Diagonal bracing reinforced anti-deformation steel structure

The anti-deformation steel structure reinforced by oblique braces is conveniently installed and fixed by using the combined design of the second L-shaped steel and bolt nuts. The height adjustment and stability improvement are achieved through the combined design of the positioning hole of the bolt nut, which solves the problem of inconvenient reinforcement of the existing steel structure and improves construction efficiency and stability.

CN223164019UActive Publication Date: 2025-07-29JIANGSU DUNBON STEEL STRUCTURE CO LTD
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Patent Information

Application Number
CN202422194513.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-09
Publication Date
2025-07-29
Estimated Expiration
2034-09-09

AI Technical Summary

Technical Problem

The existing building steel structure is inconvenient when installing reinforced structures, resulting in low construction efficiency and increased labor costs.

Method used

The anti-deformation steel structure reinforced by oblique braces is adopted to achieve convenient fixation of the working steel beam through the combination design of the second L-shaped steel, the second reinforcement plate, the first bolt, the first nut, the L-shaped sleeve plate, the positioning hole and the groove; the height adjustment is achieved through the combination of the working steel beam, the fixing plate, the second bolt, the second nut and the positioning hole; the stability of the working steel beam is improved by the combination of the first L-shaped steel, the first reinforcement plate, the fixing block, the third bolt, the third nut, the positioning hole and the slot.

Benefits of technology

It realizes convenient installation of reinforced structures, height adjustment and stability of work-shaped steel beams, improves construction efficiency and reduces labor costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an inclined strut reinforced anti-deformation steel structure which comprises an I-shaped steel column, the two sides of the I-shaped steel column are movably connected with I-shaped steel beams, the center line of the I-shaped steel column and the center line of the I-shaped steel beams are located on the same vertical plane, and the two sides of the two ends in the I-shaped steel column are fixedly connected with reinforcing pieces. According to the inclined strut reinforced anti-deformation steel structure, second L-shaped steel is arranged, after an I-shaped steel beam is fixed, the second L-shaped steel is attached to one side of the bottom of the I-shaped steel beam and attached to one side of an I-shaped steel column, meanwhile, an L-shaped sleeve plate can be inserted into a groove, and then a first bolt penetrates through a second inserting hole and a positioning hole; and a first nut is connected to the outer portion of the first bolt in a sleeving mode and tightened, so that the second L-shaped steel is positioned through the first bolt, the L-shaped sleeve plate also positions the second L-shaped steel through the groove, the supporting force is further improved through a second reinforcing plate in the second L-shaped steel, and the problem that a reinforcing structure cannot be conveniently installed is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of building steel structures, and particularly relates to a deformation-proof steel structure reinforced by diagonal braces. Background Technique

[0002] In the current field of building construction, steel structure components are often used to erect building structures. Steel structure components have higher strength compared to sand and stone structures and are suitable for building structure construction that requires higher strength. In the construction of steel structures, in order to further improve strength and stability, a reinforcement structure needs to be installed on the basic steel components.

[0003] However, there are still some defects in the steel structures used in building construction. During installation, it is not convenient to install the reinforcement structure, resulting in a large amount of labor required to install the reinforcement structure during construction, affecting the overall construction efficiency and increasing the labor cost.

[0004] Now, a new type of deformation-proof steel structure reinforced by diagonal braces is proposed to solve the above problems. Content of the Utility Model

[0005] The purpose of the utility model is to provide a deformation-proof steel structure reinforced by diagonal braces to solve the problem of inconvenient installation of the reinforcement structure proposed in the above background technique.

[0006] To achieve the above purpose, the utility model provides the following technical solution: A deformation-proof steel structure reinforced by diagonal braces, including an I-shaped steel column, and I-shaped steel beams are movably connected to both sides of the I-shaped steel column. The center line of the I-shaped steel column and the center line of the I-shaped steel beam are in the same vertical plane. Reinforcing plates are fixedly connected to both sides at both ends inside the I-shaped steel column. Reinforcement structures for supporting the I-shaped steel beam are arranged on both sides of the I-shaped steel column.

