A type of assembly connector for beams and columns of a steel structure house

CN224620838UActive Publication Date: 2026-08-11HENAN WEILONG CONSTRUCTION ENGINEERING CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-05
Publication Date
2026-08-11

AI Technical Summary

Benefits of technology

本实用新型通过将长横梁嵌入式安装在安装套件内,配合短横梁嵌入式安装在短梁安装框架内,通过固定安装套件和双通安装顶板的安装螺栓,将长横梁和短横梁与立柱和安装套件固定安装在一起,在具备稳定性的同时,具有快速拆装的效果,另一方面,通过可替换双通安装顶板的单通安装顶板和封闭安装顶板,使得钢结构具备多种拼装的可能,增强钢结构框架的适用性。

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Abstract

This utility model discloses an assembly connector for the horizontal beams and vertical columns of a steel structure building, relating to the field of steel structure technology. It includes a vertical column, on which an installation kit is slidably connected. A double-pass installation top plate is installed on the installation kit. Symmetrically distributed long beam connecting structures are installed within the installation kit, and symmetrically distributed short beam connecting structures are slidably connected within the installation kit. This utility model embeds the long horizontal beams into the installation kit, and the short horizontal beams are embedded into the short beam installation frame. The long and short beams are fixed together with the vertical column and installation kit by mounting bolts that secure the installation kit and the double-pass installation top plate. This provides stability and quick assembly / disassembly. Furthermore, the availability of a single-pass installation top plate and a closed installation top plate, which can replace the double-pass installation top plate, allows for multiple assembly possibilities for the steel structure, enhancing the applicability of the steel structure frame.
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Description

Technical Field

[0001] This utility model relates to the field of steel structure technology, and in particular to an assembly connector for the beams and columns of a steel structure house. Background Technology

[0002] The steel structure beam-column connector is a core node component that connects the beams and columns in a steel structure frame. Its function is to transfer loads to ensure the overall rigidity of the structure and to coordinate the deformation of beams and columns, so as to ensure the stability and safety of the steel structure frame.

[0003] The existing steel structure house beams and columns are assembled and connected by multiple bolts to ensure the stability of the steel structure frame. For some quickly assembled temporary houses, the quick assembly and disassembly of the assembly and connection parts is very necessary.

[0004] In view of this, this application proposes an assembly connector for the horizontal beams and vertical columns of a steel structure house. Utility Model Content

[0005] The purpose of this utility model is to solve the problem of difficulty in quick assembly and disassembly in the existing technology, and to propose an assembly and connection component for the horizontal beams and columns of a steel structure house.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: A steel structure house beam and column assembly connector includes a column, an installation kit slidably connected to the column, a double-through installation top plate installed on the installation kit, symmetrically distributed long beam connection structures installed inside the installation kit, and symmetrically distributed short beam connection structures slidably connected inside the installation kit. The long beam connection structure includes a long crossbeam that is slidably installed within the mounting kit, and the short beam connection structure includes a short beam mounting frame that is slidably connected within the mounting kit. A short crossbeam is slidably installed within the short beam mounting frame. Symmetrically distributed mounting bolts are installed between the mounting kit and the double-pass mounting top plate. The long crossbeam is installed within the mounting kit by mounting bolts, and the short crossbeam and the short beam mounting frame are installed within the mounting kit by mounting bolts.

[0007] As a further preferred embodiment of this technical solution, the mounting kit has symmetrically distributed long beam sealing sliders slidably connected within it. The mounting kit also has a long beam limiting sliding rod corresponding to the long beam sealing slider. A long beam limiting spring is provided around the long beam limiting sliding rod between the long beam limiting sliding rod and the long beam sealing slider. The long crossbeam and the long beam sealing slider are in a pressing fit, and the cross section of the long beam sealing slider is consistent with the cross section of the long crossbeam.

[0008] As a further preferred embodiment of this technical solution, the mounting kit is equipped with symmetrically distributed long beam fastening frames corresponding to the long crossbeam. The height of the long beam fastening frames is the same as the gap height of the long crossbeam. The long crossbeam and the long beam fastening frames are installed together by mounting bolts. The mounting kit has long beam grooves on the cross section corresponding to the long crossbeam.

