Novel network cabinet of data center
By introducing a motor-driven cooling mechanism and adjustable sliding components into the network cabinet, the problems of heat dissipation difficulties and space adjustment are solved, thereby improving the cabinet's heat dissipation efficiency and capacity.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FOSHAN ZHONGCHUANGXIN VENTILATION SYSTEM CO LTD
- Filing Date
- 2025-05-23
- Publication Date
- 2026-05-01
AI Technical Summary
Existing network cabinets have difficulty dissipating heat under natural wind conditions and cannot adjust their internal space to accommodate different sized cabinets and electronic components, resulting in reduced capacity.
A heat dissipation mechanism with motor-driven fan blades and an adjustable sliding component was designed to efficiently dissipate heat using natural wind, and the spacing of the shelves can be adjusted by the sliding component to accommodate different component sizes.
It achieves efficient heat dissipation under natural wind conditions and flexible adjustment of internal space, improving the rack's capacity and heat dissipation effect.
Smart Images

Figure CN224192309U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of network cabinet technology, specifically relating to a new type of network cabinet for data centers. Background Technology
[0002] A network cabinet is a mounting box used to assemble and install panels, plug-ins, boxes, electronic components, devices, and mechanical parts and components into a whole.
[0003] Chinese patent application CN202421151786.2 discloses a novel network cabinet for data centers, comprising a top plate, a bottom plate, and two front uprights and two rear uprights fixedly connected between the two and symmetrically arranged. Inner crossbeams are fixedly connected to the left and right sides of the opposite side of the top and bottom plates. Side crossbars are horizontally fixedly connected between the middle of the front and rear uprights on the same side. U-shaped uprights are vertically fixedly connected to the inner rear ends of the front and rear uprights. A middle upright is vertically fixedly connected to the middle of the side crossbars. The upper and lower ends of the front uprights, rear uprights, U-shaped uprights, and middle uprights are fixedly connected to the inner crossbeams. This application optimizes the traditional frame welding method to a nested welding method, making the cabinet integrally formed, more stable and less prone to deformation, and with a neat and aesthetically pleasing appearance.
[0004] 1. The aforementioned patent has the problem of not being able to dissipate heat inside the cabinet. Although the device is equipped with heat dissipation holes, heat dissipation is difficult without natural wind, which affects the operation of internal components. 2. The aforementioned patent has the problem of not being able to adjust the internal space. The network cabinet needs to house plug-in boxes and some large cabinets. The inability to adjust the space size will reduce the capacity. Utility Model Content
[0005] To address the problems mentioned in the background section, this invention provides a novel network cabinet for data centers, featuring heat dissipation and cooling while increasing capacity.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a novel network cabinet for a data center, comprising a cabinet body, a cabinet door on one side of the cabinet body, an observation window on the side of the cabinet door, a back panel on the side of the cabinet body away from the cabinet door, a heat dissipation mechanism on the outer side of the back panel, a top plate on the top of the cabinet body, casters on the bottom of the cabinet body, a fixing plate on the inner side of the cabinet body, a sliding assembly on the outer side of the fixing plate, and a storage plate on the side of the sliding assembly.
[0007] Preferably, the heat dissipation mechanism includes a motor, fan blades, an air inlet, and a disassembly mechanism. The outer side of the motor is fixedly connected to the back plate, the fan blades are fixedly connected to the motor shaft, an air inlet is provided on the side of the back plate near the motor, and disassembly mechanisms are provided at the upper and lower ends of the outer side of the back plate.
[0008] Preferably, the disassembly mechanism includes a grooved plate, a square hole, a connecting beam, and a sealing strip. One side of the grooved plate is fixedly connected to the main body of the cabinet. A square hole is provided on the outer side of the back panel near the grooved plate. A connecting beam is provided on the top of the grooved plate. A sealing strip is provided around the outer perimeter of the main body of the cabinet.
[0009] Preferably, a support plate is fixedly connected to the side of the back plate away from the motor, and a protective plate is fixedly connected to one side of the support plate.
[0010] Preferably, the sliding assembly includes a slot, a pulley, a groove, and a fixing frame. The fixing plate has a slot on its outer side, a pulley is provided on the inner side of the slot, a groove is provided on the side of the shelf near the pulley, and a fixing frame is fixedly connected to the outer side of the fixing plate above the groove.
[0011] Preferably, a pin is provided on the inner side of the fixing frame, and a pin hole is provided on the inner side of the slide groove below the pin.
