Multi-fold profile structure
By using a multi-fold profile structure and a reinforcing frame design, the problems of insufficient load-bearing capacity, stability, and ease of installation of traditional cabinet profiles have been solved. This has resulted in improved rigidity, stability, and safety of the profiles, as well as enhanced ease of installation and sealing performance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WUXI WEIJIA POWER TECH CO LTD
- Filing Date
- 2025-03-28
- Publication Date
- 2026-05-01
AI Technical Summary
Traditional server rack profiles are inadequate in terms of load-bearing capacity, stability, and ease of installation, and also pose safety hazards.
The profile adopts a multi-fold structure, forming the first to thirteenth fold surfaces through multiple bends. Reinforcing frames and arc-shaped reinforcing frames are set in key areas to increase the rigidity and deformation resistance of the profile. At the same time, an anti-corrosion coating is sprayed on the outside of the reinforcing frames and a self-clamping sealing strip is installed.
It significantly enhances the overall rigidity and deformation resistance of the profile, improves stability and safety, reduces the risk of bumps and knocks during operation, improves installation convenience and durability, and enhances sealing performance.
Smart Images

Figure CN224192161U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of profiles for server rack equipment, and in particular to a multi-fold profile structure. Background Technology
[0002] As an important load-bearing and protective structure for electronic equipment, server racks not only need to have good load-bearing and support capabilities, but also need to consider aesthetics, ease of installation and durability. Traditional server rack profiles mostly adopt simple right-angle structures, which are convenient to manufacture, but there is still room for improvement in load-bearing capacity, stability and ease of installation. Utility Model Content
[0003] In view of the above situation and to overcome the defects of the prior art, the purpose of this utility model is to provide a multi-fold profile structure, which has the advantages of improving the strength of the profile through the multi-fold structure, making it easy to install and improving stability.
[0004] The above-mentioned technical objective of this utility model is achieved through the following technical solution:
[0005] A multi-fold profile structure includes a frame and a first bending surface located at the top of the frame. The first bending surface is bent 90° to the left to form a second bending surface, the second bending surface is bent upwards by 90° to form a third bending surface, the third bending surface is bent to the right by 180° to form a fourth bending surface, the fourth bending surface is bent to the right by 90° to form a fifth bending surface, the fifth bending surface is bent upwards by 90° to form a sixth bending surface, and the sixth bending surface is bent to the right in an arc shape to form a seventh bending surface. The seventh bend faces to the left to form the eighth bend face. The eighth bend faces downward at 90° to form the ninth bend face. The ninth bend faces to the right at 90° to form the tenth bend face. The tenth bend faces to the left at 180° to form the eleventh bend face. The eleventh bend faces upward at 90° to form the twelfth bend face. The twelfth bend face extends upward close to the area between the seventh and eighth bend faces. The extended end of the twelfth bend face bends to the left at 90° to form the thirteenth bend face.
[0006] By adopting the above technical solution, the entire profile is bent sequentially during manufacturing. Through multiple bends to form the first to thirteenth bend surfaces, the overall rigidity and deformation resistance of the profile are significantly enhanced, ensuring the stability of the profile during long-term use. The arc-shaped bend between the seventh and eighth bend surfaces not only avoids the defects of the traditional right-angle design, but also reduces the risk of personnel being injured by bumps during operation, improving operational safety. The overall structure is also more streamlined and modern.
[0007] Further configuration: A first reinforcing frame is provided between the first and second bending surfaces; a second reinforcing frame is provided between the second and third bending surfaces; a third reinforcing frame is provided between the fifth and sixth bending surfaces; a third reinforcing frame is provided between the sixth and seventh bending surfaces; a fourth reinforcing frame is provided between the eighth and ninth bending surfaces; a fifth reinforcing frame is provided between the ninth and tenth bending surfaces; and a sixth reinforcing frame is provided between the twelfth and thirteenth bending surfaces.
[0008] By adopting the above technical solution, the rigidity and deformation resistance of the entire profile structure can be significantly improved by setting the first to sixth reinforcing frames. The rigidity and strength of the entire structure can be further improved by setting the second and third reinforcing frames to abut each other and the fifth and sixth reinforcing frames to abut each other.
[0009] Further configuration: An arc-shaped reinforcing frame is provided between the seventh and eighth bending surfaces.
[0010] By adopting the above technical solution and setting the arc-shaped reinforcing frame, the rigidity of the arc-shaped bending surface between the seventh and eighth bending surfaces can be improved.
[0011] Further configuration: The surface of the bone frame is provided with multiple equally spaced mounting holes from top to bottom.
[0012] By adopting the above technical solution and setting multiple mounting holes, it is convenient to fix and install the entire profile structure.
[0013] Further features: The outer sides of the first, second, third, fourth, fifth, and sixth reinforcing frames are all coated with an anti-corrosion coating.
