Floor beam reinforcing structure
By fixing the base shell and adjusting the sliding seat on the column, the telescopic frame of the telescopic frame has an adjustable length support, realizing flexible adjustment support for the floor beam reinforcement structure. This solves the problem of fixed length of existing floor beam support structure, enhances the flexibility and stability of the support structure, and improves the support effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG HUAZHI ARCHITECTURAL DESIGN
- Filing Date
- 2025-07-01
- Publication Date
- 2026-05-19
AI Technical Summary
The existing floor beam reinforcement structure has a fixed length and a limited number of supporting structures, resulting in poor support effect, especially when the beams are long and lack flexibility.
The system uses a fixed mounting base on the column, with adjustable slide blocks installed on the base. Combined with a telescopic frame and a top bracket, it achieves multi-point flexible support adjustment. The support height and support position can be adjusted by the number of slide blocks on the base and the length of the telescopic frame. The adjustable length of the telescopic frame allows for the stable and flexible adjustment of multiple sets of support beams.
It achieves flexible and stable support for beams of different sizes, enhancing the flexibility and stability of the support structure and adapting to different support requirements.
Smart Images

Figure CN224259969U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of floor beam reinforcement structures, and in particular to a floor beam reinforcement structure. Background Technology
[0002] To reinforce the structure of floor beams, existing technologies use transverse support plates fixed between adjacent load-bearing beams to support the beams, while diagonal braces are used between the transverse support plates and the load-bearing beams to increase the support strength.
[0003] A Chinese patent with publication number CN217999059U discloses a floor beam reinforcement structure, including two columns and a crossbeam. The two columns are fixedly connected to the crossbeam on their adjacent sides. Four expansion bolts are installed on the surface of the two columns, and nuts are threaded onto the arc surface of the expansion bolts. Reinforcing plates are installed on the surface of both the columns and the crossbeam. Support plates are fixedly connected to the surface of the two reinforcing plates. The reinforcing plates slide on the arc surface of the expansion bolts. The reinforcing plates are slidably connected to the nuts. A limiting structure is provided on the surface of the columns. The limiting structure includes a limiting frame, which is fixedly connected to the columns. Two connecting plates are slidably connected to the inner wall of the limiting frame.
[0004] Regarding the aforementioned technologies, it has been found that the existing floor beam reinforcement structures use support structures with fixed lengths and a limited number of supports. As a result, when the beams are long, the support effect is often poor, and the support structure is not flexible enough. Utility Model Content
[0005] To facilitate flexible and stable support for beams of different sizes, this application provides a floor beam reinforcement structure.
[0006] This application provides a floor beam reinforcement structure using the following technical solution:
[0007] A floor beam reinforcement structure includes columns and beams. The columns are fixedly installed at both ends of the beams. A base is fixedly installed on the side of the column facing the beam. The base is fixedly connected to the column, and several adjustable slides are slidably installed on the base. A first bolt that locks with the adjustable slides is also installed on the base. A telescopic frame is installed on the adjustable slide, and one end of the telescopic frame is rotatably connected to the adjustable slide. A top support connected to the beam is installed on the other end of the telescopic frame, and the top support is rotatably connected to the telescopic frame.
[0008] By adopting the above technical solution, two columns support both ends of the crossbeam, and a base shell is fixedly installed on the side of the column facing the crossbeam. After the base shell is fixedly installed on the outer surface of the column, the adjustable slide can be installed through the base shell. The number of adjustable slides installed in the base shell can be selected according to the size of the crossbeam and the support requirements. After the adjustable slide is installed in the base shell, the installation height can be adjusted by sliding. After the position in the base shell is adjusted, the base shell and the adjustable slide can be fixed together with the first bolt, which can ensure the stable use of the adjustable slide. Then, by installing a telescopic frame on the adjustable slide, it can be flipped and supported on the adjustable slide during use. The length of the telescopic frame can be flexibly adjusted, so the support position and support height of the top support can be flexibly adjusted through the telescopic frame, which is very convenient to use.