[0012] Compared with the prior art, the beneficial effects of this utility model are:
[0013] 1. This utility model is equipped with a heat dissipation mechanism. The motor is fixed on the back plate and located at the back of the main body of the cabinet. During installation, the side of the motor needs to be against the wall. The motor drives the fan blades to rotate, and natural air enters the main body of the cabinet through the air inlet, accelerating the internal air circulation. Because the air blowing direction is directly towards the back of the component wiring, the heat dissipation effect will be greatly increased. The disassembly mechanism facilitates the disassembly and assembly of the back plate, making it easy to clean the inside of the main body of the cabinet. By blowing natural air in from the back by the motor, the internal heat dissipation and cooling of the main body of the cabinet can be achieved.
[0014] 2. This utility model is equipped with a sliding assembly. The insert box and electronic components are placed on the shelf. The required distance between the two shelves is estimated by the height of the electronic components. The shelf is inserted into the slot and slides in the groove by the pulley to connect the shelf to the fixed plate. After the shelf is stable, the fixed frame is aligned with the pin hole, and the pin is inserted into the pin hole from top to bottom to strengthen the connection between the shelf and the fixed plate. By inserting the shelf into the slot, the distance of the shelf can be changed at any time according to the height of the components, so that more components can be accommodated. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of this utility model;
[0016] Figure 2This is a schematic diagram of the internal structure of the main body of the cabinet of this utility model;
[0017] Figure 3 This is a schematic diagram of the heat dissipation mechanism of this utility model;
[0018] Figure 4 This is a schematic diagram of the disassembly mechanism of this utility model;
[0019] Figure 5 This is a schematic diagram of the sliding component of this utility model;
[0020] In the diagram: 1. Cabinet body; 2. Back panel; 3. Heat dissipation mechanism; 31. Motor; 32. Fan blades; 33. Air inlet; 34. Disassembly mechanism; 341. Grooved plate; 342. Square hole; 343. Connecting beam; 344. Sealing strip; 35. Support plate; 36. Protective plate; 4. Fixing plate; 5. Sliding assembly; 51. Slot; 52. Pulley; 53. Slide groove; 54. Pin; 55. Fixing frame; 56. Pin hole; 6. Shelf; 7. Casters; 8. Cabinet door; 9. Observation window; 10. Top plate. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] Example 1
[0023] Please see Figure 1-5 The present invention provides the following technical solution: a novel network cabinet for a data center, comprising a cabinet body 1, a cabinet door 8 on one side of the cabinet body 1, an observation window 9 on the side of the cabinet door 8, a back panel 2 on the side of the cabinet body 1 away from the cabinet door 8, a heat dissipation mechanism 3 on the outer side of the back panel 2, a top plate 10 on the top of the cabinet body 1, casters 7 on the bottom of the cabinet body 1, a fixing plate 4 on the inner side of the cabinet body 1, a sliding assembly 5 on the outer side of the fixing plate 4, and a shelf 6 on the side of the sliding assembly 5.
[0024] Specifically, the heat dissipation mechanism 3 includes a motor 31, a fan blade 32, an air inlet 33, and a disassembly mechanism 34. The outer side of the motor 31 is fixedly connected to the back plate 2, and the fan blade 32 is fixedly connected to the shaft of the motor 31. An air inlet 33 is provided on the side of the back plate 2 near the motor 31. The disassembly mechanism 34 is provided at the upper and lower ends of the outer side of the back plate 2.
[0025] By adopting the above technical solution, the motor 31 is fixed on the back plate 2 and located at the back of the main body 1 of the cabinet. During installation, one side of the motor 31 needs to be against the wall. The motor 31 drives the fan blade 32 to rotate, and natural air enters the main body 1 of the cabinet through the air inlet 33, accelerating the internal air circulation. Because the air blowing direction is directly towards the back of the component wiring, the heat dissipation effect will be greatly increased. The disassembly mechanism 34 facilitates the disassembly and assembly of the back plate 2 and facilitates the cleaning of the inside of the main body 1 of the cabinet.
[0026] Specifically, the disassembly mechanism 34 includes a grooved plate 341, a square hole 342, a connecting beam 343, and a sealing strip 344. One side of the grooved plate 341 is fixedly connected to the cabinet body 1. A square hole 342 is provided on the outer side of the back panel 2 near the grooved plate 341. A connecting beam 343 is provided on the top of the grooved plate 341. A sealing strip 344 is provided around the outer perimeter of the cabinet body 1.
