Data center machine room ceiling conversion layer

By using a support frame structure consisting of bottom steel, vertical steel, bolts, and diagonal braces in the data center server room, the problem of complex installation of cable trays under the ceiling was solved, achieving a stable and simplified construction process and material protection.

CN223805755UActive Publication Date: 2026-01-16ZHEJIANG POST & TELECOMM
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Patent Information

Application Number
CN202520204067.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2026-01-16
Estimated Expiration
2035-02-10

AI Technical Summary

Technical Problem

The installation process for cable trays under the ceiling in existing data center computer rooms is cumbersome, difficult to manage and coordinate, and challenging to construct. It also suffers from high material waste and horizontal displacement issues.

Method used

The supporting frame structure, which includes bottom steel, vertical steel, screw rods and diagonal bracing steel, forms a stable transition layer. Through multiple connectors and bolts, the ceiling and cable trays are stably installed, reducing drilling and repeated adjustment procedures.

Benefits of technology

It simplifies the installation process of ceilings and cable trays, improves construction efficiency, reduces material waste, enhances the stability and strength of ceilings, and avoids interference between ceilings and cable trays.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a data center machine room suspended ceiling conversion layer which comprises a plurality of pieces of bottom steel, the end face of each piece of bottom steel is of a C-shaped structure, and the number of the bottom steel is multiple. The multiple pieces of bottom steel are divided into an upper layer and a lower layer, the two layers of bottom steel are perpendicular to each other, and a fifth connecting piece is detachably arranged at the joint of the upper layer of bottom steel and the lower layer of bottom steel. A third connecting piece is detachably arranged at the joint of the ends of the two pieces of bottom steel located on the same straight line. Second connecting pieces are arranged at the upper end and the lower end of each piece of vertical steel, the second connecting piece at the upper end is connected with the roof, and the second connecting piece at the lower end is connected with the upper-layer bottom steel; according to the utility model, the plurality of pieces of bottom steel are arranged and are divided into the upper layer and the lower layer, the vertically adjacent bottom steel is connected through the fifth connecting pieces, and the end parts of the bottom steel are connected with the wall through the fourth connecting pieces, so that the upper layer of bottom steel and the lower layer of bottom steel can form a relatively stable frame, and preliminary support is provided for installing a suspended ceiling and a cabling rack below the frame.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a machine room top frame field, concretely is a data center machine room suspended ceiling conversion layer. BACKGROUND

[0002] The data center machine room is a physical space specially used for storing, managing and maintaining computer servers and related hardware devices. In order to improve the cleanliness of the machine room, a barrier is formed between the machine room space and the upper area, that is, a suspended ceiling is set. Under the action of the suspended ceiling, dust, sundries and the like are effectively blocked from entering the machine room working area, the cleaning workload is reduced, and the risk of equipment failure caused by dust accumulation is reduced. The suspended ceiling is mostly an aluminum cladding (light steel keel) suspended ceiling.

[0003] In order to meet the laying of various equipment cables of the machine room, a machine room cabling bridge and an equipment rack are arranged below the suspended ceiling. The cabling bridge generally adopts a suspension type, and when the fixed hanging is set, a hole needs to be punched in the suspended ceiling, so that the cabling bridge passes through the suspended ceiling hole and is fixed on the concrete floor.

[0004] When installing the cabling bridge, multiple procedures such as installing the suspended ceiling keel, pre-installing the cladding, removing the cladding, pre-installing the bridge hanging, adjusting the hanging straightness, removing the hanging, punching the suspended ceiling cladding, installing the hanging with the cladding at the same time, and overall adjustment are generally required.

[0005] According to the process flow, it can be seen that there are many repeated procedures such as disassembly and assembly, and the construction operation steps are relatively complicated. In addition, since the suspended ceiling and the bridge belong to different specialties, the management requirements of professional cooperation and process insertion are extremely high when on-site construction is performed, the precision requirements of the cladding hole position are also very high, and are irreversible. If the cooperation degree is poor, the cladding is easily damaged.

