Steel structure fabricated building assembly

Through the design of snap-in blocks and slots, combined with connecting plates and welding plates, rapid splicing and gap sealing of steel structure prefabricated buildings are achieved, solving the problem of low splicing efficiency in existing technologies and improving construction efficiency and sealing.

CN223410278UActive Publication Date: 2025-10-03TANG STEEL INT ENG TECH CORP +2
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Patent Information

Application Number
CN202422619413.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-29
Publication Date
2025-10-03
Estimated Expiration
2034-10-29

AI Technical Summary

Technical Problem

Existing steel structure prefabricated building components cannot be quickly spliced ​​together, and the gaps created by splicing cannot be quickly welded, resulting in reduced construction efficiency.

Method used

The clamping blocks and slots are used to realize the rapid and precise positioning of the columns and beams. The connecting plates and welding plates are used to realize the rapid connection of the columns and beams, and the joint gaps are quickly welded and sealed.

Benefits of technology

It realizes the rapid splicing and rapid welding of gaps in steel structure prefabricated buildings, improving the construction efficiency and the sealing of components.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223410278U_ABST
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Abstract

The utility model discloses a steel structure assembly type building assembly which comprises a stand column and two cross beams, the stand column, the two cross beams are perpendicular in pairs, one ends of the two cross beams are opposite to the lower end of the stand column, a clamping block is arranged on the end face of the end, opposite to the stand column, of each cross beam, and the clamping blocks are clamped into clamping grooves in the side portions of the stand column. Cross beam welding plates corresponding to the cross beams are arranged on the upper portions of the clamping grooves, each cross beam is connected with the corresponding stand column through a connecting plate, the two ends of each connecting plate are attached to the side wall of the corresponding cross beam and the side wall of the corresponding stand column respectively and connected with the corresponding cross beam and the corresponding stand column through fixing bolts, and a wall plate is installed on the upper portion of each cross beam. And one end of the wallboard is fixedly connected with the side wall of the stand column. Rapid and accurate positioning between the stand column and the cross beam is achieved through the clamping blocks and the clamping grooves, rapid connection between the stand column and the cross beam is achieved through the connecting plates and the welding plates, the splicing quality of the stand column, the cross beam and the wall plate is guaranteed, and the building efficiency of a steel structure assembly type building can be effectively improved.
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Description

Technical Field

[0001] The utility model relates to a steel structure assembled building component used when constructing a steel structure building, and belongs to the technical field of construction. Background Art

[0002] Steel structure prefabricated building components are a component of steel structure prefabricated buildings. Steel structure prefabricated buildings include several groups of components, which are connected to form the entire building. Therefore, steel structure prefabricated building components are the core components of steel structure prefabricated buildings.

[0003] There are many varieties of existing steel structure prefabricated building components, but most of them cannot be quickly spliced ​​together, and the gaps produced by splicing cannot be quickly welded, resulting in reduced construction efficiency of steel structure prefabricated buildings. Therefore, it is necessary to improve them. Utility Model Content

[0004] The purpose of the present invention is to provide a steel structure prefabricated building component to improve the construction efficiency of steel structure prefabricated buildings in order to address the shortcomings of the existing technology.

[0005] In order to achieve the above purpose, the present invention adopts the following technical solutions:

[0006] A steel structure prefabricated building component includes a column and two cross beams, the three of which are perpendicular to each other and one end of the two cross beams is opposite to the lower end of the column, and a clamping block is provided on the end face of the end of each cross beam opposite to the column, the clamping block is clamped into the clamping groove on the side of the column, and the upper part of the clamping groove is provided with a cross beam welding plate corresponding to the cross beam, each cross beam is connected to the column by a connecting plate, the two ends of the connecting plate are respectively abutted on the side walls of the cross beam and the column and are connected to the cross beam and the column by fixing bolts, a wall panel is installed on the upper part of each cross beam, and one end of the wall panel is fixedly connected to the side wall of the column.

[0007] The above-mentioned steel structure prefabricated building components are provided with reinforcement plates on both sides of the middle part of each beam. The upper and lower ends of the reinforcement plates are fixedly connected to the wall panels and beams respectively by bolts, and a wall panel welding plate corresponding to the wall panels is provided on the upper surface of the beam.

