Adjustable assembly type bearing structure for building deviation rectification
By using an adjustable prefabricated support structure during the correction process of building support columns, the problem of displacement and deformation of the support structure during the correction process is solved, and higher correction accuracy and construction safety are achieved.
Patent Information
- Application Number
- CN202420576641.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-23
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-03-23
AI Technical Summary
The existing support structures are prone to displacement and deformation during the correction of building support columns, resulting in a decrease in correction accuracy and construction safety.
Adoptable assembled support structure, including support table, support block, locking assembly and limiting assembly. The bearing block is arranged around the outer side wall of the support column, and the fit degree is adjusted by the locking assembly, and the limiting assembly limits the position of the bearing block, enhancing the stability and firmness of the structure.
It improves the stability and firmness of the support structure, reduces displacement and dislocation, and enhances the accuracy of the support column deviation correction and construction safety.
Smart Images

Figure CN222894036U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of building deviation correction, and in particular to an adjustable assembled supporting structure for building deviation correction. Background Art
[0002] During the installation of building support columns, due to various reasons, the support columns may tilt or be not perpendicular to the ground, which may reduce the bearing capacity of the support columns. Not only will the columns be easily bent, deformed, or cracked, but the stability of the entire building structure will also be affected. In order to correct the position of the support columns, the broken column jacking method is often used. The broken column jacking method is to break the column at the bottom or middle of the support column, build a supporting structure at both ends of the broken column, and install a jacking device on the supporting structure to lift the column. Then fill the broken part with soil or other materials to correct the support column, thereby restoring the vertical state of the entire building.
[0003] However, in the process of correcting the deviation of the support column, the jacking device will apply pressure to the supporting structure when in operation, causing the supporting structure to be easily displaced. In severe cases, the supporting structure is also prone to deformation and falling off, thereby reducing the accuracy of the correction of the support column and the safety of the construction. Therefore, the stability and firmness of the existing supporting structure still need to be improved. Summary of the invention
[0004] In order to improve the stability and firmness of the supporting structure, the present application provides an adjustable assembled supporting structure for building deviation correction.
[0005] The present application provides an adjustable assembled support structure for building deviation correction, which adopts the following technical solution:
[0006] An adjustable assembled supporting structure for building deviation correction includes: a supporting platform, the supporting platform is arranged on the outer wall of a supporting column, the supporting platform includes a plurality of supporting blocks, the plurality of supporting blocks are arranged around the outer wall of the supporting column, locking components for enhancing the fit between the supporting platform and the supporting column are arranged between adjacent supporting blocks, a limiting component is arranged between the supporting block and the supporting column, and the limiting component is used to limit the position of the supporting block on the supporting column.
[0007] By adopting the above technical scheme, when correcting the deviation of the support column, the supporting blocks are respectively installed on the surrounding sides of the support column, and the tightness of the locking assembly is adjusted to make the supporting platform fit the support column. When lifting the broken column, the supporting platform is subjected to the force from the jacking device, and the limit assembly limits the position of the supporting block to reduce the displacement and misalignment of the supporting platform, thereby improving the stability and firmness of the supporting structure, so that the supporting structure can be firmly and stably placed on the outside of the support column to provide a stable supporting effect for the support column, thereby improving the accuracy of the correction of the support column and the construction safety.
[0008] Preferably, the limiting assembly comprises a positioning member, and a contact member is provided on one side of the positioning member, and the contact member is used for abutting against a side wall of the supporting block facing the supporting column.
[0009] By adopting the above technical solution, one side of the supporting platform abuts against the abutment member, and then the displacement of the supporting platform is limited by the abutment member, reducing the possibility of displacement of the supporting platform due to force, thereby achieving a stable connection between the supporting platform and the support column.
[0010] Preferably, the abutment member is an inclined pad.
[0011] By adopting the above technical solution, the setting of the inclined pad can increase the contact area, which can not only provide greater friction for the support platform when the support platform slides, thereby reducing the displacement of the support platform during the correction process, but also evenly distribute the pressure of the support platform on the abutment part, reducing the damage of the support platform caused by local pressure concentration.
[0012] Preferably, the locking assembly includes a locking rod, which is threadedly connected to the supporting block. An adjustment cavity is provided at the intersection of the sides of the supporting block. The end of the locking rod is located in the adjustment cavity of the supporting block. Locking nuts are threadedly connected to both ends of the locking rod.
[0013] By adopting the above technical solution, the locking nuts at both ends of the locking rod are adjusted to control the distance between the supporting blocks, and then the degree of close contact between the supporting platform and the supporting column is controlled, so that the supporting platform is not easy to slip on the supporting column, thereby improving the stability and firmness of the supporting platform.