[0006] Since the bridge hanging generally adopts a metal wire rod structure and is a single-point fixed mode to the roof, the installed cabling bridge actually has a large amount of horizontal omnidirectional displacement (can be shaken). This causes a common construction problem, that is, when the cable laying and other operations are performed on the bridge, the bridge will shake, simultaneously driving the hanging displacement, resulting in deformation and even damage of a large number of aluminum cladding penetrated by the hanging. Therefore, after the cable laying of the machine room is completed, the suspended ceiling needs to be removed and replaced. INVENTION CONTENTS

[0007] The utility model aims at providing a data center machine room suspended ceiling conversion layer, which aims at improving the problems of complex process, difficult management coordination, high construction difficulty and high material loss in the installation process of the cabling rack under the suspended ceiling.

[0008] The utility model discloses a data center machine room ceiling conversion layer, including bottom steel, the end surface of bottom steel is set to C type structure, and bottom steel is provided with multiple roots, the multiple bottom steels are divided into two layers, and two layers bottom steel are mutually perpendicular and set up, and the junction of the upper and lower two bottom steels is detachably provided with the fifth connecting piece, the end junction of the two bottom steels located on the same straight line is detachably provided with the third connecting piece, further including multiple vertical steels, the upper and lower ends of each vertical steel are provided with the second connecting piece, the second connecting piece of upper end is connected with roof, the second connecting piece of lower end is connected with upper layer bottom steel, in addition, the side of each vertical steel is provided with inclined bracing steel, the upper layer bottom steel is further provided with screw rod, and the top of screw rod is connected with roof through the first connecting piece.

[0009] As an embodiment of the utility model, the opening of bottom steel is set downward, and the top surface is provided with multiple key holes, the key holes are arranged along the length direction of bottom steel, and the multiple key holes are evenly distributed and arranged along the length direction of bottom steel.

[0010] As an embodiment of the utility model, the bolt is provided through the key hole of lower layer bottom steel, and the top of bolt extends into upper layer bottom steel, the fifth connecting piece is set to plastic wing nut, and the plastic wing nut is installed in upper layer bottom steel, and is threadedly sleeved on bolt.

[0011] As an embodiment of the utility model, the fourth connecting piece is arranged below the two ends of bottom steel, the fourth connecting piece is set to L type structure, the horizontal section of fourth connecting piece is connected and installed on bottom steel through bolt and plastic wing nut, and the vertical section of fourth connecting piece is connected and installed on wall through expansion bolt.

[0012] As an embodiment of the utility model, the third connecting piece is also set to L type structure, the inner side wall of third connecting piece is matched with the outer side wall of bottom steel, and the two ends of third connecting piece are connected and installed on the end of two bottom steels through bolt and plastic wing nut.

[0013] As an embodiment of the utility model, the second connecting piece is set to T type structure, the vertical section of second connecting piece is set to pipe body, the horizontal section of second connecting piece is set to straight plate, the pipe body of second connecting piece is connected and sleeved on vertical steel through bolt, the straight plate of second connecting piece is connected and installed on bottom steel through bolt and plastic wing nut, or the straight plate of second connecting piece is connected and set on roof through expansion bolt.

[0014] As an embodiment of the utility model, the two ends of screw rod are provided with threaded structure, the bottom of screw rod is provided with nut after being penetrated through bottom steel, and the first connecting piece is connected and sleeved on the top of screw rod through nut;

[0015] As an embodiment of the utility model, the first connecting piece is set to U type structure, the expansion bolt is penetrated through the top of first connecting piece and is embedded in roof.

[0016] As one embodiment of the utility model, first plate body is set up through bolt connection in the bottom of inclined bracing steel, second plate body is fixedly set up in the bottom of first plate body and forms the sixth connecting piece of bending, and second plate body is set up on vertical steel through bolt connection.