[0008] In the above-mentioned steel structure prefabricated building assembly, the upper surface of each beam is provided with an assembly groove matching the wall panel.

[0009] In the above-mentioned steel structure prefabricated building assembly, the side walls of the columns are provided with connecting bosses corresponding to the wall panels.

[0010] The above-mentioned steel structure prefabricated building assembly has a threaded rod on the top of the column.

[0011] The utility model realizes fast and accurate positioning between the columns and the beams through the clamping blocks and the clamping grooves, and realizes fast connection between the columns and the beams through the connecting plates and the welding plates, which not only ensures the splicing quality between the columns, the beams and the wall panels, but also effectively improves the construction efficiency of the steel structure prefabricated building. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] The present invention will be further described in detail below with reference to the accompanying drawings and specific implementation methods.

[0013] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0014] Figure 2 This is an exploded view of the structure of the present utility model;

[0015] Figure 3 For this utility model Figure 2 Enlarged view of point A in the middle.

[0016] The numbers in the figure are as follows: 1. Vertical assembly mechanism; 11. Column; 12. Threaded rod; 13. Connecting boss; 14. Fixing bolt; 15. Connecting plate; 16. Beam welding plate; 17. Clamping slot; 2. First transverse assembly mechanism; 21. First beam; 22. First reinforcing plate; 23. First wall panel welding plate; 24. First assembly slot; 25. First fixing hole; 26. First threaded hole; 27. Clamping block; 3. Second transverse assembly mechanism; 31. Second beam; 32. Second reinforcing plate; 33. Second wall panel welding plate; 34. Second assembly slot; 35. Second fixing hole; 36. Second threaded hole. DETAILED DESCRIPTION

[0017] The utility model aims to solve the problem that existing steel structure prefabricated building components cannot be quickly spliced ​​and the gaps generated by the splicing cannot be quickly welded, which leads to reduced construction efficiency of steel structure prefabricated buildings. It provides a steel structure prefabricated building component, which effectively solves the problems mentioned in the background technology.

[0018] See Figure 1-Figure 3 The utility model includes a vertical assembly mechanism 1, a first horizontal assembly mechanism 2 and a second horizontal assembly mechanism 3. The vertical assembly mechanism 1 includes a column 11, the first horizontal assembly mechanism 2 includes a first crossbeam 21, and the second crossbeam 3 includes a second crossbeam 31. The first crossbeam 21, the second crossbeam 31 and the column 11 are perpendicular to each other. One end of the first crossbeam 21 and the second crossbeam 31 is opposite to the lower end of the column 11. A clamping block 27 is provided on the end surface of the two crossbeams (i.e., the first crossbeam 21 and the second crossbeam 31) at one end opposite to the column 11.

[0019] The lower end side of the column 11 is provided with a card slot 17 that matches the card block 27 at the end of the two beams (i.e., the first beam 21 and the second beam 31). The card block 27 is snapped into the card slot 17. The top of the column 11 is provided with a threaded rod 12 for connecting to the top of the building. The side walls of the column 11 corresponding to the two beams (i.e., the first beam 21 and the second beam 31) are provided with connecting bosses 13. Connecting plates 15 are provided on the two side walls of the column 11. One end of the two connecting plates 15 is respectively abutted against the side walls of the two beams (i.e., the first beam 21 and the second beam 31) and are respectively connected to the two beams through fixing bolts 14. The other end of the two connecting plates 15 is abutted against On the side wall of the column 11, it is fixedly connected to the column 11 through fixing bolts 14. A horizontal beam welding plate 16 is provided on the upper part of each slot 17 at the lower end of the column 11. The clamping blocks 27 on the end faces of the first beam 21 and the second beam 31 are matched and connected with the slots 17 on the column 11, and then the first beam 21 and the second beam 31 are fixed to the column through the connecting plate 15. Then, the two beam welding plates 16 are respectively welded to the first beam 21 and the second beam 31 by a welding gun to melt the beam welding plates 16, thereby sealing the gap between the first beam 21 and the second beam 31 and the column 11, thereby increasing the strength of the component after assembly.