[0014] Preferably, a reinforcement piece is provided between the supporting block and the locking nut, the reinforcement piece is connected to the locking rod, and the reinforcement piece is used to strengthen the connection between the locking nut and the locking rod.
[0015] By adopting the above technical solution, the provision of the reinforcement piece can fill the gap between the locking rod and the locking nut, reduce the looseness between the supporting platform and the locking nut, and enhance the stability of the connection between the supporting platforms.
[0016] Preferably, a cavity is formed at the end of the supporting block, and the locking rod passes through the cavity and is threadedly connected to the side wall of the supporting block.
[0017] By adopting the above technical solution, the cavity provided in the support block is conducive to reducing the friction area between the locking rod and the support block, making the locking rod less prone to wear and tear, thereby protecting the locking ability of the locking assembly.
[0018] Preferably, reinforcing ribs are provided in the adjustment cavity of the support block.
[0019] By adopting the above technical solution, providing reinforcing ribs in the adjustment cavity of the supporting block helps to enhance the rigidity and strength of the supporting block, thereby enhancing the bearing capacity of the supporting platform.
[0020] Preferably, the support block is provided with a avoidance position for preventing scratches at the intersection of the sides close to the adjustment cavity.
[0021] By adopting the above technical scheme, when construction workers install the supporting knot and adjust the locking assembly, the avoidance setting helps to reduce the possibility of construction workers being injured by collision with the corners of the supporting platform, thereby improving the safety of the supporting structure; and the setting of the avoidance structure reduces the weight of the supporting block, thereby reducing the influence of the weight of the supporting structure itself, while also reducing the concentration of stress at the corners of the supporting block, which is conducive to further improving the structural stability and firmness of the supporting block, so that the supporting structure can be more stably placed on the outside of the supporting column, achieving further improvement in the accuracy of support column correction and construction safety.
[0022] In summary, the present application includes at least one of the following beneficial technical effects:
[0023] 1. When correcting the deviation of the support column, the supporting blocks are respectively installed on the surrounding sides of the support column, and the tightness of the locking assembly is adjusted to make the supporting platform fit the support column. When the broken column is lifted, the supporting platform bears the force from the jacking device, and the limit assembly limits the position of the supporting block to reduce the displacement and dislocation of the supporting platform, thereby improving the stability and firmness of the supporting structure, so that the supporting structure can be firmly and stably placed on the outside of the support column to provide a stable supporting effect for the support column, thereby improving the accuracy of the correction of the support column and the construction safety;
[0024] 2. One side of the support platform abuts against the abutment member, and the abutment member limits the displacement of the support platform, thereby reducing the possibility of displacement of the support platform due to force, thereby achieving a stable connection between the support platform and the support column;
[0025] 3. The setting of the inclined pad can increase the contact area, which can not only provide greater friction for the support platform when the support platform slides, thereby reducing the displacement of the support platform during the correction process, but also evenly distribute the pressure of the support platform on the abutment, reducing the damage of the support platform caused by local pressure concentration. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 It is a schematic diagram of the overall structure of an adjustable assembled supporting structure for building deviation correction in an embodiment of the present application;
[0027] Figure 2 is a schematic structural diagram of a position limiting assembly in an embodiment of the present application;
[0028] Figure 3It is a schematic diagram of the structure of the locking assembly in an embodiment of the present application.
[0029] Explanation of the accompanying drawings: 1. Support platform; 11. Support block; 2. Locking assembly; 21. Locking rod; 22. Locking nut; 23. Reinforcement member; 3. Limiting assembly; 31. Positioning member; 32. Abutment member; 4. Adjustment cavity; 5. Cavity; 6. Reinforcement rib; 7. Avoidance. DETAILED DESCRIPTION
[0030] The following is combined with Figure 1-3 This application is described in further detail.
[0031] The embodiment of the present application discloses an adjustable assembled supporting structure for building deviation correction.
[0032] Reference Figure 1 and Figure 2 An adjustable assembled support structure for building deviation correction includes a support platform 1, which includes a plurality of support blocks 11. The plurality of support blocks 11 are all located on the same horizontal plane. In this embodiment, the support blocks 11 are arranged in an "L"-shaped platform structure. The support blocks 11 are arranged around the outer wall of the support column. Locking components 2 are connected between adjacent support blocks 11. The locking components 2 are rotatably connected to the side wall of the support block 11. A limiting component 3 is arranged on the side of the support block 11 close to the support column. The limiting component 3 is located between the support block 11 and the support column. The side of the support block 11 close to the support column clamps the limiting component 3 with the outer wall of the support column.
