A cabinet module and a micro module of combination thereof

CN224760519UActive Publication Date: 2026-09-15GUANGDONG HIWAVE TECH
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Patent Information

Application Number
CN202521974880.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-12
Publication Date
2026-09-15
Estimated Expiration
2035-09-12

AI Technical Summary

Technical Problem

[0003]为了克服现有技术中存在的数据中心机房内配套机柜冷气流从缝隙中流动,影响制冷效果,并且机柜现场组装方式导致机房建设周期长的问题,本实用新型的目的在于提供一种柜体模块及其组合的微模块,防止冷气流从缝隙中流动,提高制冷效果,并且实现工厂内模块化生产,缩短现场拼装时间,降低人工成本

Benefits of technology

[0012] The beneficial effects of this utility model are as follows: By setting horizontal and vertical wind deflectors inside the cabinet body, the horizontal wind deflectors seal the assembly gap between the top of the first square hole strip and the top plate, the horizontal wind deflectors seal the assembly gap between the bottom of the first square hole strip and the bottom plate, and the vertical wind deflectors seal the assembly gap between the first square hole strip and the frame. The horizontal and vertical wind deflectors effectively prevent cold air from flowing in the gaps and improve the cooling efficiency.

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Abstract

The utility model relates to data center equipment supporting cabinet technology field especially, a kind of cabinet module and the micro module of its combination;Cabinet module, including cabinet body, first square hole strip, transverse wind baffle strip, longitudinal wind baffle strip and second square hole strip, cabinet body includes bottom plate, frame, top plate, front door panel and back door panel;Frame is two ends open shape along Y direction;First square hole strip is set in frame and is close to front door panel setting, transverse wind baffle strip connects two first square hole strips adjacent, transverse wind baffle strip and bottom plate resist, transverse wind baffle strip and top plate resist, longitudinal wind baffle strip is set in the side wall of the height direction of first square hole strip and extends towards the direction away from another first square hole strip;Transverse wind baffle strip and longitudinal wind baffle strip effectively prevent cold air flow in gap flow, improve refrigeration efficiency;A kind of combined micro module, including two or more cabinet modules, meet the assembly use of different use occasions, improve the flexibility of assembly, shorten field assembly working hours.
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Description

Technical Field

[0001] This utility model relates to the field of data center equipment cabinet technology, and in particular to a cabinet module and a micro-module combining the cabinet module and its combination. Background Technology

[0002] Data center server rooms require server racks to house servers and other equipment. The number of racks varies depending on the size of the data center. Currently, server racks have the following problems: 1. Gaps created during rack assembly cause cold air to flow through the gaps, affecting cooling efficiency; 2. On-site rack installation methods result in long construction cycles and high labor costs, thus failing to meet on-site installation needs and requiring improvement. Utility Model Content

[0003] To overcome the problems in existing technologies, such as cold air flowing through gaps in the server racks within data center computer rooms, affecting cooling efficiency, and the long construction cycle caused by on-site assembly of server racks, the purpose of this utility model is to provide a cabinet module and its combination of micro-modules to prevent cold air from flowing through gaps, improve cooling efficiency, and enable modular production in the factory, shortening on-site assembly time and reducing labor costs.

[0004] To achieve the above objectives, the technical solution of this utility model is as follows: A cabinet module includes a cabinet body, at least two first square hole strips, a horizontal windbreak strip, a vertical windbreak strip, and at least two second square hole strips. The cabinet body includes a bottom plate, a frame, a top plate, a front door panel, and a rear door panel. The base plate, frame, and top plate are arranged sequentially from bottom to top. The front door panel, frame, and rear door panel are arranged sequentially along the X direction. The frame is open at both ends along the Y direction. The first square hole strip is located within the frame and is positioned close to the front door panel. The horizontal wind deflector connects two adjacent first square hole strips. The horizontal wind deflector abuts against the bottom plate and the top plate. The vertical wind deflector is located on the side wall of the first square hole strip in the height direction and extends away from the other first square hole strip. The second square hole strip is located inside the frame and is close to the rear door panel.

[0005] Furthermore, the frame is provided with a front frame, a rear frame, and several crossbars, the several crossbars being arranged in parallel, and the two ends of each crossbar being connected to the front frame and the rear frame respectively; The front door panel is rotatably connected to the front frame, and the rear door panel is rotatably connected to the rear frame.

[0006] Furthermore, the first square-hole strip is connected to the crossbar, and the two ends of the transverse windbreak strip along its length abut against the crossbar, and the two ends of the longitudinal windbreak strip along its length abut against the crossbar.