[0009] As a further preferred embodiment of this technical solution, a short beam sealing slider is slidably connected within the short beam mounting frame, and a short beam limiting sliding rod corresponding to the short beam sealing slider is installed within the short beam mounting frame. A short beam limiting spring is provided around the short beam limiting sliding rod between the short beam limiting sliding rod and the short beam sealing slider. The short crossbeam and the short beam sealing slider are in a pressing fit, and the cross section of the short crossbeam is the same as the cross section of the short beam sealing slider.

[0010] As a further preferred embodiment of this technical solution, the short beam mounting frame is equipped with symmetrically distributed short beam fastening frames corresponding to the short beam connection structure mounting kit. The short beam fastening frames are installed together with the short crossbeams by mounting bolts. The height of the short beam fastening frames is consistent with the gap of the short crossbeams. The short beam mounting frame is provided with short beam grooves that are consistent with the cross-section of the short crossbeams.

[0011] As a further preferred embodiment of this technical solution, the mounting kit is respectively equipped with a single-pass mounting top plate and a closed mounting top plate. The single-pass mounting top plate is matched with a single short beam connection structure, and the closed mounting top plate is matched only with symmetrically distributed long beam connection structures.

[0012] This utility model has the following beneficial effects: This utility model embeds a long crossbeam into the mounting kit and a short crossbeam into the short beam mounting frame. By fixing the mounting kit and the mounting bolts of the double-pass mounting top plate, the long and short crossbeams are fixed together with the columns and the mounting kit. This provides stability and quick assembly / disassembly. Furthermore, by using a single-pass mounting top plate and a closed mounting top plate that can replace the double-pass mounting top plate, the steel structure has multiple assembly possibilities, enhancing the applicability of the steel structure frame. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the structural connection of the assembly connector for the crossbeams and columns of a steel structure house proposed in this utility model; Figure 2 A schematic diagram of the internal structure of an installation kit for assembling and connecting beams and columns of a steel structure house, as proposed in this utility model. Figure 3 This utility model provides a schematic diagram of the installation kit for the assembly and connection of the crossbeams and columns of a steel structure building with the long beams. Figure 4 A schematic diagram of the long beam connection structure of the assembly connector for the horizontal beam and vertical column of a steel structure house proposed in this utility model; Figure 5 This utility model provides a schematic diagram of a short beam connection structure for the assembly and connection components of a steel structure house's horizontal beams and vertical columns. Figure 6 This utility model provides a schematic diagram of a single-pass installation top plate and a closed installation top plate for the assembly and connection components of the crossbeams and columns of a steel structure building.

[0014] In the diagram: 1. Column; 2. Mounting kit; 3. Double-sided mounting plate; 4. Long beam connection structure; 41. Long crossbeam; 42. Long beam sealing slider; 43. Long beam limiting sliding rod; 44. Long beam limiting spring; 45. Long beam fastening frame; 5. Short beam connection structure; 51. Short beam mounting frame; 52. Short crossbeam; 53. Short beam sealing slider; 54. Short beam limiting sliding rod; 55. Short beam limiting spring; 56. Short beam fastening frame; 6. Install the top plate in a single pass; 7. Install the top plate in a closed manner; 8. Install the bolts. Detailed Implementation

[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0016] This utility model provides the following technical solution: like Figures 1 to 6 As shown, a steel structure house beam and column assembly connector includes a column 1, an installation kit 2 slidably connected to the column 1, a double-pass installation top plate 3 installed on the installation kit 2, a symmetrically distributed long beam connection structure 4 installed inside the installation kit 2, and a symmetrically distributed short beam connection structure 5 slidably connected inside the installation kit 2. The long beam connection structure 4 includes a long crossbeam 41 that is slidably installed within the mounting kit 2. The short beam connection structure 5 includes a short beam mounting frame 51 that is slidably connected within the mounting kit 2. A short crossbeam 52 is slidably installed within the short beam mounting frame 51. Symmetrically distributed mounting bolts 8 are installed between the mounting kit 2 and the double-pass mounting top plate 3. The long crossbeam 41 is installed within the mounting kit 2 by the mounting bolts 8, and the short crossbeam 52 and the short beam mounting frame 51 are installed within the mounting kit 2 by the mounting bolts 8.

