CN224092688U - A steel structural frame for buildings - Google Patents

A steel structural frame for buildings

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Publication number
CN224092688U
CN224092688U CN202520885860.1U CN202520885860U CN224092688U CN 224092688 U CN224092688 U CN 224092688U CN 202520885860 U CN202520885860 U CN 202520885860U CN 224092688 U CN224092688 U CN 224092688U
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CN
China
Prior art keywords
plate
inclined strip
steel structure
inner supporting
top end
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Active
Application number
CN202520885860.1U
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Chinese (zh)
Inventor
张永春
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Chongqing Yongchuan District Shuangzhu Construction Engineering Co
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Chongqing Yongchuan District Shuangzhu Construction Engineering Co
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Application filed by Chongqing Yongchuan District Shuangzhu Construction Engineering Co filed Critical Chongqing Yongchuan District Shuangzhu Construction Engineering Co
Priority to CN202520885860.1U priority Critical patent/CN224092688U/en
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Publication of CN224092688U publication Critical patent/CN224092688U/en
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Abstract

The utility model relates to the technical field of buildings and discloses a steel structure frame for the building, which comprises a steel structure frame, wherein long grooves are formed in two sides of the top end of a top plate, through grooves are formed between the long grooves and in the top end of the top plate, T-shaped sliding grooves are formed in the inner side of the top end of a side plate, lower grooves are formed in the top end of a bottom plate, an inner supporting member comprises a wide plate and an L-shaped block arranged on one side of the wide plate, an inner supporting triangular block is arranged in the inner side of the L-shaped block, the wide plate and the L-shaped block are limited and move downwards along the long grooves in the top end of the top plate, the outer frame and the inner supporting member are fixed by bolts B, the inner side of the outer frame is supported by the inner supporting member, the two ends of an inclined strip A and the inclined strip B are fixedly arranged on the outer side of the inner supporting triangular block by bolts C, the inner supporting member and the inner side of the constraint member are supported by the bolts C, the stability of the outer frame is improved, and an anti-seismic effect is achieved.