[0007] Furthermore, the frame also includes a wire guide ring, a mounting plate, and a wire tie plate, all of which are located in the rear frame.

[0008] Furthermore, both the first square hole strip and the second square hole strip include a left side plate, a main plate, and a right side plate connected in sequence. The left side plate is intersecting with the main plate, and the main plate is intersecting with the right side plate. The left side plate and the right side plate are both located on the same side of the main plate.

[0009] Furthermore, the left side panel includes a first panel, a second panel, and a third panel connected in sequence. The first panel and the second panel are connected in an L-shape, the second panel and the third panel are connected in an L-shape, and the third panel is connected to the main board in an L-shape.

[0010] Furthermore, the right side plate includes a fourth plate and a fifth plate, which are connected in an L-shape, and the fourth plate is connected to the main plate in an L-shape.

[0011] A combined micro-module, comprising a power distribution cabinet, an air conditioning cabinet, and a cabinet module, wherein the number of cabinet modules is even or odd, and adjacent cabinet modules are arranged side by side along the Y direction.

[0012] The beneficial effects of this utility model are as follows: By setting horizontal and vertical wind deflectors inside the cabinet body, the horizontal wind deflectors seal the assembly gap between the top of the first square hole strip and the top plate, the horizontal wind deflectors seal the assembly gap between the bottom of the first square hole strip and the bottom plate, and the vertical wind deflectors seal the assembly gap between the first square hole strip and the frame. The horizontal and vertical wind deflectors effectively prevent cold air from flowing in the gaps and improve the cooling efficiency.

[0013] Another beneficial effect of this utility model is that by arranging an even number or an odd number of cabinet modules side by side along the Y direction, it can meet the assembly needs of different usage scenarios, improve the flexibility of assembly, and shorten the on-site assembly time. Attached Figure Description

[0014] Figure 1a This is a three-dimensional structural diagram of the present invention; Figure 1b This is a schematic diagram of the three-dimensional disassembled structure of this utility model; Figure 1c This is a schematic diagram of the internal structure assembly state of this utility model; Figure 1d This is a schematic diagram of the internal structure of this utility model in disassembled state; Figure 1e for Figure 1d A magnified schematic diagram of part A in the middle section; Figure 1f This is a schematic diagram showing the disassembled structure of the first square hole strip, the longitudinal windbreak strip, and the transverse windbreak strip of this utility model; Figure 1g This is a three-dimensional structural diagram of the first square hole strip of this utility model; Figure 1h for Figure 1g A partially enlarged structural diagram of section B; Figure 2a This is a schematic diagram showing the splicing state of an even number of cabinet modules of this utility model; Figure 2b This is a schematic diagram showing the splicing state of an odd number of cabinet modules of this utility model.

[0015] The reference numerals in the figures include: 100—Cabinet body 11—Base plate 12—Frame 121—Front frame; 122—Rear frame; 123—Horizontal bar 124—Wire guide ring; 125—Mounting plate; 126—Wire tie plate 13—Top panel 14—Front door panel 15—Rear door panel 200—First square hole strip; 21—Left side plate; 211—First plate body 212—Second board 213—Third board 22—Main board 23—Right side panel; 231—Fourth panel; 232—Fifth panel 300—Horizontal windbreak strip; 400—Longitudinal windbreak strip; 500—Second square hole strip. Detailed Implementation

[0016] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to embodiments and accompanying drawings. The content mentioned in the embodiments is not intended to limit the present invention.

[0017] Please see Figures 1a to 1h The present invention provides a cabinet module comprising a cabinet body 100, at least two first square hole strips 200, a transverse windbreak strip 300, a longitudinal windbreak strip 400, and at least two second square hole strips 500. The cabinet body 100 includes a bottom plate 11, a frame 12, a top plate 13, a front door panel 14, and a rear door panel 15. The base plate 11, frame 12, and top plate 13 are arranged sequentially from bottom to top. The front door panel 14, frame 12, and rear door panel 15 are arranged sequentially along the X direction. The frame 12 is open at both ends along the Y direction. The first square hole strip 200 is disposed within the frame 12 and is located near the front door panel 14. The horizontal wind deflector 300 connects two adjacent first square hole strips 200. The horizontal wind deflector 300 abuts against the bottom plate 11 and the top plate 13. The vertical wind deflector 400 is disposed on the side wall in the height direction of the first square hole strip 200 and extends in a direction away from the other first square hole strip 200. The second square hole strip 500 is disposed within the frame 12 and is located near the rear door panel 15.

