Connecting assembly of large-span building corridor

The design of the mounting plate, bearing plate, and connecting components solves the problem of inconvenient installation of large-span building corridors, achieving a fast and stable connection and improving installation efficiency.

CN223535860UActive Publication Date: 2025-11-11ZHEJIANG RUISHENG STEEL STRUCTURE CO LTD
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Patent Information

Application Number
CN202422801276.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-11-11
Estimated Expiration
2034-11-18

AI Technical Summary

Technical Problem

During the installation of existing large-span building corridors, it is necessary to align the corridor and the support by hoisting and fix them with bolts. This can easily lead to misalignment, causing inconvenience, wasting time and effort, and reducing installation efficiency.

Method used

The design employs mounting plates, bearing plates, and connecting components. Through the cooperation of side fixing blocks, L-shaped locking blocks, and limiting slots, the main body of the connecting corridor can be quickly hoisted and fixed, and bolt connections can be used to improve installation efficiency.

Benefits of technology

It enables rapid assembly and stable fixing of the connecting corridor body, improves installation efficiency, reduces manpower consumption, and enhances installation convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a connecting assembly of a large-span building corridor, which relates to the technical field of corridor connection and comprises a corridor body, and a guardrail is arranged at the top end of the corridor body. The mounting assembly is used for being mounted on a wall surface; the bearing assembly is used for bearing and placing the corridor body; the sleeving component is convenient and quick to mount; the mounting assembly comprises a mounting plate. The mounting plate is arranged, the side fixing blocks are arranged on the two sides of the mounting plate, the mounting plate can be effectively mounted and fixed on the wall surface, the rear limiting plate is arranged on the rear side of the mounting plate, the limiting clamping grooves are formed in the inner side of the rear limiting plate, and the rear limiting plate and the L-shaped clamping blocks are effectively arranged in a corresponding mode; and by arranging the bearing plate, the corridor body can be conveniently placed at the top end of the bearing plate, the corridor body can be conveniently and rapidly assembled and mounted, hoisting is convenient, and the mounting efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of corridor connection technology, and in particular to a connection component for a large-span building corridor. Background Technology

[0002] Connecting corridors are long passageways that connect two buildings, offering good lighting and a wide view. They can be used as sightseeing corridors or leisure cafes, etc. At present, connecting corridors are mainly made of steel structures.

[0003] Since connecting corridors between buildings are mostly located at high altitudes, they need to be fixed and installed by hoisting. However, the existing connecting corridors require the corridor and its support to be completely aligned before being fixed with bolts. This is prone to misalignment, which makes installation inconvenient and requires a lot of time to align before installation. This is time-consuming, labor-intensive, and greatly reduces the efficiency of installation.

[0004] Therefore, it is necessary to invent a connecting component for large-span building corridors to solve the above problems. Utility Model Content

[0005] The purpose of this utility model is to provide a connecting component for a large-span building corridor. By setting an installation plate with side fixing blocks on both sides, the installation plate can be effectively fixed to the wall. A rear limiting plate is provided on the rear side of the installation plate, with a limiting groove on its inner side, effectively corresponding to an L-shaped locking block. This facilitates hoisting the fixing plate and allows the L-shaped locking block to slide and engage with the inner side of the limiting groove. A support plate is provided, allowing the corridor body to be placed on top of the support plate, facilitating rapid assembly and installation of the corridor body. This convenient hoisting improves installation efficiency and solves the problem mentioned in the background art: since building corridors are mostly located at high altitudes, they require hoisting for fixed installation. Existing corridors require complete alignment of the corridor and its support before bolting, which is prone to misalignment, leading to inconvenient installation and requiring significant time and effort for alignment, greatly reducing installation efficiency.

[0006] According to one aspect of this disclosure, the following technical solution is provided: a connecting component for a large-span building corridor, comprising:

[0007] The main body of the connecting corridor, with a guardrail installed at its top;

[0008] Mounting components for wall mounting;

[0009] Supporting components are used to support and place the main body of the connecting corridor; and

[0010] Socketed components allow for easy and quick installation;

[0011] The mounting assembly includes a mounting plate, both sides of which are fixedly connected to side fixing blocks, and the inner side of each side fixing block is provided with a fourth mounting hole.