Description

Steel structure frame for building
Technical Field
The utility model relates to the technical field of buildings, in particular to a steel structure frame for a building.
Background
Steel structural frames refer to structural frame systems formed using steel as the primary load bearing and support material in a building. The frame structure is generally composed of steel columns, steel beams, steel bars and other connecting pieces, and is widely applied to large-scale building projects such as high-rise buildings, industrial buildings, bridges, stadiums and the like. The main characteristics of the steel structure frame include high strength, durability, high construction speed, strong adaptability and the like, so that the steel structure frame occupies an important position in modern buildings.
The utility model provides a building is anti-seismic steel structure frame for building construction that publication number is CN221567455U, includes the support column, support column top fixedly connected with braced frame, braced frame bottom is provided with overhauls the mechanism, overhauls the mechanism bottom and is provided with anti-seismic mechanism, anti-seismic mechanism includes long case, long case sets up in overhauls mechanism one side, long case inner wall fixedly connected with spring, the one end fixedly connected with movable block of long case inner wall is kept away from to the spring, movable block top fixedly connected with connecting axle. This building is shock-resistant steel structure frame for building, through the shock-resistant mechanism that sets up, with impact force conversion elastic potential energy, compressed spring can promote the movable block simultaneously and reciprocate the slip to become the sliding friction heat energy of movable block with elastic potential energy conversion to play friction damping shock attenuation's purpose, can play good offset under the shock-resistant effect to the impact force that produces, also reduce the injury that the impact force caused braced frame simultaneously, further extension device's life.
The above patent proposes that the impact force is converted into elastic potential energy, and the compressed spring pushes the moving block to slide reciprocally, so that the elastic potential energy is converted into sliding friction heat energy of the moving block, thereby achieving the purpose of friction damping and shock absorption.
Disclosure of utility model
The utility model aims to provide a steel structure frame for a building, which solves the problem that the friction performance of a moving block may be reduced due to long-term friction movement in the prior art, so that the anti-seismic effect is affected.
The steel structure frame for the building comprises an outer frame and inner supporting members arranged at four corners of the inner side of the outer frame, wherein constraint members are arranged between the inner supporting members, and steel bars are vertically arranged in the constraint members;
The outer frame comprises a top plate and a bottom plate positioned below the top plate, two ends of the top plate and the bottom plate are respectively provided with a side plate, two sides of the top end of the top plate are provided with long grooves, through grooves are formed between the long grooves and at the top end of the top plate, T-shaped sliding grooves are formed in the inner side of the top end of the side plate, and the top end of the bottom plate is provided with a lower groove;
The inner supporting component comprises a wide plate and an L-shaped placing block arranged on one side of the wide plate, and an inner supporting triangular block is arranged on the inner side of the L-shaped placing block.
Preferably, threaded holes A are formed in two sides of the side plate, the top plate and the bottom plate, threaded holes B are formed in two sides of the L-shaped block, and bolts B are connected with the internal threads of the threaded holes A and the threaded holes B.
Preferably, the constraint component comprises an inclined strip A and an inclined strip B arranged on one side of the inclined strip A, the inclined strip A and the inclined strip B are installed between the inner supporting component in a crossing mode, a positioning threaded hole is formed in the crossing position of the inclined strip A and the inclined strip B in a penetrating mode, a bolt A is connected with the inner thread of the positioning threaded hole, and a bolt C is connected between the inclined strip A and the inclined strip B and the inner supporting triangular block.
Preferably, the bottom end of the inner part of the lower groove and the outer surface of the lower plate are provided with bottom grooves, positioning members are arranged in the bottom grooves, and reinforcing steel bars are arranged in the positioning members.
Preferably, the positioning member includes a mounting seat and a mounting tube penetrating through the inside of the mounting seat.
Preferably, the middle ends of the inclined strip A and the inclined strip B are penetrated and provided with binding holes, the inner wall of each binding hole is vertically provided with a vertical binding rod, the reinforcing steel bars are arranged between the inclined strip A and the inclined strip B, the reinforcing steel bars are aligned with the positions of the binding holes, and the outer sides of the reinforcing steel bars of the binding holes are provided with connecting metal wires.
Compared with the prior art, the utility model has the beneficial effects that:
1. According to the steel structure frame for the building, the wide plate and the L-shaped placement blocks are limited and move downwards along the long groove at the top end of the top placement plate, the outer frame and the inner supporting members are fixed by the bolts B, the inner side of the outer frame is supported by the arranged inner supporting members, the two ends of the diagonal strips A and the diagonal strips B are fixedly arranged at the outer sides of the inner supporting triangular blocks by the bolts C, the inner supporting members and the constraint members are arranged to support the inner side of the outer frame, the stability of the steel structure frame is improved, and the anti-seismic effect is achieved.
2. According to the steel structure frame for the building, the steel bars are pushed down from the inside of the through groove, the bottom ends of the steel bars are inserted into the inside of the installation pipe, the steel bars are bound with the vertical binding rods by the connecting metal wires, concrete is poured into the outside frame from the inside of the through groove, and the bearing capacity and the rigidity of the steel structure frame are improved.
Drawings
FIG. 1 is a schematic overall perspective view of the present utility model;
FIG. 2 is a schematic perspective view of an outer frame of the present utility model;
FIG. 3 is a schematic perspective view of a bottom plate according to the present utility model;
Fig. 4 is a schematic perspective view of the inner support member and the restraining member of the present utility model.
