CN220598706U - Steel structure connection structure for assembled building - Google Patents

Steel structure connection structure for assembled building Download PDF

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Publication number
CN220598706U
CN220598706U CN202321280120.2U CN202321280120U CN220598706U CN 220598706 U CN220598706 U CN 220598706U CN 202321280120 U CN202321280120 U CN 202321280120U CN 220598706 U CN220598706 U CN 220598706U
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shaped steel
steel beam
jack
triangular
connection structure
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CN202321280120.2U
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Chinese (zh)
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董喜梅
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Jiangsu Yaojie Construction Engineering Group Co ltd
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Jiangsu Yaojie Construction Engineering Group Co ltd
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Abstract

The utility model discloses a steel structure connecting structure for an assembled building, which comprises square steel columns; the four groups of connecting assemblies, each group of connecting assemblies comprises two triangular supporting blocks and an H-shaped steel beam, two triangular supporting blocks are fixedly connected to one side wall of the square steel column, and the H-shaped steel beam is arranged between the two triangular supporting blocks; the four groups of fixing components are arranged, and each group of fixing components comprises a plurality of jacks, a plurality of inserting rods, a supporting plate, a sliding chute, a clamping plate, a spring and a clamping groove. According to the utility model, four groups of fixing assemblies are arranged, when the connecting piece is fixed, the H-shaped steel beam is only required to be arranged between the two triangular support blocks, so that jacks on the H-shaped steel beam are in one-to-one correspondence, then a plurality of inserting rods on the support plate are inserted into the jacks, and the inserting rods penetrate through the two triangular support blocks and the H-shaped steel beam and are fixed between the two triangular support blocks by pushing downwards, so that the operation is very convenient.

