Thirteen-fold section bar
By optimizing the bending angle of the thirteen-fold profile and setting reinforcement plates and mounting plates, the problems of low material utilization and insufficient structural stability of traditional profiles have been solved, achieving the effect of efficient material utilization and improved load-bearing capacity.
Patent Information
- Application Number
- CN202520566834.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-03-28
AI Technical Summary
Traditional thirteen-fold profiles suffer from unreasonable bending angles during design and manufacturing, resulting in low material utilization, limited load-bearing capacity, and insufficient structural stability.
By optimizing the bending angle design, multiple folds are formed, and reinforcing plates and mounting plates are set on the profile frame and fixed by welding. Buffer pads are set on the surface of the reinforcing plates to enhance structural strength and stability, and sealing gaskets are set on the mounting plates to improve installation efficiency and sealing.
This approach maximizes material utilization, improves the load-bearing capacity and structural stability of the profiles, while reducing production costs and enhancing installation efficiency and aesthetics.
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Figure CN223726052U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to metal material field especially is a kind of thirteen profile. BACKGROUND
[0002] With the continuous development of industrial technology, higher requirements are put forward for the shape, performance and carrying capacity of steel. Traditional steel is often single in shape, which is difficult to meet the needs of complex structure. Although the existing thirteen profile is formed by multiple bending processing, it has multiple folding surfaces, but there are still some problems in the design and manufacturing process, such as unreasonable bending angle, low material utilization rate, limited carrying capacity and insufficient structural stability. The utility model aims to optimize the bending angle and structural design to improve the material utilization rate, enhance the carrying capacity and structural stability. SUMMARY
[0003] In view of the above situation, in order to overcome the defects of the prior art, the utility model aims to provide a kind of thirteen profile, it has the advantage of improving material utilization rate and carrying capacity by optimizing bending angle.
[0004] The above technical purpose of the utility model is realized by the following technical scheme:
[0005] A kind of thirteen profile, including profile skeleton and the first bending surface of being arranged at the top of profile skeleton, the second bending surface is formed by the left 90 ° bending of the upper direction of the first bending surface, the third bending surface is formed by the 90 ° bending of the second bending surface upwards, the fourth bending surface is formed by the left 45 ° bending of the third bending surface, the fifth bending surface is formed by the left 45 ° bending of the fourth bending surface, the sixth bending surface is formed by the 90 ° bending of the fifth bending surface upwards, the seventh bending surface is formed by the left 90 ° bending of the sixth bending surface, the eighth bending surface is formed by the 90 ° bending of the seventh bending surface upwards, the ninth bending surface is formed by the right 180 ° bending of the eighth bending surface, the tenth bending surface is formed by the right 90 ° bending of the ninth bending surface, the eleventh bending surface is formed by the 90 ° bending of the tenth bending surface downwards, the twelfth bending surface is formed by the right 90 ° bending of the eleventh bending surface, the thirteenth bending surface is formed by the left 180 degrees of the twelfth bending surface, and the thirteenth bending surface is fixedly welded with the first bending surface.
[0006] By adopting the above technical scheme, through the above bending design, the profile has multiple folding surfaces, which can provide better carrying capacity and stability while maintaining relatively light weight, and the optimized bending angle design improves the utilization rate of the profile.
[0007] Further arrangement: the first reinforcing plate, the second reinforcing plate, the third reinforcing plate, the fourth reinforcing plate, the fifth reinforcing plate, the sixth reinforcing plate, the seventh reinforcing plate and the eighth reinforcing plate are fixed by welding between adjacent ones.
[0008] By adopting the above technical scheme, the structural strength and deformation resistance of the entire profile can be improved through the arrangement of the reinforcing plates.
[0009] Further arrangement: the first reinforcing plate, the second reinforcing plate, the third reinforcing plate, the fourth reinforcing plate, the fifth reinforcing plate, the sixth reinforcing plate, the seventh reinforcing plate and the eighth reinforcing plate are fixed by welding between adjacent ones.
[0010] By adopting the above technical scheme, the structural strength and deformation resistance of the entire profile can be improved through the arrangement of the reinforcing plates.
[0011] Further arrangement: the first mounting plate and the second mounting plate are provided with a plurality of mounting holes which are equidistantly and symmetrically arranged from top to bottom.
[0012] By adopting the above technical scheme, the mounting holes are arranged for fixing external devices, and the symmetric arrangement of the mounting holes improves the mounting efficiency and stability of the entire profile.
[0013] Further arrangement: the first mounting plate and the second mounting plate are provided with a plurality of mounting holes which are equidistantly and symmetrically arranged from top to bottom.
[0014] By adopting the above technical scheme, the mounting holes are arranged for fixing external devices, and the symmetric arrangement of the mounting holes improves the mounting efficiency and stability of the entire profile.
