Brickwork double-sided reinforcing and connecting structure

By using a double-sided masonry reinforcement connection structure and T-shaped and L-shaped wall connection and fixing components, the safety hazards and resource waste caused by floor aging are solved, and the floor is reinforced and stress is offset, thus extending its service life.

CN223593852UActive Publication Date: 2025-11-25GUANGZHOU HENGDING CONSTR ENG CO LTD
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Patent Information

Application Number
CN202423128554.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-11-25
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

The existing masonry structure of the building is aging and posing safety hazards over time. Direct demolition would result in a waste of resources and would not be used effectively.

Method used

The masonry double-sided reinforcement connection structure is adopted, including T-shaped walls and L-shaped walls. Reinforcement is achieved through connecting components and fixing components. Various methods are used to install the reinforcement components to offset stress and enhance structural stability.

Benefits of technology

It effectively reinforces the building structure, ensuring its continued use, simplifies the installation process, adapts to different environments, counteracts stress, and extends its service life.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a masonry double-sided reinforcing connecting structure which comprises a T-shaped wall body and an L-shaped wall body, a connecting assembly used for reinforcing is arranged on the surface of the T-shaped wall body, an outer covering stress plate is arranged on the outer surface of the L-shaped wall body, and an inner covering stress plate is arranged on the inner surface of the L-shaped wall body. A fixing assembly is arranged between the inner covering stress plate and the outer covering stress plate, different reinforcing modes can be selected through different connecting assemblies according to different conditions of the T-shaped wall body, then the strength of the T-shaped wall body can be effectively improved, meanwhile, when the T-shaped wall body is stressed, the stress can be effectively counteracted through the stress plates at different positions, and the T-shaped wall body is prevented from being damaged. When the L-shaped wall body is reinforced, a plurality of third connecting rods are inserted in a penetrating mode, different stress plates can be effectively fixed, part of stress can be counteracted in an auxiliary mode while fixing is guaranteed, the floor can be reinforced through the connecting assembly, follow-up use of the connecting assembly is guaranteed, and meanwhile the connecting assembly can adopt multiple modes in the reinforcing process.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of masonry reinforcement technology, in particular to a masonry double -sided reinforcement connecting structure. BACKGROUND

[0002] In the process of using floor masonry, it often causes aging of the connecting part with the elapse of time, and further causes a security risk, but the floor is now disassembled after a certain time of actual use to build a new floor, which can solve the security risk, but in actual operation, directly overturning the original floor will cause waste of the floor which still has use value, and cannot better utilize resources. Therefore, the technical personnel in the art provide a masonry double -sided reinforcement connecting structure to solve the problems raised in the above background technology. CONTENT OF THE UTILITY MODEL

[0003] The utility model aims at providing a masonry double -sided reinforcement connecting structure to solve the problems raised in the above background technology.

[0004] To achieve the above -mentioned purpose, the utility model provides the following technical scheme:

[0005] A masonry double -sided reinforcement connecting structure, comprising a T-shaped wall body and an L-shaped wall body, the T-shaped wall body surface is provided with a connecting assembly for reinforcing and reinforcing, the L-shaped wall body outer surface is provided with an outer covering stress plate, the L-shaped wall body inner surface is provided with an inner covering stress plate, and a fixing assembly is arranged between the inner covering stress plate and the outer covering stress plate.

[0006] Further, the connecting assembly comprises a first transverse stress plate, a first fixed hole, a second fixed hole, a first longitudinal stress plate and a first fixed rod, the first transverse stress plate is arranged on the upper end of the first reserved slot, the T-shaped wall body surface is provided with the first longitudinal stress plate, the first transverse stress plate surface is provided with the first fixed hole penetrating through, and the first reserved slot corresponding with the first fixed hole is arranged on the T-shaped wall body.

