Detachable machine room

By adopting a detachable computer room design, utilizing a computer room frame with sliding positioning and threaded connections and modular foundation wall panels, the problems of high construction costs, difficult disassembly and transportation, and waste of resources in existing computer rooms are solved, enabling rapid installation and flexible expansion.

CN224187270UActive Publication Date: 2026-05-01HUNAN DIGITAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUNAN DIGITAL TECH CO LTD
Filing Date
2025-05-29
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing methods of building computer rooms suffer from high costs, difficulties in disassembly and relocation, easy structural damage, and waste of resources.

Method used

The room features a detachable design, including a room frame, connecting mechanisms, and foundation wall panels. It allows for quick installation and disassembly through sliding positioning and threaded connections, and its modular design facilitates transportation and reuse.

Benefits of technology

It enables rapid installation and convenient dismantling of the computer room, reduces construction and transportation costs, minimizes resource waste, and enhances the functionality and practicality of the computer room.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a detachable machine room which comprises a machine room frame, the machine room frame comprises four stand columns and a plurality of cross beams connected among the stand columns, connecting mechanisms are fixedly arranged at the two ends of each stand column respectively, and the cross beams are detachably connected with the stand columns through the connecting mechanisms; the overlook surface of the connecting mechanism is L-shaped; the connecting mechanism comprises a first connecting assembly and a second connecting assembly; the first connecting assembly and the second connecting assembly are adjacently arranged and are respectively used for connecting a transverse cross beam and a longitudinal cross beam to form a right-angle node of the machine room frame; a connecting groove is formed in the first connecting assembly, a plurality of protrusions are arranged in the connecting groove, and the protrusions are symmetrically arranged close to the inner side wall of the connecting groove; the two ends of the cross beam are provided with connecting protrusions matched with the connecting grooves, the connecting protrusions are provided with sliding grooves, the sliding grooves are matched with the protrusions, and the sliding grooves are symmetrically arranged close to the outer side walls of the connecting protrusions; the arrangement mode of the second connecting assembly is consistent with that of the first connecting assembly. Rapid installation of the machine room is achieved by optimizing the structural design of the machine room.
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Description

A detachable computer room Technical Field

[0001] This utility model belongs to the field of computer room technology, specifically relating to a detachable computer room. Background Technology

[0002] Currently, there are two main methods for constructing computer rooms, both of which have significant shortcomings. Firstly, most computer rooms are built using on-site cast-in-place reinforced concrete. This method not only requires a large investment of building materials such as cement and steel bars, but also consumes considerable manpower for formwork construction, concrete pouring, and curing. The entire construction cycle is long, and costs remain high. More importantly, when a computer room needs to be relocated or its function adjusted, the reinforced concrete structure is difficult to dismantle and move. The demolition process generates a large amount of construction waste, polluting the environment, and the dismantled materials are difficult to recycle, resulting in a significant waste of resources.

[0003] Secondly, some data centers are prefabricated as a single unit at the production site before being transported to the application site. However, data centers are large and complex in structure, making them highly susceptible to structural damage due to bumps and collisions during long-distance transportation, affecting their performance and safety. Furthermore, transporting prefabricated data centers requires large transport equipment and specialized hoisting tools, resulting in high transportation costs. Additionally, the process may encounter road restrictions and insufficient site conditions, further increasing the difficulty and risk of transportation.

[0004] Therefore, there is an urgent need for a new type of detachable computer room to solve the problems of high cost, difficulty in disassembly and transportation, and easy damage to the structure in the existing construction methods. Summary of the Invention

[0005] The present invention aims to provide a detachable computer room, which, through optimized structural design, enables rapid installation, convenient disassembly and safe handling of the computer room, reduces construction and usage costs, minimizes resource waste, and enhances the functionality and practicality of the computer room.

[0006] To achieve the above objectives, the technical solution adopted by this utility model is: a detachable computer room, including a computer room frame, the computer room frame including four columns and several crossbeams connected between the columns, the two ends of the columns are respectively fixed with connecting mechanisms, and the crossbeams are detachably connected to the columns through the connecting mechanisms.

[0007] The connecting mechanism has a top view of type;

[0008] The connecting mechanism includes a first connecting component and a second connecting component; the first connecting component and the second connecting component are arranged adjacent to each other and are respectively used to connect the transverse beam and the longitudinal beam to form the right-angle node of the computer room frame;

[0009] The first connecting component has a connecting groove, and the connecting groove has a plurality of protrusions, which are symmetrically arranged against the inner sidewall of the connecting groove.