1, Steel structure frame, 11, outer frame, 111, side board, 112, bottom board, 113, top board, 114, long groove, 115, through groove, 116, T-shaped chute, 117, bottom groove, 118, screw hole A, 119, bottom groove, 12, inner supporting component, 121, wide board, 122, L-shaped block, 123, inner supporting triangular block, 124, screw hole B, 13, constraint component, 131, oblique strip A, 132, oblique strip B, 133, binding hole, 134, vertical binding rod, 135, positioning screw hole, 14, bolt A, 15, bolt B, 16, connecting wire, 17, steel bar, 18, bolt C, 19, positioning component, 191, installation seat, 192, and installation tube.
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. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-4, a steel structure frame for a building comprises a steel structure frame 1, wherein the steel structure frame 1 comprises an outer frame 11 and inner supporting members 12 arranged at four corners of the inner side of the outer frame 11, constraint members 13 are arranged between the inner supporting members 12, and reinforcing steel bars 17 are vertically arranged in the constraint members 13.
The outer frame 11 comprises a top plate 113 and a bottom plate 112 arranged below the top plate 113, wherein side plates 111 are respectively arranged at two ends of the top plate 113 and the bottom plate 112, long grooves 114 are formed in two sides of the top end of the top plate 113, through grooves 115 are formed between the long grooves 114 and in the top end of the top plate 113, T-shaped sliding grooves 116 are formed in the inner side of the top end of the side plates 111, lower grooves 117 are formed in the top end of the bottom plate 112, and one side of each T-shaped sliding groove 116 is consistent with the shape and the size of each long groove 114.
The inner support member 12 includes a wide plate 121 and an L-shaped block 122 mounted on one side of the wide plate 121, and an inner support triangular block 123 is mounted on the inner side of the L-shaped block 122.
Screw holes A118 are formed in two sides of the side plate 111, the top plate 113 and the bottom plate 112, screw holes B124 are formed in two sides of the L-shaped placing block 122, bolts B15 are connected with the screw holes A118 and the screw holes B124 in a threaded manner, and the outer frame 11 and the inner supporting member 12 are fixed through the bolts B15.
The restraint component 13 comprises an inclined strip A131 and an inclined strip B132 arranged on one side of the inclined strip A131, wherein the inclined strip A131 and the inclined strip B132 are installed between the inner support component 12 in a crossing manner, a positioning threaded hole 135 is formed in the crossing position of the inclined strip A131 and the inclined strip B132 in a penetrating manner, a bolt A14 is connected to the inner thread of the positioning threaded hole 135, a bolt C18 is connected between the inclined strip A131 and the inclined strip B132 and the inner support triangular block 123, and the inclined strip A131 and the inclined strip B132 are connected by the bolt A14.
In the embodiment, the top ends and the bottom ends of the two groups of side plates 111 are respectively welded with the two ends of the top plate 113 and the inner supporting triangular block 123, the wide plate 121 and the L-shaped positioning block 122 are limited and move downwards along the long groove 114 at the top end of the top plate 113, the two groups of inner supporting members 12 at the lower end are moved to the two inner sides of the lower groove 117, after the threaded holes A118 are aligned with the threaded holes B124, the outer frame 11 and the inner supporting members 12 are fixed by using the bolts B15, the inner supporting members 12 are arranged to support the inner side of the outer frame 11, after the inner supporting members 12 are arranged, the diagonal strips A131 and the diagonal strips B132 are arranged from the two sides of the inner supporting members 12 in a crossing manner, the two ends of the diagonal strips A131 and the diagonal strips B132 are fixedly arranged on the outer sides of the inner supporting triangular block 123 by using the bolts C18, the inner supporting members 12 and the restraining members 13 are arranged to support the inner side of the outer frame 11, the stability of the outer frame 1 is improved, and the anti-vibration effect is achieved.
Second embodiment in this embodiment, referring to fig. 3 and 4, a bottom groove 119 is formed in the outer surface of the bottom plate 112 at the bottom end of the bottom groove 117, a positioning member 19 is installed in the bottom groove 119, and a reinforcing bar 17 is installed in the positioning member 19.
The positioning member 19 includes a mount 191 and a mount tube 192 penetrating inside the mount 191, and an inner diameter of the mount tube 192 is identical to a diameter of the positioning member 19.
The middle ends of the inclined strip A131 and the inclined strip B132 are penetrated and provided with binding holes 133, the inner wall of the binding holes 133 is vertically provided with a vertical binding rod 134, the reinforcing steel bar 17 is arranged between the inclined strip A131 and the inclined strip B132, the reinforcing steel bar 17 is aligned with the binding holes 133, the outer sides of the reinforcing steel bars 17 of the binding holes 133 are provided with connecting metal wires 16, and the positions of the binding holes 133 are aligned with the positions of the installation pipes 192.
In the embodiment, the intersecting positions of the inclined strip A131 and the inclined strip B132 are provided with positioning threaded holes 135 in a penetrating manner, the inclined strip A131 and the inclined strip B132 are fixed by bolts A14, before the reinforcing steel bar 17 is installed, the installation seat 191 is fixed in the bottom groove 119 by concrete, the installation pipe 192 and the binding holes 133 are positioned on the same vertical surface, the reinforcing steel bar 17 is pushed down from the inside of the through groove 115, after the bottom end of the reinforcing steel bar 17 is inserted into the inside of the installation pipe 192, one end of the connecting wire 16 penetrates through the inside of the binding holes 133, after the connecting wire 16 is bent, the position of the reinforcing steel bar 17 and the position of the vertical binding rod 134 are bound, one end of the connecting wire 16 is turned back to the inside of the binding holes 133 from the other side of the vertical binding rod 134, the two ends of the connecting wire 16 are twisted, the position of the reinforcing steel bar 17 is fixed, concrete is poured from the inside of the through groove 115, and the inside of the frame 11 is poured, and the bearing capacity and rigidity of the steel structure frame 1 are improved.
What is not described in detail in this specification is prior art known to those skilled in the art.
Although the present utility model has been described with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described, or equivalents may be substituted for elements thereof, and any modifications, equivalents, improvements and changes may be made without departing from the spirit and principles of the present utility model.