[0014] By adopting the above technical solution and setting the anti-corrosion coating, the corrosion resistance of the first to sixth reinforcing frames can be ensured, their service life can be improved, and the rigidity and durability of the entire profile can be ensured.
[0015] Further features: The outer sides of the first reinforcing frame, the second reinforcing frame, the third reinforcing frame, the fourth reinforcing frame, the fifth reinforcing frame, and the sixth reinforcing frame are all provided with self-clamping sealing strips.
[0016] By adopting the above technical solution, the design of the self-clamping sealing strip can effectively prevent dust and moisture from entering the cabinet, significantly improve the sealing performance of the cabinet, and ensure that the internal components are protected from the influence of dust and moisture.
[0017] In summary, this utility model has the following beneficial effects:
[0018] During the manufacturing of this utility model, the entire profile is bent sequentially in sequence. Through multiple bends, the first to thirteenth bend surfaces are formed, which significantly enhances the overall rigidity and deformation resistance of the profile, ensuring its stability during long-term use. The arc-shaped bend between the seventh and eighth bend surfaces forms a circular arc surface, which not only avoids the defects of the traditional right-angle design, but also reduces the risk of personnel being injured by bumps during operation, improves operational safety, and makes the overall structure more streamlined and modern.
[0019] By installing the first to sixth reinforcing frames, the rigidity and deformation resistance of the entire profile structure can be significantly improved.
[0020] By applying an anti-corrosion coating, the corrosion resistance of the first to sixth reinforcing frames can be ensured, their service life can be extended, and the rigidity and durability of the entire profile can be guaranteed.
[0021] The self-clamping sealing strip design effectively prevents dust and moisture from entering the cabinet, significantly improving the cabinet's sealing performance and ensuring that internal components are protected from dust and moisture. Attached Figure Description
[0022] The accompanying drawings, which are provided to further illustrate the present invention and form part of this application, do not constitute an undue limitation of the present invention. In the drawings:
[0023] Figure 1 This is the front view of this utility model;
[0024] Figure 2 This is a top view of the present invention;
[0025] Figure 3 This is a schematic diagram of the structure of this utility model.
[0026] In the diagram, 1. Bone frame; 2. First bending surface; 3. Second bending surface; 4. Third bending surface; 5. Fourth bending surface; 6. Fifth bending surface; 7. Sixth bending surface; 8. Seventh bending surface; 9. Eighth bending surface; 10. Ninth bending surface; 11. Tenth bending surface; 12. Eleventh bending surface; 13. Twelfth bending surface; 14. Thirteenth bending surface; 15. First reinforcing frame; 16. Second reinforcing frame; 17. Third reinforcing frame; 18. Fourth reinforcing frame; 19. Fifth reinforcing frame; 20. Sixth reinforcing frame; 21. Arc-shaped reinforcing frame; 22. Mounting hole; 23. Self-clamping sealing strip. Detailed Implementation
[0027] The foregoing and other technical contents, features and effects of this utility model are described in conjunction with the appendix below. Figure 1 To be continued Figure 3The detailed description of the embodiments will make this clear. All structural details mentioned in the following embodiments are based on the accompanying drawings.
[0028] Exemplary embodiments of the present invention will now be described with reference to the accompanying drawings.
[0029] Example 1: A multi-fold profile structure, such as Figure 1 , 2 As shown in Figure 3, the structure includes a bone frame 1 and a first bending surface 2 located at the top of the frame. The first bending surface 2 bends 90° to the left to form a second bending surface 3. The second bending surface 3 bends 90° upward to form a third bending surface 4. The third bending surface 4 bends 180° to the right to form a fourth bending surface 5. The fourth bending surface 5 bends 90° to the right to form a fifth bending surface 6. The fifth bending surface 6 bends 90° upward to form a sixth bending surface 7. The sixth bending surface 7 bends to the right in an arc shape to form a seventh bending surface 8. The seventh bending surface 8 bends to the left... The bend forms the eighth bend surface 9. The eighth bend surface 9 bends downwards by 90° to form the ninth bend surface 10. The ninth bend surface 10 bends to the right by 90° to form the tenth bend surface 11. The tenth bend surface 11 bends to the left by 180° to form the eleventh bend surface 12. The eleventh bend surface 12 bends upwards by 90° to form the twelfth bend surface 13. The upper part of the twelfth bend surface 12 extends close to the area between the seventh bend surface 8 and the eighth bend surface 9. The extended end of the twelfth bend surface 13 bends to the left by 90° to form the thirteenth bend surface 14.
[0030] like Figure 1 , 2 As shown, a first reinforcing frame 15 is provided between the first bending surface 2 and the second bending surface 3; a second reinforcing frame 16 is provided between the second bending surface 3 and the third bending surface 4; a third reinforcing frame 17 is provided between the fifth bending surface 6 and the sixth bending surface 7; a third reinforcing frame 17 is provided between the sixth bending surface 7 and the seventh bending surface 8; a fourth reinforcing frame 18 is provided between the eighth bending surface 9 and the ninth bending surface 10; a fifth reinforcing frame 19 is provided between the ninth bending surface 10 and the tenth bending surface 11; and a sixth reinforcing frame 20 is provided between the twelfth bending surface 13 and the thirteenth bending surface 14. The outer sides of the first reinforcing frame 15, the second reinforcing frame 16, the third reinforcing frame 17, the fourth reinforcing frame 18, the fourth and fifth reinforcing frames, and the sixth reinforcing frame 20 are all coated with an anti-corrosion coating.