Description

Steel structure connection structure for assembled building
Technical Field
The utility model relates to the technical field of assembled buildings, in particular to a steel structure connecting structure for an assembled building.
Background
The steel structure building is a novel building system, compared with the traditional concrete building, the steel plate or the section steel is used for replacing reinforced concrete, the strength is higher, and the shock resistance is better; meanwhile, as the components can be manufactured in a factory and installed on site, the construction period is greatly reduced; in addition, the steel can be recycled, so that the construction waste can be greatly reduced, and the method is more environment-friendly.
Through retrieving, the patent document with the publication number of CN211973861U discloses a connecting component for assembled steel structure building, including a steel-pipe column and H shaped steel roof beam, be equipped with a brace table on the side wall of the square steel pipe column that links to each other one side with H shaped steel roof beam horizontally, be equipped with a card post respectively vertically in brace table surface both sides, the connecting piece of a butt on the side wall of square steel pipe column of activity joint on the brace table, the connecting piece passes through the bolt fastening on square steel-pipe column, is equipped with a first through-hole respectively in the bottom both sides of the H shaped steel roof beam that links to each other one side with square steel pipe column.
However, when the connecting structure is installed, a plurality of bolts are often required to be used for fixing the connecting piece on the square steel column, the fixing process is complicated, the fixing time is long, and the workload of staff is increased.
Disclosure of Invention
The utility model aims to solve the problems of complicated fixing process and long time in the prior art, and provides an assembled steel structure connecting structure for building, which can be used for rapidly and conveniently fixing a connecting piece on a square steel column.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
a steel structure connection structure for a fabricated building, comprising:
square steel column;
the four groups of connecting assemblies, each group of connecting assemblies comprises two triangular supporting blocks and an H-shaped steel beam, two triangular supporting blocks are fixedly connected to one side wall of the square steel column, and the H-shaped steel beam is arranged between the two triangular supporting blocks;
four fixed subassembly of group, every group fixed subassembly includes a plurality of jack, a plurality of inserted bar, backup pad, spout, joint board, spring and joint groove, a plurality of jack has all been seted up on the upper and lower wall of H shaped steel roof beam and the two triangle supporting shoe, and a plurality of jack one-to-one, a plurality of all be inserted in the jack and be equipped with the inserted bar, a plurality of inserted bar top fixedly connected with backup pad, the spout has been seted up on the backup pad is close to a lateral wall of square steel column, sliding connection has the joint board in the spout, the joint board passes through the inner wall elastic connection of spring and spout, set up on the lateral wall of square steel column with joint board complex joint groove.
Preferably, a pull rope is arranged on one side wall, far away from the square steel column, of each clamping plate.
Preferably, each pull rope extends to the outside of the supporting plate and is fixedly connected with a pull ring.
Preferably, each inserted link can extend to the below of H shaped steel girder through the jack that sets up on top triangle supporting shoe, below triangle supporting shoe, H shaped steel girder upper wall and the H shaped steel girder lower wall in proper order.
Preferably, the four clamping plates and the plurality of inserting rods are all made of aluminum alloy materials.
Preferably, when the four springs are in an initial state, the four clamping plates can be pushed to enter the four clamping grooves respectively.
Compared with the prior art, the utility model has the following advantages:
1. according to the utility model, four groups of fixing assemblies are arranged, when the connecting piece is fixed, the H-shaped steel beam is only required to be placed between the two triangular support blocks, so that jacks on the H-shaped steel beam are in one-to-one correspondence, then a plurality of inserting rods on the support plate are inserted into the jacks, and the inserting rods are pushed downwards, so that the plurality of inserting rods penetrate through the two triangular support blocks and the H-shaped steel beam, the H-shaped steel beam is fixed between the two triangular support blocks, the operation is very convenient, the fixing time is greatly saved, the workload of staff is reduced, and meanwhile, as the clamping plates enter the clamping grooves, the support plate and the inserting rods are prevented from upwards moving to fall off from the triangular support blocks when vibration occurs, and the unstable fixation of the H-shaped steel beam is avoided.
2. According to the utility model, the pull rope and the pull ring are arranged, when the pull ring is required to be detached, the pull rope can pull the clamping plate into the sliding groove only by pulling the pull ring, so that the supporting plate can be displaced upwards, a plurality of inserting rods are taken out from the upper part, and the H-shaped steel beam is not fixed any more.
Drawings
Fig. 1 is a schematic perspective view of a steel structure connection structure for an assembled building according to the present utility model;
fig. 2 is a schematic plan view of a steel structure connection structure for fabricated building according to the present utility model;
fig. 3 is an enlarged view at a in fig. 2.
In the figure: 1. square steel column; 2. a connection assembly; 21. triangular support blocks; 22. h-shaped steel beams; 3. a fixing assembly; 31. a jack; 32. a rod; 33. a support plate; 34. a chute; 35. a clamping plate; 351. a pull rope; 352. a pull ring; 36. a spring; 37. and a clamping groove.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments.
Referring to fig. 1-3, a fabricated building steel structure connection structure, comprising:
square steel column 1;
four groups of connecting components 2, wherein each group of connecting components 2 comprises two triangular supporting blocks 21 and an H-shaped steel beam 22, two triangular supporting blocks 21 are fixedly connected to one side wall of the square steel column 1, and the H-shaped steel beam 22 is arranged between the two triangular supporting blocks 21;
four fixed subassembly 3 are organized, every fixed subassembly 3 of group includes a plurality of jack 31, a plurality of inserted bar 32, backup pad 33, spout 34, joint board 35, spring 36 and joint groove 37, a plurality of jack 31 has all been seted up on the upper and lower wall of H shaped steel roof beam 22 and two triangle supporting shoe 21, and a plurality of jack 31 one-to-one, all inserted the inserted bar 32 in a plurality of jack 31, a plurality of inserted bar 32 top fixedly connected with backup pad 33, spout 34 has been seted up on the backup pad 33 is close to one lateral wall of square steel column 1, sliding connection has joint board 35 in spout 34, joint board 35 passes through spring 36 and the inner wall elastic connection of spout 34, set up on the lateral wall of square steel column 1 with joint board 35 complex joint groove 37.
It should be noted that each inserting rod 32 can sequentially pass through the upper triangular supporting block 21, the lower triangular supporting block 21, the jack 31 formed on the upper wall of the H-shaped steel beam 22 and the lower wall of the H-shaped steel beam 22 to extend to the lower side of the H-shaped steel beam 22, when the connecting piece is fixed, the H-shaped steel beam 22 is only required to be placed between the two triangular supporting blocks 21, so that the jacks 31 on the H-shaped steel beam 22 are in one-to-one correspondence, then a plurality of inserting rods 32 on the supporting plate 33 are inserted into the jacks 31, the supporting plate 33 is pushed downwards, a plurality of inserting rods 32 can penetrate through the two triangular supporting blocks 21 and the H-shaped steel beam 22, the H-shaped steel beam 22 is fixed between the two triangular supporting blocks 21, and meanwhile, as four springs 36 are in an initial state, four clamping plates 35 can be pushed to enter the four clamping grooves 37 respectively, when the supporting plate 33 and the clamping grooves 37 are in the same horizontal line, the clamping plates 35 enter the clamping grooves 37, so that the supporting plate 33 and the inserting rods 32 are displaced upwards when vibration occurs, and the H-shaped steel beam 22 are prevented from being fixed, and the H-shaped steel beam 22 is not firmly.
In addition, each clamping plate 35 is far away from a side wall of the square steel column 1 and is provided with a pull rope 351, each pull rope 351 extends to the outside of the supporting plate 33 and is fixedly connected with a pull ring 352, when a connecting piece is required to be detached, the pull ring 352 is pulled, the pull rope 351 can pull the clamping plates 35 into the sliding grooves 34, the clamping plates 33 are not clamped in the clamping grooves 37, the supporting plates 33 can move upwards, a plurality of inserting rods 32 are taken out from the upper side, and the H-shaped steel beams 22 are not fixed.
Four joint boards 35 and a plurality of inserted bars 32 all adopt the aluminum alloy material, and light in weight just is difficult for the deformation, can prevent that inserted bar 32 and joint board 35 from taking place to warp and cause unable to fix H shaped steel roof beam 22, the staff of being convenient for simultaneously will backup pad 33 upwards displacement.
The utility model can explain its functional principle by the following modes of operation:
when the H-shaped steel beam positioning device is used, the H-shaped steel beams 22 are placed between the two triangular support blocks 21, the jacks 31 on the H-shaped steel beams are in one-to-one correspondence, then the inserting rods 32 on the supporting plates 33 are respectively inserted into the corresponding jacks 31, the supporting plates 33 are moved downwards, at the moment, the clamping plates 35 can be extruded into the sliding grooves 34 due to the fact that the supporting plates 33 are in close contact with the square steel columns 1, when the inserting rods 32 extend out of the lower triangular support blocks 21, the clamping plates 35 in the supporting plates 33 and the clamping grooves 37 are positioned on the same horizontal line, the clamping plates 35 can enter the clamping grooves 37 under the action of the elasticity of the springs 36, the supporting plates 33 are clamped, the supporting plates 33 and the inserting rods 32 are prevented from moving upwards, the H-shaped steel beams 22 can be fixed, the operation is very convenient, the fixing time is greatly saved, the workload of workers is reduced, and when the H-shaped steel beams are dismounted, the clamping plates 35 can be enabled to enter the sliding grooves 34 without clamping the supporting plates 33, and the inserting rods 32 are moved upwards, and the H-shaped steel beams 22 can be taken down from the position between the two triangular support blocks 21.
The foregoing is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical scheme of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.

