CN219711091U - Cantilever component supporting device - Google Patents
Cantilever component supporting device Download PDFInfo
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- CN219711091U CN219711091U CN202223297300.XU CN202223297300U CN219711091U CN 219711091 U CN219711091 U CN 219711091U CN 202223297300 U CN202223297300 U CN 202223297300U CN 219711091 U CN219711091 U CN 219711091U
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- steel fixing
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Abstract
The utility model relates to the technical field of building construction, in particular to an overhanging component supporting device, which comprises a horizontal beam, wherein the horizontal beam is connected with an inclined strut, the inclined strut is connected with a lifting beam, the horizontal beam, the inclined strut and the lifting beam are all made of I-steel, one end of the inclined strut far away from the horizontal beam and one end of the lifting beam far away from the inclined strut are both fixedly connected with a fixed steel plate, the fixed steel plate is connected with an embedded part, and the horizontal beam and the inclined strut and the lifting beam and the inclined strut are detachably connected through I-steel fixing clamp groups. The horizontal beam and the diagonal bracing beam and the lifting beam and the diagonal bracing beam are connected by adopting the I-steel fixing clamp, the construction is simple, the efficiency is high, the horizontal beam is supported by the diagonal bracing beam and the lifting beam together, the structure is stable, the welding operation is avoided, and only the connection of the I-steel fixing clamp group is required to be untied during the dismantling, so that the waste of the I-steel is avoided.
Description
Technical Field
The utility model relates to the technical field of building construction, in particular to a cantilever component supporting device.
Background
Along with the development of the building industry, the requirements of people on building functions and building shapes are gradually improved, the application of overhanging hanging pieces is increased, the construction height of an overhanging concrete structure is high, the construction difficulty is high, and the requirements are strict, wherein one construction mode is to adopt a supporting system with a steel beam horizontally overhanging.
In the prior art, as the publication number is CN217151150U, the Chinese patent with publication date being 2022.08.09 discloses that the horizontal rod, the diagonal bracing and the vertical main rod are all connected by adopting four-edge girth welding, the horizontal rod and the diagonal bracing are also connected by adopting four-edge girth welding, the diagonal bracing and the horizontal rod are connected by adopting two-edge girth welding, the welded fixing mode can lead to the performance change of the metal at the welded part, meanwhile, the welding operation time is long, the danger coefficient is high, the destructive cutting is required to be carried out on the horizontal rod, the diagonal bracing and the vertical main rod when the secondary utilization is dismantled, and the waste of materials is caused.
The utility model provides the cantilever component supporting device which is used for solving the problems of long welding operation time, high risk coefficient, change of the metal performance of the connecting part of the rod piece during welding and material waste during dismantling.
Disclosure of Invention
The utility model provides the cantilever component supporting device aiming at the problems of long welding operation time, high risk coefficient, change of the metal property of the connecting part of the rod piece during welding and material waste during dismantling in the background technology.
The technical scheme adopted by the utility model for realizing the technical effects is as follows: the utility model provides a component strutting arrangement encorbelments, includes the horizontal beam, the horizontal beam is connected with the one end of bracing beam, the bracing beam is connected with and carries the drawing beam, horizontal beam, bracing beam and carry the drawing beam and all adopt the I-steel preparation, the one end that the horizontal beam was kept away from to the bracing beam and the one end that the bracing beam was kept away from to the drawing beam all fixedly connected with fixed steel sheet, fixed steel sheet is connected with the built-in fitting, between horizontal beam and the bracing beam with all can dismantle through I-steel fixing clip group between drawing beam and the bracing beam and be connected. The horizontal beam and the diagonal bracing beam and the lifting beam and the diagonal bracing beam are connected by adopting the I-steel fixing clamp groups, the construction is simple, the efficiency is high, the horizontal beam is supported by the diagonal bracing beam and the lifting beam together, the structure is stable, the welding operation is avoided, and only the connection of the I-steel fixing clamp groups is required to be untied during the dismantling, so that the waste of the I-steel is avoided.
Further, the I-steel fixing clamp group comprises a plurality of I-steel fixing clamps, each I-steel fixing clamp comprises two steel members, the steel members are connected through bolts, the steel members are connected with a fixing mechanism, the fixing mechanism comprises two second screws, the second screws are connected through toothed sleeve pipes, one second screw is fixedly connected with a fastening steel plate, and the other second screw is fixedly connected to the steel members. The I-steel fixing clamp can be mounted and dismounted by rotating the toothed sleeve, so that the operation is simple and the time is saved.
