Special-shaped inlaying erector cabinet rack

By using an irregularly shaped inlay assembly structure and reinforced design, the problems of inaccurate and slow assembly of traditional cabinet racks and racks have been solved, enabling fast and accurate pipe installation and improved rack stability.

CN224192186UActive Publication Date: 2026-05-01SUZHOU XINDIANSHI PRECISION MACHINERY MFG
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUZHOU XINDIANSHI PRECISION MACHINERY MFG
Filing Date
2025-05-14
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Traditional server racks and cabinets are prone to problems such as inaccurate positioning, slow speed, and errors during assembly, especially when it is difficult to distinguish and correctly install pipes of similar size.

Method used

The structure adopts an irregularly shaped inlay assembly structure. The support rods, connecting rods, bottom crossbeams and top crossbeams are designed with unique shapes, sizes and positions of inlay slots and inlay blocks to ensure that the pipes correspond uniquely. They are then fixedly connected by welding, and a reinforcing structure is set inside the frame.

Benefits of technology

It achieves precise and fast assembly, prevents incorrect installation, and improves work efficiency, frame stability, and structural strength.

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Abstract

The utility model discloses a special-shaped inlaying erector cabinet rack, which belongs to the technical field of cabinet racks and comprises a plurality of support rods, connecting rods, bottom cross beams and top cross beams, the support rods are vertically arranged in at least two rows, the connecting rods are connected among the support rods in the same row, and the bottom cross beams are arranged on the top cross beams. The bottom cross beams and the top cross beams are arranged at the bottom ends and the top ends of the supporting rods correspondingly and connected with the multiple rows of supporting rods and the connecting rods, and the connecting rods are connected between the bottom cross beams and the top cross beams. The supporting rods, the connecting rods, the bottom cross beams and the top cross beams are all rectangular pipe fittings, pipe opening connecting positions are provided with inlaying notches or inlaying blocks, and the inlaying notches and the inlaying blocks are unique in shape, size and position. According to the utility model, the embedding points are arranged, and the embedding points are unique in shape, size and position, so that the problem of wrong installation is prevented, the assembling speed is accelerated, the working efficiency is improved, the structural strength of the rack is improved, and the quality of the rack is ensured.
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Description

Technical Field

[0001] This utility model relates to the field of cabinet and rack technology, specifically to an irregularly shaped inlaid and assembled cabinet and rack. Background Technology

[0002] Traditional server racks and cabinets use a right-angle assembly and welding method, which can easily lead to confusion when assembling different types of tubing, resulting in inaccurate assembly positions, slow assembly speed, and the risk of misplacing tubing. Existing solutions use inlay structures at the tubing assembly locations to achieve more precise assembly. However, these inlay structures are mostly of uniform shape and size, requiring the tubing to be distinguished before assembly. Moreover, they can only be distinguished by approximate dimensions, and the problem of confusion still exists for tubing of similar sizes, leading to assembly errors and affecting the user experience. Utility Model Content

[0003] The purpose of this utility model is to provide an irregularly shaped inlaid assembly cabinet frame to solve the above problems, with precise assembly position, fast assembly speed, and convenient assembly.

[0004] Technical solution: This utility model provides an irregularly shaped inlaid assembly cabinet frame, including: the cabinet frame is composed of support rods, connecting rods, bottom crossbeams, and top crossbeams. The support rods are arranged vertically in at least two rows. The connecting rods connect the support rods in the same row. The bottom crossbeams and top crossbeams are respectively set at the bottom and top of the support rods, connecting multiple rows of support rods and connecting rods. The bottom crossbeams and top crossbeams are each connected by a connecting rod.

[0005] Furthermore, in the aforementioned irregularly shaped inlaid assembly cabinet frame, the support rods, connecting rods, bottom crossbeams, and top crossbeams are all rectangular tubular components, and inlay slots or inlay blocks are provided at the pipe connection positions. The shape, size, and position of the inlay slots and inlay blocks are unique, thereby fixing the installation positions of the support rods, connecting rods, bottom crossbeams, and top crossbeams.

[0006] Furthermore, in the aforementioned irregularly shaped inlaid assembly cabinet frame, the support rods, connecting rods, bottom crossbeams, and top crossbeams are fixedly connected by welding after being assembled according to the inlay slots and inlay blocks.

[0007] Furthermore, in the aforementioned irregularly shaped inlaid assembly cabinet frame, the cabinet frame also includes a baffle, which is disposed between the connecting rods on both sides of the cabinet frame.

[0008] Furthermore, in the aforementioned irregularly shaped inlaid assembly cabinet frame, reinforcing members are provided between the bottom crossbeam, the top crossbeam, the support rod, and the connecting rod.