[0017] As one embodiment of the utility model, sixth connecting piece is set up in the top of inclined bracing steel, third plate body is set up through bolt connection in the top of sixth connecting piece, another third plate body is fixedly set up in the top of third plate body and forms the seventh connecting piece of bending, and the third plate body in the upside is connected with roof through expansion bolt.

[0018] As one embodiment of the utility model, the upper end and the lower end of the rotary connecting shaft are provided with support bearings.

[0019] The utility model brings the beneficial effect that:

[0020] 1, the utility model sets up many bottom steels, and the many bottom steels are set up in two layers, and the adjacent bottom steels of upper and lower are connected through the fifth connecting piece, and the end of bottom steel is connected with wall through the fourth connecting piece, can make the upper and lower two layers of bottom steel form the relatively stable frame, provide the preliminary support for installing the ceiling and the line frame under it.

[0021] 2, the utility model sets up vertical steel and screw rod, and the bottom of vertical steel and screw rod is connected with upper layer bottom steel, and the top of vertical steel and screw rod is connected with roof, and then under the cooperation of vertical steel and screw rod, the stability and strength of bottom steel layer are enhanced.

[0022] 3, the utility model sets up inclined bracing steel, and the inclined bracing steel is set in the side of vertical steel, and then the stability of vertical steel is enhanced, and the strength and stability of bottom steel layer are further enhanced, provide support for stable support ceiling and line frame, and the ceiling aluminum cladding and line frame hanging no longer interfere, and the processes such as perforation, repeated disassembly and adjustment of cladding are all exempted, and the number of expansion bolts on the roof plate is also greatly reduced compared with the original ceiling joist and line frame hanging. DRAWINGS

[0023] The drawings that form a part of the utility model are used to provide further understanding of the utility model, so that other features, objects and characteristics of the utility model become more obvious.The illustrative embodiment drawings of the utility model and its explanation are used to explain the utility model, and do not constitute undue limitation on the utility model.

[0024] Figure 1 It is the structural schematic diagram of the whole utility model;

[0025] Figure 2 It is the structural schematic diagram of bottom steel of the utility model;

[0026] Figure 3 is the structural schematic diagram of the C area of the utility model;

[0027] Figure 4 is the structural schematic diagram of the A area of the utility model;

[0028] Figure 5 is the structural schematic diagram of the B area of the utility model;

[0029] Figure 6 is the structural schematic diagram of the E area of the utility model;

[0030] Figure 7 is the structural schematic diagram of the F area of the utility model;

[0031] Figure 8 is the structural schematic diagram of the D area of the utility model;

[0032] Figure 9 is the structural schematic diagram of the G area of the utility model;

[0033] Figure 10 is the structural schematic diagram of the H area of the utility model.

[0034] In the figure: bottom steel 1;Key hole 11;Vertical steel 2;Inclined brace steel 3;First plate body 31;Second plate body 32;Third plate body 33;Screw rod 4;First connecting piece 5;Expansion bolt 51;Second connecting piece 6;Third connecting piece 7;Fourth connecting piece 8;Fifth connecting piece 9. DETAILED DESCRIPTION

[0035] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0036] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the utility model are only used to explain the relative positional relationship, movement condition, etc. between components in a certain specific posture (as shown in the drawings), and if the specific posture changes, the directional indications will also change accordingly.

[0037] Embodiment 1

[0038] In order to eliminate the interference of the suspended ceiling batten and the cable tray hanging, and to avoid the punching of the batten, repeated disassembly and adjustment process, the embodiment provides a support frame for the suspended ceiling and the bridge of the data center machine room, which forms a rigid and stable conversion layer, and the batten and the bridge hanging can be directly installed on the conversion layer. The suspended ceiling aluminum batten and the cable tray hanging no longer interfere with each other, and the punching of the batten, the repeated disassembly and adjustment process are all avoided, and the number of expansion bolts for suspending the original suspended ceiling joist, cable tray and other suspension parts on the floor slab is also greatly reduced.