[0033] By adjusting the locking assembly 2, the position between the supporting blocks 11 can be controlled, and then the supporting platform 1 can be controlled to be close to the outer wall of the supporting column, so as to achieve the effect of fixing the supporting platform 1 to the outer wall of the supporting column. Setting the limiting assembly 3 between the supporting block 11 and the supporting column helps to enhance the friction of the large supporting block 11, and correct the deviation of the supporting column. When the supporting block 11 is subjected to force and tends to move downward, the pressing force of the limiting assembly 3 on the supporting block 11 will be enhanced, so that the displacement of the supporting block 11 is limited, thereby reducing the displacement of the supporting platform 1, improving the stability and firmness of the supporting structure, and allowing the supporting structure to be firmly and stably placed on the outside of the supporting column to provide a stable supporting effect for the supporting column, thereby improving the accuracy of the correction of the support column and the construction safety.
[0034] Furthermore, there are multiple groups of support platforms 1, and the multiple groups of support platforms 1 are respectively arranged in sequence along the radial direction of the support column. The number of support platforms 1 can be set according to needs. In this embodiment, the number of support platforms 1 is preferably three groups, and the three groups of support platforms 1 are respectively arranged in sequence along the radial direction of the support column. By setting three groups of support platforms 1, the contact area between the support platform 1 and the outer wall of the support column can be increased, thereby improving the overall bearing capacity and stability of the supporting structure, and reducing the possibility of the support column tipping over or deforming during the jacking process.
[0035] Reference Figure 1 and Figure 3 The limiting assembly 3 includes a positioning member 31, one side of the positioning member 31 is in contact with the outer wall of the support column, and the other side of the positioning member 31 is provided with an abutment member 32. The positioning member 31 and the abutment member 32 are integrally arranged, and a slope is provided on one side of the supporting block 11 close to the outer wall of the support column, and the side wall of the abutment member 32 abuts against the slope of the supporting block 11.
[0036] When the supporting block 11 is subjected to force, the degree of abutment between the inclined surface of the supporting block 11 and the side wall of the abutment member 32 is enhanced, and then through the abutment member 32, the positioning member 31 stably supports the supporting block 11, reducing the displacement of the supporting block 11, thereby enhancing the stability and firmness of the supporting structure and reducing the risk of the supporting structure falling off during the support column correction construction process.
[0037] Reference Figure 3 In this embodiment, the abutment member 32 is an inclined pad, and the cross section of the inclined pad is set in a right triangle. The inclined pad is arranged between the support block 11 and the support column, which can not only reduce the normal contact stress between the support column and the support block 11, so that the connection between the support block 11 and the column is strengthened, but also play a certain role in shock and vibration reduction, reduce the impact of external vibration or impact on the structure, and improve the seismic performance of the structure.
[0038] Reference Figure 1 The locking assembly 2 includes a locking rod 21, which is threadedly connected to the side wall of the supporting block 11. An adjustment cavity 4 is provided at the intersection of the side of the supporting block 11 away from the supporting column. One end of the locking rod 21 is located in the adjustment cavity 4 of the supporting block 11, and the other end of the locking rod 21 is located in the adjustment cavity 4 of the adjacent supporting block 11. Both ends of the locking rod 21 are threadedly connected with locking nuts 22, and the locking nuts 22 are rotatably matched with the locking rod 21.
[0039] The setting of the adjustment chamber 4 not only enhances the bending resistance of the support block 11, reduces the stress concentration phenomenon, and improves the stability of the support structure, but also facilitates the construction personnel to adjust the locking assembly 2, thereby improving the installation convenience of the support structure. By adjusting the position of the locking nut 22 on the locking rod 21, the abutment degree between the inclined surface of the support block 11 and the abutment 32 is increased, thereby enhancing the clamping force of the limit assembly 3, making it difficult for the support block 11 to be displaced on the support column, thereby improving the stability and firmness of the support structure. After the construction is completed, the construction personnel can adjust the locking assembly 2 and remove the support platform 1. The subsequent installation can adjust the position according to the size of the column, so that the support structure can be recycled, thereby improving the adaptability and practicality of the support structure.
[0040] Reference Figure 1A reinforcing member 23 is provided between the side wall of the support block 11 and the side wall of the locking nut 22, and the reinforcing member 23 is threadedly connected to the locking rod 21. In this embodiment, the reinforcing member 23 is a gasket, and the provision of the reinforcing member 23 can fill the connection gap between the locking nut 22 and the locking rod 21, reduce the looseness when the locking rod 21 is connected to the support block 11, and improve the connection stability of the locking rod 21 and the support block 11. The provision of the reinforcing member 23 can also reduce the possibility of stress concentration between the locking nut 22 and the locking rod 21, and reduce the risk of collapse of the locking rod 21.