[0010] The crossbeam has connecting protrusions at both ends that are adapted to the connecting groove. The connecting protrusions are provided with sliding grooves that are adapted to the protrusions and are symmetrically arranged against the outer side wall of the connecting protrusions.

[0011] The configuration method of the second connection component is the same as that of the first connection component.

[0012] Furthermore, the cross-section of the protrusion is semi-circular or rectangular, and the groove is an arc-shaped or rectangular groove that matches the protrusion, allowing the protrusion to slide within the groove; this facilitates the rapid positioning and initial installation of the beam and column, while ensuring the stability of the connection.

[0013] Furthermore, the outer surfaces of the first connecting component and the second connecting component are provided with first threaded holes, and the number of first threaded holes is several, and the first threaded holes are symmetrically arranged on the upper and lower sides of the protrusion.

[0014] The connecting protrusion is provided with a second threaded hole, which corresponds to the first threaded hole. The crossbeam is fixedly connected to the column by a screw passing through the first threaded hole and the second threaded hole.

[0015] Furthermore, the outer surface of the computer room frame is provided with foundation wall panels, and the number of foundation wall panels is several, which are used for the foundation outer wall, bottom plate and top plate of the computer room;

[0016] The base wall panel includes a steel plate, a first foamed concrete layer, and a second foamed concrete layer; the first foamed concrete layer is disposed on the outer surface of the steel plate, and the second foamed concrete layer is disposed on the inner surface of the steel plate.

[0017] Furthermore, the steel plate is provided with a plurality of mounting holes, which are evenly distributed near the top and bottom of the steel plate;

[0018] Furthermore, the crossbeam is provided with a third threaded hole; the third threaded hole is evenly distributed along the length of the crossbeam, and the position of the third threaded hole corresponds to the position of the mounting hole; the base wall panel is detachably connected to the third threaded hole of the crossbeam by self-tapping screws passing through the mounting hole, which facilitates the installation and removal of the base wall panel.

[0019] Furthermore, the bottom of the computer room frame is provided with machine feet, which are located near the bottom of the column and fixed to the bottom of the connecting mechanism to ensure improved stability of the computer room.

[0020] Furthermore, the computer room frame is also equipped with a computer room door, which is hinged to the computer room frame.

[0021] The beneficial effects of this utility model are:

[0022] I. High efficiency and stability of the connecting mechanism: The right-angle nodes of the connection mechanism ensure the stability of the computer room frame structure and facilitate the rapid construction of a neat computer room space. The cooperation between the protrusions and the sliding grooves enables rapid positioning and initial installation of the beams and columns. The sliding design allows installers to easily align the components, significantly shortening installation time and improving efficiency. At the same time, this cooperation method ensures the initial stability of the connection, reducing shaking and deviation during installation. The combination of the first threaded hole, the second threaded hole, and the screw further securely fixes the beams and columns, preventing loosening due to vibration or other factors during use, and ensuring the safety and reliability of the computer room structure during use. This dual connection design of sliding positioning and screw fixing not only ensures the convenience of installation but also enhances the strength of the connection, making it suitable for scenarios that require multiple disassemblies and relocations.

[0023] II. Practical Advantages of the Foundation Wall Panel: The foundation wall panel adopts a combined structure of steel plate and first and second foamed granular concrete layers. The steel plate provides strong structural strength to the wall panel, effectively preventing deformation and extending the service life of the computer room. The first foamed granular concrete layer is located on the outer surface of the steel plate, and the second foamed granular concrete layer is located on the inner surface of the steel plate. These two layers have good thermal insulation and sound insulation properties, creating a suitable temperature and low noise working environment for the equipment in the computer room, improving the functionality and practicality of the computer room. In addition, the mounting holes on the steel plate correspond to the third threaded holes on the crossbeam, and the foundation wall panel can be detachably connected to the crossbeam using self-tapping screws. This design makes the installation and disassembly of the wall panel simple and quick, facilitating disassembly during transportation, saving transportation space, and allowing for rapid assembly upon arrival at the site, reducing on-site construction work, saving labor and time costs, and supporting modular production and construction.