[0007] Further, the first fixed rod is clamped in the first reserved slot and the first fixed hole, the second fixed hole penetrating through is arranged on the surface of the first longitudinal stress plate, the second reserved slot corresponding with the second fixed hole is arranged on the T-shaped wall body, and another first fixed rod is clamped in the second reserved slot and the second fixed hole.

[0008] Further, the connecting assembly comprises a second transverse stress plate, an auxiliary transverse stress plate, a second longitudinal stress plate, a first welding connecting slot, a first connecting rod and a first reserved through slot, the second transverse stress plate is arranged on the upper surface of the T-shaped wall body, the first welding connecting slot penetrating through is arranged on the surface of the second transverse stress plate, and the auxiliary transverse stress plate and the second longitudinal stress plate are arranged on the lower surface of the T-shaped wall body.

[0009] Further, the auxiliary transverse stress plate and the upper end of the second longitudinal stress plate are fixedly connected with the first reserved through slot, the T-shaped wall body is provided with the first reserved through slot for inserting the first connecting rod, and one end of the first connecting rod is arranged in the first welded connecting slot.

[0010] Further, the connecting assembly comprises a third longitudinal stress plate, an inserting rod, a fourth longitudinal stress plate, a second welded connecting slot, an inserting slot, a second connecting rod and a second reserved through slot, the T-shaped wall body is provided with the fourth longitudinal stress plate on the surface, the T-shaped wall body is provided with the corresponding third longitudinal stress plate on the other surface, the third longitudinal stress plate and the fourth longitudinal stress plate are provided with the opposite second welded connecting slots on the upper end, and the T-shaped wall body is provided with the second reserved through slot corresponding to the second welded connecting slot.

[0011] Further, the second connecting rod is arranged in the second reserved through slot and the second welded connecting slot, the inserting rod is fixedly connected to the upper end of the third longitudinal stress plate and the fourth longitudinal stress plate, the inserting slot is arranged on the T-shaped wall body, and the inserting rod is arranged in the inserting slot.

[0012] Further, the fixing assembly comprises a third reserved through slot, a third connecting rod, a third fixed hole, a third reserved slot, a second fixed rod, a threaded slot and a fourth reserved through slot, the third connecting rod is fixedly connected to the inner side wall of the outer covering stress plate, the threaded slot for fixing the third connecting rod is arranged on the surface of the inner covering stress plate.

[0013] Further, the fourth reserved through slot is arranged on the L-shaped wall body and penetrates the L-shaped wall body, the third connecting rod penetrates the fourth reserved through slot, the third reserved through slot is arranged on the L-shaped wall body and penetrates the L-shaped wall body, the second fixed rod is fixedly connected to the upper end of the inner covering stress plate, the second fixed rod penetrates the third reserved through slot, the third fixed hole is arranged on the inner covering stress plate and penetrates the inner covering stress plate, the third reserved slot corresponding to the third fixed hole is arranged on the L-shaped wall body, the first fixed rod is inserted into the inner covering stress plate, and the first fixed rod is arranged in the third reserved slot and the third fixed hole.

[0014] By adopting the above technical scheme,

[0015] Compared with the prior art, the beneficial effects of the utility model are as follows:

[0016] 1. The floor can be reinforced by using the connecting assembly, so that subsequent use is guaranteed, and meanwhile, the connecting assembly can adopt various ways during reinforcement, different reinforcements can be installed according to different environments and conditions, and the structure of each reinforcement mode is relatively simple and convenient to install.