[0009] Furthermore, in the aforementioned irregularly shaped inlaid assembly cabinet frame, the support rods are arranged in two groups arranged in two rows, with three rods in each group, and the support rods in each row are spaced equally apart.

[0010] Furthermore, in the aforementioned irregularly shaped inlaid assembly cabinet frame, the bottom crossbeam and top crossbeam are symmetrically arranged. The bottom crossbeam and top crossbeam are connected to the support rods on both sides of the outer end, and are positioned between the connecting rods on both sides, offset from the middle support rod. The connecting rods are vertically equipped with reinforcing rods at the positions where they connect to the bottom crossbeam and top crossbeam. Reinforcing members are also provided between the reinforcing rods and the bottom crossbeam, top crossbeam, and connecting rods.

[0011] Furthermore, in the aforementioned irregularly shaped inlaid assembly cabinet frame, the connecting rods include long rods and short rods. The long rods and short rods are symmetrically arranged between the support rods on both sides, and the long rods and short rods are staggered between the bottom crossbeam and the top crossbeam. When the support rods on both sides are long rods, the space between the bottom crossbeam and the top crossbeam in the middle is a short rod, and vice versa.

[0012] As can be seen from the above technical solution, this utility model has the following beneficial effects: The irregularly shaped inlaid assembly rack described in this utility model, based on the traditional right-angle splicing method, has exclusive inlay points at the splicing positions of the pipe openings. The shape, size, and position of the inlay slot, inlay block, and other parts of the exclusive inlay points are unique, ensuring a unique correspondence between pipes during splicing. This allows for faster differentiation of parts, facilitates management, prevents incorrect installation during assembly, makes the assembly work easier, speeds up the assembly process, and improves work efficiency. Furthermore, the rack frame structure is reinforced with connecting rods that are divided into long rods and short rods. The long and short rods are connected in a staggered manner in the middle and on both sides of the frame, further improving the stability of the rack, enhancing the overall structural strength of the rack, and ensuring the quality of the rack. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of an irregularly shaped inlaid assembly cabinet frame structure according to the present invention;

[0014] Figure 2 This is a top view of an irregularly shaped inlaid assembly cabinet frame according to the present invention;

[0015] Figure 3 This is a partially enlarged schematic diagram of section A of this utility model;

[0016] Figure 4 This is a partially enlarged schematic diagram of part B of this utility model.

[0017] In the diagram: Support rod 1, Connecting rod 2, Bottom crossbeam 3, Top crossbeam 4, Inlay groove 5, Inlay block 6, Baffle 7, Reinforcing rod 8, Reinforcing rod 9, Long rod 21, Short rod 22. Detailed Implementation

[0018] Example 1

[0019] like Figure 1-4 The illustrated irregularly shaped inlaid assembly cabinet frame includes: the cabinet frame is composed of support rods 1, connecting rods 2, bottom crossbeams 3, and top crossbeams 4. The support rods 1 are arranged vertically in at least two rows. The connecting rods 2 connect the support rods 1 in the same row. The bottom crossbeams 3 and top crossbeams 4 are respectively located at the bottom and top of the support rods 1, connecting multiple rows of support rods 1 and connecting rods 2. The bottom crossbeams 3 and top crossbeams 4 are each connected by a connecting rod 2.

[0020] like Figure 3 , 4 The illustrated irregularly shaped, inlaid assembly cabinet frame features rectangular tubing for its support rods 1, connecting rods 2, bottom crossbeams 3, and top crossbeams 4. Each tubing connection point has an inlay slot 5 or an inlay block 6. The inlay slots 5 and inlay blocks 6 are unique in shape, size, and position, ensuring a fixed installation position for the support rods 1, connecting rods 2, bottom crossbeams 3, and top crossbeams 4. This ensures a unique correspondence between tubing during assembly, allowing for faster component differentiation and easier management. It also prevents incorrect installation during assembly, making the assembly process easier, faster, and more efficient.

[0021] In this embodiment, the support rod 1, connecting rod 2, bottom crossbeam 3, and top crossbeam 4 are fixedly connected by welding after being assembled according to the inlay slot 5 and inlay block 6.

[0022] Example 2

[0023] Based on Example 1, in this example, as... Figure 1 The diagram shows an irregularly shaped, inlaid, assembled server rack. The server rack also includes a baffle 7, which is disposed between the connecting rods 2 on both sides of the server rack. Reinforcing members 8 are provided between the bottom crossbeam 3, the top crossbeam 4, the support rod 1, and the connecting rod 2 to improve the overall structural strength of the server rack.