[0024] III. Enhanced Overall Structural Performance: The base of the computer room frame is fixed to the bottom of the connecting mechanism, near the bottom of the columns, effectively improving the stability of the computer room. Even on uneven ground, the height of the base can be adjusted to maintain the computer room's level, preventing vibrations caused by uneven ground during equipment operation and ensuring normal operation. The detachable design of the entire computer room frame allows for disassembly of columns, beams, wall panels, and other components when the computer room needs to be moved, facilitating handling and transportation and significantly reducing transportation costs. Simultaneously, the reusability of components reduces resource waste, aligns with environmental protection principles, and lowers construction and operating costs. Furthermore, the modular design provides excellent scalability; beams and columns can be added or removed to adjust the computer room size and adapt to different equipment layouts and usage requirements. During maintenance and upgrades, only relevant parts need to be disassembled, eliminating the need for large-scale dismantling of the entire structure, thus improving maintenance efficiency.

[0025] Overall, the solution achieves an organic combination of disassembly, structural strength, versatility, and space efficiency, and has high engineering application value. Attached Figure Description

[0026] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0027] Figure 1 is a schematic diagram of the overall structure of the detachable computer room provided by this utility model;

[0028] Figure 2 is a schematic diagram of the overall structure of the computer room frame provided by this utility model;

[0029] Figure 3 is an exploded view of the assembly of the column, beam and connecting mechanism provided by this utility model.

[0030] Figure 4 is a schematic diagram of the assembly of the connecting protrusion and the sliding groove provided by this utility model;

[0031] Figure 5 is a schematic diagram of the assembly of the connecting groove and the structural protrusion provided by this utility model;

[0032] Figure 6 is a schematic diagram of the steel plate structure provided by this utility model;

[0033] Figure 7 is a schematic cross-sectional view of the basic wall panel provided by this utility model;

[0034] Explanation of reference numerals in the attached figures;

[0035] 1-Computer room frame; 11-Column; 12-Beam; 121-Connecting protrusion; 122-Third threaded hole; 2-Connecting mechanism; 21-First connecting component; 211-Connecting groove; 22-Second connecting component; 3-Protrusion; 4-Slide groove; 5-First threaded hole; 6-Second threaded hole; 7-Foundation wall panel; 71-Steel plate; 711-Mounting hole; 72-First foamed concrete layer; 73-Second foamed concrete layer; 8-Machine feet; 9-Computer room door. Detailed Implementation

[0036] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.

[0037] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0038] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.

[0039] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0040] In this utility model, unless otherwise explicitly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.

[0041] Example 1

[0042] Please refer to Figures 1-7. A detachable computer room includes a computer room frame 1. The computer room frame 1 includes four columns 11 and eight crossbeams 12 connected between the columns 11. A connecting mechanism 2 is fixed at both ends of the columns 11. The crossbeams 12 are detachably connected to the columns 11 through the connecting mechanism 2.

[0043] The top view of the connecting mechanism 2 is type;

[0044] The connecting mechanism 2 includes a first connecting component 21 and a second connecting component 22; the first connecting component 21 and the second connecting component 22 are arranged adjacent to each other and are used to connect the transverse beam 12 and the longitudinal beam 12 to form a right-angle node of the computer room frame 1.

[0045] The first connecting component 21 is provided with a connecting groove 211, and a plurality of protrusions 3 are provided in the connecting groove 211. The protrusions 3 are symmetrically arranged against the inner sidewall of the connecting groove 211.

[0046] The crossbeam 12 has connecting protrusions 121 at both ends that are adapted to the connecting groove 211. The connecting protrusions 121 are provided with sliding grooves 4, which are adapted to the protrusions 3. The sliding grooves 4 are symmetrically arranged against the outer side wall of the connecting protrusions 121.

[0047] The second connection component 22 is configured in the same way as the first connection component 21;

[0048] Both ends of column 11 The first connecting component 21 and the second connecting component 22 of the type connecting mechanism 2 form a sliding positioning structure by using the symmetrically arranged protrusions 3 in the connecting groove 211 and the matching sliding grooves 4 of the connecting protrusions 121 at both ends of the crossbeam 12. This can quickly complete the precise docking and preliminary installation of the transverse and longitudinal crossbeams 12 at the right-angle nodes of the column 11, significantly improving the efficiency of frame construction. The symmetrically arranged connecting components 2 ensure that the computer room frame 1 forms regular right-angle nodes, guaranteeing the stability and geometric accuracy of the overall structure. The detachable design of the beams 12 and columns 11 through the connecting mechanism 2 allows the computer room frame 1 to be disassembled into independent components, facilitating handling, transportation and reuse, realizing modular construction, greatly reducing on-site construction and resource waste during the construction process, while meeting the application requirements of flexible disassembly and rapid reconstruction of the computer room.