[0015] Further arrangement: the fourth reinforcing plate is provided with a buffer pad.
[0016] By adopting the above technical scheme, the buffer pad is arranged to absorb external impact force and reduce vibration and noise of the profile under stress.
[0017] In summary, the utility model has the following beneficial effects:
[0018] The thirteen-fold profile is formed by multiple bending to form multiple bending surfaces, which can maximize the use of materials while maintaining a relatively light weight, reduce waste generation and reduce production costs.
[0019] The thirteen-fold section bar can provide higher bearing capacity while keeping lighter self weight through complex bending design, and is suitable for industrial scenes requiring high strength support.
[0020] The reinforcing plate effectively enhances the structural stability of the section bar, prevents deformation or fracture of the section bar under stress, and prolongs the service life of the section bar.
[0021] The symmetrical design of the mounting plate and the equidistant arrangement of the mounting holes make the installation of external equipment more convenient, improve the installation efficiency, and reduce the adjustment time in the installation process.
[0022] The thirteen-fold section bar not only has excellent performance, but also improves the appearance aesthetics through complex bending design, and is suitable for industrial scenes requiring high aesthetics. BRIEF DESCRIPTION OF DRAWINGS
[0023] The drawings described herein are used to provide further understanding of the utility model and form part of the present application, but do not constitute undue limitation on the utility model, and in the drawings:
[0024] Figure 1 is the front view of the utility model;
[0025] Figure 2 is the top view of the utility model;
[0026] Figure 3 is a structural schematic view of the utility model.
[0027] In the drawings, 1, section bar framework; 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 plate; 16, second reinforcing plate; 17, third reinforcing plate; 18, fourth reinforcing plate; 19, fifth reinforcing plate; 20, sixth reinforcing plate; 21, seventh reinforcing plate; 22, eighth reinforcing plate; 23, first mounting plate; 24, second mounting plate; 25, mounting hole; 26, sealing gasket; 27, buffer pad. DETAILED DESCRIPTION
[0028] The foregoing and other technical contents, features and effects of the utility model are described below in conjunction with the accompanying drawings. Figure 1 to the accompanying drawings Figure 3 The detailed description of the embodiments will be clearly presented. The structural contents mentioned in the following embodiments are all referred to the drawings.
[0029] The various exemplary embodiments of the present application will be described below with reference to the accompanying drawings.
[0030] Embodiment 1: a thirteen-fold profile, as shown in Figure 1 , 2 , 3, comprising a profile skeleton 1 and a first bending surface 2 provided on the top of the profile skeleton 1, the first bending surface 2 is bent 90° to the left to form a second bending surface 3, the second bending surface 3 is bent 90° upward to form a third bending surface 4, the third bending surface 4 is bent 45° to the left to form a fourth bending surface 5, the fourth bending surface 5 is bent 45° to the left to form a fifth bending surface 6, the fifth bending surface 6 is bent 90° upward to form a sixth bending surface 7, the sixth bending surface 7 is bent 90° to the left to form a seventh bending surface 8, the seventh bending surface 8 is bent 90° upward to form an eighth bending surface 9, the eighth bending surface 9 is bent 180° to the right to form a ninth bending surface 10, the ninth bending surface 10 is bent 90° to the right to form a tenth bending surface 11, the tenth bending surface 11 is bent 90° downward to form an eleventh bending surface 12, the eleventh bending surface 12 is bent 90° to the right to form a twelfth bending surface 13, the twelfth bending surface 13 is bent 180° to the left to form a thirteenth bending surface 14, and the thirteenth bending surface 14 is fixedly welded with the first bending surface 2.
[0031] As shown in Figure 1 , 3 , a first reinforcing plate 15 is arranged between the first bending surface 2 and the second bending surface 3, a second reinforcing plate 16 is arranged between the second bending surface 3 and the third bending surface 4, a third reinforcing plate 17 is arranged between the third bending surface 4 and the fourth bending surface 5, a fourth reinforcing plate 18 is arranged between the fourth bending surface 5 and the fifth bending surface 6, a fifth reinforcing plate 19 is arranged between the fifth bending surface 6 and the sixth bending surface 7, a sixth reinforcing plate 20 is arranged between the sixth bending surface 7 and the seventh bending surface 8, a seventh reinforcing plate 21 is arranged between the seventh bending surface 8 and the eighth bending surface 9, an eighth reinforcing plate 22 is arranged between the eighth bending surface 9 and the ninth bending surface 10, and the first reinforcing plate 15, the second reinforcing plate 16, the third reinforcing plate 17, the fourth reinforcing plate 18, the fifth reinforcing plate 19, the sixth reinforcing plate 20, the seventh reinforcing plate 21 and the eighth reinforcing plate 22 are fixedly welded between adjacent ones.
