Novel titanium steel composite plate

By setting reinforcement components in the titanium steel composite panel to form a multi-layer inner and outer arc-shaped support structure, the problem of easy bending and deformation of the titanium steel composite panel during the load-bearing process is solved, and better load-bearing and stability are achieved.

CN223058515UActive Publication Date: 2025-07-04NANYANG ZANCHENG NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202420767043.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-15
Publication Date
2025-07-04
Estimated Expiration
2034-04-15

AI Technical Summary

Technical Problem

Existing titanium steel composite panels are prone to bending and deforming during load-bearing use, resulting in poor load-bearing properties.

Method used

Reinforcement components are arranged between the base layer of the titanium plate, including reinforced steel plate, inner arc reinforced plate, outer arc reinforced plate and bonded arc reinforced plate, forming a multi-layer inner and outer arc support structure to enhance the load-bearing capacity of the plate.

Benefits of technology

The load-bearing properties of titanium steel composite panels are improved, the possibility of deformation and damage is reduced, and the overall stability of the panels is enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a novel titanium steel composite plate, particularly relates to the technical field of titanium steel composite plates, and mainly comprises an upper titanium plate base layer, a lower titanium plate base layer is arranged below the upper titanium plate base layer, and a reinforcing assembly is arranged between the lower titanium plate base layer and the upper titanium plate base layer; the reinforcing assembly comprises a reinforcing steel plate arranged between the lower titanium plate base layer and the upper titanium plate base layer, a plurality of inner arc reinforcing plates are fixedly connected to the upper surface of the reinforcing steel plate from right to left in sequence, and an outer arc reinforcing plate fixedly connected with the reinforcing steel plate is arranged at the top end of each inner arc reinforcing plate. A plurality of attached arc-shaped reinforcing plates are fixedly connected to the lower surface of the reinforcing steel plate from right to left in sequence. According to the novel titanium steel composite plate, the reinforcing assemblies are arranged, the attached arc-shaped reinforcing plates can play a role in bending and reinforcing the interiors of the attached outer arc supporting plates, the attached outer arc supporting plates play a role in reinforcing the reinforcing steel plates, the bearing capacity of the upper titanium plate base layer is larger, and the bearing capacity of the novel titanium steel composite plate is better.
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Description

Technical Field

[0001] The utility model relates to the technical field of titanium-steel composite plates, and more specifically, the utility model relates to a novel titanium-steel composite plate. Background Art

[0002] The titanium-steel composite plate is a composite plate combining two materials of titanium and steel, and it has the following advantages: good corrosion resistance: due to the extremely high corrosion resistance of titanium, the titanium-steel composite plate also has excellent corrosion resistance and can be used for a long time in various harsh environments, high strength and light weight: the titanium-steel composite plate has relatively high strength and low density, so it has excellent load-bearing capacity and seismic performance and is suitable for various building structures and equipment.

[0003] After retrieval in the existing literature, the utility model patent with the Chinese patent publication number CN215862829U discloses a titanium-steel composite plate. In this patent, the titanium-steel composite plate has a V-shaped part cooperating with a triangular part and a fixing column cooperating with a cylindrical hole, so that the titanium plate base frame, the titanium plate side frame and the steel frame are mutually limited, and then the two ends are welded, so that the connection between the whole titanium-steel composite plates is more stable and it is not easy to have the situation of the separation of the titanium plate and the steel plate, and the structure of the triangular part cooperating with the triangular installation cavity is stable; however, the titanium-steel composite plate still has the following defects;

[0004] During the load-bearing use of the above-mentioned titanium-steel composite plate, since the titanium-steel composite plate is placed flat, when the titanium-steel composite plate is subjected to a large load, it will directly cause the titanium-steel composite plate to change from flat to bent, and it is difficult to form a reinforcement support inside the titanium-steel composite plate, and the load-bearing performance of the titanium-steel composite plate is poor. Therefore, this application provides a novel titanium-steel composite plate. Content of the Utility Model

[0005] In order to overcome the above defects of the prior art, the utility model provides a novel titanium-steel composite plate.

[0006] To achieve the above object, the utility model provides the following technical solution: a novel titanium-steel composite plate, including an upper titanium plate base layer, a lower titanium plate base layer is installed below the upper titanium plate base layer, and a reinforcement component is arranged between the lower titanium plate base layer and the upper titanium plate base layer;

[0007] The reinforcement component includes a reinforcement steel plate disposed between the lower titanium plate base layer and the upper titanium plate base layer. A plurality of inner arc reinforcement plates are fixedly connected to the upper surface of the reinforcement steel plate in sequence from right to left. An outer arc reinforcement plate fixedly connected to the reinforcement steel plate is provided at the top end of each inner arc reinforcement plate. A plurality of fitting arc reinforcement plates are fixedly connected to the lower surface of the reinforcement steel plate in sequence from right to left. A fitting outer arc support plate fixedly connected to the reinforcement steel plate is provided at the bottom end of each fitting arc reinforcement plate. The inner arc reinforcement plate and the outer arc reinforcement plate are fixedly connected. The plurality of outer arc reinforcement plates are arranged at equal intervals in sequence from right to left, and the plurality of outer arc reinforcement plates are all fixedly connected to the upper titanium plate base layer. The plurality of fitting outer arc support plates are arranged in sequence from right to left. The fitting arc reinforcement plate and the fitting outer arc support plate are fixedly connected.