[0020] Each crossbeam has a mounting groove and wallboard welding plate on its upper surface that matches the wallboard. Reinforcement plates are located on both sides of the middle portion of the crossbeam. Specifically, the upper surface of the first crossbeam 21 has a first mounting groove 24, and first reinforcement plates 22 are located on both sides of the middle portion of the first crossbeam 21. The first reinforcement plates 22 have first fixing holes 25, and the sidewalls of the first crossbeam 21 have first threaded holes 26 corresponding to the positions of the first fixing holes 25. A first wallboard welding plate 23 is located on the upper surface of the first crossbeam 21. A second mounting groove 34 is located on the upper surface of the second crossbeam 31, and second reinforcement plates 32 are located on both sides of the middle portion of the second crossbeam 31. The second reinforcement plates 32 have second fixing holes 35, and the sidewalls of the second crossbeam 31 have second threaded holes 36 corresponding to the positions of the second fixing holes 35. A second wallboard welding plate 33 is located on the upper surface of the second crossbeam 31.

[0021] By placing the wall panel inside the assembly groove, connecting the wall panel to the connecting boss 13, fixing the beam to the wall panel through a reinforcing plate, and then welding the wall panel welding plate with a welding gun to seal the gap between the wall panel and the beam, the practicality of the component is further improved.

[0022] In a specific application scenario, the component is first placed in a suitable position, and then the clamping blocks 27 on the end faces of the first crossbeam 21 and the second crossbeam 31 are matched and connected with the clamping grooves 17 on the lower end sides of the columns 11, and then the first crossbeam 21 and the second crossbeam 31 are fixed to the columns 11 through the connecting plates 15 and the fixing bolts 14, and then the crossbeam welding plate 16 is welded by a welding gun to melt the crossbeam welding plate 16, thereby sealing the gap between the first crossbeam 21 and the second crossbeam 31 and the columns 11, and then the two wall panels are placed in the first assembly groove 24 and the second assembly groove 34 respectively, so that the wall panels are connected to the corresponding connecting bosses 13, and then the first crossbeam 21 and the wall panel are fixed by the first reinforcing plate 22, and the second crossbeam 31 and the wall panel are fixed by the second reinforcing plate 32, and finally the first wall panel welding plate 23 and the second wall panel welding plate 33 are welded by a welding gun to seal the gap between the wall panel and the first crossbeam 21 and the second crossbeam 31.

[0023] By adopting the above technical solution, the steel structure prefabricated building components can be quickly spliced, and the gaps generated by the splicing can be quickly welded, thereby improving the sealing of the components and improving the construction efficiency of the steel structure prefabricated building.

Claims

1. A steel structure prefabricated building assembly, characterized in that: The utility model comprises a column (11) and two cross beams, wherein the three are perpendicular to each other and one end of the two cross beams is opposite to the lower end of the column (11), and a clamping block (27) is provided on the end surface of the end of each cross beam opposite to the column (11), and the clamping block (27) is clamped into the clamping groove (17) on the side of the column (11), and the upper part of the clamping groove (17) is provided with a cross beam welding plate corresponding to the cross beam, and each cross beam is connected to the column (11) through a connecting plate (15), and the two ends of the connecting plate (15) are respectively abutted on the side walls of the cross beam and the column (11) and connected to the cross beam and the column (11) through fixing bolts (14), and a wall panel is installed on the upper part of each cross beam, and one end of the wall panel is fixedly connected to the side wall of the column (11).

2. A steel structure prefabricated building assembly according to claim 1, characterized in that: Reinforcement plates are provided on both sides of the middle of each beam. The upper and lower ends of the reinforcement plates are fixedly connected to the wall panels and beams respectively by bolts. Wall panel welding plates corresponding to the wall panels are provided on the upper surface of the beam.

3. A steel structure prefabricated building assembly according to claim 1 or 2, characterized in that: The upper surface of each beam is provided with an assembly groove matching the wall panel.

4. A steel structure prefabricated building assembly according to claim 3, characterized in that: A connecting boss (13) corresponding to the wallboard is provided on the side wall of the column (11).

5. The steel structure prefabricated building assembly according to claim 4, characterized in that: A threaded rod (12) is provided on the top of the column (11).