[0007] The reinforcement structure includes a second L-shaped steel. The second L-shaped steel is movably connected to both sides of the I-shaped steel column. The second L-shaped steel is movably connected to the I-shaped steel beam. A second reinforcing plate is fixedly connected to one side of the second L-shaped steel. Grooves are opened at both ends of the top of the other side of the second L-shaped steel. L-shaped socket plates are fixedly connected to both ends of one side of the bottom of the I-shaped steel beam. Second insertion holes are opened at both ends of one side of the second L-shaped steel. Positioning holes are opened at both ends of both sides of the I-shaped steel column. First bolts are movably connected to both ends of one side of the second L-shaped steel. The first bolts pass through the second insertion holes and the positioning holes and are movably connected to first nuts.

[0008] Preferably, the first nut is movably connected to the I-shaped steel column, and the L-shaped socket plate is movably connected to the groove.

[0009] Preferably, the positioning holes opened on both sides of the I-shaped steel column are arranged at equal intervals, and the first nut is movably connected to the reinforcing plate.

[0010] Preferably, fixing plates are fixedly connected to the same side of both ends inside the I-shaped steel beam. A second bolt is movably connected to one side of the fixing plate. The second bolt passes through the fixing plate and the positioning hole and is movably connected to a second nut.

[0011] Preferably, the second nut is movably connected to the I-shaped steel column and is movably connected to the reinforcing plate.

[0012] Preferably, first L-shaped steels are movably connected to the tops of both sides of the I-shaped steel column. A first reinforcing plate is fixedly connected to one side of the first L-shaped steel. First jacks are formed at both ends of one side of the first L-shaped steel. Third bolts are movably connected to both ends of one side of the first L-shaped steel. The third bolts pass through the first jacks and the positioning holes and are movably connected to third nuts. Card slots are formed at both ends of the bottom of the first L-shaped steel. Fixed blocks are fixedly connected to both ends of one side of the top of the I-shaped steel beam.

[0013] Preferably, the fixed blocks are movably connected to the card slots, and the third nuts are movably connected to the I-shaped steel column.

[0014] Preferably, the first L-shaped steel is movably connected to the I-shaped steel beam, and the third nut is movably connected to the reinforcing plate.

[0015] Compared with the prior art, the beneficial effects of the present utility model are as follows: The anti-deformation steel structure with diagonal bracing reinforcement not only realizes convenient installation of the reinforcement structure, realizes adjustable structure height, but also realizes improved stability of the structure main body;

[0016] (1) By providing the second L-shaped steel, the second reinforcing plate, the first bolt, the first nut, the L-shaped sleeve plate, the positioning hole, the second jack and the groove, after fixing the I-shaped steel beam during installation, the second L-shaped steel is attached to one side of the bottom of the I-shaped steel beam and attached to one side of the I-shaped steel column. At the same time, the L-shaped sleeve plate will be inserted into the inside of the groove. Then, the first bolt passes through the second jack and the positioning hole, and the first nut is sleeved outside the first bolt and tightened. Thus, the second L-shaped steel is positioned by the first bolt, and the L-shaped sleeve plate also positions the second L-shaped steel through the groove. The second reinforcing plate inside the second L-shaped steel further improves the supporting force, realizing convenient installation of the reinforcement structure;

[0017] (2) By providing an I-shaped steel beam, a fixing plate, a second bolt, a second nut and a positioning hole, when installing this structure, the I-shaped steel beam is attached to both sides of the I-shaped steel column, and the I-shaped steel beam is adjusted to a suitable height as needed. Then, the second bolt is passed through the fixing plate and the positioning hole and inserted into the interior of the I-shaped steel column, and the second nut is sleeved outside the second bolt and tightened. Thus, the fixing plate is positioned by the second bolt, and the fixing plate positions the two groups of I-shaped steel beams, achieving the adjustment of the height of the I-shaped steel beam as needed.