[0017] 2. Meanwhile, another L-shaped wall body can be reinforced under the action of the fixing assembly, so that subsequent continuous use is guaranteed, and stress can be effectively offset by inserting a certain number of reinforcing members. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is a structure schematic view of the first transverse stress plate in the first embodiment of the masonry double-face reinforced connecting structure;

[0019] Figure 2 It is a front view sectional structure schematic view of the connecting assembly in the first embodiment of the masonry double-face reinforced connecting structure;

[0020] Figure 3 It is a structure schematic view of the second transverse stress plate in the second embodiment of the masonry double-face reinforced connecting structure;

[0021] Figure 4 It is a front view sectional structure schematic view of the connecting assembly in the second embodiment of the masonry double-face reinforced connecting structure;

[0022] Figure 5 It is a structure schematic view of the third longitudinal stress plate in the third embodiment of the masonry double-face reinforced connecting structure;

[0023] Figure 6 It is a front view sectional structure schematic view of the connecting assembly in the third embodiment of the masonry double-face reinforced connecting structure;

[0024] Figure 7 It is a front view sectional structure schematic view of the fixed assembly in the fourth embodiment of the masonry double-face reinforced connecting structure;

[0025] Figure 8 It is a partial enlarged structure schematic view of A in the utility model; Figure 7 A partial enlarged structure schematic view of A in the utility model;

[0026] In the figure: 1, first transverse stress plate; 2, first fixed hole; 3, second fixed hole; 4, first longitudinal stress plate; 5, first fixed rod; 6, first reserved slot; 7, T-shaped wall; 8, second reserved slot; 9, second transverse stress plate; 10, auxiliary transverse stress plate; 11, second longitudinal stress plate; 12, first welded connecting slot; 13, first connecting rod; 14, first reserved through slot; 15, third longitudinal stress plate; 16, insertion rod; 17, fourth longitudinal stress plate; 18, second welded connecting slot; 19, insertion slot; 20, second connecting rod; 21, second reserved through slot; 22, third reserved through slot; 23, outer covering stress plate; 24, third connecting rod; 25, third fixed hole; 26, third reserved slot; 27, inner covering stress plate; 28, second fixed rod; 29, threaded slot; 30, fourth reserved through slot; 31, L-shaped wall. DETAILED DESCRIPTION

[0027] In order to make the technical means, creation features, purposes and effects of the utility model easy to understand, the utility model is further described below in combination with specific embodiments. In the description of the utility model, it should be noted that the positions or location relationships indicated by the terms "upper", "lower", "inner", "outer", "front end", "rear end", "two ends", "one end" and "the other end" are based on the positions or location relationships shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description. For ordinary skilled persons in the art, the specific meanings of the above terms in the utility model can be understood according to specific circumstances.

[0028] Embodiment one:

[0029] Please refer to Figures 1-2 The utility model provides an embodiment, a kind of masonry double-face reinforcing connection structure, including T-shaped wall 7 and L-shaped wall 31, the surface of T-shaped wall 7 is provided with the connecting assembly for strengthening reinforcement, L-shaped wall 31 outer surface is provided with outer covering stress plate 23, L-shaped wall 31 inner surface is provided with inner covering stress plate 27, and fixed assembly is arranged between inner covering stress plate 27 and outer covering stress plate 23, T-shaped wall 7 can be effectively reinforced by connecting assembly, provide effective support force for it, L-shaped wall 31 can be reinforced simultaneously by fixed assembly, guarantee L-shaped wall 31 can prolong its service life.

[0030] In the embodiment, the connecting assembly includes first transverse stress plate 1, first fixed hole 2, second fixed hole 3, first longitudinal stress plate 4, first fixed rod 5, first reserved slot 6 and second reserved slot 8, first transverse stress plate 1 is arranged on the upper end of first reserved slot 6, first longitudinal stress plate 4 is arranged on the surface of T-shaped wall 7, first fixed hole 2 is formed through the surface of first transverse stress plate 1, first reserved slot 6 is formed on T-shaped wall 7, and first fixed rod 5 is clamped in first fixed hole 2 and first reserved slot 6, second fixed hole 3 is formed through the surface of first longitudinal stress plate 4, second reserved slot 8 is formed on T-shaped wall 7, and another first fixed rod 5 is clamped in second fixed hole 3 and second reserved slot 8, by, a plurality of second reserved slots 8 are formed on T-shaped wall 7, and first fixed hole 2 and second fixed hole 3 corresponding to second reserved slot 8 are formed on first transverse stress plate 1 and first longitudinal stress plate 4, first fixed rod 5 is arranged in first fixed hole 2 and second fixed hole 3 to fix first transverse stress plate 1 and first longitudinal stress plate 4 on T-shaped wall 7, and then when transverse or longitudinal stress is generated, the device can effectively offset the stress.