[0017] It should be noted that by installing the mounting kit 2 on the column 1, and by ensuring that the top dimension of the mounting kit 2 is consistent with that of the column 1, the mounting kit 2 and the column 1 are matched and positioned. The long crossbeam 41 is embedded in the mounting kit 2, making the long crossbeam 41, the mounting kit 2 and the column 1 a whole. The short beam mounting frame 51, which is slidably installed in the mounting kit 2, works with the short crossbeam 52 and the short beam mounting frame 51 to form a whole with the column 1 and the mounting kit 2 through the mounting bolts 8. Thus, the mounting kit 2 makes the long crossbeam 41, the short beam 52 and the column 1 a whole, thereby ensuring the stability of the steel structure.

[0018] The mounting kit 2, which is slidably fitted onto the column 1, and the long crossbeam 41, which is embedded in the mounting kit 2, are slidably installed in the mounting kit 2 in conjunction with the short crossbeam 52 and the short beam mounting frame 51. The mounting bolts 8, which pass through and fix the mounting kit 2, the double-pass mounting top plate 3, the long crossbeam 41, the short beam mounting frame 51, and the short crossbeam 52, ensure the stability of the steel structure while making the installation process between the long crossbeam 41 and the short beam 52 and the column 1 simple and quick, and facilitating rapid installation and disassembly.

[0019] like Figure 4 As shown, the mounting kit 2 has symmetrically distributed long beam sealing sliders 42 that slide within it. The mounting kit 2 also has a long beam limiting sliding rod 43 that corresponds to the long beam sealing slider 42. A long beam limiting spring 44 is provided around the long beam limiting sliding rod 43 between the long beam limiting sliding rod 43 and the long beam sealing slider 42. The long crossbeam 41 and the long beam sealing slider 42 are press-fitted together, and the cross section of the long beam sealing slider 42 is the same as the cross section of the long crossbeam 41.

[0020] The mounting kit 2 contains symmetrically distributed long beam fasteners 45 corresponding to the long crossbeam 41. The height of the long beam fasteners 45 is the same as the gap height of the long crossbeam 41. The long crossbeam 41 and the long beam fasteners 45 are installed together by mounting bolts 8. The mounting kit 2 has a long beam groove on the cross section corresponding to the long crossbeam 41.

[0021] It should be noted that the dimensions of the long beam sealing slider 42 are consistent with the long beam groove on the mounting kit 2, so that dust is prevented from entering the mounting kit 2 due to the influence of the construction site environment before the long beam 41 is installed into the mounting kit 2. By setting the long beam fastening bracket 45 in the long beam 41 and installing it together with the long beam 41, a support is formed in the long beam 41, so that the long beam 41, the mounting kit 2 and the column 1 form an integral structure, ensuring stability.

[0022] like Figure 5As shown, a short beam sealing slider 53 is slidably connected inside the short beam mounting frame 51. A short beam limiting sliding rod 54 corresponding to the short beam sealing slider 53 is installed inside the short beam mounting frame 51. A short beam limiting spring 55 is provided around the short beam limiting sliding rod 54 between the short beam limiting sliding rod 54 and the short beam sealing slider 53. The short crossbeam 52 and the short beam sealing slider 53 are in a pressing fit. The cross section of the short crossbeam 52 is the same as the cross section of the short beam sealing slider 53.

[0023] The short beam mounting frame 51 is equipped with symmetrically distributed short beam fastening brackets 56 corresponding to the mounting kit 2 of the short beam connection structure 5. The short beam fastening brackets 56 are installed together with the short crossbeam 52 by mounting bolts 8. The height of the short beam fastening brackets 56 is consistent with the gap of the short crossbeam 52. The short beam mounting frame 51 is provided with a short beam groove that is consistent with the cross section of the short crossbeam 52.

[0024] It should be noted that by opening a short beam groove on the short beam mounting frame 51 that matches the cross section of the short cross beam 52, the short beam mounting frame 51 is embedded in the short beam groove by the short beam sealing slider 53 before it is installed together with the short cross beam 52. This prevents dust from the construction environment from entering the short beam mounting frame 51. At the same time, the short beam fastening bracket 56 installed in the gap of the short cross beam 52 forms a support within the short cross beam 52, ensuring that the short cross beam 52 and the short beam mounting frame 51 form an integral structure with the column 1 and the mounting kit 2, thus ensuring stability.