[0008] Preferably, two short arc-shaped support bars are fixedly connected to the front and rear of the reinforcement frame. The two short arc-shaped support bars are symmetrically arranged and are welded between them. Two long arc-shaped support bars are fixedly connected to both sides of the upper titanium plate base layer. The two long arc-shaped support bars are symmetrically arranged and are made of stainless steel.

[0009] By adopting the above technical solution, the lower titanium plate base layer plays a supporting role for the plurality of fitting outer arc support plates. At the same time, the two short arc-shaped support bars form a symmetrical arc reinforcement, and the reinforcement frame achieves the reinforcement operation. The two long arc-shaped support bars can play a symmetrical reinforcement role for the reinforcement frame, and the outer wall of the upper titanium plate base layer is not easily deformed. The fitting arc reinforcement plate generates a large supporting force after bending, and the fitting arc reinforcement plate can play a bending reinforcement role inside the fitting outer arc support plate. The fitting outer arc support plate plays a reinforcement role for the reinforcement steel plate. At the same time, the reinforcement steel plate plays a reinforcement and support role for the plurality of outer arc reinforcement plates. The inner arc reinforcement plate can play a bending reinforcement role inside the outer arc reinforcement plate. The bending of the outer arc reinforcement plate plays a reinforcement role for the upper titanium plate base layer, and the upper titanium plate base layer has a greater bearing capacity.

[0010] Preferably, a plurality of first horizontal friction strips arranged at equal intervals in sequence from left to right are installed at the top end of the upper titanium plate base layer. A second horizontal friction strip is provided on one side of each first horizontal friction strip. A plurality of vertical friction strips are installed between the second horizontal friction strip and the first horizontal friction strip.

[0011] Preferably, both the second horizontal friction strip and the first horizontal friction strip are integrally formed with the upper titanium plate base layer, and the upper surfaces of the first horizontal friction strip and the second horizontal friction strip are on the same horizontal plane. The plurality of vertical friction strips are integrally formed with the upper titanium plate base layer, and the plurality of vertical friction strips are arranged at equal intervals in sequence from right to left.

[0012] By adopting the above technical solution, when the user's foot steps on the upper surface of the upper titanium plate base layer, the frictional force of the foot is increased by multiple first horizontal friction strips, the frictional force of the foot can be increased by multiple second horizontal friction strips, and the lateral frictional force of the foot can be increased by multiple longitudinal friction strips.

[0013] The technical effects and advantages of the present utility model:

[0014] 1. By arranging a reinforcement component, the lower titanium plate base layer plays a supporting role for multiple fitting outer arc support plates, the fitting arc-shaped reinforcement plate can play a bending reinforcement role inside the fitting outer arc support plate, the fitting outer arc support plate plays a reinforcement role for the reinforcement steel plate, and the inner arc reinforcement plate can play a bending reinforcement role inside the outer arc reinforcement plate, which is not easy to cause deformation and damage of the upper titanium plate base layer, the upper titanium plate base layer has a greater bearing capacity, and the new titanium-steel composite plate has better load-bearing performance;

[0015] 2. When the user's foot steps on the upper surface of the upper titanium plate base layer, the lateral frictional force of the foot is increased by multiple first horizontal friction strips, the frictional force of the foot can be increased by multiple second horizontal friction strips, and the lateral frictional force of the foot can be increased by multiple longitudinal friction strips, effectively improving the anti-slip performance of the upper titanium plate base layer. Description of the Drawings

[0016] Figure 1 It is a schematic diagram of the overall structure of a new type of titanium-steel composite plate provided by the present utility model.

[0017] Figure 2 It is a schematic diagram of the vertical cross-section structure of a new type of titanium-steel composite plate of the present utility model.

[0018] Figure 3 It is a schematic diagram of a partial structure of the upper titanium plate base layer of a new type of titanium-steel composite plate of the present utility model after being truncated.

[0019] Figure 4 It is a schematic diagram of a partial vertical cross-section structure at the connection between the upper titanium plate base layer and the outer arc reinforcement plate of a new type of titanium-steel composite plate of the present utility model.