[0027] By adopting the above technical solution, the top of the grooved plate 341 is provided with a groove, and the bottom sides of the connecting beam 343 are also provided with grooves. In use, the back plate 2 is inserted into the grooved plate 341 through the square hole 342, and the connecting beam 343 is inserted above the grooved plate 341 to connect the back plate 2 to the cabinet body 1. The sealing strip 344 is adhered to the gap between the back plate 2 and the cabinet body 1.
[0028] Specifically, a support plate 35 is fixedly connected to the side of the back plate 2 away from the motor 31, and a protective plate 36 is fixedly connected to one side of the support plate 35.
[0029] By adopting the above technical solution, the protective plate 36 has a round hole on its side, which can prevent the fan blade 32 from getting caught in the wire without affecting the heat dissipation function.
[0030] In this embodiment, the motor 31 is connected to an external power source. The cabinet body 1 can hold plug-ins, boxes, and electronic components. The cabinet body 1 is moved by casters 7. The interior of the cabinet body 1 can be observed through the observation window 9 on the surface of the cabinet door 8. Electronic components can be placed on the top of the shelves 6. The distance between the shelves 6 can be changed by the sliding assembly 5. The motor 31 is fixed to the back panel 2, located at the back of the cabinet body 1. During installation, one side of the motor 31 needs to be against a wall. The motor 31 drives the fan blades 32 to rotate, and natural air enters the cabinet body 1 through the air inlet 33, accelerating internal air circulation. (The last sentence appears to be incomplete and possibly refers to a different concept: "because the wind direction...") The backplate 2 is positioned directly opposite the back of the component to facilitate wiring, thus greatly enhancing heat dissipation. The top of the slotted plate 341 has a slot, and the bottom sides of the connecting beam 343 also have slots. In use, the backplate 2 is inserted into the slotted plate 341 through the square hole 342, and the connecting beam 343 is inserted above the slotted plate 341 to connect the backplate 2 to the main body of the cabinet 1. The sealing strip 344 is bonded to the gap between the backplate 2 and the main body of the cabinet 1. The protective plate 36 has round holes on its side, which can prevent the fan blades 32 from getting caught in the wires without affecting the heat dissipation function. Natural air is blown in from the back by the motor 31, which can dissipate heat and cool the inside of the main body of the cabinet 1.
[0031] Example 2
[0032] The difference between this embodiment and embodiment 1 is that the sliding assembly 5 includes a slot 51, a pulley 52, a groove 53 and a fixing frame 55. The fixing plate 4 has a slot 51 on its outer side, a pulley 52 on its inner side, a groove 53 on the side of the shelf 6 near the pulley 52, and a fixing frame 55 is fixedly connected to the outer side of the fixing plate 4 above the groove 53.
[0033] By adopting the above technical solution, the insert box and electronic components are placed on the shelf 6. The required distance between the two shelf 6 is estimated by the height of the electronic components. The shelf 6 is inserted into the slot 51 and slides in the slide groove 53 by the pulley 52, so that the shelf 6 can be connected to the fixing plate 4.
[0034] Specifically, a pin 54 is provided on the inner side of the fixed frame 55, and a pin hole 56 is provided on the inner side of the slide groove 53 below the pin 54.
[0035] By adopting the above technical solution, after the placement plate 6 is stable, align the fixing frame 55 with the pin hole 56, and insert the pin 54 into the pin hole 56 from top to bottom to strengthen the connection between the placement plate 6 and the fixing plate 4.
[0036] In this embodiment, the insert box and electronic components are placed on the shelf 6. The required distance between the two shelf 6s is estimated based on the height of the electronic components. The shelf 6 is inserted into the slot 51 and slides in the groove 53 via the pulley 52 to connect the shelf 6 to the fixing plate 4. After the shelf 6 is stable, the fixing frame 55 is aligned with the pin hole 56, and the pin 54 is inserted into the pin hole 56 from top to bottom to reinforce the connection between the shelf 6 and the fixing plate 4. By inserting the shelf 6 into the slot 51, the distance of the shelf 6 can be changed at any time according to the height of the components, so that more components can be accommodated.
[0037] The structure and operating principle of the cabinet body 1, casters 7 and top plate 10 in this utility model have been disclosed in a novel network cabinet for data centers disclosed in Chinese patent application number CN202421151786.2.