[0039] As shown in Figure 1 , Figure 2 , specifically, the support frame includes a plurality of bottom steels 1, vertical steels 2, and screw rods 4. The end face of the bottom steel 1 is provided with a C-shaped structure, and the plurality of bottom steels 1 are divided into two layers, and the two layers of bottom steels 1 are arranged vertically, and the end of the bottom steel 1 is connected with the wall. The vertical steel 2 and the screw rod 4 are arranged above the bottom steel 1, and the bottom of the vertical steel 2 and the screw rod 4 is connected with the upper layer of the bottom steel 1, and the top of the vertical steel 2 and the screw rod 4 is connected with the roof, and then a stable and high-strength support frame is formed by the cooperation of the vertical steel 2, the screw rod 4 and the bottom steel 1.

[0040] As shown in Figure 2 , in order to facilitate the stable connection of the bottom steel 1 with the vertical steel 2 and the screw rod 4, the opening of the bottom steel 1 is arranged downward, and the top surface is provided with a plurality of key holes 11, the key holes 11 are arranged along the length direction of the bottom steel 1, and the plurality of key holes 11 are uniformly distributed along the length direction of the bottom steel 1, so that the bolts for connecting the bottom steel 1 with the vertical steel 2 and the screw rod 4 can be arranged through the key holes 11.

[0041] As shown in Figure 8 , in order to stably connect the vertically adjacent bottom steels 1, a bolt is arranged through the key hole 11 of the lower layer of the bottom steel 1, and the top of the bolt extends into the upper layer of the bottom steel 1.

[0042] In addition, a fifth connecting piece 9 is arranged on the inner side of the upper layer of the bottom steel 1, the fifth connecting piece 9 is arranged as a plastic wing nut, and the plastic wing nut is threadedly sleeved on the bolt, so that the vertically adjacent bottom steels 1 are stably connected through the cooperation of the bolt and the plastic wing nut, and the disassembly of the bottom steel 1 is facilitated according to the requirement.

[0043] As shown in Figure 7 , in order to stably connect the end of the bottom steel 1 with the wall, a fourth connecting piece 8 is arranged below each end of the bottom steel 1, the fourth connecting piece 8 is arranged as an L-shaped structure, the horizontal segment of the fourth connecting piece 8 is arranged through a bolt, the end of the bolt extends into the bottom steel 1, and the end of the bolt is arranged through a plastic wing nut arranged in the bottom steel 1.

[0044] Therefore, under the cooperation of the bolt and the plastic wing nut, the fourth connecting piece 8 is stably and detachably installed on the bottom steel 1. In addition, the vertical section of the fourth connecting piece 8 is sleeved on the end of the expansion bolt 51, and the expansion bolt 51 is embedded in the wall, and a nut is threaded on the end of the expansion bolt 51, so that the fourth connecting piece 8 is stably installed on the wall under the action of the nut.

[0045] As shown in Figure 7 , in order to adapt to different sizes of installation sites and realize the splicing and connection of the two bottom steels 1, a third connecting piece 7 is arranged at the end of the two bottom steels 1. The third connecting piece 7 is also arranged in a U-shaped structure, and the inner side wall of the third connecting piece 7 is matched with the outer side wall of the bottom steel 1, for example, the outer side wall of the bottom steel 1 is arranged in a concave-convex structure, and the inner side wall of the third connecting piece 7 is also arranged in a concave-convex structure, so as to stably connect the third connecting piece 7 with the bottom steel 1.

[0046] In addition, a plastic wing nut is arranged on the inner side of the bottom steel 1, and a bolt is arranged to penetrate through the two ends of the third connecting piece 7, the bolt penetrates through the key hole 11, and the bottom is threaded into the plastic wing nut, further limiting the stable connection of the third connecting piece 7 with the bottom steel 1.