[0020] Reference numerals are: 1. Upper titanium plate base layer; 2. Lower titanium plate base layer; 3. Reinforcement steel plate; 4. Inner arc reinforcement plate; 5. Outer arc reinforcement plate; 6. Fitting arc-shaped reinforcement plate; 7. Fitting outer arc support plate; 8. Reinforcement frame; 9. Short arc-shaped support bar; 10. Long arc-shaped support bar; 11. First horizontal friction strip; 12. Second horizontal friction strip; 13. Longitudinal friction strip. Detailed Description of the Invention

[0021] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without making creative efforts shall fall within the protection scope of the present utility model.

[0022] As shown in the attached Figures 1-4 figures, there is a new type of titanium-steel composite plate. A reinforcement component is provided on the new type of titanium-steel composite plate. The setting of the reinforcement component can prevent the deformation and damage of the upper titanium plate base layer 1, and the upper titanium plate base layer 1 has a greater bearing capacity. The new type of titanium-steel composite plate has better load-bearing performance. The specific structure of the reinforcement component is set as follows:

[0023] In some embodiments, as shown in the attached Figures 1-4 figures, the reinforcement component includes a reinforcement steel plate 3 arranged between the lower titanium plate base layer 2 and the upper titanium plate base layer 1. A plurality of inner arc reinforcement plates 4 are fixedly connected to the upper surface of the reinforcement steel plate 3 in sequence from right to left. An outer arc reinforcement plate 5 fixedly connected to the reinforcement steel plate 3 is provided at the top of each inner arc reinforcement plate 4. A plurality of fitting arc reinforcement plates 6 are fixedly connected to the lower surface of the reinforcement steel plate 3 in sequence from right to left. A fitting outer arc support plate 7 fixedly connected to the reinforcement steel plate 3 is provided at the bottom of each fitting arc reinforcement plate 6. The inner arc reinforcement plate 4 and the outer arc reinforcement plate 5 are fixedly connected. The plurality of outer arc reinforcement plates 5 are arranged at equal intervals in sequence from right to left, and the plurality of outer arc reinforcement plates 5 are all fixedly connected to the upper titanium plate base layer 1. The plurality of fitting outer arc support plates 7 are arranged in sequence from right to left, and the fitting arc reinforcement plate 6 and the fitting outer arc support plate 7 are fixedly connected;

[0024] The working principle of the titanium-steel composite plate in this embodiment is as follows;

[0025] When in use for bearing weight, when the middle part is placed on the upper surface of the upper titanium plate base layer 1, the lower titanium plate base layer 2 plays a supporting role for a plurality of fitting outer arc support plates 7. At the same time, two short arc-shaped support bars 9 form a symmetric arc reinforcement, and the reinforcement frame 8 achieves the reinforcement operation. And two long arc-shaped support bars 10 can play a symmetric reinforcement role for the reinforcement frame 8. After the reinforcement frame 8 is stressed, it can generate a large arc support force, so that the outer wall of the upper titanium plate base layer 1 is not easily deformed, and the outer wall of the upper titanium plate base layer 1 can bear a large weight. And the fitting arc-shaped reinforcement plate 6 generates a large support force after bending, and the fitting arc-shaped reinforcement plate 6 can play a bending reinforcement role inside the fitting outer arc support plate 7. The fitting outer arc support plate 7 plays a reinforcement role for the reinforcement steel plate 3. At the same time, the reinforcement steel plate 3 plays a reinforcement and support role for a plurality of outer arc reinforcement plates 5. And the inner arc reinforcement plate 4 can play a bending reinforcement role inside the outer arc reinforcement plate 5. The bending of the outer arc reinforcement plate 5 plays a reinforcement role for the upper titanium plate base layer 1. The lower surface of the upper titanium plate base layer 1 can form multiple inner and outer arc supports, increasing the firmness of the upper titanium plate base layer 1. The upper titanium plate base layer 1 has a greater bearing capacity and better load-bearing performance, and is not easily deformed and damaged.

[0026] In some embodiments, as shown in the attached Figures 1-3 figure, two short arc-shaped support bars 9 are fixedly connected to both the front and rear of the reinforcement frame 8. The two short arc-shaped support bars 9 are symmetrically arranged, and the two short arc-shaped support bars 9 are welded to each other, so as to facilitate the two short arc-shaped support bars 9 to form a symmetric arc reinforcement, and the reinforcement frame 8 achieves the reinforcement operation, increasing the support force on the outer wall of the reinforcement frame 8 and not easily causing the reinforcement frame 8 to be deformed and damaged. Two long arc-shaped support bars 10 are fixedly connected to both sides of the upper titanium plate base layer 1. The two long arc-shaped support bars 10 are symmetrically arranged, and the long arc-shaped support bars 10 are made of stainless steel material, so as to facilitate the two long arc-shaped support bars 10 to play a symmetric reinforcement role for the reinforcement frame 8. Especially, the two long arc-shaped support bars 10 are symmetrically arranged to form an inner and outer arc reinforcement support, and it is not easy to cause the reinforcement frame 8 to bend.