[0012] The load-bearing component includes a fixed plate and a load-bearing plate, the load-bearing plate being fixedly connected to one side of the fixed plate, and the connecting corridor body being disposed at the top of the load-bearing plate;

[0013] The socket assembly includes an L-shaped locking block and a rear limiting plate. The L-shaped locking block is fixedly connected to the outside of the fixing plate, and the rear limiting plate is fixedly connected to the rear side of the mounting plate. The L-shaped locking block is disposed on the inside of the rear limiting plate.

[0014] According to at least one embodiment of the present disclosure, a connecting component for a large-span building corridor is provided with a fourth mounting hole on the inner side of the rear limiting plate, the limiting slot is correspondingly provided with an L-shaped locking block, the inner side of the L-shaped locking block is symmetrically provided with a third mounting hole, and both sides of the rear limiting plate are provided with a fifth mounting hole, the fifth mounting hole and the third mounting hole being correspondingly provided with each other.

[0015] According to at least one embodiment of the present disclosure, a connecting component for a large-span building corridor includes a limiting block fixedly connected to both sides of the bearing plate, a second mounting hole provided on the inner side of the limiting block, and a groove corresponding to the limiting block provided at the bottom end of the corridor body.

[0016] According to at least one embodiment of the present disclosure, a connecting component for a large-span building corridor is provided with first threaded holes on both sides of the bearing plate, and a triangular bracket is fixedly connected between the fixing plate and the bearing plate.

[0017] According to at least one embodiment of the present disclosure, a connecting component for a large-span building corridor is provided on the outer side of the corridor body, and a fastening bolt is provided on the inner side of the side connecting block, wherein the fastening bolt is respectively provided with a second mounting hole and a first threaded hole.

[0018] The technical effects and advantages of this utility model are as follows:

[0019] (1) This utility model has an installation plate with side fixing blocks on both sides, which can effectively fix the installation plate to the wall. A rear limiting plate is provided on the rear side of the installation plate, and a limiting slot is provided on the inner side of the rear limiting plate, which can be effectively set to correspond with the L-shaped card block. This makes it convenient to hoist the fixing plate and slide the L-shaped card block into the inner side of the limiting slot. By setting a bearing plate, it is convenient to place the connecting corridor body on the top of the bearing plate, which facilitates the quick assembly and installation of the connecting corridor body. The hoisting is convenient and the installation efficiency is improved. Attached Figure Description

[0020] The accompanying drawings illustrate exemplary embodiments of the present disclosure and, together with the description thereof, serve to explain the principles of the present disclosure. These drawings are included to provide a further understanding of the present disclosure and are incorporated in and constitute a part of this specification.

[0021] Figure 1 This is a schematic diagram of the overall structure of a connecting component for a large-span building corridor according to one embodiment of the present disclosure.

[0022] Figure 2 This is a schematic diagram of the main structure of the fixing plate of the connecting component of a large-span building corridor according to one embodiment of the present disclosure.

[0023] Figure 3 This is a rear view structural diagram of the mounting plate in the connecting component of a large-span building corridor according to one embodiment of the present disclosure.

[0024] The specific labels in the attached figures are as follows:

[0025] 1. The main structure of the connecting corridor; 11. The guardrail;

[0026] 3. Fixing plate; 31. Bearing plate; 311. First threaded hole; 32. Triangular bracket; 33. Limiting block; 331. Second mounting hole; 34. L-shaped locking block; 341. Third mounting hole;

[0027] 4. Side connecting block;

[0028] 5. Mounting plate; 51. Side fixing block; 511. Fourth mounting hole; 52. Rear limit plate; 521. Limiting slot; 522. Fifth mounting hole. Detailed Implementation

[0029] like Figures 1-3 As shown, a connecting component for a large-span building corridor disclosed herein may include: a corridor body 1, with a guardrail 11 at the top; an installation component for installation on a wall; a load-bearing component for supporting and placing the corridor body 1; and a connecting component for convenient and quick installation.

[0030] like Figure 1 , Figure 2 and Figure 3 As shown in this disclosure, the mounting assembly includes a mounting plate 5, and side fixing blocks 51 are fixedly connected to both sides of the mounting plate 5. A fourth mounting hole 511 is provided on the inner side of the side fixing block 51.