[0018] (3) By providing a first L-shaped steel, a first reinforcing plate, an I-shaped steel beam, a fixing block, a third bolt, a third nut, a positioning hole, a clamping groove and a first insertion hole, after installation, the first L-shaped steel is attached to the top of the I-shaped steel beam, and the fixing block at the top of the I-shaped steel beam is inserted into the interior of the clamping groove. Then, the third bolt is passed through the first insertion hole and the positioning hole and inserted into the interior of the I-shaped steel column, and the third nut is sleeved outside the third bolt and tightened. Thus, the first L-shaped steel is positioned by the third bolt. The first L-shaped steel can effectively support the I-shaped steel beam, and the clamping groove can position the I-shaped steel beam through the fixing block to further improve the stability of the I-shaped steel beam, achieving the effective improvement of the stability of the I-shaped steel beam. Description of the Drawings

[0019] Figure 1 is the front view sectional structure schematic diagram of the present utility model;

[0020] Figure 2 is the side view sectional structure schematic diagram of the I-shaped steel column of the present utility model;

[0021] Figure 3 is the side view sectional structure schematic diagram of the first L-shaped steel of the present utility model;

[0022] Figure 4 is the side view structure schematic diagram of the second L-shaped steel of the present utility model.

[0023] In the figure: 1, I-shaped steel column; 2, first L-shaped steel; 3, first reinforcing plate; 4, I-shaped steel beam; 5, fixing plate; 6, second L-shaped steel; 7, second reinforcing plate; 8, first bolt; 9, reinforcing piece; 10, first nut; 11, L-shaped sleeve plate; 12, second bolt; 13, second nut; 14, fixing block; 15, third bolt; 16, third nut; 17, positioning hole; 18, clamping groove; 19, first insertion hole; 20, second insertion hole; 21, groove. Detailed Description of the Invention

[0024] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0025] Embodiment 1: Please refer to Figures 1-4 , a deformation-proof steel structure with diagonal bracing reinforcement, including an I-shaped steel column 1. The two sides of the I-shaped steel column 1 are movably connected with I-shaped steel beams 4. The center lines of the I-shaped steel column 1 and the I-shaped steel beam 4 are in the same vertical plane. On both sides of the two ends inside the I-shaped steel column 1, reinforcing plates 9 are fixedly connected. On both sides of the I-shaped steel column 1, a reinforcement structure for supporting the I-shaped steel beam 4 is provided;

[0026] The reinforcement structure includes a second L-shaped steel 6. The two sides of the I-shaped steel column 1 are movably connected with the second L-shaped steel 6. The second L-shaped steel 6 is movably connected with the I-shaped steel beam 4. On one side of the second L-shaped steel 6, a second reinforcing plate 7 is fixedly connected. At both ends of the top of the other side of the second L-shaped steel 6, grooves 21 are opened. At both ends of one side of the bottom of the I-shaped steel beam 4, L-shaped socket plates 11 are fixedly connected. At both ends of one side of the second L-shaped steel 6, second jacks 20 are opened. At both ends of both sides of the I-shaped steel column 1, positioning holes 17 are opened. At both ends of one side of the second L-shaped steel 6, first bolts 8 are movably connected. The first bolts 8 pass through the second jacks 20 and the positioning holes 17 and are movably connected with first nuts 10;

[0027] The first nuts 10 are movably connected with the I-shaped steel column 1, and the L-shaped socket plates 11 are movably connected with the grooves 21;

[0028] The positioning holes 17 opened on both sides of the I-shaped steel column 1 are arranged at equal intervals, and the first nuts 10 are movably connected with the reinforcing plates 9;

[0029] Specifically, as shown in Figure 1 , Figure 2 and Figure 4 , after the I-shaped steel beam 4 is fixed during installation, the second L-shaped steel 6 is attached to one side of the bottom of the I-shaped steel beam 4 and attached to one side of the I-shaped steel column 1. At the same time, the L-shaped socket plate 11 will be inserted into the inside of the groove 21. Then, the first bolts 8 are passed through the second jacks 20 and the inside of the positioning holes 17, and the first nuts 10 are sleeved on the outside of the first bolts 8 and tightened. Thus, the second L-shaped steel 6 is positioned by the first bolts 8, and the L-shaped socket plate 11 also positions the second L-shaped steel 6 through the groove 21. The second reinforcing plate 7 inside the second L-shaped steel 6 further improves the supporting force, realizing convenient installation of the reinforcement structure.

