Novel high-bearing equipment cabinet

By designing a new high-load-bearing equipment cabinet, the mechanical conduction path is simplified, and the problems of many fault points and high error rates caused by complex conduction paths of traditional cabinets are solved, thereby achieving higher bearing capacity and stability.

CN222897397UActive Publication Date: 2025-05-23CANGZHOU TUTAI CABINET CO LTD
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Patent Information

Application Number
CN202421536179.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-01
Publication Date
2025-05-23
Estimated Expiration
2034-07-01

AI Technical Summary

Technical Problem

The mechanical conduction path of traditional equipment cabinets is too complex, with many fault points and high error rate, resulting in rack deformation and equipment damage.

Method used

A new type of high-load-bearing equipment cabinet was designed. By eliminating multiple intermediate mechanical conduction paths, the vertical gravity of the equipment is directly transmitted to the support platform, and then directly transmitted from the support platform and the lower beam to the ground or cabinet base to reduce the fault point and reduce the rate of error.

Benefits of technology

It realizes a simpler and more reliable mechanical conduction path, reduces fault points and error rates, and greatly improves the bearing capacity and use stability of the equipment cabinet.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222897397U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of equipment cabinets, in particular to a novel high-bearing equipment cabinet, which omits numerous mechanical conduction paths in the middle in an assembly mode, has few fault points and lower error rate, and greatly increases the bearing capacity. Comprising a protection device, four sets of installation cross beams, four sets of connection cross beams, four sets of vertical supporting beams, four sets of equipment installation beams and a supporting platform, every two sets of installation cross beams and every two sets of connection cross beams are combined into an integral square frame shape, and the upper ends and the lower ends of the four sets of vertical supporting beams are installed on the inner side walls of the two sets of square frames correspondingly. The top ends of the four equipment mounting beams are connected with the inner side walls of the two upper mounting beams respectively, the supporting platforms are arranged on the inner side walls of the two lower mounting beams, the bottom ends of the four equipment mounting beams are supported through the two supporting platforms, and the bottom ends of the four equipment mounting beams are connected with the inner side walls of the two lower mounting beams respectively.
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Description

Technical Field

[0001] The utility model relates to the technical field of equipment cabinets, in particular to a novel high-load-bearing equipment cabinet. Background Art

[0002] The side of the traditional equipment cabinet has three pairs of mounting beams, upper, middle and lower, which are connected to the cabinet outer frame by bolt connection or welding. The equipment mounting vertical beams of the traditional equipment cabinet are connected to the mounting beams by bolts. The bolts are installed in the horizontal direction. We call these bolts "vertical beam mounting bolts";

[0003] Then the equipment is connected to the installation beam by bolts. The bolts are also installed in the horizontal direction. We call these screws "equipment installation bolts". Then the cabinet is placed directly on the ground or installed on the cabinet support frame. The cabinet is connected to the support frame by bolts. The bolts are installed in the vertical direction. We call these bolts "cabinet and base connection bolts".

[0004] After all equipment is installed and fixed on the installation vertical beam, the vertical downward gravity of the equipment is first transmitted to the horizontal "equipment installation bolts", and then converted into a vertical downward force through the bolt cross section. The gravity is superimposed and transmitted vertically downward along the installation vertical beam as a whole. At this time, in order to prevent the vertical beam from producing downward displacement, the "vertical beam installation bolts" begin to play a role. The strength of the bolt cross section and the torque of the thread begin to resist this vertical downward gravity, and this gravity is first converted from the vertical direction to the horizontal direction on the installation vertical beam, and then transferred from the horizontal direction to the installation cross beam, and then horizontally transferred to the outer frame of the cabinet by the screws or welding points of the installation cross beam, and then transmitted from the outer frame of the cabinet as a whole to the cabinet base or the ground. At this time, the load-bearing gravity path of the entire equipment cabinet is completed, and the gravity is transmitted from the suspended equipment to the ground or the load-bearing surface of the computer room.

[0005] From the above force transmission path, we can find that the transmission process is too complicated and cumbersome. The torsional strength of the installation bolts in the middle link is closely related to the process level of the installation bolts. There are many failure points and a high error rate. The consequence is often that the frame is deformed, making it unusable or even damaging the equipment installed inside. Utility Model Content

[0006] In order to solve the above technical problems, the utility model provides a new type of high-load-bearing equipment cabinet which eliminates numerous intermediate mechanical conduction paths, has fewer failure points, lower error rate, and greatly increases the load-bearing capacity.

