A detachable and combinable connecting corridor device
Patent Information
- Application Number
- CN202522352408.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-06
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-11-06
AI Technical Summary
[0004]本实用新型提供一种可拆卸组合的连廊连接装置,可以有效解决上述背景技术中提出的连廊为了保证其连接的牢固性,多为焊接固定,但在临时搭建的建筑中,焊接固定的方式难以拆卸,从而导致后续还有用切割的方式拆卸,安装和连接均十分不便的问题
[0015]1、设置有固定连接组件,安装板安装,将连廊吊装至安装位置,搭接于支撑块处,临时固定,转动内螺纹管内的对拉螺杆,通过转动中块的转动,拉动支撑杆夹持连廊,安装操作简单便捷,且后续拆卸时,松动对拉螺杆,再拆卸膨胀螺栓的螺母即可,拆卸安装均十分便利,有利于临时建筑的快速组装操作,且通过支撑杆的拉动,可拉动安装板,使得安装板的第一安装孔紧紧卡住膨胀螺栓,提高安装的稳定性,防止连接处松动,安全性更高。
Smart Images

Figure CN224785084U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of building technology, specifically to a detachable and combinable connecting corridor device. Background Technology
[0002] Previously, connecting corridors mostly referred to corridor-style passageways built around courtyards. Later, they evolved into connecting structures between individual buildings. In modern architecture, connecting corridors are often used for elevated connections between high-rise buildings, serving both passage and aesthetic functions. Some designs also take into account the needs for lighting and views.
[0003] However, most connecting corridors on the market are currently fixed by welding to ensure their connection is strong. But in temporary buildings, the welding method is difficult to disassemble, which leads to the need to cut them down later. Both installation and connection are very inconvenient. Utility Model Content
[0004] This utility model provides a detachable and combinable connecting corridor device, which can effectively solve the problem mentioned in the background art that connecting corridors are mostly fixed by welding in order to ensure the firmness of their connection. However, in temporary buildings, the welding method is difficult to disassemble, which leads to the need for subsequent disassembly by cutting. Both installation and connection are very inconvenient.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a detachable and combinable connecting corridor device, comprising a connecting corridor, wherein the connecting corridor is equipped with a fixed connecting component, and the fixed connecting component includes a mounting plate;
[0006] Mounting plates are installed at both the top and bottom of the connecting corridor. First mounting holes are evenly opened at the corners of the mounting plates. Expansion bolts are installed inside the first mounting holes. A support block is welded to one side of the mounting plate.
[0007] A support rod is installed on the outside of the support block. An internally threaded tube is welded through the end of the support rod away from the support block. The two opposing internally threaded tubes are respectively connected to the two ends of the tie rod by threads. A rotating block is welded in the middle of the tie rod. A cork pad is installed on the side of the support rod near the connecting corridor by screws.
[0008] According to the above technical solution, the end face of the support block is triangular, and four support blocks are installed at both ends of the connecting corridor.
[0009] According to the above technical solution, one end of the support rod is bent at a right angle, and the support rod is bent at a right angle near the corner of the connecting corridor.
[0010] According to the above technical solution, the threads at both ends of the pull screw have opposite directions, and the end face of the rotating block is a regular hexagon.
[0011] According to the above technical solution, a buffer docking component is installed on the support block near the connecting corridor, and the buffer docking component includes an embedded groove;
[0012] The support block has an embedding groove near the connecting corridor. A buffer rubber pad is bonded inside the embedding groove. A contact cover is bonded to the top surface of the buffer rubber pad. A support plate is welded to the top surface of the contact cover. A second mounting hole is provided at each corner of the top surface of the support plate.
[0013] According to the above technical solution, the longitudinal section of the contact cover is U-shaped, and there is a gap between the inner side of the contact cover and the support block.