[0030] Embodiment 2: Fixing plates 5 are fixedly connected to the same side at both ends inside the I-shaped steel beam 4. A second bolt 12 is movably connected to one side of the fixing plate 5. The second bolt 12 passes through the fixing plate 5 and the positioning hole 17 and is movably connected to a second nut 13;

[0031] The second nut 13 is movably connected to the I-shaped steel column 1 and is movably connected to the reinforcing plate 9;

[0032] Specifically, as Figure 1 and Figure 2 shown, when installing this structure, the I-shaped steel beam 4 is attached to both sides of the I-shaped steel column 1, and the I-shaped steel beam 4 is adjusted to an appropriate height as needed. Then, the second bolt 12 is passed through the fixing plate 5 and the positioning hole 17 and inserted into the interior of the I-shaped steel column 1. Next, the second nut 13 is sleeved outside the second bolt 12 and tightened. Thus, the fixing plate 5 is positioned by the second bolt 12, and the two groups of I-shaped steel beams 4 are positioned by the fixing plate 5, realizing that the height of the I-shaped steel beam 4 can be adjusted as needed.

[0033] Embodiment 3: First L-shaped steels 2 are movably connected to the tops of both sides of the I-shaped steel column 1. A first reinforcing plate 3 is fixedly connected to one side of the first L-shaped steel 2. First jacks 19 are opened at both ends on one side of the first L-shaped steel 2. Third bolts 15 are movably connected to both ends on one side of the first L-shaped steel 2. The third bolts 15 pass through the first jacks 19 and the positioning holes 17 and are movably connected to third nuts 16. Card slots 18 are opened at both ends of the bottom of the first L-shaped steel 2. Fixed blocks 14 are fixedly connected to both ends on one side of the top of the I-shaped steel beam 4;

[0034] The fixed blocks 14 are movably connected to the card slots 18, and the third nuts 16 are movably connected to the I-shaped steel column 1;

[0035] The first L-shaped steel 2 is movably connected to the I-shaped steel beam 4, and the third nuts 16 are movably connected to the reinforcing plate 9;

[0036] Specifically, as Figure 1 、 Figure 2 and Figure 3 shown, after installation, the first L-shaped steel 2 is attached to the top of the I-shaped steel beam 4, so that the fixed blocks 14 at the top of the I-shaped steel beam 4 are inserted into the interiors of the card slots 18. Then, the third bolts 15 are passed through the first jacks 19 and the positioning holes 17 and inserted into the interior of the I-shaped steel column 1. Next, the third nuts 16 are sleeved outside the third bolts 15 and tightened. Thus, the first L-shaped steel 2 is positioned by the third bolts 15. The first L-shaped steel 2 can effectively support the I-shaped steel beam 4, and the card slots 18 can position the I-shaped steel beam 4 through the fixed blocks 14 to further improve the stability of the I-shaped steel beam 4, realizing that the stability of the I-shaped steel beam 4 can be effectively improved.

[0037] Working principle: When the utility model is in use, the I-shaped steel beam 4 is attached to both sides of the I-shaped steel column 1, and the I-shaped steel beam 4 is adjusted to a suitable height as required. Then, the second bolt 12 passes through the fixing plate 5 and the positioning hole 17 and is inserted into the interior of the I-shaped steel column 1. Next, the second nut 13 is sleeved outside the second bolt 12 and tightened, so as to position the fixing plate 5 through the second bolt 12, and the fixing plate 5 positions the two groups of I-shaped steel beams 4. After the I-shaped steel beam 4 is fixed during installation, the second L-shaped steel 6 is attached to one side of the bottom of the I-shaped steel beam 4 and is attached to one side of the I-shaped steel column 1. At the same time, the L-shaped sleeve plate 11 will be inserted into the interior of the groove 21. Then, the first bolt 8 passes through the second jack 20 and the positioning hole 17, and the first nut 10 is sleeved outside the first bolt 8 and tightened, so as to position the second L-shaped steel 6 through the first bolt 8. The L-shaped sleeve plate 11 also positions the second L-shaped steel 6 through the groove 21. The second reinforcing plate 7 inside the second L-shaped steel 6 further improves the supporting force. After installation, the first L-shaped steel 2 is attached to the top of the I-shaped steel beam 4, so that the fixing block 14 at the top of the I-shaped steel beam 4 is inserted into the card slot 18. Then, the third bolt 15 passes through the first jack 19 and the positioning hole 17 and is inserted into the interior of the I-shaped steel column 1. Next, the third nut 16 is sleeved outside the third bolt 15 and tightened, so as to position the first L-shaped steel 2 through the third bolt 15. The first L-shaped steel 2 can effectively support the I-shaped steel beam 4, and the card slot 18 can position the I-shaped steel beam 4 through the fixing block 14 to further improve the stability of the I-shaped steel beam 4.

