Vertical server cabinet capable of being arranged in stacked mode

By designing a positioning connection structure on the vertical server cabinet, the rapid stacking of cabinets is achieved, solving the problem that single-layer cabinets cannot be stacked, saving rack costs and improving space utilization.

CN223310118UActive Publication Date: 2025-09-05HIGHAIM (KUNSHAN) TECH INC
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Patent Information

Application Number
CN202422429528.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-09
Publication Date
2025-09-05
Estimated Expiration
2034-10-09

AI Technical Summary

Technical Problem

The existing single-layer vertical server cabinet cannot be stacked directly, resulting in the need to install additional shelves, which increases costs and wastes the computer room floor height.

Method used

A vertical server cabinet that can be laminated and arranged is designed. By setting positioning and connecting square columns, positioning and connecting cylinders and L-connecting plates on the cabinet body, the cabinet is quickly stacked, and the positioning hole slots and threaded hole structures of the top cover and the base are used to ensure stable connection.

Benefits of technology

It realizes the rapid stacking of vertical cabinets, saves the cost of the shelf and efficiently utilizes the floor height of the computer room.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223310118U_ABST
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Abstract

The utility model discloses a vertical server cabinet capable of being arranged in a stacked mode, which enables the vertical server cabinet to be quickly arranged in a stacked mode, saves layer frame cost, and efficiently utilizes layer height of a machine room. The cabinet comprises a cabinet body, the cabinet body comprises a top cover, a base and two side plate assemblies, four corners of the top cover are provided with columns, the bottoms of the columns are fixedly provided with the base, and each side plate assembly is located at two side edges formed by the top cover and the base; each L-shaped connecting plate comprises a horizontal connecting plate and a vertical connecting plate, and positioning holes are formed in the horizontal connecting plates and the vertical connecting plates; each positioning connecting square column comprises a first upper connecting plate and a lower convex square column; each positioning connecting cylinder comprises a second upper connecting plate and a lower convex cylinder; the base comprises an upper panel, a bottom plate and a peripheral frame, two sides of the front end of the bottom plate are respectively provided with a group of first threaded holes, and two sides of the rear end of the bottom plate are respectively provided with a group of second threaded holes.
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Description

Technical Field

[0001] The utility model relates to the technical field of cabinet structures, in particular to a vertical server cabinet that can be stacked. Background Art

[0002] The domestic data base station communication field is developing rapidly. When the computer room was set up, the original preset equipment placement space was all single-layer single-cabinet settings. With the increase in data processing volume, more servers and corresponding equipment need to be placed in the original computer room; at this time, the original single-layer vertical server cabinet cannot be directly stacked with additional vertical cabinets, and additional shelves need to be set up to place the upper server cabinets; then the floor height will be occupied by the shelves, and the setting of the shelves requires additional costs; for this reason, it is necessary to develop a vertical server cabinet that can be stacked, so that when additional equipment is added later, the vertical server cabinets can be quickly stacked in the height direction. Summary of the Invention

[0003] In response to the above problems, the present invention provides a vertical server cabinet that can be stacked, which allows the vertical cabinets to be quickly stacked, saves shelf costs, and efficiently utilizes the floor height of the computer room.

[0004] A vertical server cabinet capable of being stacked, characterized in that it comprises:

[0005] The cabinet body includes a top cover, a base, and two side panel assemblies. The four corners of the top cover are each provided with a column, the bottom of each column is fixed with a base, and each set of side panel assemblies is located on both sides formed by the top cover and the base;

[0006] Several L-shaped connecting plates, each of which includes a horizontal connecting plate and a vertical connecting plate, each of which is provided with a positioning hole;

[0007] A plurality of positioning and connecting square columns, comprising a first upper connecting plate and a lower convex square column;

[0008] and a plurality of positioning connecting cylinders, which include a second upper connecting plate and a lower convex cylinder;

[0009] The base includes an upper panel, a bottom plate and surrounding frames, a group of first threaded holes are respectively provided on both sides of the front end of the bottom plate, and a group of second threaded holes are respectively provided on both sides of the rear end of the bottom plate, the first threaded holes are used to fix the first upper connecting plate through fasteners, and the second threaded holes are used to fix the second upper connecting plate through fasteners, the front part of the top cover is provided with concave positioning hole grooves on both sides, and the rear part of the top cover is provided with concave positioning circular holes on both sides. When the two sets of cabinet bodies are stacked, the bottom plate of the base of the upper cabinet body is respectively fixed with the positioning connection square column and the positioning connection cylinder, the corresponding lower convex square column is inserted into the square hole groove of the concave positioning hole groove, and the corresponding lower convex cylinder is fixedly inserted into the concave positioning circular hole;

[0010] Concave notch grooves are provided on both side edges of the top cover, and first positioning threaded holes are provided in the concave notch grooves. Second positioning threaded holes are respectively provided on the two side frames of the base corresponding to the positions of the concave notch grooves. The horizontal connecting plates of the L-connecting plates are respectively fixed to the first positioning threaded holes by fasteners, and the horizontal connecting plates are located in the concave notch grooves. The vertical connecting plates are arranged on the outside of the horizontal connecting plates. When the two sets of cabinet bodies are stacked, the vertical connecting plates on the corresponding sides are fixed to the second positioning threaded holes by fasteners.