[0049] In this embodiment, the cross-section of the protrusion 3 is semi-circular, and the groove 4 is an arc-shaped groove that matches the protrusion 3. The protrusion 3 can slide in the groove 4. The sliding fit design of the semi-circular protrusion and the arc-shaped groove utilizes the smooth transition characteristics of the arc surface to form a guide structure without jamming when the crossbeam 12 and the column 11 are connected, which significantly reduces the alignment resistance during installation and achieves rapid sliding positioning.

[0050] In this embodiment, the outer surfaces of the first connecting component 21 and the second connecting component 22 are provided with first threaded holes 5. The number of first threaded holes 5 is several, and the first threaded holes 5 are symmetrically arranged on the upper and lower sides of the protrusion 3.

[0051] Specifically, the connecting protrusion 121 is provided with a second threaded hole 6, which corresponds to the first threaded hole 5. The crossbeam 12 is fixedly connected to the column 11 by a screw passing through the first threaded hole 4 and the second threaded hole 6. The first threaded holes 5 symmetrically arranged on the outer surfaces of the first connecting component 21 and the second connecting component 22 are connected to the second threaded holes 6 of the connecting protrusion 121 by screws, forming a double fastening structure of "sliding positioning + threaded locking". This structure can eliminate connection gaps and improve the connection strength and shear resistance of the crossbeam 12 and the column 11 through the axial tension of the screw. It can also make the force uniform and avoid stress concentration by utilizing the symmetrically distributed threaded holes to enhance durability. At the same time, the screw connection supports quick disassembly and assembly, and together with the sliding positioning, it realizes a standardized installation process, improves construction efficiency and ensures that the components can be reused. Its rigid locking characteristics can also effectively suppress loosening caused by vibration, ensuring the long-term stability and reliability of the frame. It is suitable for computer room scenarios with high requirements for connection strength and environmental stability.

[0052] In this embodiment, the outer surface of the computer room frame 1 is provided with a foundation wall panel 7. The number of foundation wall panels 7 is several, which are used as the foundation outer wall, bottom plate and top plate of the computer room.

[0053] Specifically, the foundation wall panel 7 includes a steel plate 71, a first foamed concrete layer 72, and a second foamed concrete layer 73; the first foamed concrete layer 72 is disposed on the outer surface of the steel plate 71, and the second foamed concrete layer 73 is disposed on the inner surface of the steel plate 71.

[0054] Specifically, the steel plate 71 is provided with a number of mounting holes 711, which are evenly distributed near the top and bottom of the steel plate 71;

[0055] Specifically, the crossbeam 12 is provided with a third threaded hole 122; the third threaded hole 122 is evenly distributed along the length of the crossbeam 12, and the position of the third threaded hole 122 corresponds to the position of the mounting hole 711; the base wall panel 7 is detachably connected to the third threaded hole 122 of the crossbeam 12 by passing self-tapping screws through the mounting hole 711.

[0056] The steel plate 71 serves as a supporting frame, providing a high-strength structural foundation for the base wall panel 7. This effectively resists external impacts and deformations, ensuring the stability of the computer room's external enclosure structure. The first foamed concrete layer 72 and the second foamed concrete layer 73 on both the inner and outer sides form a thermal insulation and soundproofing composite layer, blocking heat conduction and absorbing noise, creating a constant-temperature, low-noise operating environment for the computer room equipment. The mounting holes 711 evenly distributed along the upper and lower edges of the steel plate 71 and the third threaded holes 122 of the crossbeam 12 are detachably connected by self-tapping screws, enabling rapid assembly and disassembly of the base wall panel 7 and the computer room frame 1. This supports modular construction, significantly reducing on-site installation time and labor costs. The detachable design allows the base wall panel 7 to be independently disassembled and transported, reducing handling volume and weight. It also supports reuse, reducing resource waste, and facilitates partial replacement or expansion of the wall panel during later maintenance, improving the flexibility and economy of the computer room.

[0057] In this embodiment, the basic wall panel 7 is fixedly installed on the top, bottom and all sides of the computer room frame 1 by self-tapping screws passing through the mounting holes 711 on the steel plate 71, and is used as the basic exterior wall, bottom plate and top plate of the computer room.

[0058] Specifically, the base wall panels 7 can be fixed together with each other using self-tapping screws or nails.