[0009] Optionally, the housing includes a base plate and a bent shell. The base plate is fixedly installed on the outer side of the column, and the bent shell is symmetrically arranged on one side of the base plate, and the bent shell is integrally formed with the base plate.
[0010] By adopting the above technical solution, the base shell is designed as a structure in which the base plate and the bent shell cooperate. When easy to use, it can be fixedly installed on the outer side of the column through the base plate. At the same time, by setting two sets of symmetrical bent shells on the base plate, it is convenient to install the adjustment slide through the two sets of bent shells, ensuring that the adjustment slide can slide along the direction of the bent shell to adjust the installation height during installation.
[0011] Optionally, the adjusting slide includes a seat frame and connecting ear plates. The seat frame is slidably installed between the seat plate and the bent shell. The connecting ear plates are symmetrically installed at both ends of the seat frame and are integrally formed with the seat frame.
[0012] By adopting the above technical solution, the adjusting slide is designed as a structure in which the seat frame and the connecting ear plate cooperate. When easy to use, it can be slidably installed in the bending shell through the seat frame, and the setting of the connecting ear plate ensures that the telescopic frame is stably connected.
[0013] Optionally, a plurality of connecting side holes are evenly opened on one side of the bent shell, and threaded holes corresponding to the connecting side holes are symmetrically opened on both sides of the seat frame. The first bolt passes through the connecting side holes and is fixed in the threaded holes.
[0014] By adopting the above technical solution, by opening a connecting side hole on one side of the bent shell and opening threaded holes on both sides of the seat frame corresponding to the connecting side hole, the bent shell and the seat frame can be fixed to each other by the first bolt during use.
[0015] Optionally, the telescopic frame includes an angled shell and a movable support rod. The lower end of the angled shell is rotatably mounted on a connecting ear plate, and the other end of the angled shell is slidably mounted on the movable support rod, with the head of the movable support rod rotatably connected to the top bracket.
[0016] By adopting the above technical solution, the telescopic frame is designed with a structure that combines an angled shell and a movable support rod. When easy to use, the movable support rod can be slidably installed through the angled shell. When convenient to use, the overall length of the telescopic frame can be changed by adjusting the position of the movable support rod in the angled shell, so that the telescopic frame can be used to support different lengths.
[0017] Optionally, the angle shell is provided with a plurality of first connecting holes evenly distributed on it, the movable support rod is provided with a plurality of second connecting holes corresponding to the first connecting holes, and the angle shell is provided with a second bolt that locks with the movable support rod.
[0018] By adopting the above technical solution, by evenly opening several first connecting holes on the angle shell and by opening corresponding second connecting holes on the movable support rod, it is convenient to use the second bolt to pass through the first connecting holes and the second connecting holes to lock the angle shell and the movable support rod together, thus ensuring the overall stable support effect of the telescopic frame.
[0019] Optionally, the top bracket includes a support plate and a connecting frame. The support plate is fixedly installed on the lower end face of the crossbeam, and the connecting frame is installed on the lower end face of the support plate, and the connecting frame is fixedly connected to the support plate.
[0020] By adopting the above technical solution, the top bracket is designed as a structure in which the support plate and the connecting frame cooperate. When it is easy to use, the support plate can be fixed to the lower end of the crossbeam. Then, by installing the connecting frame at the lower end of the support plate, it can be connected to the head of the telescopic rod when it is convenient to use.
[0021] Optionally, the connecting frame includes an upright plate and a connecting shaft. The upright plate is fixedly installed at both ends of the connecting shaft, and the head of the movable support rod is provided with a shaft hole corresponding to the connecting shaft.
[0022] By adopting the above technical solution, the connecting frame is designed with a structure in which the plate and the connecting shaft cooperate. When easy to use, it can be connected to the shaft hole at the head of the movable support rod through the connecting shaft, so that the telescopic frame can provide stable support for the connecting frame.