[0031] The load-bearing component includes a fixed plate 3 and a load-bearing plate 31. The load-bearing plate 31 is fixedly connected to one side of the fixed plate 3, and the connecting corridor body 1 is located at the top of the load-bearing plate 31.

[0032] The socket assembly includes an L-shaped locking block 34 and a rear limiting plate 52. The L-shaped locking block 34 is fixedly connected to the outside of the fixing plate 3, and the rear limiting plate 52 is fixedly connected to the rear side of the mounting plate 5. The L-shaped locking block 34 is located on the inside of the rear limiting plate 52.

[0033] Therefore, by setting the mounting plate 5, with side fixing blocks 51 on both sides of the mounting plate 5, the mounting plate 5 can be effectively installed and fixed on the wall. By setting the rear limiting plate 52 on the rear side of the mounting plate 5, with a limiting slot 521 on the inner side of the rear limiting plate 52, it can be effectively set to correspond with the L-shaped card block 34, making it convenient to hoist the fixing plate 3 and slide the L-shaped card block 34 into the inner side of the limiting slot 521. By setting the bearing plate 31, it is convenient to place the connecting corridor body 1 on the top of the bearing plate 31, which facilitates the quick assembly and installation of the connecting corridor body 1, making hoisting convenient and improving the installation efficiency.

[0034] like Figure 2 and Figure 3 As shown, in a preferred embodiment, a fourth mounting hole 511 is provided on the inner side of the rear limiting plate 52, the limiting slot 521 is correspondingly provided with the L-shaped block 34, the inner side of the L-shaped block 34 is symmetrically provided with a third mounting hole 341, and both sides of the rear limiting plate 52 are provided with a fifth mounting hole 522, the fifth mounting hole 522 and the third mounting hole 341 are correspondingly provided with each other.

[0035] Therefore, by setting an L-shaped locking block 34, which can be set inside the limiting slot 521 for sleeve limiting, and by setting a fifth mounting hole 522 and a third mounting hole 341, the L-shaped locking block 34 can be fixedly connected to the inside of the rear limiting plate 52 using bolts, which effectively improves the installation and fixing effect.

[0036] like Figure 2 As shown in this disclosure, both sides of the bearing plate 31 are fixedly connected to limit blocks 33, and the inner side of the limit block 33 is provided with a second mounting hole 331. The bottom end of the connecting corridor body 1 is provided with a groove corresponding to the limit block 33.

[0037] Therefore, by setting the limiting block 33, the bottom end of the connecting corridor body 1 is also provided with a groove corresponding to the limiting block 33, which makes it easy to place the connecting corridor body 1 on the top of the bearing plate 31 for positioning, thereby improving the stability of the connecting corridor body 1. By setting the second mounting hole 331, it is easy to use bolts to fix the connecting corridor body 1 to the top of the limiting block 33.

[0038] like Figure 2 As shown, in a preferred embodiment, the bearing plate 31 has first threaded holes 311 on both sides, and a triangular bracket 32 ​​is fixedly connected between the fixing plate 3 and the bearing plate 31.

[0039] Therefore, by setting up triangular supports 32, two triangular supports 32 are symmetrically arranged, and the two triangular supports 32 are respectively set on both sides of the bottom end of the support plate 31. The triangular supports 32 are fixedly connected to the fixing plate 3, thereby effectively increasing the stability between the support plate 31 and the fixing plate 3.

[0040] like Figure 1 and Figure 2 As shown in this disclosure, a side connecting block 4 is provided on the outer side of the connecting corridor body 1, and a fastening bolt is provided on the inner side of the side connecting block 4. The fastening bolt is respectively provided with the second mounting hole 331 and the first threaded hole 311.

[0041] Therefore, by setting the side connecting block 4, in specific use, after the connecting corridor body 1 is placed on the top of the fixing plate 3, the side connecting block 4 is placed on the outside of the connecting corridor body 1. It is then threadedly connected to the inside of the second mounting hole 331 and the first threaded hole 311 by fastening bolts, which can effectively fix the side connecting block 4 to the outside of the connecting corridor body 1 and the bearing plate 31. This effectively fixes the connecting corridor body 1 to the top of the bearing plate 31. Both sides of the bearing plate 31 are fixed by the side connecting block 4, thus fixing the connecting corridor body 1 to the top of the two bearing plates 31.