[0018] Specifically, in this embodiment, the base plate 11 and the frame 12 are fixedly connected by screws, the top plate 13 and the frame 12 are fixedly connected by screws, the front door panel 14 is rotatably connected to the frame 12, and the rear door panel 15 is rotatably connected to the frame 12. Two first square hole strips 200 and two second square hole strips 500 are installed inside the frame 12. The space between the first square hole strips 200 and the second square hole strips 500 is a storage space. External servers, power distribution equipment, etc., are fixed to the first square hole strips 200 and the second square hole strips 500. There are two horizontal windbreak strips 300, and one horizontal windbreak strip 300 connects the tops of the two first square hole strips 200. One horizontal baffle strip 300 abuts against the top plate 13, and another horizontal baffle strip 300 connects the bottom of the two first square hole strips 200. This horizontal baffle strip 300 abuts against the bottom plate 11. The vertical baffle strip 400 is installed on the outer side wall in the height direction of the first square hole strip 200. That is, the horizontal baffle strip 300 seals the assembly gap between the first square hole strip 200 and the bottom plate 11 and the assembly gap between the first square hole strip 200 and the top plate 13, and the vertical baffle strip 400 seals the assembly gap between the first square hole strip 200 and the frame 12, so that the cooling airflow flows in the server storage space, improves the cooling efficiency, and ensures that the server's operating temperature is within the preset range. By setting a horizontal wind baffle 300 and a vertical wind baffle 400 inside the cabinet body 100, the horizontal wind baffle 300 seals the assembly gap between the top of the first square hole strip 200 and the top plate 13, the horizontal wind baffle 300 seals the assembly gap between the bottom of the first square hole strip 200 and the bottom plate 11, and the vertical wind baffle 400 seals the assembly gap between the first square hole strip 200 and the frame 12, effectively preventing cold air from flowing in the gaps and improving the cooling efficiency.

[0019] The frame 12 is provided with a front frame 121, a rear frame 122 and a plurality of crossbars 123, the plurality of crossbars 123 are arranged in parallel, and the two ends of each crossbar 123 are respectively connected to the front frame 121 and the rear frame 122. The front door panel 14 is rotatably connected to the front frame 121, and the rear door panel 15 is rotatably connected to the rear frame 122. The metal square tube is cut into horizontal and vertical columns of different lengths. The horizontal and vertical columns are connected by welding to form the front frame 121 and the rear frame 122 with the same structure. The front frame 121 and the rear frame 122 can be processed in the factory. Then, the top, middle and bottom of the front frame 121 and the rear frame 122 are welded / screwed together by several horizontal bars 123 to form a structurally stable frame 12. Then, the front door panel 14 is connected to the front frame 121, and the rear door panel 15 is connected to the rear frame 122. This structure facilitates production, warehousing and transportation, and reduces production and transportation costs.

[0020] The first square-hole strip 200 is connected to the crossbar 123. The two ends of the transverse windbreak strip 300 in the length direction abut against the crossbar 123. The two ends of the longitudinal windbreak strip 400 in the length direction abut against the crossbar 123. The first square-hole strip 200 is longitudinally arranged to connect the crossbars 123 located at the top, middle and bottom of the frame 12. The first square-hole strip 200 is located inside the crossbar 123. The longitudinal windbreak strip 400 is located between two adjacent crossbars 123 and is connected to the first square-hole strip 200. The longitudinal windbreak strip 400 fills the gap between the first square-hole strip 200 and two adjacent crossbars 123, thus having a wind-blocking effect.

[0021] The frame 12 also includes a wire guide ring 124, a mounting plate 125, and a wire tie plate 126. The wire guide ring 124, the mounting plate 125, and the wire tie plate 126 are all located in the rear frame 122. The wire guide ring 124 binds and fixes the wires. The mounting plate 125 facilitates the installation of PDU equipment. The wire tie plate 126 organizes multiple wires and data cables in an orderly manner.

[0022] Both the first square hole strip 200 and the second square hole strip 500 include a left side plate 21, a main plate 22 and a right side plate 23 connected in sequence. The left side plate 21 and the main plate 22 are intersecting, and the main plate 22 and the right side plate 23 are intersecting. The left side plate 21 and the right side plate 23 are both located on the same side of the main plate 22. The first square hole strip 200 and the second square hole strip 500 are arranged in a U-shape to improve the deformation resistance of the first square hole strip 200 and the second square hole strip 500.