[0023] In summary, this application includes at least one of the following beneficial technical effects: By fixing the base shell on the column, this application ensures that several adjustable slides can be installed through the base shell during use. This facilitates the installation of telescopic frames and top supports through several adjustable slides during use, ensuring that multiple sets of crossbeams can be supported through one set of base shells during use, thus ensuring greater stability of the crossbeams. Furthermore, the telescopic frame design allows for flexible adjustment of the support position of the top support at the lower end of the crossbeam, providing advantages such as easy and flexible adjustment of the support position and stable support. Attached Figure Description
[0024] Figure 1 This is a perspective view of the overall structure in the embodiments of this application.
[0025] Figure 2 This is a perspective view of the housing in the embodiments of this application.
[0026] Figure 3 This is a perspective view of the adjusting slide in the embodiments of this application.
[0027] Figure 4 This is a perspective view of the telescopic frame in the embodiments of this application.
[0028] Figure 5 This is a perspective view of the top bracket in the embodiments of this application.
[0029] Figure 6 yes Figure 5 Front view of the device shown.
[0030] Explanation of reference numerals in the attached drawings: 1. Column; 2. Crossbeam; 3. Base shell; 31. Base plate; 32. Bent shell; 321. Connecting side hole; 4. Adjustable slide; 41. Base frame; 411. Threaded hole; 42. Connecting ear plate; 5. First bolt; 6. Telescopic frame; 61. Angle shell; 611. First connecting hole; 612. Second connecting hole; 62. Movable support rod; 621. Shaft hole; 63. Second bolt; 7. Top bracket; 71. Support plate; 72. Connecting frame; 721. Upright plate; 722. Connecting shaft. Detailed Implementation
[0031] The present application will be further described in detail below with reference to the accompanying drawings.
[0032] This application discloses a floor beam reinforcement structure. (Refer to...) Figure 1 , Figure 2 and Figure 3As shown, a floor beam reinforcement structure includes a column 1 and a beam 2. The column 1 is fixedly installed at both ends of the beam 2. A base shell 3 is fixedly installed on the side of the column 1 facing the beam 2. The base shell 3 is fixedly connected to the column 1, and several adjusting slides 4 are slidably installed on the base shell 3. A first bolt 5 is also installed on the base shell 3 and locked to the adjusting slides 4. A telescopic frame 6 is installed on the adjusting slides 4, and one end of the telescopic frame 6 is rotatably connected to the adjusting slides 4. A top support 7 connected to the beam 2 is installed on the other end of the telescopic frame 6. The top support 7 is rotatably connected to the telescopic frame 6. Two columns 1 support both ends of the crossbeam 2, and a base shell 3 is fixedly installed on the side of the column 1 facing the crossbeam 2. After the base shell 3 is fixedly installed on the outer surface of the column 1, the adjustable slide 4 can be installed through the base shell 3. The number of adjustable slides 4 installed in the base shell 3 can be selected according to the size of the crossbeam 2 and the support requirements. After the adjustable slide 4 is installed in the base shell 3, the installation height can be adjusted by sliding. After the position in the base shell 3 is adjusted, the base shell 3 and the adjustable slide 4 can be fixed together by the first bolt 5. This ensures the stable use of the adjustable slide 4. Then, by installing a telescopic frame 6 on the adjustable slide 4, it can be flipped and supported on the adjustable slide 4 during use. The length of the telescopic frame 6 can be flexibly adjusted. In this way, the support position and support height of the top support 7 can be flexibly adjusted through the telescopic frame 6, which is very convenient to use.
[0033] Reference Figure 2 As shown, the housing 3 includes a base plate 31 and a bent shell 32. The base plate 31 is fixedly installed on the outer side of the column 1, and the bent shell 32 is symmetrically arranged on one side of the base plate 31, and the bent shell 32 is integrally formed with the base plate 31. By designing the housing 3 into a structure in which the base plate 31 and the bent shell 32 cooperate, it can be fixedly installed on the outer side of the column 1 through the base plate 31 when easy to use. At the same time, by setting two sets of symmetrically arranged bent shells 32 on the base plate 31, it is convenient to stably install the adjusting slide 4 through the two sets of bent shells 32, ensuring that the adjusting slide 4 can slide along the direction of the bent shell 32 to adjust the installation height during installation.