[0024] In this embodiment, the support rods 1 are arranged in two groups in two rows, with three rods in each group, and the support rods 1 in each row are spaced equally. The bottom crossbeam 3 and the top crossbeam 4 are symmetrically arranged. The bottom crossbeam 3 and the top crossbeam 4 connect the support rods 1 on both sides of the outer end and are staggered from the middle support rod 1. They are arranged between the connecting rods 2 on both sides. The connecting rod 2 is vertically provided with a reinforcing rod 9 at the position where it connects the bottom crossbeam 3 and the top crossbeam 4. A reinforcing member 8 is also provided between the reinforcing rod 9 and the bottom crossbeam 3, the top crossbeam 4, and the connecting rod 2.

[0025] In this embodiment, there are 26 inlay slots 5 and 26 inlay blocks 6. Each slot has its own unique shape, size and position, ensuring the uniqueness of the square tube assembly position and preventing key components of the same length and similar hole positions from being placed in the wrong position, making the assembly work easier.

[0026] like Figure 1 The illustrated irregularly shaped, inlaid, assembled server rack includes connecting rods 2 comprising long rods 21 and short rods 22. The long rods 21 and short rods 22 are symmetrically arranged between the support rods 1 on both sides, and staggered between the bottom crossbeam 3 and the top crossbeam 4. When the support rods 1 on both sides are long rods 21, the area between the bottom crossbeam 3 and the top crossbeam 4 in the middle is occupied by short rods 22, and vice versa. This staggered connection of the long rods 21 and short rods 22 in the middle and on both sides of the rack further improves the stability of the rack, enhances the overall structural strength of the rack, and ensures the quality of the server rack.

[0027] It should be noted that the above description is merely a technical solution of the utility model and not a limitation. Although the present utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solution of the utility model without departing from the scope of the present utility model, and all such modifications and substitutions should be covered within the scope of the claims of the present utility model.

Claims

1. A non-standard, inlaid, assembled server rack, characterized in that: The cabinet frame is composed of support rods (1), connecting rods (2), bottom crossbeams (3), and top crossbeams (4). The support rods (1) are arranged vertically in at least two rows. The connecting rods (2) are connected between the support rods (1) in the same row. The bottom crossbeams (3) and top crossbeams (4) are respectively set at the bottom and top of the support rods (1) to connect multiple rows of support rods (1) and connecting rods (2). The bottom crossbeams (3) and top crossbeams (4) are each connected by a connecting rod (2). The support rod (1), connecting rod (2), bottom crossbeam (3), and top crossbeam (4) are all rectangular tubes. The pipe opening connection position is provided with an inlay groove (5) or an inlay block (6). The shape, size, and position of the inlay groove (5) and the inlay block (6) are unique, so that the installation position of the support rod (1), connecting rod (2), bottom crossbeam (3), and top crossbeam (4) is fixed.

2. The special-shaped inlaid assembled cabinet rack according to claim 1, characterized in that: The support rod (1), connecting rod (2), bottom crossbeam (3), and top crossbeam (4) are fixedly connected by welding after being assembled according to the inlay slot (5) and inlay block (6).

3. The irregularly shaped inlaid assembly cabinet rack according to claim 1, characterized in that: The cabinet frame also includes a baffle (7), which is disposed between the connecting rods (2) on both sides of the cabinet frame.

4. The irregularly shaped inlaid assembly cabinet rack according to claim 1, characterized in that: A reinforcing member (8) is provided between the bottom crossbeam (3), the top crossbeam (4), the support rod (1), and the connecting rod (2).

5. The irregularly shaped inlaid assembly cabinet rack according to claim 1, characterized in that: The support rods (1) are arranged in two groups in two rows, with three rods in each group, and the support rods (1) in each row are spaced equally apart.

6. A cabinet rack of claim 5, wherein: The bottom crossbeam (3) and the top crossbeam (4) are symmetrically arranged. The bottom crossbeam (3) and the top crossbeam (4) are connected to the support rods (1) on both sides of the outer end and are offset from the middle support rod (1). They are set between the connecting rods (2) on both sides. The connecting rod (2) is vertically provided with a reinforcing rod (9) at the position where it connects the bottom crossbeam (3) and the top crossbeam (4). A reinforcing member (8) is also provided between the reinforcing rod (9) and the bottom crossbeam (3), the top crossbeam (4), and the connecting rod (2).

7. A cabinet rack of claim 6, wherein: The connecting rod (2) includes a long rod (21) and a short rod (22). The long rod (21) and the short rod (22) are symmetrically arranged between the support rods (1) on both sides. The long rod (21) and the short rod (22) are staggered between the bottom crossbeam (3) and the top crossbeam (4). When the support rods (1) on both sides are long rods (21), the middle bottom crossbeam (3) and top crossbeam (4) are short rods (22), and vice versa.