lateral movement of the mounting plate (2) and ensure that the cable (12) is placed stably.

2. The intelligent computing center cabling frame according to claim 1, characterized in that, The upper end of the side guard plate (1) has multiple connecting grooves (10), which are used to install the upper cover plate with the connecting plate. The fixing ring (4) has a rotating seat (3) fixed on the side near the side guard plate (1). The rotating seat (3) is rotatably connected to the side guard plate (1). The rotating seat (3) is used to fix the roof with different slopes.

3. The intelligent computing center cabling frame according to claim 1, characterized in that, The mounting plate (2) has a mounting seat (7) at the upper end near the fixing ring (4). The mounting seat (7) has bolts on both sides that can be detachably connected to the mounting plate (2). A right-angle plate is fixed at the upper end of the mounting seat (7). The right-angle plate is used to stack the mounting plates (2) to achieve multi-layer fixed placement.

4. The intelligent computing center cabling frame according to claim 1, characterized in that, The shock absorber (8) has a sliding block (14) fixed on the side near the mounting plate (2). The lower end of the mounting plate (2) has an inclined surface, which is set to cooperate with the sliding block (14). The lower end of the inclined surface has a limiting protrusion (11), which is fixedly connected to the mounting plate (2). The end of the limiting protrusion (11) away from the mounting plate (2) is hemispherical and is set towards the sliding block (14). One side of the sliding block (14) has a hemispherical groove, which is used to cooperate with the placement of the limiting protrusion (11) to facilitate the connection between the mounting plate (2) and the side guard plate (1).

5. A smart computing center cabling frame according to claim 1, characterized in that, The mounting plate (2) has a heat dissipation groove (6) on its inner side. The heat dissipation groove (6) is located between the mounting grooves (5). The opening of the heat dissipation groove (6) is set downward. A heat dissipation plate (13) is fixed on the inner side of the heat dissipation groove (6). The heat dissipation plate (13) is set along the axial direction of the mounting groove (5). The heat dissipation plate (13) is used to reduce the overall temperature of the mounting plate (2).