[0034] Reference Figure 3As shown, the adjusting slide 4 includes a seat frame 41 and connecting ear plates 42. The seat frame 41 is slidably installed between the seat plate 31 and the bent shell 32. The connecting ear plates 42 are symmetrically installed at both ends of the seat frame 41 and are integrally formed with the seat frame 41. By designing the adjusting slide 4 into a structure in which the seat frame 41 and the connecting ear plates 42 cooperate, it can be slidably installed in the bent shell 32 through the seat frame 41 when easy to use, and the setting of the connecting ear plates 42 ensures that the telescopic frame 6 is stably connected. Several connecting side holes 321 are evenly opened on one side of the bent shell 32, and threaded holes 411 corresponding to the connecting side holes 321 are symmetrically opened on both sides of the seat frame 41. The first bolt 5 passes through the connecting side holes 321 and is fixed in the threaded holes 411. By opening a connecting side hole 321 on one side of the bent shell 32 and opening threaded holes 411 corresponding to the connecting side hole 321 on both sides of the seat frame 41, the bent shell 32 and the seat frame 41 can be fixed to each other by the first bolt 5 during use.
[0035] Reference Figure 4 As shown, the telescopic frame 6 includes an angle shell 61 and a movable support rod 62. The lower end of the angle shell 61 is rotatably mounted on the connecting ear plate 42, and the movable support rod 62 is slidably mounted on the other end of the angle shell 61, with its head rotatably connected to the top support frame 7. By designing the telescopic frame 6 with a structure in which the angle shell 61 and the movable support rod 62 cooperate, the movable support rod 62 can be slidably mounted on the angle shell 61 for easy use. This allows the overall length of the telescopic frame 6 to be changed by adjusting the position of the movable support rod 62 within the angle shell 61, enabling the telescopic frame 6 to be used for support at different lengths. The angle shell 61 has several evenly spaced first connecting holes 611, and the movable support rod 62 has several second connecting holes 612 corresponding to the first connecting holes 611. The angle shell 61 is also fitted with second bolts 63 that lock onto the movable support rod 62. By evenly opening several first connecting holes 611 on the angle shell 61 and by opening corresponding second connecting holes 612 on the movable support rod 62, it is convenient to use the second bolt 63 to pass through the first connecting holes 611 and the second connecting holes 612 to lock the angle shell 61 and the movable support rod 62 together, thus ensuring the overall stable support effect of the telescopic frame 6.
[0036] Reference Figure 5 and Figure 6As shown, the top support 7 includes a support plate 71 and a connecting frame 72. The support plate 71 is fixedly installed on the lower end face of the crossbeam 2, and the connecting frame 72 is installed on the lower end face of the support plate 71 and is fixedly connected to the support plate 71. By designing the top support 7 as a structure in which the support plate 71 and the connecting frame 72 cooperate, it can be fixed to the lower end face of the crossbeam 2 by the support plate 71 when easy to use, and then connected to the head of the telescopic rod by the connecting frame 72 installed at the lower end of the support plate 71 when convenient to use. The connecting frame 72 includes a vertical plate 721 and a connecting shaft 722. The vertical plate 721 is fixedly installed at both ends of the connecting shaft 722, and the head of the movable support rod 62 is provided with a shaft hole 621 corresponding to the connecting shaft 722. By designing the connecting frame 72 to fit the base plate 721 and the connecting shaft 722, it can be connected to the shaft hole 621 at the head of the movable support rod 62 through the connecting shaft 722 when it is easy to use. In this way, the telescopic frame 6 can stably support the connecting frame 72.