Further, the steel member comprises a vertical plate, a threaded through hole is formed in the vertical plate and matched with the bolt, the vertical plate is connected with an inclined plate, the inclined plate is connected with a second vertical plate, the second vertical plate is connected with a horizontal plate, the horizontal plate is connected with a second screw, and the length of the second vertical plate is at least 1cm. The second vertical plate enables the diagonal bracing beam to stretch into a sufficient distance during installation, so that the firmness of installation of the horizontal beam and the I-steel diagonal bracing is guaranteed.
Further, the I-steel fixing clamp group comprises a first I-steel fixing clamp, a second I-steel fixing clamp and a third I-steel fixing clamp, the horizontal beam is connected with the diagonal bracing beam through the first I-steel fixing clamp, the second I-steel fixing clamp and the third I-steel fixing clamp, a fastening steel plate and a horizontal plate of the second I-steel fixing clamp are propped against a wing plate of the I-steel of the horizontal beam, a fastening steel plate and a horizontal plate of the third I-steel fixing clamp are propped against a wing plate of the I-steel of the diagonal bracing beam, and steel members of the second I-steel fixing clamp and the third I-steel fixing clamp are connected through a bolt. The horizontal beam and the diagonal bracing beam are connected in a non-welding mode through the second I-steel fixing clamp and the third I-steel fixing clamp through bolts, so that the horizontal beam and the diagonal bracing beam are convenient to disassemble and assemble, and meanwhile the risk of fire operation is avoided.
Further, the i-beam fixing clamp group further comprises a fourth i-beam fixing clamp, a fifth i-beam fixing clamp, a sixth i-beam fixing clamp and a seventh i-beam fixing clamp, the inclined bracing beam is connected with the lifting beam through the fourth i-beam fixing clamp, the fifth i-beam fixing clamp, the sixth i-beam fixing clamp and the sixth i-beam fixing clamp, the fourth i-beam fixing clamp and the fifth i-beam fixing clamp are fixed on the inclined bracing beam, the fourth i-beam fixing clamp and the fifth i-beam fixing clamp are respectively located on two sides of the lifting beam, steel members of the fourth i-beam fixing clamp and the sixth i-beam fixing clamp are connected through a bolt, steel members of the sixth i-beam fixing clamp and the seventh i-beam fixing clamp are respectively connected with the inner sides of wing plates of the lifting beam, and the sixth i-beam fixing clamp and the seventh i-beam fixing clamp are mutually connected through toothed sleeves. The diagonal bracing beam and the lifting beam are connected by adopting the I-steel fixing clamp group, the installation is convenient, and the I-steel fixing clamp group and the diagonal bracing beam and the lifting beam can be repeatedly used, so that the fire operation is avoided.
Further, the lifting beam is vertically and cross-connected with the diagonal bracing beam. The lifting beam and the diagonal bracing beam are mutually perpendicular, so that the I-steel fixing clamp is convenient to install and fix.
Further, the embedded part comprises a long thread sleeve, the long thread sleeve is fixed in the building main body, and the fixed steel plate is connected with the long thread sleeve through a first screw. The fixed steel plate is installed on the building main body through the embedded part, and the installation is quick.
From the above technical scheme, the utility model has the following beneficial effects:
(1) The connection between the I-steel members and the installation and disassembly procedures of the I-steel reinforcing clamp are simple, the construction is simple and convenient, each part of the supporting system can be directly hoisted to the installation position for installation and reinforcement during construction, the high-altitude operation time is greatly reduced, the construction process is safe and controllable, the construction speed is high, the efficiency is high, and the labor is less.
(2) The I-steel members are in a welding-free design, the integral integrity of the I-steel is not affected, the turnover times are high, the material loss is low, the I-steel members are reliably connected through the I-steel reinforcing clamp, welding operation is not needed, and the potential safety hazard of fire operation is reduced; after construction is completed, the supporting system can be disassembled into various independent components, so that transportation and secondary turnover are facilitated, and construction cost is reduced.
(3) The fixing mechanism of the I-steel reinforcing card can be suitable for reinforcing among I-steel members with different sizes, and the application range of the I-steel reinforcing card is improved.
Drawings
In order to more clearly illustrate the technical solutions of the present utility model, the drawings that are needed in the description will be briefly introduced below, it being obvious that the drawings in the following description are only some embodiments of the present utility model, and that other drawings can be obtained according to these drawings without inventive effort for a person skilled in the art.
Fig. 1 is a schematic structural diagram of an embodiment of the present utility model.
Fig. 2 is a schematic structural diagram of an embedded part according to an embodiment of the present utility model.