[0027] In some embodiments, as shown in the attached Figure 1 figure, a plurality of first horizontal friction strips 11 arranged at equal intervals from left to right are installed at the top end of the upper titanium plate base layer 1. A second horizontal friction strip 12 is provided on one side of each first horizontal friction strip 11. A plurality of vertical friction strips 13 are installed between the second horizontal friction strip 12 and the first horizontal friction strip 11. The second horizontal friction strip 12 and the first horizontal friction strip 11 are integrally formed with the upper titanium plate base layer 1, and the upper surfaces of the first horizontal friction strip 11 and the second horizontal friction strip 12 are on the same horizontal plane. A plurality of vertical friction strips 13 are integrally formed with the upper titanium plate base layer 1, and the plurality of vertical friction strips 13 are arranged at equal intervals from right to left;

[0028] When using the titanium plate base layer 1 according to the above structure, when the user steps on the upper surface of the upper titanium plate base layer 1 with the feet, the multiple first transverse friction strips 11 increase the friction force of the feet. At the same time, the multiple second transverse friction strips 12 can increase the friction force of the feet, and the multiple longitudinal friction strips 13 can increase the lateral friction force of the feet. When using the upper titanium plate base layer 1, it is not easy to slip.

[0029] Finally, the above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A new type of titanium-steel composite plate, comprising an upper titanium plate base layer (1) and a reinforcement frame (8), wherein a lower titanium plate base layer (2) is installed below the upper titanium plate base layer (1), and it is characterized in that: A reinforcement component is provided between the lower titanium plate base layer (2) and the upper titanium plate base layer (1); The reinforcement component includes a reinforcement steel plate (3) disposed between the lower titanium plate base layer (2) and the upper titanium plate base layer (1). A plurality of inner arc reinforcement plates (4) are fixedly connected to the upper surface of the reinforcement steel plate (3) in sequence from right to left. An outer arc reinforcement plate (5) fixedly connected to the reinforcement steel plate (3) is provided at the top end of each inner arc reinforcement plate (4). A plurality of fitting arc reinforcement plates (6) are fixedly connected to the lower surface of the reinforcement steel plate (3) in sequence from right to left. A fitting outer arc support plate (7) fixedly connected to the reinforcement steel plate (3) is provided at the bottom end of each fitting arc reinforcement plate (6).

2. A novel titanium-steel composite plate according to claim 1, characterized in that: The inner arc reinforcement plate (4) and the outer arc reinforcement plate (5) are fixedly connected. The plurality of outer arc reinforcement plates (5) are arranged at equal intervals in sequence from right to left, and the plurality of outer arc reinforcement plates (5) are all fixedly connected to the upper titanium plate base layer (1).

3. A novel titanium-steel composite plate according to claim 1, wherein: The plurality of fitting outer arc support plates (7) are arranged in sequence from right to left. The fitting arc reinforcement plate (6) and the fitting outer arc support plate (7) are fixedly connected.

4. A novel titanium-steel composite plate according to claim 1, characterized in that: Two short arc support bars (9) are fixedly connected to the front and rear of the reinforcement frame (8). The two short arc support bars (9) are symmetrically arranged and are welded between them.

5. A novel titanium-steel composite plate according to claim 1, characterized in that: Two long arc support bars (10) are fixedly connected to both sides of the upper titanium plate base layer (1). The two long arc support bars (10) are symmetrically arranged, and the long arc support bars (10) are made of stainless steel.

6. A novel titanium-steel composite plate according to claim 1, characterized in that: A plurality of first horizontal friction bars (11) arranged at equal intervals in sequence from left to right are installed at the top end of the upper titanium plate base layer (1). A second horizontal friction bar (12) is provided on one side of each first horizontal friction bar (11). A plurality of vertical friction bars (13) are installed between the second horizontal friction bar (12) and the first horizontal friction bar (11).

7. A novel titanium-steel composite plate according to claim 6, characterized in that: Both the second horizontal friction bar (12) and the first horizontal friction bar (11) are integrally formed with the upper titanium plate base layer (1), and the upper surfaces of the first horizontal friction bar (11) and the second horizontal friction bar (12) are on the same horizontal plane.

8. A novel titanium-steel composite plate according to claim 6, characterized in that: The plurality of vertical friction bars (13) are all integrally formed with the upper titanium plate base layer (1), and the plurality of vertical friction bars (13) are arranged at equal intervals in sequence from right to left.