[0037] The implementation principle of a floor beam reinforcement structure according to an embodiment of this application is as follows: In actual use, the base shell 3 is first fixedly installed on the column 1. Then, the number of adjusting slides 4 to be installed in the base shell 3 is selected. After connecting the adjusting slides 4, the telescopic frame 6 and the top support 7 to each other, the adjusting slides 4 can be installed in the base shell 3. Then, the adjusting slides 4 and the base shell 3 are fixed to each other by the first bolt 5. Then, the length of the telescopic frame 6 is adjusted according to the position of the top support 7 supporting the crossbeam 2. After adjusting the length, the length of the telescopic frame 6 is fixed by the second bolt 63. Finally, the top support 7 is fixed to the lower end face of the crossbeam 2.
[0038] The above are all preferred embodiments of this application and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A floor beam reinforcement structure, comprising columns (1) and beams (2), wherein the columns (1) are fixedly installed at both ends of the beams (2), characterized in that: A seat shell (3) is fixedly installed on the side of the column (1) facing the crossbeam (2). The seat shell (3) is fixedly connected to the column (1), and several adjusting slides (4) are slidably installed on the seat shell (3). A first bolt (5) that locks with the adjusting slides (4) is also installed on the seat shell (3). A telescopic frame (6) is installed on the adjusting slides (4), and one end of the telescopic frame (6) is rotatably connected to the adjusting slides (4). A top support (7) connected to the crossbeam (2) is installed on the other end of the telescopic frame (6). The top support (7) is rotatably connected to the telescopic frame (6).
2. The floor beam reinforcement structure according to claim 1, characterized in that: The housing (3) includes a seat plate (31) and a bent shell (32). The seat plate (31) is fixedly installed on the outer side of the column (1). The bent shell (32) is symmetrically arranged on one side of the seat plate (31) and the bent shell (32) is integrally formed with the seat plate (31).
3. The floor beam reinforcement structure according to claim 2, characterized in that: The adjusting slide (4) includes a seat frame (41) and a connecting ear plate (42). The seat frame (41) is slidably installed between the seat plate (31) and the bent shell (32). The connecting ear plate (42) is symmetrically installed at both ends of the seat frame (41), and the connecting ear plate (42) and the seat frame (41) are integrally formed.
4. The floor beam reinforcement structure according to claim 3, characterized in that: A plurality of connecting side holes (321) are evenly opened on one side of the bent shell (32), and threaded holes (411) corresponding to the connecting side holes (321) are symmetrically opened on both sides of the seat frame (41). The first bolt (5) passes through the connecting side hole (321) and is fixed in the threaded hole (411).
5. A floor beam reinforcement structure according to claim 4, characterized in that: The telescopic frame (6) includes an angle shell (61) and a movable support rod (62). The lower end of the angle shell (61) is rotatably mounted on the connecting ear plate (42). The other end of the angle shell (61) is slidably mounted on the movable support rod (62), and the head of the movable support rod (62) is rotatably connected to the top bracket (7).
6. A floor beam reinforcement structure according to claim 5, characterized in that: The angle shell (61) is provided with a plurality of first connecting holes (611) evenly distributed, the movable support rod (62) is provided with a plurality of second connecting holes (612) corresponding to the first connecting holes (611), and the angle shell (61) is provided with a second bolt (63) that locks with the movable support rod (62).
7. A floor beam reinforcement structure according to claim 6, characterized in that: The top bracket (7) includes a support plate (71) and a connecting frame (72). The support plate (71) is fixedly installed on the lower end face of the crossbeam (2), and the connecting frame (72) is installed on the lower end face of the support plate (71) and is fixedly connected to the support plate (71).
8. A floor beam reinforcement structure according to claim 7, characterized in that: The connecting frame (72) includes a vertical plate (721) and a connecting shaft (722). The vertical plate (721) is fixedly installed at both ends of the connecting shaft (722). The head of the movable support rod (62) is provided with a shaft hole (621) corresponding to the connecting shaft (722).