[0023] The left side panel 21 includes a first panel 211, a second panel 212, and a third panel 213 connected in sequence. The first panel 211 and the second panel 212 are connected in an L-shape, the second panel 212 and the third panel 213 are connected in an L-shape, and the third panel 213 is connected to the main panel 22 in an L-shape. The first panel 211, the second panel 212, and the third panel 213 are bent in sequence to improve the load-bearing capacity of the left side panel 21.

[0024] The right side plate 23 includes a fourth plate 231 and a fifth plate 232, which are connected in an L-shape. The fourth plate 231 is connected to the main plate 22 in an L-shape. The fourth plate 231 and the fifth plate 232 are bent in sequence to improve the load-bearing capacity of the right side plate 23.

[0025] Please see Figures 2a to 2b A combined micro-module includes a power distribution cabinet, an air conditioning cabinet, and an even or odd number of cabinet modules. Two adjacent cabinet modules are arranged side by side along the Y direction. An even or odd number of cabinet modules form a micro-module, which facilitates splicing with different numbers of power distribution cabinets or air conditioning cabinets in different application scenarios and improves the flexibility of assembly.

[0026] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of ​​this utility model. The content of this specification should not be construed as a limitation of this utility model.

Claims

1. A cabinet module, characterized in that: The cabinet includes a cabinet body (100), at least two first square hole strips (200), a horizontal windbreak strip (300), a vertical windbreak strip (400), and at least two second square hole strips (500). The cabinet body (100) includes a bottom plate (11), a frame (12), a top plate (13), a front door panel (14), and a rear door panel (15). The bottom plate (11), frame (12), and top plate (13) are arranged sequentially from bottom to top. The front door panel (14), frame (12), and rear door panel (15) are arranged sequentially along the X direction. The frame (12) is open at both ends along the Y direction. The first square hole strip (200) is located inside the frame (12). The first square hole strip (200) is located near the front door panel (14). The horizontal wind deflector strip (300) connects two adjacent first square hole strips (200). The horizontal wind deflector strip (300) abuts against the bottom plate (11) and the horizontal wind deflector strip (300) abuts against the top plate (13). The vertical wind deflector strip (400) is located on the side wall of the first square hole strip (200) in the height direction and extends in a direction away from the other first square hole strip (200). The second square hole strip (500) is located inside the frame (12) and is close to the rear door panel (15).

2. The cabinet module according to claim 1, characterized in that: The frame (12) is provided with a front frame (121), a rear frame (122) and several crossbars (123). The several crossbars (123) are arranged in parallel, and the two ends of each crossbar (123) are connected to the front frame (121) and the rear frame (122) respectively. The front door panel (14) is rotatably connected to the front frame (121), and the rear door panel (15) is rotatably connected to the rear frame (122).

3. The cabinet module according to claim 2, characterized in that: The first square hole strip (200) is connected to the crossbar (123), the two ends of the transverse wind deflector strip (300) in the length direction abut against the crossbar (123), and the two ends of the longitudinal wind deflector strip (400) in the length direction abut against the crossbar (123).

4. The cabinet module according to claim 1, characterized in that: The frame (12) also includes a wire guide ring (124), a mounting plate (125), and a wire tie plate (126), all of which are located on the rear frame (122).

5. The cabinet module according to claim 1, characterized in that: The first square hole strip (200) and the second square hole strip (500) each include a left side plate (21), a main plate (22) and a right side plate (23) connected in sequence. The left side plate (21) and the main plate (22) are intersecting. The main plate (22) and the right side plate (23) are intersecting. The left side plate (21) and the right side plate (23) are both located on the same side of the main plate (22).

6. The cabinet module according to claim 5, characterized in that: The left side panel (21) includes a first panel (211), a second panel (212), and a third panel (213) connected in sequence. The first panel (211) and the second panel (212) are connected in an L-shape, the second panel (212) and the third panel (213) are connected in an L-shape, and the third panel (213) is connected in an L-shape to the main panel (22).

7. The cabinet module according to claim 5, characterized in that: The right side plate (23) includes a fourth plate (231) and a fifth plate (232), which are connected in an L-shape. The fourth plate (231) is connected to the main plate (22) in an L-shape.

8. A combined micro-module, characterized in that: It includes a power distribution cabinet, an air conditioning cabinet, and a cabinet module as described in any one of claims 1-7, wherein the number of cabinet modules is an even number or an odd number, and two adjacent cabinet modules are arranged side by side along the Y direction.