[0059] In this embodiment, the bottom of the computer room frame 1 is provided with a foot 8, which is set near the bottom of the column 11 and fixed to the bottom of the connecting mechanism 2. The foot 8 at the bottom of the computer room frame 1 is fixed to the bottom of the connecting mechanism 2 at the bottom of the column 11. It can improve the overall support stability of the computer room through its own structure and effectively distribute the frame load to the ground. At the same time, the foot 8 can adapt to different ground flatness. By adjusting or adding shims, the ground height difference can be compensated to ensure the levelness of the computer room frame. This avoids structural stress concentration or abnormal equipment operation caused by uneven ground, provides a stable installation foundation for the computer room equipment, and further enhances the applicability and reliability of the detachable computer room in various environments.

[0060] In this embodiment, the computer room frame 1 is also provided with a computer room door 9, which is hinged to the computer room frame 1.

[0061] In this embodiment, the outer surfaces of the first foamed concrete layer 72 and the second foamed concrete layer 73 are provided with a mesh fiber layer to ensure increased adhesion between the outer surface of the steel plate 71 and the first foamed concrete layer 71, and increased adhesion between the inner surface of the steel plate 71 and the second foamed concrete layer 73. This part is conventional technology in the art and will not be described in detail.

[0062] Working principle of this utility model:

[0063] I. Framework Construction and Connection Principles

[0064] Quick location:

[0065] At both ends of column 11 The type connection mechanism 2 forms a right-angle node through the first connection component 21 and the second connection component 22; the connecting protrusions 121 at both ends of the crossbeam 12 are inserted into the connecting groove 211 of the connection mechanism 2, and its sliding groove 4 slides and engages with the symmetrical protrusions 3 (semi-circular or rectangular) in the groove, so as to realize the rapid alignment and initial engagement of the transverse and longitudinal crossbeams 12 at the right angle of the column 11, and the rapid construction of the frame outline can be completed without complex measurement.

[0066] Double fastening:

[0067] After the first threaded hole 5 on the outer surface of the connecting mechanism 2 is aligned with the second threaded hole 6 of the connecting protrusion 121, the crossbeam 12 and the column 11 are locked into a rigid whole by tightening the screw through. This design first achieves sliding guidance and positioning through the structure of the protrusion 3 and the slide groove 4, and then achieves rigid stress locking through the threaded connection. This not only ensures installation efficiency, but also improves the connection strength through the double structure, ensuring that the frame does not loosen when bearing loads (such as equipment weight and wind load).

[0068] II. Wall Panel Installation and Functional Implementation Principles

[0069] Modular assembly:

[0070] The basic wall panel 7 adopts a composite structure of "steel plate 71 + double-layer foam particle concrete layer". The mounting holes 711 on the upper and lower edges of the steel plate 71 are connected to the third threaded holes 122 of the crossbeam 12 by self-tapping screws to form a standardized installation interface. The wall panel can be pre-processed in the factory and quickly fixed to the frame on site with screws, which greatly reduces the amount of on-site construction and achieves "installation and use".

[0071] Structural strength: Steel plate 71 provides impact and deformation resistance, serving as the supporting framework for the foundation wall panel 7 and ensuring the stability of the computer room's external enclosure structure.

[0072] Thermal insulation and sound insulation: The inner and outer foam particle concrete layers block the heat conduction path and absorb sound waves through the porous structure, so as to achieve constant temperature (reduce air conditioning load) and low noise environment in the computer room (reduce the impact of equipment operation noise on the outside world).

[0073] III. Disassembly and Transportation Principles

[0074] Quick Disassembly:

[0075] During disassembly, first remove the self-tapping screws to separate the foundation wall panel 7 from the server room frame 1; then unscrew the bolts to release the threaded lock between the crossbeam 12 and the column 11; finally, slide the crossbeam 12's groove 4 away from the column 11's connecting mechanism 2's protrusion 3, thus disassembling the server room frame 1 into independent components such as the column 11, crossbeam 12, and foundation wall panel 7. The entire process requires no specialized tools and can be completed by a single person, avoiding the irreversible damage of traditional welded structures.

[0076] Efficient transportation:

[0077] The disassembled components are small in size and lightweight (e.g., a single column or beam weighs ≤50kg), allowing for categorized and packaged transportation. This reduces the transportation volume by more than 70% compared to traditional fixed data centers, significantly lowering logistics costs. Upon arrival at the new site, the components are quickly reassembled using the reverse process, enabling the data center to be reused in different locations.

[0078] Flexible expansion:

[0079] The modular design of the computer room frame 1 allows for flexible changes in the size (length, width, and height) of the computer room by adding or removing beams 12 and adjusting the spacing of columns 11, adapting to different equipment layout requirements; during maintenance, partial foundation wall panels 7 or beams 12 can be disassembled individually without damaging the overall structure, improving operation and maintenance efficiency.