Claims

1. A deformation-proof steel structure reinforced by diagonal braces, comprising an I-shaped steel column (1), characterized in that: On both sides of the I-shaped steel column (1), I-shaped steel beams (4) are movably connected. The center line of the I-shaped steel column (1) and the center line of the I-shaped steel beam (4) are in the same vertical plane. On both sides at the two ends inside the I-shaped steel column (1), reinforcing plates (9) are fixedly connected. On both sides of the I-shaped steel column (1), a reinforcement structure is provided for supporting the I-shaped steel beam (4). The reinforcement structure includes second L-shaped steels (6). On both sides of the I-shaped steel column (1), second L-shaped steels (6) are movably connected. The second L-shaped steels (6) are movably connected to the I-shaped steel beams (4). On one side of the second L-shaped steels (6), second reinforcing plates (7) are fixedly connected. At both ends of the top of the other side of the second L-shaped steels (6), grooves (21) are provided. At both ends of one side of the bottom of the I-shaped steel beam (4), L-shaped socket plates (11) are fixedly connected. At both ends of one side of the second L-shaped steels (6), second insertion holes (20) are provided. At both ends of both sides of the I-shaped steel column (1), positioning holes (17) are provided. At both ends of one side of the second L-shaped steels (6), first bolts (8) are movably connected. The first bolts (8) pass through the second insertion holes (20) and the positioning holes (17) and are movably connected to first nuts (10).

2. The anti-deformation steel structure with diagonal bracing reinforcement according to claim 1, characterized in that: The first nuts (10) are movably connected to the I-shaped steel column (1), and the L-shaped socket plates (11) are movably connected to the grooves (21).

3. A deformation-proof steel structure with diagonal bracing reinforcement according to claim 1, wherein: The positioning holes (17) provided on both sides of the I-shaped steel column (1) are arranged at equal intervals, and the first nuts (10) are movably connected to the reinforcing plates (9).

4. A deformation-proof steel structure with diagonal bracing reinforcement according to claim 1, characterized in that: On the same side at the two ends inside the I-shaped steel beam (4), fixing plates (5) are fixedly connected. On one side of the fixing plates (5), second bolts (12) are movably connected. The second bolts (12) pass through the fixing plates (5) and the positioning holes (17) and are movably connected to second nuts (13).

5. The anti-deformation steel structure with diagonal bracing reinforcement according to claim 4, wherein: The second nuts (13) are movably connected to the I-shaped steel column (1), and the second nuts (13) are movably connected to the reinforcing plates (9).

6. A deformation-proof steel structure with diagonal bracing reinforcement according to claim 1, characterized in that: At the top ends of both sides of the I-shaped steel column (1), first L-shaped steels (2) are movably connected. On one side of the first L-shaped steels (2), first reinforcing plates (3) are fixedly connected. At both ends of one side of the first L-shaped steels (2), first insertion holes (19) are provided. At both ends of one side of the first L-shaped steels (2), third bolts (15) are movably connected. The third bolts (15) pass through the first insertion holes (19) and the positioning holes (17) and are movably connected to third nuts (16). At both ends of the bottom of the first L-shaped steels (2), clamping grooves (18) are provided. At both ends of one side of the top of the I-shaped steel beam (4), fixing blocks (14) are fixedly connected.

7. The anti-deformation steel structure with diagonal bracing reinforcement according to claim 6, characterized in that: The fixing blocks (14) are movably connected to the clamping grooves (18), and the third nuts (16) are movably connected to the I-shaped steel column (1).

8. The anti-deformation steel structure with diagonal bracing reinforcement according to claim 6, characterized in that: The first L-shaped steels (2) are movably connected to the I-shaped steel beams (4), and the third nuts (16) are movably connected to the reinforcing plates (9).