[0047] As shown in Figure 1 , Figure 3 , in order to stably install the screw rod 4 above the bottom steel 1, threaded structures are arranged at the two ends of the screw rod 4, and a nut is threaded on the bottom of the screw rod 4 after penetrating through the key hole 11 of the bottom steel 1, and two nuts are threaded on the top of the screw rod 4, the two nuts are arranged in an upper and lower distribution, and a first connecting piece 5 is arranged between the two nuts. The first connecting piece 5 is arranged in a U-shaped structure, and an expansion bolt 51 is arranged to penetrate through the top of the first connecting piece 5, and the expansion bolt 51 is embedded in the roof. Therefore, under the action of the first connecting piece 5, the screw rod 4 is stably installed below the roof, and the bottom steel 1 is stably installed.

[0048] As shown in Figure 4 , Figure 5 , in order to stably install the vertical steel 2 on the bottom steel 1, a second connecting piece 6 is arranged at the upper and lower ends of each vertical steel 2. The second connecting piece 6 is arranged in a T-shaped structure, and the vertical section of the second connecting piece 6 is arranged in a pipe body, and the horizontal section of the second connecting piece 6 is arranged in a straight plate. The pipe body of the second connecting piece 6 is connected and sleeved on the vertical steel 2 through a bolt, the straight plate of the second connecting piece 6 is connected and installed on the bottom steel 1 through a bolt and a plastic wing nut, or the straight plate of the second connecting piece 6 is connected and arranged on the roof through an expansion bolt 51. Therefore, under the cooperation of the second connecting piece 6, the bottom of the vertical steel 2 is stably connected with the bottom steel 1, and the top of the vertical steel 2 is stably installed on the roof, and the stable installation strength of the bottom steel 1 is enhanced, and a conversion layer with high stability and rigidity can be formed.

[0049] Example 2

[0050] As Figure 1 shown, on the basis of embodiment 1, in order to further enhance the stability and strength of the conversion layer, inclined bracing steel 3 can also be arranged at the side of each vertical steel 2, the bottom of inclined bracing steel 3 is connected with vertical steel 2, and the top is connected with the roof, so that the stability and strength of vertical steel 2 and bottom steel 1 are enhanced under the action of inclined bracing steel 3.

[0051] As Figure 9 , Figure 10 shown, specifically, first plate body 31 is arranged at the bottom of inclined bracing steel 3 through bolt connection, second plate body 32 is fixedly arranged at the bottom of first plate body 31 to form a bent sixth connecting piece, and second plate body 32 is arranged on vertical steel 2 through bolt connection.

[0052] The sixth connecting piece is arranged at the top of inclined bracing steel 3, third plate body 33 is arranged at the top of the sixth connecting piece through bolt connection, another third plate body 33 is fixedly arranged at the top of third plate body 33 to form a bent seventh connecting piece, and the third plate body 33 on the upper side is connected with the roof through expansion bolt 51.

[0053] In addition, the technical solutions of each embodiment of the utility model can be combined with each other, but it must be based on that a person having ordinary skill in the art can realize that when the combination of technical solutions appears mutual contradiction or cannot be realized, it should be considered that the combination of technical solutions does not exist, and is also not within the protection scope required by the utility model.

[0054] The above-described embodiments only express several implementation manners of the utility model, the description is more specific and detailed, but it should not be understood as the limitation of the patent scope of the utility model. It should be pointed out that for a person having ordinary skill in the art, on the premise of not departing from the utility model concept, a plurality of deformations and improvements can be made, which all belong to the protection scope of the utility model. Therefore, the protection scope of the utility model should be subject to the appended claims.