[0080] It should be noted that, in this document, the terms “comprising,” “including,” or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0081] This article uses specific examples to illustrate the principles and implementation methods of this utility model. The above examples are only used to help understand the method and core ideas of this utility model.

[0082] The above are merely preferred embodiments of this utility model. It should be noted that, due to the limitations of written expression, and the existence of an infinite number of specific structures, those skilled in the art can make several improvements, modifications, or variations without departing from the principle of this utility model, and can also combine the above-mentioned technical features in an appropriate manner. These improvements, modifications, variations, or combinations, or the direct application of the concept and technical solution of the utility model to other occasions without modification, should all be considered as protection of this utility model.

Claims

1. A detachable computer room, comprising a computer room frame (1), the computer room frame (1) comprising four columns (11) and a plurality of crossbeams (12) connected between the columns (11), characterized in that, The column (11) is fixedly provided with connecting mechanisms (2) at both ends, and the crossbeam (12) is detachably connected to the column (11) through the connecting mechanisms (2); the connecting mechanism (2) is shaped like a "┗" in plan view; the connecting mechanism (2) includes a first connecting component (21) and a second connecting component (22); the first connecting component (21) and the second connecting component (22) are arranged adjacent to each other and are used to connect the transverse crossbeam (12) and the longitudinal crossbeam (12) to form the right-angle node of the computer room frame (1); the first connecting component (21) is provided with A connecting groove (211) is provided with a plurality of protrusions (3) inside the connecting groove (211), the protrusions (3) being symmetrically arranged against the inner sidewall of the connecting groove (211); the two ends of the crossbeam (12) are provided with connecting protrusions (121) that are adapted to the connecting groove (211), the connecting protrusions (121) are provided with sliding grooves (4), the sliding grooves (4) are adapted to the protrusions (3), and the sliding grooves (4) are symmetrically arranged against the outer sidewall of the connecting protrusions (121); the second connecting component (22) is configured in the same way as the first connecting component (21).

2. The detachable computer room according to claim 1, characterized in that, The protrusion (3) has a semi-circular or rectangular cross-section, and the groove (4) is an arc-shaped or rectangular groove that matches the protrusion (3). The protrusion (3) can slide in the groove (4).

3. A detachable computer room according to claim 1, characterized in that, The outer surfaces of the first connecting component (21) and the second connecting component (22) are provided with first threaded holes (5). The number of first threaded holes (5) is several, and the first threaded holes (5) are symmetrically arranged on the upper and lower sides of the protrusion (3).

4. A detachable computer room according to claim 3, characterized in that, The connecting protrusion (121) is provided with a second threaded hole (6), which is provided in correspondence with the first threaded hole (5). The crossbeam (12) is fixedly connected to the column (11) by a screw passing through the first threaded hole (5) and the second threaded hole (6).

5. A detachable computer room according to claim 1, characterized in that, The outer surface of the computer room frame (1) is provided with a foundation wall panel (7), and the foundation wall panel (7) is provided in several quantities for the foundation outer wall, bottom plate and top plate of the computer room.

6. A detachable computer room according to claim 5, characterized in that, The base wall panel (7) includes a steel plate (71), a first foamed particle concrete layer and a second foamed particle concrete layer; the first foamed particle concrete layer is disposed on the outer surface of the steel plate (71) and the second foamed particle concrete layer is disposed on the inner surface of the steel plate (71).

7. A detachable computer room according to claim 6, characterized in that, The steel plate (71) is provided with a plurality of mounting holes (711), which are evenly distributed at the top and bottom of the steel plate (71).

8. A detachable computer room according to claim 7, characterized in that, The crossbeam (12) is provided with a third threaded hole (122); the third threaded hole (122) is evenly distributed along the length of the crossbeam (12), and the position of the third threaded hole (122) corresponds to the position of the mounting hole (711); the base wall panel (7) is detachably connected to the third threaded hole (122) of the crossbeam (12) by passing self-tapping screws through the mounting hole (711).

9. A detachable computer room according to claim 1, characterized in that, The bottom of the computer room frame (1) is provided with a machine foot (8), which is located near the bottom of the column (11) and is fixed to the bottom of the connecting mechanism (2).

10. A detachable computer room according to claim 1, characterized in that, The computer room frame (1) is also provided with a computer room door (9), which is hinged to the computer room frame (1).