Fig. 3 is a schematic structural view of an i-steel fixing clip according to an embodiment of the present utility model.
Fig. 4 is an enlarged view at a in fig. 1.
In the figure: 1. the horizontal beam, 2, I-steel fixing clamp group, 20, fixing mechanism, 21, fastening steel plate, 22, second screw rod, 23, toothed sleeve, 24, steel member, 25, bolt, 26, vertical plate, 261, threaded through hole, 27, inclined plate, 28, second vertical plate, 29, horizontal plate, 3, diagonal bracing beam, 4, building main body, 5, lifting beam, 6, long threaded sleeve, 7, fixing steel plate, 8, first screw rod, 9, embedded part, 10, first I-steel fixing clamp, 11, second I-steel fixing clamp, 12, third I-steel fixing clamp, 13, fourth I-steel fixing clamp, 14, fifth I-steel fixing clamp, 15, sixth I-steel fixing clamp, 16 and seventh I-steel fixing clamp.
Detailed Description
In order to make the objects, features and advantages of the present utility model more obvious and understandable, the technical solutions of the present utility model will be clearly and completely described below with reference to the drawings in this specific embodiment, and it is apparent that the embodiments described below are only some embodiments of the present utility model, but not all embodiments of the present utility model. All other embodiments, based on the embodiments in this patent, which would be within the purview of one of ordinary skill in the art without the particular effort to make the utility model are intended to be within the scope of the patent protection.
According to the illustration of fig. 1-4, a component strutting arrangement encorbelments, including horizontal beam 1, horizontal beam 1 is connected with the one end of bracing beam 3, bracing beam 3 is connected with and carries and draws roof beam 5, horizontal beam 1, bracing beam 3 and carry and draw roof beam 5 all adopt the I-steel to make, the one end that horizontal beam 1 was kept away from to bracing beam 3 and the one end that bracing beam 5 kept away from bracing beam 3 all fixedly connected with fixed steel sheet 7, fixed steel sheet 7 is connected with built-in fitting 9, can dismantle through I-steel fixation block group 2 between horizontal beam 1 and the bracing beam 3 and between bracing beam 5 and the bracing beam 3.
In this embodiment, the i-beam fixing clip set 2 includes seven i-beam fixing clips including a first i-beam fixing clip 10, a second i-beam fixing clip 11, a third i-beam fixing clip 12, a fourth i-beam fixing clip 13, a fifth i-beam fixing clip 14, a sixth i-beam fixing clip 15 and a seventh i-beam fixing clip 16, each of the i-beam fixing clips includes two steel members 24, the steel members 24 are connected by bolts 25, the steel members 24 are connected with a fixing mechanism 20, the fixing mechanism 20 includes two second screws 22, the second screws 22 are connected by toothed sleeves 6, one of the second screws 22 is fixedly connected with a fastening steel plate 21, and the other second screw 22 is fixedly connected with the steel member 24.
The steel member 24 comprises a vertical plate 26, a threaded through hole 261 is formed in the vertical plate 26, the threaded through hole 261 is matched with a bolt 25, the vertical plate 26 is connected with an inclined plate 27, the inclined plate 27 is connected with a second vertical plate 28, the second vertical plate 28 is connected with a horizontal plate 29, the horizontal plate 29 is connected with a second screw 22, and the length of the second vertical plate 28 is at least 1cm.
The horizontal beam 1 is connected with the diagonal beam 3 through a first I-shaped steel fixing clamp 10, a second I-shaped steel fixing clamp 11 and a third I-shaped steel fixing clamp 12, the first I-shaped steel fixing clamp 10 is arranged on one side, far away from the building main body 4, of the horizontal beam 1 relative to the diagonal beam 3, the second I-shaped steel fixing clamp 11 and the third I-shaped steel fixing clamp 12 are arranged on one side, close to the building main body 4, of the horizontal beam 1 relative to the diagonal beam 3, a fastening steel plate 21 and a horizontal plate 29 of the second I-shaped steel fixing clamp 11 are abutted against wing plates of I-shaped steel of the horizontal beam 1, a fastening steel plate 21 and a horizontal plate 29 of the third I-shaped steel fixing clamp 2 are abutted against wing plates of I-shaped steel of the diagonal beam 1, steel members 24 of the second I-shaped steel fixing clamp 11 and the third I-shaped steel fixing clamp 12 are connected through a bolt 25, the diagonal bracing beam 3 is connected with the lifting beam 5 through a fourth I-shaped steel fixing clamp 13, a fifth I-shaped steel fixing clamp 14, a sixth I-shaped steel fixing clamp 15 and a sixth I-shaped steel fixing clamp 16, the fourth I-shaped steel fixing clamp 2 and the fifth I-shaped steel fixing clamp 2 are fixed on the diagonal bracing beam 3, the fourth I-shaped steel fixing clamp 13 and the fifth I-shaped steel fixing clamp 14 are respectively positioned on two sides of the lifting beam 5, steel members 24 of the fourth I-shaped steel fixing clamp 13 and the sixth I-shaped steel fixing clamp 15 are connected through a bolt 25, the fifth I-shaped steel fixing clamp 14 and the seventh I-shaped steel member fixing clamp 16 are connected through a bolt 25, the steel members 24 of the sixth I-shaped steel fixing clamp 15 and the seventh I-shaped steel fixing clamp 16 are respectively connected with the inner sides of wing plates of the lifting beam 5, and the sixth I-shaped steel fixing clamp 15 and the seventh I-shaped steel fixing clamp 16 are connected through toothed sleeves 23.