[0031] Embodiment two:

[0032] Please refer to Figures 3-4The utility model provides an embodiment, a kind of masonry double-face reinforced connecting structure, including T-shaped wall 7 and L-shaped wall 31, the surface of T-shaped wall 7 is provided with the connecting assembly for strengthening reinforcement, L-shaped wall 31 outer surface is provided with outer covering stress plate 23, L-shaped wall 31 inner surface is provided with inner covering stress plate 27, and fixed assembly is arranged between inner covering stress plate 27 and outer covering stress plate 23.

[0033] In the embodiment, the connecting assembly includes second transverse stress plate 9, auxiliary transverse stress plate 10, second longitudinal stress plate 11, first welding connecting groove 12, first connecting rod 13 and first reserved through groove 14, the upper surface of T-shaped wall 7 is provided with second transverse stress plate 9, the surface of second transverse stress plate 9 is provided with the first welding connecting groove 12 of through, the lower surface of T-shaped wall 7 is provided with auxiliary transverse stress plate 10 and second longitudinal stress plate 11, the upper end of the auxiliary transverse stress plate 10 and second longitudinal stress plate 11 is fixedly connected with first reserved through groove 14, the first reserved through groove 14 for inserting first connecting rod 13 is opened in T-shaped wall 7, and one end of first connecting rod 13 is placed in first welding connecting groove 12, by opening first reserved through groove 14 in T-shaped wall 7, and then make second transverse stress plate 9, auxiliary transverse stress plate 10 and second longitudinal stress plate 11 better fixed on T-shaped wall 7, simultaneously, because first connecting rod 13 is inserted in wall, it can assist stress plate to offset the stress generated.

[0034] Embodiment three:

[0035] Please refer to Figures 5-6 The utility model provides an embodiment, a kind of masonry double-face reinforced connecting structure, including T-shaped wall 7 and L-shaped wall 31, the surface of T-shaped wall 7 is provided with the connecting assembly for strengthening reinforcement, L-shaped wall 31 outer surface is provided with outer covering stress plate 23, L-shaped wall 31 inner surface is provided with inner covering stress plate 27, and fixed assembly is arranged between inner covering stress plate 27 and outer covering stress plate 23.

[0036] In the embodiment, the connecting assembly comprises a third longitudinal stress plate 15, a plug-in rod 16, a fourth longitudinal stress plate 17, a second welding connecting groove 18, a plug-in groove 19, a second connecting rod 20 and a second reserved through groove 21, the T-shaped wall body 7 is provided with the fourth longitudinal stress plate 17 on a surface, the T-shaped wall body 7 is provided with the corresponding third longitudinal stress plate 15 on another surface, the second welding connecting groove 18 is formed on the third longitudinal stress plate 15 and the fourth longitudinal stress plate 17 oppositely, the second reserved through groove 21 corresponding to the second welding connecting groove 18 is formed on the T-shaped wall body 7, the second connecting rod 20 is arranged in the second reserved through groove 21 and the second welding connecting groove 18, the plug-in rod 16 is fixedly connected to the upper end of the third longitudinal stress plate 15 and the fourth longitudinal stress plate 17, the plug-in groove 19 is formed on the T-shaped wall body 7, and the plug-in rod 16 is arranged in the plug-in groove 19, the third longitudinal stress plate 15 and the fourth longitudinal stress plate 17 are pasted on the two sides of the T-shaped wall body 7, the corresponding second welding connecting groove 18 is formed on the third longitudinal stress plate 15 and the fourth longitudinal stress plate 17, the second reserved through groove 21 corresponding to the second welding connecting groove 18 is formed on the T-shaped wall body 7, the third longitudinal stress plate 15 and the fourth longitudinal stress plate 17 are fixed to each other through the second connecting rod 20 and are arranged in the second reserved through groove 21, and the plug-in rod 16 is arranged in the plug-in groove 19, so that the third longitudinal stress plate 15 and the fourth longitudinal stress plate 17 are fixed.