Claims

1. A data center computer room drop ceiling mezzanine, characterized by, The utility model provides a roof structure, including bottom steel (1), the end surface of bottom steel (1) is provided as C type structure, and bottom steel (1) is provided with multiple, multiple bottom steel (1) is divided into two layers, and two layers bottom steel (1) are mutually perpendicular and are provided, and the junction of two bottom steel (1) is detachably provided with fifth connecting piece (9), the end junction of two bottom steel (1) located on the same straight line is detachably provided with third connecting piece (7), still including multiple vertical steel (2), the upper and lower ends of each vertical steel (2) are provided with second connecting piece (6), the second connecting piece (6) of upper end is connected with roof, and the second connecting piece (6) of lower end is connected with upper layer bottom steel (1), in addition, the side of each vertical steel (2) is provided with inclined bracing steel (3), the upper layer bottom steel (1) is still provided with screw rod (4), and the top of screw rod (4) is connected with roof through first connecting piece (5).

2. The data center room ceiling conversion layer of claim 1, wherein, The opening of bottom steel (1) is arranged downward, and the top surface is provided with a plurality of key holes (11), the key holes (11) are arranged along the length direction of bottom steel (1), and a plurality of key holes (11) are evenly distributed along the length direction of bottom steel (1).

3. The data center room ceiling conversion layer of claim 2, wherein, The bolt is arranged through the key hole (11) of the lower layer bottom steel (1), and the top of the bolt extends into the upper layer bottom steel (1); the fifth connecting piece (9) is arranged as a plastic wing nut, and the plastic wing nut is installed in the upper layer bottom steel (1) and is threadedly sleeved on the bolt.

4. The data center room ceiling conversion layer of claim 1, wherein, The fourth connecting piece (8) is arranged below the two ends of the bottom steel (1), the fourth connecting piece (8) is arranged as an L-shaped structure, the horizontal section of the fourth connecting piece (8) is connected and installed on the bottom steel (1) by the bolt and the plastic wing nut, and the vertical section of the fourth connecting piece (8) is connected and installed on the wall by the expansion bolt (51).

5. The data center room ceiling conversion layer of claim 1, wherein, The third connecting piece (7) is also arranged as a Z-shaped structure, the inner side wall of the third connecting piece (7) is matched with the outer side wall of the bottom steel (1), and the two ends of the third connecting piece (7) are connected and installed at the ends of the two bottom steel (1) by the bolt and the plastic wing nut.

6. The data center room ceiling conversion layer of claim 1, wherein, The second connecting piece (6) is arranged as a T-shaped structure, the vertical section of the second connecting piece (6) is arranged as a pipe body, the horizontal section of the second connecting piece (6) is arranged as a straight plate, the pipe body of the second connecting piece (6) is connected and sleeved on the vertical steel (2) by the bolt, the straight plate of the second connecting piece (6) is connected and installed on the bottom steel (1) by the bolt and the plastic wing nut, or the straight plate of the second connecting piece (6) is connected and arranged on the roof by the expansion bolt (51).

7. The data center room ceiling conversion layer of claim 1, wherein, The two ends of the screw rod (4) are provided with threaded structures, the bottom of the screw rod (4) is threadedly sleeved with a nut after being arranged through the bottom steel (1), and the first connecting piece (5) is connected and sleeved on the top of the screw rod (4) by the nut.

8. The data center room ceiling conversion layer of claim 7, wherein, The first connecting piece (5) is arranged as a U-shaped structure, the top of the first connecting piece (5) is arranged through the expansion bolt (51), and the expansion bolt (51) is embedded in the roof.

9. The data center room ceiling conversion layer of claim 1, wherein, First plate body (31) is arranged on the bottom of the inclined support steel (3) by bolt connection, second plate body (32) is fixedly arranged on the bottom of the first plate body (31) to form a bent sixth connecting piece, and the second plate body (32) is arranged on the vertical steel (2) by bolt connection.

10. The data center room ceiling conversion layer of claim 9, wherein, Sixth connecting piece is arranged on the top of the inclined support steel (3), third plate body (33) is arranged on the top of the sixth connecting piece by bolt connection, another third plate body (33) is fixedly arranged on the top of the third plate body (33) to form a bent seventh connecting piece, and the third plate body (33) on the upper side is connected with the roof by expansion bolt (51).