The working principle of the utility model is as follows: the long thread sleeve 6 is pre-buried and fixed in the building main body 4, the diagonal bracing beam 3 and the lifting beam 5 are hoisted to the installation position, the diagonal bracing beam 3 and the lifting beam 5 are fixed on the building main body 4 through the fixed steel plate 7 and the first screw rod 8,
the fastening steel plate 21 and the horizontal plate 29 of the fourth I-shaped steel fixing clamp 13 and the fifth I-shaped steel fixing clamp 14 are propped against the wing plates of the I-shaped steel of the diagonal bracing beam 3, the toothed sleeve 23 is rotated to enable the second screw rod 22 to be screwed out, the fastening steel plate 21 and the horizontal plate 29 are tightly pressed on the wing plates, the fourth I-shaped steel fixing clamp 13 and the fifth I-shaped steel fixing clamp 14 are respectively positioned on two sides of the lifting beam 5, the vertical plate 26 of the fourth I-shaped steel fixing clamp 13 and the vertical plate 26 of the fifth I-shaped steel fixing clamp 14 are positioned on one side of the contact surface of the diagonal bracing beam 3 and the lifting beam 5, the second screw rod 22 connected with the horizontal plate 29 in the sixth I-shaped steel fixing clamp 15 and the second screw rod 22 connected with the horizontal plate 29 in the seventh I-shaped steel fixing clamp 16 are connected through the toothed sleeve 23, then the sixth I-shaped steel fixing clamp 15 and the seventh I-shaped steel fixing clamp 16 are placed on the lifting beam 5, the steel member 24 of the fourth I-shaped steel fixing clamp 13 and the seventh I-shaped steel fixing clamp 15 is connected through the bolt 25, and the seventh I-shaped steel fixing clamp 16 is tightly pressed on the horizontal plate 29 through the toothed sleeve 25, and the I-shaped steel fixing clamp 16 is tightly pressed on the lifting beam 5.
The horizontal beam 1 is hoisted at the installation position, the fastening steel plate 21 and the horizontal plate 29 of the second I-shaped steel fixing clamp 11 are propped against the wing plates of the I-shaped steel of the horizontal beam 1, the toothed sleeve 23 is rotated to enable the second screw rod 22 to be screwed out, so that the fastening steel plate 21 and the horizontal plate 29 are tightly pressed on the wing plates of the horizontal beam, the fastening steel plate 21 and the horizontal plate 29 of the third I-shaped steel fixing clamp 12 are propped against the wing plates of the I-shaped steel of the diagonal beam 3, the toothed sleeve 23 is rotated to enable the second screw rod 22 to be screwed out, so that the fastening steel plate 21 and the horizontal plate 29 are tightly pressed on the wing plates of the horizontal beam, the first I-shaped steel fixing clamp and the second I-shaped steel fixing clamp are arranged on the two sides of the diagonal beam, namely, the first I-shaped steel fixing clamp 10 and the second I-shaped steel fixing clamp 26 are fixedly connected and fixed through bolts 25, and the first I-shaped steel fixing clamp 11 and the second I-shaped steel fixing clamp 26 are arranged on the same side of the horizontal beam 1.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present utility model. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the utility model. Thus, the present utility model is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims (7)
1. The utility model provides a component strutting arrangement encorbelments, its characterized in that, includes horizontal beam (1), horizontal beam (1) is connected with the one end of bracing beam (3), bracing beam (3) are connected with and carry and draw beam (5), horizontal beam (1), bracing beam (3) and carry and draw beam (5) all adopt the I-steel preparation, the one end that horizontal beam (1) was kept away from to bracing beam (3) and the one end that bracing beam (5) kept away from bracing beam (3) are all fixedly connected with fixed steel sheet (7), fixed steel sheet (7) are connected with built-in fitting (9), all dismantle through I-steel fixed block group (2) between horizontal beam (1) and bracing beam (3) and between carrying and drawing beam (5) and the bracing beam (3).