[0037] Embodiment four:

[0038] Please refer to Figures 7-8 The utility model provides a kind of embodiment, a kind of double-face reinforced connecting structure of masonry, including T-shaped wall body 7 and L-shaped wall body 31, the T-shaped wall body 7 surface is provided with the connecting assembly for strengthening reinforcement, L-shaped wall body 31 outer surface is provided with outer covering stress plate 23, L-shaped wall body 31 inner surface is provided with inner covering stress plate 27, and fixed assembly is provided between inner covering stress plate 27 and outer covering stress plate 23.

[0039] In the embodiment, the fixing assembly comprises a third reserved slot 22, a third connecting rod 24, a third fixing hole 25, a third reserved slot 26, a second fixing rod 28, a threaded slot 29 and a fourth reserved slot 30, the outer covering stress plate 23 is fixedly connected with the third connecting rod 24 on the inner side wall, the inner covering stress plate 27 is provided with the threaded slot 29 on the surface for fixing the third connecting rod 24, the L-shaped wall body 31 is provided with the fourth reserved slot 30 penetrating through, the third connecting rod 24 penetrates through the fourth reserved slot 30, the L-shaped wall body 31 is provided with the third reserved slot 22 penetrating through, the second fixing rod 28 is fixedly connected with the inner covering stress plate 27 on the upper end, the second fixing rod 28 penetrates through the third reserved slot 22, the inner covering stress plate 27 is provided with the third fixing hole 25 penetrating through, the L-shaped wall body 31 is provided with the third reserved slot 26 corresponding to the third fixing hole 25, the inner covering stress plate 27 is inserted with the first fixing rod 5, and the first fixing rod 5 is arranged in the third reserved slot 26 and the third fixing hole 25, the outer covering stress plate 23 and the inner covering stress plate 27 are pasted on the L-shaped wall body 31, and are fixed by the third connecting rod 24, and can be fixed by the first fixing rod 5, the third connecting rod 24 is inserted in the L-shaped wall body 31, the corresponding stress is offset by the outer covering stress plate 23 and the inner covering stress plate 27, and the third connecting rod 24 can assist the synchronous operation.

[0040] Different reinforcing methods can be selected according to different situations of the T-shaped wall body 7 through different connecting assemblies, so that the strength of the T-shaped wall body 7 can be effectively increased, and the stress plates at different positions can effectively offset the stress when the T-shaped wall body 7 is subjected to stress. When the L-shaped wall body 31 is reinforced, the third connecting rod 24 can effectively fix different stress plates, and can assist in offsetting part of the stress while ensuring fixation.

[0041] The floor can be reinforced by using the connecting assembly, so that subsequent use is ensured, and the connecting assembly can adopt various ways when reinforcing, different reinforcements can be installed according to different environments and situations, and the structure of each reinforcing method is relatively simple and convenient to install. Another L-shaped wall body 31 can be reinforced under the action of the fixing assembly, so that subsequent continuous use is ensured, and stress can be effectively offset by inserting a certain number of reinforcing members.