[0014] Compared with the prior art, the advantages of this utility model are: the structure of this utility model is scientific and reasonable, and it is safe and convenient to use;
[0015] 1. Equipped with fixed connection components, the mounting plate is installed, and the connecting corridor is hoisted to the installation position, overlapped with the support block, and temporarily fixed. By rotating the tie rod inside the internal threaded tube, the rotation of the central block pulls the support rod to clamp the connecting corridor. The installation operation is simple and convenient. When disassembling, simply loosen the tie rod and then remove the nuts of the expansion bolts. Both disassembly and installation are very convenient, which is conducive to the rapid assembly of temporary buildings. Furthermore, by pulling the support rod, the mounting plate can be pulled, so that the first mounting hole of the mounting plate tightly locks the expansion bolt, improving the stability of the installation, preventing the connection from loosening, and enhancing safety.
[0016] 2. A buffer docking assembly is provided. The buffer rubber pad is placed into the embedded groove, and the contact cover is snapped onto the buffer rubber pad. The support plate is connected to the corridor through the second mounting hole. The corridor and the support block are installed more firmly. With the support of the buffer rubber pad, the deformation of the buffer rubber pad can absorb the impact force when shaking occurs, reduce the shaking amplitude of the corridor, and further improve safety. Attached Figure Description
[0017] The accompanying drawings are provided to further understand the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation thereof.
[0018] In the attached diagram:
[0019] Figure 1 This is a schematic diagram of the structure of this utility model;
[0020] Figure 2 This is a structural schematic diagram of the fixed connection component of this utility model;
[0021] Figure 3 This is a schematic diagram of the installation structure of the tie rod of this utility model;
[0022] Figure 4This is a schematic diagram of the structure of the buffer docking assembly of this utility model;
[0023] Map label: 1. Connecting corridor;
[0024] 2. Fixed connection assembly; 201. Mounting plate; 202. First mounting hole; 203. Expansion bolt; 204. Support block; 205. Support rod; 206. Internally threaded tube; 207. Tie rod; 208. Rotating block; 209. Cork pad;
[0025] 3. Buffer docking assembly; 301. Embedded groove; 302. Buffer rubber pad; 303. Contact cover; 304. Support plate; 305. Second mounting hole. Detailed Implementation
[0026] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the present invention.
[0027] Example: Figure 1-4 As shown, this utility model provides a detachable and combinable connecting corridor connection device, including a connecting corridor 1. The connecting corridor 1 is equipped with a fixed connection component 2. The fixed connection component 2 includes a mounting plate 201, a first mounting hole 202, an expansion bolt 203, a support block 204, a support rod 205, an internal threaded pipe 206, a tie rod 207, a rotating middle block 208, and a cork pad 209.
[0028] Mounting plates 201 are installed at the top and bottom of the connecting corridor 1. First mounting holes 202 are evenly opened at the corners of the mounting plates 201. Expansion bolts 203 are installed inside the first mounting holes 202. Support blocks 204 are welded to one side of the mounting plates 201. The end face of the support blocks 204 is triangular, and four support blocks 204 are installed at both ends of the connecting corridor 1 to facilitate the support blocks 204 to support and fix the connecting corridor 1.
[0029] A support rod 205 is installed on the outside of the support block 204. One end of the support rod 205 is bent at a right angle. The support rod 205 is bent at a right angle near the corner of the connecting corridor 1 to facilitate the installation of the support rod 205 at the end of the connecting corridor 1. An internally threaded tube 206 is welded through the end of the support rod 205 away from the support block 204. Two opposing internally threaded tubes 206 are respectively connected to the two ends of the tie rod 207 by threads. A rotating block 208 is welded in the middle of the tie rod 207. The threads at both ends of the tie rod 207 turn in opposite directions. The end face of the rotating block 208 is a regular hexagon to facilitate the rotation of the tie rod 207 to pull the support rod 205. A cork pad 209 is installed on the side of the support rod 205 near the connecting corridor 1 by screws.
[0030] A buffer docking assembly 3 is installed on the support block 204 near the connecting corridor 1. The buffer docking assembly 3 includes an embedded groove 301, a buffer rubber pad 302, a contact cover 303, a support plate 304, and a second mounting hole 305.