[0007] The utility model discloses a novel high-load-bearing equipment cabinet, comprising a protective device, four groups of mounting beams, four groups of connecting beams, four groups of vertical support beams, four groups of equipment mounting beams and a support platform, wherein every two groups of mounting beams and every two groups of connecting beams are combined into an overall square frame shape, the upper and lower ends of the four groups of vertical support beams are respectively mounted on the inner side walls of the two groups of square frame shapes, the top ends of the four groups of equipment mounting beams are respectively connected to the inner side walls of the upper two groups of mounting beams, the support platform is arranged on the inner side walls of the lower two groups of mounting beams, the bottom ends of the four groups of equipment mounting beams are all supported by the two groups of support platforms, and the bottom ends of the four groups of equipment mounting beams are respectively connected to the inner side walls of the lower two groups of mounting beams, the protective device is arranged outside the four groups of mounting beams, the four groups of connecting beams and the four groups of vertical support beams, and the protective device is used to protect the inside of the cabinet; when the upper and lower ends of the four groups of equipment mounting beams are connected to the four groups of mounting beams When connecting the beams, first press the bottom ends of the four sets of equipment installation beams on the supporting platform, and then connect the upper and lower ends of the four sets of equipment installation beams to the inner walls of the four sets of installation beams respectively. After completing this work, install the equipment in the cabinet on multiple sets of equipment installation beams. After the equipment is installed, the gravity conduction path changes, that is, the vertical downward gravity of the equipment is first transmitted to the horizontal equipment installation bolts, and then converted into a vertical downward force through the cross section of the bolts. The gravity is transmitted vertically downward along the overall superposition of multiple sets of equipment installation beams, and then transmitted to the supporting platform. Since the bottoms of the lower two sets of installation beams are directly connected to the ground or the cabinet base, the gravity is directly transmitted from the supporting platform and the lower two sets of installation beams to the ground or the load-bearing surface of the computer room, eliminating many mechanical conduction paths in the middle, with fewer failure points, low error rate, and greatly increased bearing capacity.

[0008] Preferably, the protective device includes two groups of first side panels, two groups of second side panels, a top panel and multiple groups of bottom panels, the two groups of first side panels are respectively installed on the front and rear sides of the four groups of vertical support beams, the two groups of second side panels are respectively installed on the left and right sides of the four groups of vertical support beams, the top panel is installed on the top ends of the two upper mounting beams and the two connecting beams, and the two ends of the multiple groups of bottom panels are respectively installed on the inner side walls of the two lower mounting beams; by covering the two groups of first side panels, the two groups of second side panels, the top panel and the multiple groups of bottom panels on the outside of the cabinet, the protective effect of the equipment in the cabinet is improved, and the overall aesthetics and practicality of the cabinet are improved.

[0009] Preferably, the four groups of equipment mounting beams and the four groups of mounting cross beams are connected by bolts, thereby improving the convenience of loading and unloading operations between the four groups of equipment mounting beams and the four groups of mounting cross beams and improving the firmness of the installation.

[0010] Preferably, it also includes a plurality of heat dissipation nets, and the plurality of heat dissipation nets are all arranged on the top plate; by arranging the plurality of heat dissipation nets, the convenience of the upward diffusion of the heat inside the cabinet is improved.

[0011] Preferably, it also includes a ventilation net, which is arranged on the outer side walls of the two groups of second side panels; by arranging the ventilation net, the ventilation and heat dissipation convenience inside the cabinet is improved.

[0012] Compared with the prior art, the beneficial effect of the utility model is as follows: when the upper and lower ends of the four groups of equipment installation beams are connected to the four groups of installation beams, the bottom ends of the four groups of equipment installation beams are first pressed on the supporting platform, and then the upper and lower ends of the four groups of equipment installation beams are respectively connected to the inner walls of the four groups of installation beams. After completing this work, the equipment in the cabinet is installed on the multiple groups of equipment installation beams. The gravity conduction path after the equipment is installed is changed, that is, the vertical downward gravity of the equipment is first transmitted to the equipment installation bolts in the horizontal direction, and then converted into a vertical downward force through the cross section of the bolts. The gravity is vertically downwardly transmitted along the overall superposition of the multiple groups of equipment installation beams, and then transmitted to the supporting platform. Since the bottoms of the lower two groups of installation beams are directly connected to the ground or the cabinet base, the gravity is directly transmitted from the supporting platform and the lower two groups of installation beams to the ground or the load-bearing surface of the computer room, eliminating many mechanical conduction paths in the middle, with fewer failure points, low error rate, and greatly increased bearing capacity. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is a schematic diagram of the axonometric structure of the utility model;