[0031] like Figure 2 , 3 As shown, an arc-shaped reinforcing frame 21 is provided between the seventh bending surface 8 and the eighth bending surface 9.
[0032] like Figure 1 As shown, the surface of the bone frame 1 has multiple equally spaced mounting holes 22 from top to bottom.
[0033] like Figure 2 , 3As shown, the first reinforcing frame 15, the second reinforcing frame 16, the third reinforcing frame 17, the fourth reinforcing frame 18, the fifth reinforcing frame 19 and the sixth reinforcing frame 20 are all provided with self-clamping sealing strips 23 on their outer sides.
[0034] In this embodiment of the invention, during manufacturing, the entire profile is bent sequentially in sequence. Through multiple bends, the first bending surface 2 to the thirteenth bending surface 14 are formed, which significantly enhances the overall rigidity and deformation resistance of the profile, ensuring its stability during long-term use. The arc-shaped bend between the seventh bending surface 8 and the eighth bending surface 9 not only avoids the defects of the traditional right-angle design, but also reduces the risk of injury to personnel due to bumps during operation, improves operational safety, and makes the overall structure more streamlined and modern.
[0035] The above description is a further detailed explanation of the present utility model in conjunction with specific embodiments, and it should not be considered that the specific implementation of the present utility model is limited to this. For those skilled in the art to which the present utility model pertains and related fields, any extensions, operation methods, and data substitutions made based on the technical solution concept of the present utility model should fall within the protection scope of the present utility model.
Claims
1. A multi-fold profile structure comprising a skeleton frame (1) and a first folded surface (2) arranged on top of the skeleton frame, characterized in that: The first bending surface (2) bends 90° to the left to form the second bending surface (3), the second bending surface (3) bends 90° upward to form the third bending surface (4), the third bending surface (4) bends 180° to the right to form the fourth bending surface (5), the fourth bending surface (5) bends 90° to the right to form the fifth bending surface (6), the fifth bending surface (6) bends 90° upward to form the sixth bending surface (7), the sixth bending surface (7) bends to the right in an arc shape to form the seventh bending surface (8), and the seventh bending surface (8) bends to the left to form the eighth bending surface (9). The eighth bending surface (9) is bent downwards by 90° to form the ninth bending surface (10). The ninth bending surface (10) is bent to the right by 90° to form the tenth bending surface (11). The tenth bending surface (11) is bent to the left by 180° to form the eleventh bending surface (12). The eleventh bending surface (12) is bent upwards by 90° to form the twelfth bending surface (13). The twelfth bending surface (12) extends upwards close to the area between the seventh bending surface (8) and the eighth bending surface (9). The extended end of the twelfth bending surface (13) is bent to the left by 90° to form the thirteenth bending surface (14).
2. The multi-fold profile structure according to claim 1, characterized in that: A first reinforcing frame (15) is provided between the first bending surface (2) and the second bending surface (3), a second reinforcing frame (16) is provided between the second bending surface (3) and the third bending surface (4), a third reinforcing frame (17) is provided between the fifth bending surface (6) and the sixth bending surface (7), a third reinforcing frame (17) is provided between the sixth bending surface (7) and the seventh bending surface (8), a fourth reinforcing frame (18) is provided between the eighth bending surface (9) and the ninth bending surface (10), a fifth reinforcing frame (19) is provided between the ninth bending surface (10) and the tenth bending surface (11), and a sixth reinforcing frame (20) is provided between the twelfth bending surface (13) and the thirteenth bending surface (14).
3. A multi-fold profile structure according to claim 1, characterized in that: An arc-shaped reinforcing frame (21) is provided between the seventh bending surface (8) and the eighth bending surface (9).
4. A multi-fold profile structure according to claim 1, characterized in that: The surface of the bone frame (1) has multiple equally spaced mounting holes (22) from top to bottom.
5. A multi-fold profile structure according to claim 2, characterized in that: The outer sides of the first reinforcing frame (15), the second reinforcing frame (16), the third reinforcing frame (17), the fourth reinforcing frame (18), the fourth and fifth reinforcing frames and the sixth reinforcing frame (20) are all coated with an anti-corrosion coating.
6. A multi-fold profile structure according to claim 1, characterized in that: The first reinforcing frame (15), the second reinforcing frame (16), the third reinforcing frame (17), the fourth reinforcing frame (18), the fifth reinforcing frame (19), and the sixth reinforcing frame (20) are all provided with self-clamping sealing strips (23) on their outer sides.