[0042] In practical use, by setting the mounting plate 5 and the fourth mounting hole 511, and using bolts to set the inside of the fourth mounting hole 511, the mounting plate 5 is effectively fixed to the outside of the wall. Then, the L-shaped card block 34 is sleeved on the inside of the limiting slot 521. After the L-shaped card block 34 is completely set inside the limiting slot 521, the L-shaped card block 34 is fixed to the inside of the rear limiting plate 52 by using bolts to pass through the inside of the third mounting hole 341 and the fifth mounting hole 522 from the bottom of the bearing plate 31.

[0043] By setting a limiting block 33, the bottom end of the connecting corridor body 1 is also provided with a groove corresponding to the limiting block 33, which facilitates the placement of the connecting corridor body 1 on the top of the bearing plate 31 for positioning, thereby improving the stability of the placement of the connecting corridor body 1. By setting a second mounting hole 331, it is convenient to use bolts to fix the connecting corridor body 1 to the top of the limiting block 33. After the connecting corridor body 1 is placed on the top of the fixing plate 3, the side connecting block 4 is placed on the outside of the connecting corridor body 1. By fastening bolts, it is threaded to the inside of the second mounting hole 331 and the first threaded hole 311 respectively, which can effectively fix the side connecting block 4 to the outside of the connecting corridor body 1 and the bearing plate 31, thereby effectively fixing the connecting corridor body 1 to the top of the bearing plate 31. Both sides of the bearing plate 31 are fixed by the side connecting block 4, thereby fixing the connecting corridor body 1 to the top of the two bearing plates 31.

[0044] Those skilled in the art should understand that the above embodiments are merely for illustrating the present disclosure and are not intended to limit the scope of the disclosure. Those skilled in the art can make other changes or modifications based on the above disclosure, and these changes or modifications still fall within the scope of the present disclosure.

Claims

1. A connecting component for a long-span building corridor, characterized in that, include: The main body of the connecting corridor (1) is provided with a guardrail (11) at the top. Mounting components for wall mounting; Supporting components are used to support and place the connecting corridor body (1); and Socketed components allow for easy and quick installation; The mounting assembly includes a mounting plate (5), and two side fixing blocks (51) are fixedly connected to both sides of the mounting plate (5). A fourth mounting hole (511) is provided on the inner side of the side fixing block (51). The load-bearing component includes a fixed plate (3) and a load-bearing plate (31). The load-bearing plate (31) is fixedly connected to one side of the fixed plate (3), and the connecting corridor body (1) is disposed at the top of the load-bearing plate (31). The socket assembly includes an L-shaped locking block (34) and a rear limiting plate (52). The L-shaped locking block (34) is fixedly connected to the outside of the fixing plate (3), and the rear limiting plate (52) is fixedly connected to the rear side of the mounting plate (5). The L-shaped locking block (34) is located on the inside of the rear limiting plate (52).

2. The connecting component for a large-span building corridor according to claim 1, characterized in that: The rear limiting plate (52) has a fourth mounting hole (511) on its inner side, and the limiting slot (521) is correspondingly provided with the L-shaped block (34). The L-shaped block (34) has a third mounting hole (341) symmetrically provided on its inner side. The rear limiting plate (52) has a fifth mounting hole (522) on both sides, and the fifth mounting hole (522) is corresponding to the third mounting hole (341).

3. The connecting component for a large-span building corridor according to claim 2, characterized in that: Both sides of the bearing plate (31) are fixedly connected to limit blocks (33), and the inner side of the limit block (33) is provided with a second mounting hole (331). The bottom end of the connecting corridor body (1) is provided with a groove corresponding to the limit block (33).

4. The connecting component for a large-span building corridor according to claim 3, characterized in that: The bearing plate (31) has a first threaded hole (311) on both sides, and a triangular bracket (32) is fixedly connected between the fixing plate (3) and the bearing plate (31).

5. The connecting component for a large-span building corridor according to claim 4, characterized in that: A side connecting block (4) is provided on the outer side of the connecting corridor body (1), and a fastening bolt is provided on the inner side of the side connecting block (4). The fastening bolt is respectively provided with the second mounting hole (331) and the first threaded hole (311).