[0038] The working principle and usage process of this utility model are as follows: When using this utility model, the motor 31 is connected to an external power source. The cabinet body 1 can hold plug-ins, boxes, and electronic components. The cabinet body 1 is moved by casters 7. The interior of the cabinet body 1 can be observed through the observation window 9 on the surface of the cabinet door 8. Electronic components can be placed on the top of the shelf 6. The motor 31 is fixed to the back plate 2, located at the back of the cabinet body 1. During installation, one side of the motor 31 needs to be against a wall. The motor 31 drives the fan blades 32 to rotate, and natural air enters the cabinet body 1 through the air inlet 33, accelerating internal air circulation. Because the airflow direction is directly towards the back of the component's wiring, the heat dissipation effect is greatly increased. The slotted plate 341 has a slot at the top, and the connecting beam 343 also has slots on both sides of its bottom. In use, the back plate 2 is inserted into the slotted plate 341 through the square hole 342, and the connecting beam 343 is inserted above the slotted plate 341. The back panel 2 can be connected to the main body 1 of the cabinet. The sealing strip 344 is glued to the gap between the back panel 2 and the main body 1 of the cabinet. The protective plate 36 has a round hole on the side, which can prevent the fan blade 32 from getting caught in the wires without affecting the heat dissipation function. Natural air is blown in from the back by the motor 31 to dissipate heat and cool the inside of the main body 1 of the cabinet. The plug box and electronic components are placed on the shelf 6. The distance between the two shelf 6 is estimated by the height of the electronic components. The shelf 6 is inserted into the slot 51 and slides in the slide groove 53 by the pulley 52 to connect the shelf 6 to the fixing plate 4. After the shelf 6 is stable, the fixing frame 55 is aligned with the pin hole 56. The pin 54 is inserted into the pin hole 56 from top to bottom to strengthen the connection between the shelf 6 and the fixing plate 4. By inserting the shelf 6 into the slot 51, the distance of the shelf 6 can be changed at any time according to the height of the components, so that more components can be accommodated.
[0039] 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 novel network cabinet for a data center, comprising a cabinet body (1), characterized in that: The cabinet body (1) has a cabinet door (8) on one side, an observation window (9) on the side of the cabinet door (8), a back panel (2) on the side of the cabinet body (1) away from the cabinet door (8), a heat dissipation mechanism (3) on the outside of the back panel (2), a top plate (10) on the top of the cabinet body (1), casters (7) on the bottom of the cabinet body (1), a fixing plate (4) on the inside of the cabinet body (1), a sliding assembly (5) on the outside of the fixing plate (4), and a shelf (6) on the side of the sliding assembly (5).
2. The novel network cabinet for a data center according to claim 1, characterized in that: The heat dissipation mechanism (3) includes a motor (31), a fan blade (32), an air inlet (33), and a disassembly mechanism (34). The outer side of the motor (31) is fixedly connected to the back plate (2), and the fan blade (32) is fixedly connected to the shaft of the motor (31). An air inlet (33) is provided on the side of the back plate (2) near the motor (31). The upper and lower ends of the outer side of the back plate (2) are provided with disassembly mechanisms (34).
3. A novel network cabinet for a data center according to claim 2, characterized in that: The disassembly mechanism (34) includes a grooved plate (341), a square hole (342), a connecting beam (343), and a sealing strip (344). One side of the grooved plate (341) is fixedly connected to the cabinet body (1). A square hole (342) is provided on the outer side of the back plate (2) near the grooved plate (341). A connecting beam (343) is provided on the top of the grooved plate (341). A sealing strip (344) is provided around the outer perimeter of the cabinet body (1).
4. A novel network cabinet for a data center according to claim 2, characterized in that: A support plate (35) is fixedly connected to the side of the back plate (2) away from the motor (31), and a protective plate (36) is fixedly connected to one side of the support plate (35).
5. A novel network cabinet for a data center according to claim 1, characterized in that: The sliding assembly (5) includes a slot (51), a pulley (52), a groove (53), and a fixing frame (55). The fixing plate (4) has a slot (51) on its outer side, a pulley (52) on the inner side of the slot (51), a groove (53) on the side of the shelf (6) near the pulley (52), and a fixing frame (55) is fixedly connected to the outer side of the fixing plate (4) above the groove (53).
6. A novel network cabinet for a data center according to claim 5, characterized in that: The inner side of the fixed frame (55) is provided with a pin (54), and the inner side of the slide groove (53) is provided with a pin hole (56) on the side below the pin (54).
Citation Information
Patent Citations
Novel network cabinet for data center
CN222638864U