[0014] Figure 2 It is an axonometric structural diagram of the connection between the installation beam and the vertical support beam;

[0015] Figure 3 It is a schematic diagram of the axonometric local structure of the connection between the installation beam and the connecting beam, etc.;

[0016] Figure 4 It is a schematic diagram of the axonometric local structure connecting the installation beam and the equipment installation beam;

[0017] Figure 5 It is a schematic diagram of the axonometric partial structure of the installation beam and support platform.

[0018] Markings in the attached drawings: 1. Installation beam; 2. Connecting beam; 3. Vertical support beam; 4. Equipment installation beam; 5. Support platform; 6. First side panel; 7. Second side panel; 8. Top panel; 9. Bottom panel; 10. Heat dissipation net; 11. Ventilation net. DETAILED DESCRIPTION

[0019] In order to facilitate the understanding of the utility model, the utility model will be described more comprehensively below with reference to the relevant drawings. The utility model can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the utility model more thorough and comprehensive.

[0020] Example 1

[0021] like Figures 1 to 5 As shown, the new high-load equipment cabinet of the utility model comprises a protective device, four groups of mounting beams 1, four groups of connecting beams 2, four groups of vertical support beams 3, four groups of equipment mounting beams 4 and a support platform 5, wherein every two groups of mounting beams 1 and every two groups of connecting beams 2 are combined into an overall square frame shape, the upper and lower ends of the four groups of vertical support beams 3 are respectively mounted on the inner side walls of the two groups of square frame shapes, the top ends of the four groups of equipment mounting beams 4 are respectively connected to the inner side walls of the upper two groups of mounting beams 1, the support platform 5 is arranged on the inner side walls of the lower two groups of mounting beams 1, the bottom ends of the four groups of equipment mounting beams 4 are all supported by the two groups of support platforms 5, and the bottom ends of the four groups of equipment mounting beams 4 are respectively connected to the inner side walls of the lower two groups of mounting beams 1, the protective device is arranged outside the four groups of mounting beams 1, the four groups of connecting beams 2 and the four groups of vertical support beams 3, and the protective device is used to protect the inside of the cabinet;

[0022] like Figure 1 As shown, the protective device includes two groups of first side plates 6, two groups of second side plates 7, a top plate 8 and multiple groups of bottom plates 9, the two groups of first side plates 6 are respectively installed on the front and rear sides of the four groups of vertical support beams 3, the two groups of second side plates 7 are respectively installed on the left and right sides of the four groups of vertical support beams 3, the top plate 8 is installed on the top ends of the two upper groups of mounting beams 1 and the two groups of connecting beams 2, and the two ends of the multiple groups of bottom plates 9 are respectively installed on the inner side walls of the two lower groups of mounting beams 1;

[0023] In this embodiment, when the upper and lower ends of the four groups of equipment installation beams 4 are connected to the four groups of installation beams 1, the bottom ends of the four groups of equipment installation beams 4 are first pressed on the supporting platform 5, and then the upper and lower ends of the four groups of equipment installation beams 4 are respectively connected to the inner walls of the four groups of installation beams 1. After completing this work, the equipment in the cabinet is installed on the multiple groups of equipment installation beams 4. The gravity conduction path after the equipment is installed is changed, that is, the vertical downward gravity of the equipment is first transmitted to the equipment installation bolts in the horizontal direction, and then converted into a vertical downward force through the cross section of the bolts. The gravity is transmitted vertically downward along the multiple groups of equipment installation beams 4 as a whole, and then transmitted to the supporting platform 5. Since the bottoms of the two lower groups of installation beams 1 are directly connected to the ground or the cabinet base, the gravity is directly transmitted from the supporting platform 5 and the two lower groups of installation beams 1 to the ground or the load-bearing surface of the computer room, eliminating many mechanical conduction paths in the middle, with fewer failure points, low error rate, and greatly increased bearing capacity.