[0041] Reference Figure 1 The two ends of the support block 11 away from the adjustment cavity 4 are provided with cavities 5, and the locking rod 21 passes through the cavity 5 and is threadedly connected to the side wall of the support platform 1. The provision of the cavity 5 can not only enhance the rigidity and strength of the support block 11, and improve the ability of the support block 11 to resist deformation, but also reduce the contact area between the locking rod 21 and the support block 11 when installing the locking rod 21 and adjusting the position between the support blocks 11 by adjusting the locking nut 22, thereby reducing the wear of the locking rod 21, protecting the locking rod 21, and improving the service life of the locking assembly 2.
[0042] Reference Figure 1 , a reinforcing rib 6 is provided in the adjustment cavity 4 of the support block 11, and the reinforcing rib 6 is located at the intersection of the side of the support block 11 close to the support column, and the cross-sectional area of the reinforcing rib 6 in the adjustment cavity 4 increases from the inner top wall to the inner bottom wall of the support block 11. The reinforcing rib 6 is provided in the adjustment cavity 4 to promote the uniform distribution of the stress borne by the support block 11, thereby reducing the occurrence of local stress concentration, and can also enhance the shearing and bending resistance of the support block 11, reduce the possibility of deformation of the support block 11, and thus improve the stability of the support structure.
[0043] Reference Figure 1 , a relief 7 is provided at the intersection of the side of the support block 11 near the adjustment chamber 4. In the present embodiment, the relief 7 is an oblique angle, and the relief 7 is integrally provided with the support block 11. When the construction personnel install the support structure, it is necessary to adjust the locking assembly 2 at the adjustment chamber 4. The provision of the relief 7 helps to reduce the situation where the construction personnel are injured by collisions during the installation process. Setting the relief 7 at an oblique angle can also reduce the wear of the support block 11 during use, thereby delaying the service life of the support structure; and the provision of the relief 7 structure reduces the weight of the support block 11, thereby reducing the influence of the weight of the support structure itself, and at the same time reduces the concentration of stress at the corner of the support block 11, which is conducive to further improving the structural stability and firmness of the support block 11, so that the support structure can be more stably placed on the outside of the support column, and the accuracy of the support column correction and the construction safety can be further improved.
[0044] The above are all preferred embodiments of the present application. The embodiments are only explanations of the present application and are not intended to limit the protection scope of the present application. Therefore, all equivalent changes made based on the structure, shape, and principle of the present application should be included in the protection scope of the present application.
Claims
1. An adjustable assembled supporting structure for building deviation correction, comprising: A support platform (1), wherein the support platform (1) is arranged on the outer wall of a support column, and is characterized in that the support platform (1) includes a plurality of support blocks (11), wherein the plurality of support blocks (11) are arranged around the outer wall of the support column, and a locking assembly (2) for enhancing the fit between the support platform (1) and the support column is arranged between adjacent support blocks (11), and a limiting assembly (3) is arranged between the support block (11) and the support column, and the limiting assembly (3) is used to limit the position of the support block (11) on the support column.
2. The adjustable assembled supporting structure for building deviation correction according to claim 1 is characterized in that: The limiting assembly (3) comprises a positioning member (31), one side of which is provided with an abutment member (32), and the abutment member (32) is used for abutting against a side wall of the supporting block (11) facing the supporting column.
3. The adjustable assembled supporting structure for building deviation correction according to claim 2 is characterized in that: The abutment member (32) is an inclined pad.
4. The adjustable assembled supporting structure for building deviation correction according to claim 1, characterized in that: The locking assembly (2) comprises a locking rod (21), the locking rod (21) being threadedly connected to the supporting block (11), an adjustment cavity (4) being provided at the intersection of the sides of the supporting block (11), the end of the locking rod (21) being located in the adjustment cavity (4) of the supporting block (11), and locking nuts (22) being threadedly connected at both ends of the locking rod (21).
5. The adjustable assembled supporting structure for building deviation correction according to claim 2 is characterized in that: A reinforcing piece (23) is provided between the supporting block (11) and the locking nut (22); the reinforcing piece (23) is connected to the locking rod (21); and the reinforcing piece (23) is used to strengthen the connection between the locking nut (22) and the locking rod (21).
6. The adjustable assembled supporting structure for building deviation correction according to claim 4, characterized in that: A cavity (5) is provided at the end of the supporting block (11), and the locking rod (21) passes through the cavity (5) and is threadedly connected to the side wall of the supporting block (11).
7. The adjustable assembled supporting structure for building deviation correction according to claim 4 is characterized in that: A reinforcing rib (6) is provided in the adjustment cavity (4) of the supporting block (11).
8. The adjustable assembled supporting structure for building deviation correction according to claim 1, characterized in that: The supporting block (11) is provided with a avoidance position (7) for preventing scratches at the intersection of the sides close to the regulating cavity (4).