[0031] The support block 204 has an embedded groove 301 near the connecting corridor 1. A buffer rubber pad 302 is bonded inside the embedded groove 301. A contact cover 303 is bonded to the top surface of the buffer rubber pad 302. The longitudinal section of the contact cover 303 is U-shaped. There is a gap between the inner side of the contact cover 303 and the support block 204 to allow the contact cover 303 to have space for swaying and buffering on the top surface of the support block 204. A support plate 304 is welded to the top surface of the contact cover 303. A second mounting hole 305 is opened at the corner of the top surface of the support plate 304.
[0032] The working principle and usage process of this utility model are as follows: When it is necessary to install the connecting corridor 1, first determine the installation position, then drill holes and install the expansion bolts 203 at the position where the mounting plate 201 will be installed. Then, the mounting plate 201 is installed and the nuts of the expansion bolts 203 are fixed. After the mounting plates 201 at both ends of the connecting corridor 1 are installed, the connecting corridor 1 is hoisted to the installation position and overlapped with the support block 204 for temporary fixation. Then, rotate the tie rod 207 in the internal threaded tube 206. By rotating the middle block 208, the support rod 205 is pulled to clamp the connecting corridor 1. The installation operation is simple and convenient. When disassembling later, loosen the tie rod 207 and then remove the nuts of the expansion bolts 203. Disassembly and installation are very convenient, which is conducive to the rapid assembly of temporary buildings. Moreover, by pulling the support rod 205, the mounting plate 201 can be pulled, so that the first mounting hole 202 of the mounting plate 201 tightly clamps the expansion bolts 203, which improves the stability of the installation, prevents the connection from loosening, and makes it safer.
[0033] During installation, the buffer rubber pad 302 can be placed into the embedded groove 301, and the contact cover 303 can be snapped onto the buffer rubber pad 302. The support plate 304 is connected to the connecting corridor 1 through the second mounting hole 305. The connecting corridor 1 and the support block 204 are installed more firmly. With the support of the buffer rubber pad 302, when shaking occurs, the deformation of the buffer rubber pad 302 can absorb the impact force, reduce the shaking amplitude of the connecting corridor 1, and further improve safety.
[0034] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A detachable and combinable connecting corridor device, comprising a connecting corridor (1), characterized in that: The connecting corridor (1) is equipped with a fixed connection assembly (2), which includes a mounting plate (201); The connecting corridor (1) is equipped with mounting plates (201) at both the top and bottom. The mounting plates (201) are evenly provided with first mounting holes (202) at the corners. Expansion bolts (203) are installed inside the first mounting holes (202). A support block (204) is welded to one side of the mounting plate (201). A support rod (205) is installed on the outside of the support block (204). An internally threaded tube (206) is welded through the end of the support rod (205) away from the support block (204). The two opposing internally threaded tubes (206) are respectively connected to the two ends of the tie rod (207) by threads. A rotating block (208) is welded in the middle of the tie rod (207). A cork pad (209) is installed on the side of the support rod (205) near the connecting corridor (1) by screws.
2. The detachable and combinable connecting corridor device according to claim 1, characterized in that, The end face of the support block (204) is triangular, and four support blocks (204) are installed at both ends of the connecting corridor (1).
3. The detachable and combinable connecting corridor device according to claim 1, characterized in that, One end of the support rod (205) is bent at a right angle, and the support rod (205) is bent at a right angle near the corner of the connecting corridor (1).
4. The detachable and combinable connecting corridor device according to claim 1, characterized in that, The two ends of the pull screw (207) have opposite thread directions, and the end face of the rotating block (208) is a regular hexagon.
5. A detachable and combinable connecting corridor device according to claim 1, characterized in that, The support block (204) is equipped with a buffer docking assembly (3) near the connecting corridor (1), and the buffer docking assembly (3) includes an embedded groove (301); The support block (204) has an embedded groove (301) near the connecting corridor (1). A buffer rubber pad (302) is bonded inside the embedded groove (301). A contact cover (303) is bonded to the top surface of the buffer rubber pad (302). A support plate (304) is welded to the top surface of the contact cover (303). A second mounting hole (305) is provided at each corner of the top surface of the support plate (304).
6. A detachable and combinable connecting corridor device according to claim 5, characterized in that, The contact cover (303) has a U-shaped longitudinal section, and there is a gap between the inner side of the contact cover (303) and the support block (204).