[0024] Example 2

[0025] On the basis of Example 1, Figure 4 As shown, the four groups of equipment mounting beams 4 are connected to the four groups of mounting cross beams 1 by bolts;

[0026] like Figure 1As shown, it also includes multiple groups of heat dissipation nets 10, and the multiple groups of heat dissipation nets 10 are all arranged on the top plate 8;

[0027] like Figure 1 As shown, it also includes a ventilation net 11, which is arranged on the outer side walls of the two sets of second side panels 7;

[0028] In this embodiment, two groups of first side panels 6, two groups of second side panels 7, a top panel 8 and multiple groups of bottom panels 9 are covered on the outside of the cabinet to improve the protection effect of the equipment in the cabinet, improve the overall aesthetics and practicality of the cabinet, improve the convenience of loading and unloading operations between the four groups of equipment mounting beams 4 and the four groups of mounting beams 1, and improve the installation firmness.

[0029] The new high-load-bearing equipment cabinet of the utility model, when working, when the upper and lower ends of the four groups of equipment installation beams 4 are connected to the four groups of installation beams 1, the bottom ends of the four groups of equipment installation beams 4 are first pressed on the supporting platform 5, and then the upper and lower ends of the four groups of equipment installation beams 4 are respectively connected to the inner walls of the four groups of installation beams 1. After completing this work, the equipment in the cabinet is installed on the multiple groups of equipment installation beams 4. After the equipment is installed, the gravity conduction path changes, that is, the vertical downward gravity of the equipment is first transmitted to the horizontal equipment installation bolts, and then converted into a vertical downward force through the cross section of the bolts. The gravity is transmitted vertically downward along the overall superposition of the multiple groups of equipment installation beams 4, and then transmitted to the supporting platform 5. Since the bottoms of the lower two groups of installation beams 1 are directly connected to the ground or the cabinet base, the gravity is directly transmitted from the supporting platform 5 and the lower two groups of installation beams 1 to the ground or the load-bearing surface of the computer room.

[0030] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principle of the present invention. These improvements and modifications should also be regarded as the protection scope of the present invention.

Claims

1. New high-load equipment cabinet, characterized by: The invention comprises a protective device, four groups of installation beams (1), four groups of connecting beams (2), four groups of vertical support beams (3), four groups of equipment installation beams (4) and a support platform (5), wherein every two groups of installation beams (1) and every two groups of connecting beams (2) are combined into an overall square frame shape, the upper and lower ends of the four groups of vertical support beams (3) are respectively installed on the inner side walls of the two groups of square frames, the top ends of the four groups of equipment installation beams (4) are respectively connected to the inner side walls of the two upper groups of installation beams (1), the support platform (5) is arranged on the inner side walls of the two lower groups of installation beams (1), the bottom ends of the four groups of equipment installation beams (4) are all supported by the two groups of support platforms (5), and the bottom ends of the four groups of equipment installation beams (4) are respectively connected to the inner side walls of the two lower groups of installation beams (1), and the protective device is arranged outside the four groups of installation beams (1), the four groups of connecting beams (2) and the four groups of vertical support beams (3), and the protective device is used to protect the inside of the cabinet.

2. The new high-load-carrying equipment cabinet according to claim 1 is characterized in that: The protective device comprises two groups of first side plates (6), two groups of second side plates (7), a top plate (8) and a plurality of groups of bottom plates (9), the two groups of first side plates (6) are respectively mounted on the front and rear sides of the four groups of vertical support beams (3), the two groups of second side plates (7) are respectively mounted on the left and right sides of the four groups of vertical support beams (3), the top plate (8) is mounted on the top ends of the two upper groups of mounting cross beams (1) and the two connecting cross beams (2), and the two ends of the plurality of groups of bottom plates (9) are respectively mounted on the inner side walls of the two lower groups of mounting cross beams (1).

3. The new high-load-carrying equipment cabinet according to claim 1 is characterized in that: The four groups of equipment mounting beams (4) and the four groups of mounting cross beams (1) are connected via bolts.

4. The new high-load-carrying equipment cabinet according to claim 2 is characterized in that: It also includes multiple groups of heat dissipation nets (10), and the multiple groups of heat dissipation nets (10) are all arranged on the top plate (8).

5. The new high-load-carrying equipment cabinet according to claim 2 is characterized in that: It also comprises a ventilation net (11), which is arranged on the outer side walls of the two groups of second side panels (7).