[0025] like Figure 6 As shown, the installation kit 2 is equipped with a single-pass mounting plate 6 and a closed mounting plate 7 respectively. The single-pass mounting plate 6 is matched with a single short beam connection structure 5, while the closed mounting plate 7 is matched only with symmetrically distributed long beam connection structures 4.

[0026] It should be noted that by replacing the single-pass mounting top plate 6 and the closed mounting top plate 7 installed on the mounting kit 2, the double-pass mounting top plate 3 can be installed separately with the long beam connection structure 4 or the short beam connection structure 5, thereby ensuring the stability of the steel structure, adapting to more installation situations, and enhancing the applicability of the structure.

[0027] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A steel structure house beam and column assembly connector, comprising a column (1), an installation kit (2) slidably connected to the column (1), a double-through installation top plate (3) installed on the installation kit (2), symmetrically distributed long beam connection structures (4) installed inside the installation kit (2), and symmetrically distributed short beam connection structures (5) slidably connected inside the installation kit (2), characterized in that: wherein The long beam connection structure (4) includes a long crossbeam (41) that is slidably installed within the mounting kit (2). The short beam connection structure (5) includes a short beam mounting frame (51) that is slidably connected within the mounting kit (2). A short crossbeam (52) is slidably installed within the short beam mounting frame (51). Symmetrically distributed mounting bolts (8) are installed between the mounting kit (2) and the double-pass mounting top plate (3). The long crossbeam (41) is installed within the mounting kit (2) by the mounting bolts (8). The short crossbeam (52) and the short beam mounting frame (51) are installed within the mounting kit (2) by the mounting bolts (8).

2. The assembling connector of the beam and column of the steel structure house according to claim 1, characterized in that: The mounting kit (2) has symmetrically distributed long beam sealing sliders (42) slidably connected inside. The mounting kit (2) has a long beam limiting sliding rod (43) corresponding to the long beam sealing slider (42) installed inside. A long beam limiting spring (44) is provided around the long beam limiting sliding rod (43) between the long beam limiting sliding rod (43) and the long beam sealing slider (42). The long crossbeam (41) and the long beam sealing slider (42) are pressed together. The cross section of the long beam sealing slider (42) is consistent with the cross section of the long crossbeam (41).

3. The assembling connector of the beam and column of the steel structure house according to claim 2, characterized in that: The mounting kit (2) is equipped with symmetrically distributed long beam fasteners (45) corresponding to the long crossbeam (41). The height of the long beam fasteners (45) is the same as the gap height of the long crossbeam (41). The long crossbeam (41) and the long beam fasteners (45) are installed together by mounting bolts (8). The mounting kit (2) has a long beam groove on the cross section corresponding to the long crossbeam (41).

4. The assembling connector of the beam and column of the steel structure house according to claim 1, characterized in that: A short beam sealing slider (53) is slidably connected inside the short beam mounting frame (51). A short beam limiting sliding rod (54) corresponding to the short beam sealing slider (53) is installed inside the short beam mounting frame (51). A short beam limiting spring (55) is provided around the short beam limiting sliding rod (54) between the short beam limiting sliding rod (54) and the short beam sealing slider (53). The short crossbeam (52) is pressed and engaged with the short beam sealing slider (53). The cross section of the short crossbeam (52) is the same as the cross section of the short beam sealing slider (53).

5. The assembly connector for the horizontal beams and vertical columns of a steel structure house according to claim 4, characterized in that: The short beam mounting frame (51) is equipped with symmetrically distributed short beam fastening frames (56) corresponding to the mounting kit (2) of the short beam connection structure (5). The short beam fastening frames (56) are installed together with the short crossbeam (52) by mounting bolts (8). The height of the short beam fastening frames (56) is consistent with the gap of the short crossbeam (52). The short beam mounting frame (51) is provided with a short beam groove that is consistent with the cross section of the short crossbeam (52).

6. The assembly connector for the horizontal beams and vertical columns of a steel structure house according to claim 1, characterized in that: The mounting kit (2) is equipped with a single-pass mounting top plate (6) and a closed mounting top plate (7), respectively. The single-pass mounting top plate (6) is matched with a single short beam connection structure (5), and the closed mounting top plate (7) is matched only with symmetrically distributed long beam connection structures (4).