2. The cantilever component supporting device according to claim 1, wherein the i-steel fixing clamp group (2) comprises a plurality of i-steel fixing clamps, each i-steel fixing clamp comprises two steel components (24), the steel components (24) are connected through bolts (25), the steel components (24) are connected with a fixing mechanism (20), the fixing mechanism (20) comprises two second screws (22), the second screws (22) are connected through toothed sleeves (23), one second screw (22) is fixedly connected with a fastening steel plate (21), and the other second screw (22) is fixedly connected to the steel components (24).
3. The cantilever member supporting device according to claim 2, wherein the steel member (24) comprises a vertical plate (26), a threaded through hole (261) is arranged on the vertical plate (26), the threaded through hole (261) is matched with a bolt (25), the vertical plate (26) is connected with an inclined plate (27), the inclined plate (27) is connected with a second vertical plate (28), the second vertical plate (28) is connected with a horizontal plate (29), the horizontal plate (29) is connected with a second screw (22), and the length of the second vertical plate (28) is at least 1cm.
4. The cantilever component supporting device according to claim 2, wherein the i-beam fixing clamp group (2) comprises a first i-beam fixing clamp (10), a second i-beam fixing clamp (11) and a third i-beam fixing clamp (12), the horizontal beam (1) and the diagonal bracing beam (3) are connected through the first i-beam fixing clamp (10), the second i-beam fixing clamp (11) and the third i-beam fixing clamp (12), a fastening steel plate (21) and a horizontal plate (29) of the second i-beam fixing clamp (11) are abutted against a wing plate of the i-beam of the horizontal beam (1), a fastening steel plate (21) and a horizontal plate (29) of the third i-beam fixing clamp (12) are abutted against a wing plate of the i-beam of the diagonal bracing beam (3), and the steel components (24) of the second i-beam fixing clamp (11) and the third i-beam fixing clamp (12) are connected through a bolt (25).
5. The cantilever component supporting device according to claim 2, wherein the I-steel fixing clamp group (2) further comprises a fourth I-steel fixing clamp (13), a fifth I-steel fixing clamp (14), a sixth I-steel fixing clamp (15) and a seventh I-steel fixing clamp (16), the inclined bracing beam (3) is connected with the lifting beam (5) through the fourth I-steel fixing clamp (13), the fifth I-steel fixing clamp (14), the sixth I-steel fixing clamp (15) and the seventh I-steel fixing clamp (16), the fourth I-steel fixing clamp (13) and the fifth I-steel fixing clamp (14) are fixed on the inclined bracing beam (3), the fourth I-steel fixing clamp (13) and the fifth I-steel fixing clamp (14) are respectively positioned at two sides of the lifting beam (5), the steel members (24) of the fourth I-steel fixing clamp (13) and the sixth I-steel fixing clamp (15) are connected through a bolt (25), the fifth I-steel fixing clamp (14) and the seventh I-steel fixing clamp (16) are respectively connected with the inner side of the lifting beam (5) through the seventh I-steel fixing clamp (25), the sixth I-steel fixing clamp (15) and the seventh I-steel fixing clamp (16) are connected with each other through a toothed sleeve (23).
6. A cantilever member support according to claim 1, wherein the lifting beam (5) is perpendicularly cross-connected with the diagonal beam (3).
7. The cantilever member supporting device according to claim 1, wherein the embedded part (9) comprises a long threaded sleeve (6), the long threaded sleeve (6) is fixed in the building body (4), and the fixed steel plate (7) is connected with the long threaded sleeve (6) through a first screw (8).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223297300.XU CN219711091U (en) | 2022-12-07 | 2022-12-07 | Cantilever component supporting device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223297300.XU CN219711091U (en) | 2022-12-07 | 2022-12-07 | Cantilever component supporting device |
Publications (1)
Publication Number | Publication Date |
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CN219711091U true CN219711091U (en) | 2023-09-19 |
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CN202223297300.XU Active CN219711091U (en) | 2022-12-07 | 2022-12-07 | Cantilever component supporting device |
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CN (1) | CN219711091U (en) |
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2022
- 2022-12-07 CN CN202223297300.XU patent/CN219711091U/en active Active
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