[0011] It is further characterized by:

[0012] The recessed notch is located at the center of the length direction of both sides of the top cover, ensuring that a single set of L-shaped connecting plates can be used to securely fix the top cover in place.

[0013] The top cover also includes downwardly folded four-sided bent edges, and the height space of the bent edges is used to place downwardly convex square columns and downwardly convex cylinders to ensure that they will not interfere with the equipment in the cabinet;

[0014] The first threaded hole of the cabinet body located at the lower layer is used for fixing the universal wheel or the supporting column, and the second threaded hole of the cabinet body located at the lower layer is used for fixing the supporting foot pad.

[0015] After adopting the structure of the present invention, the bottom of the single-layer cabinet body is placed on the ground under normal conditions. When it is necessary to stack the cabinet bodies in the height direction, the bottom of the upper cabinet body is installed with positioning connecting square columns and positioning connecting round columns, and at the same time, the L-connecting plate is installed in the concave notch groove of the lower cabinet body. Then, the corresponding lower convex square columns of the upper cabinet body are inserted into the square hole grooves of the concave positioning hole grooves of the lower cabinet body, and the corresponding lower convex round columns of the upper cabinet body are fixedly inserted into the concave positioning round holes of the lower cabinet body, and the vertical connecting plate is fixed to the second positioning threaded hole by fasteners, so that the two groups of cabinet bodies are stacked in the height direction, which enables the vertical cabinets to be quickly stacked, saves the shelf cost, and efficiently utilizes the floor height of the computer room. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the exploded perspective structure of the stacked state of the utility model;

[0017] Figure 2 for Figure 1 A local enlarged schematic diagram of point A;

[0018] The names corresponding to the serial numbers in the figure are as follows:

[0019] Upper cabinet body 10, lower cabinet body 20, top cover 30, concave positioning hole slot 31, concave positioning circular hole 32, concave notch slot 33, first positioning threaded hole 34, bent edge 35, base 40, upper panel 41, bottom plate 42, frame 43, second positioning threaded hole 44, side panel assembly 50, column 60, L connecting plate 70, horizontal connecting plate 71, vertical connecting plate 72, positioning connecting square column 80, first upper connecting plate 81, lower convex square column 82, positioning connecting cylinder 90, second upper connecting plate 91, lower convex cylinder 92, universal wheel 100, support column 110, support foot pad 120. DETAILED DESCRIPTION

[0020] A vertical server cabinet that can be stacked Figure 1 and Figure 2 , which includes two sets of cabinet bodies, two L-connecting plates 70, two positioning and connecting square columns 80, and two positioning and connecting round columns 90;

[0021] The two sets of cabinet bodies are specifically an upper cabinet body 10 and a lower cabinet body 20; each cabinet body includes a top cover 30, a base 40, and two side panel assemblies 50. Columns 60 are provided at the four corners of the top cover 30, and the base 40 is fixed to the bottom of the columns 60. Each set of side panel assemblies 50 is located on both sides formed by the top cover 30 and the base 40;

[0022] Each L-shaped connecting plate 70 includes a horizontal connecting plate 71 and a vertical connecting plate 72. Positioning holes are provided on both the horizontal connecting plate 71 and the vertical connecting plate 72.

[0023] Each positioning and connecting square column 80 includes a first upper connecting plate 81 and a lower convex square column 82;

[0024] Each positioning connecting cylinder 90 includes a second upper connecting plate 91 and a lower convex cylinder 92;

[0025] The base 40 includes an upper panel 41, a bottom plate 42 and surrounding frames 43. A group of first threaded holes are respectively provided on both sides of the front end of the bottom plate 42 (obstructed in the figure and belonging to a mature structure), and a group of second threaded holes are respectively provided on both sides of the rear end of the bottom plate 42 (obstructed in the figure and belonging to a mature structure). The first threaded holes are used to fix the first upper connecting plate 81 by bolts, and the second threaded holes are used to fix the second upper connecting plate 91 by bolts. Concave positioning holes 31 are provided on both sides of the front part of the top cover 30, and concave positioning circular holes 32 are provided on both sides of the rear part of the top cover 30. When the two sets of cabinet bodies are stacked, the bottom plate 42 of the base 40 of the upper cabinet body 10 is respectively fixed with a positioning connecting square column 80 and a positioning connecting cylinder 90. The corresponding lower convex square column 82 is inserted into the square hole groove of the concave positioning hole groove 31, and the corresponding lower convex cylinder 92 is fixedly inserted into the concave positioning circular hole 32;

[0026] A concave notch 33 is provided on both side edges of the top cover 30, and a first positioning threaded hole 34 is provided in the concave notch 33. Second positioning threaded holes 44 are respectively provided on the two side frames 43 of the base 40 corresponding to the positions of the concave notch 33. The horizontal connecting plates 71 of the L connecting plate 70 are respectively fixed to the first positioning threaded holes 34 by bolts, and the horizontal connecting plates 71 are located in the concave notch 33. The vertical connecting plates 72 are located on the outside of the horizontal connecting plates 71. When the two sets of cabinet bodies are stacked, the vertical connecting plates 72 on the corresponding sides are fixed to the second positioning threaded holes 44 by bolts.