Claims (6)

1. A steel structure connection structure for assembled building, characterized by comprising:
square steel column (1);
four groups of connecting assemblies (2), wherein each group of connecting assemblies (2) comprises two triangular supporting blocks (21) and an H-shaped steel beam (22), two triangular supporting blocks (21) are fixedly connected to one side wall of the square steel column (1), and the H-shaped steel beam (22) is arranged between the two triangular supporting blocks (21);
four fixed subassembly (3) of group, every group fixed subassembly (3) include a plurality of jack (31), a plurality of inserted bar (32), backup pad (33), spout (34), joint board (35), spring (36) and joint groove (37), a plurality of jack (31) have all been seted up on the upper and lower wall of H shaped steel roof beam (22) and two triangle supporting shoe (21), and a plurality of jack (31) one-to-one, a plurality of all be inserted in jack (31) and be equipped with inserted bar (32), a plurality of inserted bar (32) top fixedly connected with backup pad (33), spout (34) have been seted up on one lateral wall that backup pad (33) are close to square steel column (1), sliding connection has joint board (35) in spout (34), joint groove (37) with joint board (35) complex are seted up on the lateral wall of square steel column (1) through spring (36).
2. The fabricated structural steel structure connection structure for construction according to claim 1, wherein:
and a pull rope (351) is arranged on one side wall, far away from the square steel column (1), of each clamping plate (35).
3. The fabricated structural steel structure connection structure for construction according to claim 2, wherein:
each stay cord (351) extends to the outside of backup pad (33) and fixedly connected with pull ring (352).
4. The fabricated structural steel structure connection structure for construction according to claim 1, wherein:
each inserted link (32) can sequentially pass through the upper triangular support block (21), the lower triangular support block (21), the upper wall of the H-shaped steel beam (22) and the jack (31) formed on the lower wall of the H-shaped steel beam (22) to extend to the lower part of the H-shaped steel beam (22).
5. The fabricated structural steel structure connection structure for construction according to claim 1, wherein:
the four clamping plates (35) and the plurality of inserting rods (32) are made of aluminum alloy materials.
6. The fabricated structural steel structure connection structure for construction according to claim 5, wherein:
when the four springs (36) are in an initial state, the four clamping plates (35) can be pushed to enter the four clamping grooves (37) respectively.
CN202321280120.2U 2023-05-25 2023-05-25 Steel structure connection structure for assembled building Active CN220598706U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321280120.2U CN220598706U (en) 2023-05-25 2023-05-25 Steel structure connection structure for assembled building

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321280120.2U CN220598706U (en) 2023-05-25 2023-05-25 Steel structure connection structure for assembled building

Publications (1)

Publication Number Publication Date
CN220598706U true CN220598706U (en) 2024-03-15

Family

ID=90169448

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321280120.2U Active CN220598706U (en) 2023-05-25 2023-05-25 Steel structure connection structure for assembled building

Country Status (1)

Country Link
CN (1) CN220598706U (en)

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