[0042] The present specification is described according to the embodiments, but each embodiment does not only contain one independent technical solution, and the specification is described in this way only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A double-sided reinforced connection structure for masonry, comprising a T-shaped wall (7) and an L-shaped wall (31), characterized in that, The T-shaped wall (7) is provided with a connecting component for reinforcement, the outer surface of the L-shaped wall (31) is provided with an outer covering stress plate (23), the inner surface of the L-shaped wall (31) is provided with an inner covering stress plate (27), and a fixing component is provided between the inner covering stress plate (27) and the outer covering stress plate (23); the connecting component includes a first transverse stress plate (1), a first longitudinal stress plate (4) and a first fixing rod (5), the upper end of the first reserved groove (6) is provided with a first transverse stress plate (1), and the surface of the T-shaped wall (7) is provided with a first longitudinal stress plate (4). The first transverse stress plate (1) has a through first fixing hole (2) on its surface, and the T-shaped wall (7) has a first reserved groove (6) corresponding to the first fixing hole (2); the first reserved groove (6) and the first fixing hole (2) are connected to a first fixing rod (5); the first longitudinal stress plate (4) has a through second fixing hole (3) on its surface, and the T-shaped wall (7) has a second reserved groove (8) corresponding to the second fixing hole (3), and the second reserved groove (8) and the second fixing hole (3) are connected to another first fixing rod (5).

2. The masonry double-sided reinforcement connection structure according to claim 1, characterized in that, The connecting assembly includes a second transverse stress plate (9), an auxiliary transverse stress plate (10), a second longitudinal stress plate (11), and a first connecting rod (13). The upper surface of the T-shaped wall (7) is provided with the second transverse stress plate (9), and the surface of the second transverse stress plate (9) is provided with a through first welding connection groove (12). The lower surface of the T-shaped wall (7) is provided with the auxiliary transverse stress plate (10) and the second longitudinal stress plate (11).

3. The masonry double-sided reinforcement connection structure according to claim 2, characterized in that, The upper ends of the auxiliary transverse stress plate (10) and the second longitudinal stress plate (11) are both fixedly connected with a first reserved through groove (14). The T-shaped wall (7) is provided with a first reserved through groove (14) for inserting the first connecting rod (13), and one end of the first connecting rod (13) is placed in the first welding connection groove (12).

4. The masonry double-sided reinforcement connection structure according to claim 1, characterized in that, The connecting assembly includes a third longitudinal stress plate (15), a plug rod (16), a fourth longitudinal stress plate (17), and a second connecting rod (20). The surface of the T-shaped wall (7) is provided with the fourth longitudinal stress plate (17), and the other surface of the T-shaped wall (7) is provided with a corresponding third longitudinal stress plate (15). Opposite second welding connection grooves (18) are opened on the third longitudinal stress plate (15) and the fourth longitudinal stress plate (17). A second reserved through groove (21) corresponding to the second welding connection groove (18) is opened on the T-shaped wall (7).

5. The masonry double-sided reinforcement connection structure according to claim 4, characterized in that, A second connecting rod (20) is provided in the second reserved through groove (21) and the second welding connection groove (18). A plug-in rod (16) is fixedly connected to the upper end of the third longitudinal stress plate (15) and the fourth longitudinal stress plate (17). A plug-in groove (19) is opened on the T-shaped wall (7), and the plug-in rod (16) is placed in the plug-in groove (19).

6. The masonry double-sided reinforcement connection structure according to claim 1, characterized in that, The fixing assembly includes a third connecting rod (24) and a second fixing rod (28). The third connecting rod (24) is fixedly connected to the inner side wall of the outer covering stress plate (23), and the inner covering stress plate (27) has a threaded groove (29) for fixing the third connecting rod (24).

7. A double-sided reinforced connection structure for masonry according to claim 6, characterized in that, The L-shaped wall (31) has a through fourth reserved slot (30), and the third connecting rod (24) passes through the fourth reserved slot (30). The L-shaped wall (31) has a through third reserved slot (22), and the upper end of the inner covering stress plate (27) is fixedly connected to a second fixing rod (28), which passes through the third reserved slot (22). The inner covering stress plate (27) has a through third fixing hole (25), and the L-shaped wall (31) has a third reserved slot (26) corresponding to the third fixing hole (25). The inner covering stress plate (27) has a first fixing rod (5), which is placed in the third reserved slot (26) and the third fixing hole (25).