[0032] As shown in Figure 3 , a first mounting plate 23 is arranged between the tenth bending surface 11 and the eleventh bending surface 12, and a second mounting plate 24 is arranged between the eleventh bending surface 12 and the twelfth bending surface 13, a plurality of mounting holes 25 are arranged on the first mounting plate 23 and the second mounting plate 24 from top to bottom, the mounting holes 25 are equidistantly and symmetrically arranged, and sealing gaskets 26 are arranged on the surfaces of the first mounting plate 23 and the second mounting plate 24.
[0033] As shown in Figure 2 , a buffer pad 27 is arranged on the surface of the fourth reinforcing plate 18.
[0034] In the embodiment of the utility model, through forming thirteen bending sections by multiple times of bending, higher carrying capacity and stability can be provided while keeping lighter weight. Specifically, by optimizing the bending angle (such as 45°, 90°, 180°, etc.), the material utilization rate is improved, and material waste is reduced. In addition, the setting of the reinforcing plate enhances the overall structural strength of the section bar, the design of the mounting plate and the sealing gasket 26 improves the mounting efficiency and sealing performance, and the setting of the buffer pad 27 reduces the vibration and noise of the section bar when stressed.
[0035] The above is a further detailed description of the utility model made in combination with the specific embodiments, and cannot be determined that the specific implementation of the utility model is limited to this; for the person skilled in the art and the related technical field of the utility model, the expansion and operation method, data replacement made on the basis of the technical scheme idea of the utility model should be within the protection scope of the utility model.
Claims
1. A thirteen-fold profile, comprising a profile skeleton (1) and a first bending surface (2) arranged on the top of the profile skeleton (1), characterized in that: The first bending surface (2) is bent leftwards by 90 degrees to form a second bending surface (3), the second bending surface (3) is bent upwards by 90 degrees to form a third bending surface (4), the third bending surface (4) is bent leftwards by 45 degrees to form a fourth bending surface (5), the fourth bending surface (5) is bent leftwards by 45 degrees to form a fifth bending surface (6), the fifth bending surface (6) is bent upwards by 90 degrees to form a sixth bending surface (7), the sixth bending surface (7) is bent leftwards by 90 degrees to form a seventh bending surface (8), the seventh bending surface (8) is bent upwards by 90 degrees to form an eighth bending surface (9), the eighth bending surface (9) is bent rightwards by 180 degrees to form a ninth bending surface (10), the ninth bending surface (10) is bent rightwards by 90 degrees to form a tenth bending surface (11), the tenth bending surface (11) is bent downwards by 90 degrees to form an eleventh bending surface (12), the eleventh bending surface (12) is bent rightwards by 90 degrees to form a twelfth bending surface (13), the twelfth bending surface (13) is bent leftwards by 180 degrees to form a thirteenth bending surface (14), and the thirteenth bending surface (14) is fixedly welded with the first bending surface (2).
2. A thirteen-fold profile according to claim 1, characterized in that: The first reinforcing plate (15) is arranged between the first bending surface (2) and the second bending surface (3), the second reinforcing plate (16) is arranged between the second bending surface (3) and the third bending surface (4), the third reinforcing plate (17) is arranged between the third bending surface (4) and the fourth bending surface (5), the fourth reinforcing plate (18) is arranged between the fourth bending surface (5) and the fifth bending surface (6), the fifth reinforcing plate (19) is arranged between the fifth bending surface (6) and the sixth bending surface (7), the sixth reinforcing plate (20) is arranged between the sixth bending surface (7) and the seventh bending surface (8), the seventh reinforcing plate (21) is arranged between the seventh bending surface (8) and the eighth bending surface (9), and the eighth reinforcing plate (22) is arranged between the eighth bending surface (9) and the ninth bending surface (10).
3. A thirteen-fold profile according to claim 2, characterized in that: The first reinforcing plate (15), the second reinforcing plate (16), the third reinforcing plate (17), the fourth reinforcing plate (18), the fifth reinforcing plate (19), the sixth reinforcing plate (20), the seventh reinforcing plate (21) and the eighth reinforcing plate (22) are fixedly welded between adjacent ones.
4. A thirteen-fold profile according to claim 1, characterized in that: The first mounting plate (23) and the second mounting plate (24) are both provided with a plurality of mounting holes (25) which are equidistantly and symmetrically arranged from top to bottom.
5. A thirteen-fold profile according to claim 4, characterized in that: The first mounting plate (23) and the second mounting plate (24) are both provided with sealing gaskets (26).
6. A thirteen-fold profile according to claim 2, characterized in that: The fourth reinforcing plate (18) is provided with a buffer pad (27).