[0027] In a specific embodiment, the concave notch groove 33 is located at the longitudinal center of both sides of the top cover 30, ensuring that a reliable and tight position can be achieved with only a single set of L-shaped connecting plates 70;

[0028] The top cover 30 also includes a downwardly folded bent edge 35. The height space of the bent edge 35 is used to accommodate the downwardly convex square column 81 and the downwardly convex circular column 91 to ensure that they will not interfere with the equipment in the cabinet.

[0029] The first threaded hole located on the lower cabinet body 20 is used for fixing the universal wheel 100 or the support column 110 , and the second threaded hole located on the lower cabinet body 20 is used for fixing the support pad 120 .

[0030] Its working principle is as follows: under normal conditions, the bottom of a single-layer cabinet body is placed on the ground. When stacking in height is required, the bottom of the upper cabinet body is installed with a positioning connecting square column and a positioning connecting round column, and at the same time, an L-connecting plate is installed in the concave notch groove of the lower cabinet body. Then, the corresponding lower convex square column of the upper cabinet body is inserted into the square hole groove of the concave positioning hole groove of the lower cabinet body, and the corresponding lower convex round column of the upper cabinet body is fixedly inserted into the concave positioning round hole of the lower cabinet body, and the vertical connecting plate is fixed to the second positioning threaded hole through a fastener, so that the two groups of cabinet bodies are stacked in height, which enables the vertical cabinets to be quickly stacked, saves the shelf cost, and efficiently utilizes the floor height of the computer room.

[0031] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

[0032] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. A vertical server cabinet that can be stacked, characterized in that: It includes: The cabinet body includes a top cover, a base, and two side panel assemblies. The four corners of the top cover are each provided with a column, the bottom of each column is fixed with a base, and each set of side panel assemblies is located on both sides formed by the top cover and the base; Several L-shaped connecting plates, each of which includes a horizontal connecting plate and a vertical connecting plate, each of which is provided with a positioning hole; A plurality of positioning and connecting square columns, comprising a first upper connecting plate and a lower convex square column; and a plurality of positioning connecting cylinders, which include a second upper connecting plate and a lower convex cylinder; The base includes an upper panel, a bottom plate and surrounding frames, a group of first threaded holes are respectively provided on both sides of the front end of the bottom plate, and a group of second threaded holes are respectively provided on both sides of the rear end of the bottom plate, the first threaded holes are used to fix the first upper connecting plate through fasteners, and the second threaded holes are used to fix the second upper connecting plate through fasteners, the front part of the top cover is provided with concave positioning hole grooves on both sides, and the rear part of the top cover is provided with concave positioning circular holes on both sides. When the two sets of cabinet bodies are stacked, the bottom plate of the base of the upper cabinet body is respectively fixed with the positioning connection square column and the positioning connection cylinder, the corresponding lower convex square column is inserted into the square hole groove of the concave positioning hole groove, and the corresponding lower convex cylinder is fixedly inserted into the concave positioning circular hole; Concave notch grooves are provided on both side edges of the top cover, and first positioning threaded holes are provided in the concave notch grooves. Second positioning threaded holes are respectively provided on the two side frames of the base corresponding to the positions of the concave notch grooves. The horizontal connecting plates of the L-connecting plates are respectively fixed to the first positioning threaded holes by fasteners, and the horizontal connecting plates are located in the concave notch grooves. The vertical connecting plates are arranged on the outside of the horizontal connecting plates. When the two sets of cabinet bodies are stacked, the vertical connecting plates on the corresponding sides are fixed to the second positioning threaded holes by fasteners.

2. The stackable vertical server cabinet according to claim 1, characterized in that: The concave notch is located at the center of both sides of the top cover in the length direction.

3. The stackable vertical server cabinet according to claim 1, characterized in that: The top cover also includes downwardly folded edges on all sides, and the height space of the folded edges is used for accommodating downwardly convex square columns and downwardly convex circular columns.

4. The stackable vertical server cabinet according to claim 1, characterized in that: The first threaded hole of the cabinet body located at the lower layer is used for fixing the universal wheel or the supporting column, and the second threaded hole of the cabinet body located at the lower layer is used for fixing the supporting foot pad.