Claims (6)

1. The steel structure frame for the building comprises a steel structure frame (1) and is characterized in that the steel structure frame (1) comprises an outer frame (11) and inner supporting members (12) arranged at four corners of the inner side of the outer frame (11), constraint members (13) are arranged between the inner supporting members (12), and reinforcing steel bars (17) are vertically arranged in the constraint members (13);
The outer frame (11) comprises an overhead plate (113) and a bottom plate (112) arranged below the overhead plate (113), wherein two ends of the overhead plate (113) and the bottom plate (112) are respectively provided with side plates (111), long grooves (114) are formed in two sides of the top end of the overhead plate (113), through grooves (115) are formed between the long grooves (114) and in the top end of the overhead plate (113), T-shaped sliding grooves (116) are formed in the inner side of the top end of the side plates (111), and lower grooves (117) are formed in the top end of the bottom plate (112);
The inner support member (12) comprises a wide plate (121) and an L-shaped placement block (122) arranged on one side of the wide plate (121), and an inner support triangular block (123) is arranged on the inner side of the L-shaped placement block (122).
2. A steel structure frame for building according to claim 1, wherein the side plates (111), the top plate (113) and the bottom plate (112) are provided with threaded holes A (118) on both sides, the L-shaped block (122) is provided with threaded holes B (124) on both sides, and the threaded holes A (118) and the threaded holes B (124) are internally connected with bolts B (15) in a threaded manner.
3. The steel structure frame for building according to claim 1, wherein the constraint component (13) comprises an inclined strip A (131) and an inclined strip B (132) arranged on one side of the inclined strip A (131), the inclined strip A (131) and the inclined strip B (132) are installed between the inner supporting component (12) in a crossing mode, a positioning threaded hole (135) is formed in the crossing position of the inclined strip A (131) and the inclined strip B (132) in a penetrating mode, a bolt A (14) is connected to the internal threads of the positioning threaded hole (135), and a bolt C (18) is connected between the inclined strip A (131), the inclined strip B (132) and the inner supporting triangular block (123).
4. A steel structure frame for building according to claim 1, wherein the bottom end of the bottom groove (117) is provided with a bottom groove (119) on the outer surface of the bottom plate (112), the positioning member (19) is arranged in the bottom groove (119), and the reinforcing steel bar (17) is arranged in the positioning member (19).
5. A steel structural frame for buildings according to claim 4, wherein said positioning member (19) comprises a mounting seat (191) and a mounting tube (192) penetrating inside the mounting seat (191).
6. A steel structure frame for a building according to claim 3, wherein binding holes (133) are formed in the middle ends of the inclined strips A (131) and the inclined strips B (132) in a penetrating mode, vertical binding rods (134) are vertically arranged on the inner walls of the binding holes (133), reinforcing steel bars (17) are arranged between the inclined strips A (131) and the inclined strips B (132), the reinforcing steel bars (17) are aligned with the binding holes (133), and connecting metal wires (16) are arranged on the outer sides of the reinforcing steel bars (17) of the binding holes (133).
CN202520885860.1U 2025-05-07 2025-05-07 A steel structural frame for buildings Active CN224092688U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202520885860.1U CN224092688U (en) 2025-05-07 2025-05-07 A steel structural frame for buildings

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202520885860.1U CN224092688U (en) 2025-05-07 2025-05-07 A steel structural frame for buildings

Publications (1)

Publication Number Publication Date
CN224092688U true CN224092688U (en) 2026-04-07

Family

ID=99299653

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202520885860.1U Active CN224092688U (en) 2025-05-07 2025-05-07 A steel structural frame for buildings

Country Status (1)

Country Link
CN (1) CN224092688U (en)

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