Multifunctional BIM (Building Information Modeling) concrete cavity supporting and stabilizing equipment
By using a multifunctional BIM-based concrete cavity support stabilization device, which incorporates components such as steel reinforcement frames, ground cones, shock-absorbing frames, and diagonal braces, the problems of deformation and lateral instability of the support device under high loads have been solved, thereby improving the stability of the device and the quality of construction.
Patent Information
- Application Number
- CN202520259465.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-02-19
AI Technical Summary
Existing support equipment is prone to deformation and damage when subjected to high-load concrete pouring pressure. It lacks effective lateral support components and cannot effectively resist lateral forces, resulting in structural instability and affecting construction safety and quality.
The multifunctional BIM-based concrete cavity support stabilization equipment includes components such as support columns, steel reinforcement frames, load-bearing plates, ground-inserting cones, vibration damping frames, and diagonal braces. Through internal steel reinforcement, ground-inserting cones fixed to the ground, vibration damping frames buffering vibrations, and diagonal braces providing lateral support, the stability and compressive strength of the equipment are enhanced.
To ensure that the supporting equipment does not deform or get damaged under high pressure, prevent lateral displacement, improve stability and quality during construction, reduce the risk of structural deformation, and improve construction efficiency and project quality.
Smart Images

Figure CN223724243U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of building engineering, concretely to multi -functional BIM concrete cavity support stabilizing equipment. BACKGROUND
[0002] In the field of building engineering, the construction of concrete structure is a key and complex work, wherein the support and stabilization equipment of concrete cavity plays a crucial role, however, the existing support and stabilization equipment still has many technical limitations in many aspects, which is difficult to meet the growing needs of modern building engineering.
[0003] In concrete construction, the traditional support equipment has great improvement space for the design and performance of the support column, most of the traditional support columns only use single material, such as simple steel column or wood column, which has limited structural strength and carrying capacity, in some large building projects, such as super high-rise building, large span bridge and large industrial plant construction process, when a large amount of concrete needs to be supported, these traditional support columns will have obvious structural deformation problem when bearing high load pressure, for example, for the floor or beam column structure of super high-rise building, due to the need to bear huge vertical load, the traditional support column may bend or bend due to insufficient strength, which will directly affect the safety and stability of the whole concrete structure, moreover, the design of traditional support column often does not fully consider different building structures and construction conditions, its size and strength are fixed, which cannot be flexibly adjusted according to the specific engineering requirements, resulting in that in different construction scenes, the support column may be too strong to cause material waste, or the support column strength is insufficient to ensure the construction safety.
[0004] However, the prior art has the following problems in actual use:
[0005] When the overall device is used, the structural strength is often difficult to meet the demand, part of the support column only uses single material and simple structure, lacks internal reinforcement measures, and is easy to deform and damage when bearing large concrete pouring pressure, which may occur lateral deviation, the existing support equipment may not have enough lateral support parts, or the design and connection of lateral support parts are not firm enough, which cannot effectively resist lateral force. TECHNICAL FIELD
[0006] (I) technical problems solved
[0007] In order to overcome the above defects of the prior art, the utility model provides a multi -functional BIM concrete cavity support stabilizing equipment, which solves the problems in the prior art:
[0008] When the overall device is in use, the structural strength is often difficult to meet the demand, part of the support column only uses single material and simple structure, lacks internal reinforcement measures, when bearing larger concrete pouring pressure, is easy to appear deformation and damage, possible lateral deviation, the existing support equipment can not have enough lateral support parts, or the design and connection of the lateral support parts are not firm enough, and the problems that the lateral force cannot be effectively resisted.
[0009] (II) Technical solutions
[0010] To achieve the above object, the utility model discloses the following technical scheme: Multifunctional BIM concrete cavity support stabilizing equipment, including support column, the inside of support column is equipped with reinforcing bar frame, the bottom of support column is fixedly installed with bearing plate, the inside of bearing plate is inserted with ground insertion cone, both sides of bearing plate are equipped with shock-absorbing frame, the outer wall of support column is fixedly installed with reinforcing frame, both sides of support column are equipped with inclined bracing, the bottom of inclined bracing is screw-connected with fixed seat.
[0011] Further, the top of the support column is welded with an additional plate, the inside of the additional plate is screw-connected with a bolt, and the bottom of the bolt is screw-connected with the top of the bearing plate.
[0012] Further, both sides of the reinforcing bar frame are equipped with welding blocks, and one side of each welding block is screw-connected with the inner side wall of the support column.
[0013] Further, the top of the ground insertion cone is welded with a connecting frame, and the outer wall of the ground insertion cone is screw-connected with a shaft ring.
[0014] Further, the middle part of the shock-absorbing frame is welded with a close-fitting plate, and the outer wall of the close-fitting plate is fixedly installed with the middle part of the bearing plate.
[0015] Further, both sides of the reinforcing frame are welded with butt plates, the bottom of the reinforcing frame is fixedly installed with a support rod, and the bottom of the support rod is screw-connected with the top of the additional plate.
[0016] Further, one side of the inclined bracing is screw-connected with a limiting block, and one side of the limiting block is screw-connected with the outer wall of the support column.
[0017] Further, the top of the fixed seat is screw-connected with a penetrating pin, and the bottom of the fixed seat is fixedly installed with a friction plate.
[0018] (III) Beneficial effects
[0019] The utility model provides multifunctional BIM concrete cavity support stabilizing equipment has the following beneficial effects:
[0020] The multifunctional BIM concrete cavity support stabilizing device, through the cooperation of the support column, the reinforcing frame, the bearing plate, the ground insertion cone and the shock absorbing frame, further reinforces the internal structure of the support column, ensures that the support column will not easily deform or be damaged when bearing large pressure such as concrete pouring, guarantees the stability of the concrete cavity during the construction process, can be effectively inserted into the ground, and can increase the connection strength with the ground to prevent displacement of the equipment when subjected to external force or vibration, provides a bearing foundation for the entire equipment, disperses the pressure from above, uniformly transmits the pressure to the ground, avoids excessive local pressure to cause ground subsidence or equipment instability, the shock absorbing frame can absorb and buffer the vibration to avoid adverse effects on the concrete cavity being constructed, ensures the quality and stability of the concrete structure, through the cooperation of the inclined support rod and the fixed seat, can effectively play a supporting and stabilizing role, when subjected to horizontal external force such as wind or accidental collision during construction, the inclined support rod can prevent the support column from being laterally offset, improves the adaptability of the equipment to complex working conditions, reduces the risk of structural deformation or damage due to unstable support, and improves construction efficiency and engineering quality. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is a structural schematic view of the utility model;
[0022] Figure 2 It is a support column structural schematic view of the utility model;
[0023] Figure 3 It is a shock absorbing frame structural schematic view of the utility model;
[0024] Figure 4 It is an inclined support rod structural schematic view of the utility model.
[0025] In the drawing: 1, support column; 2, reinforcing frame; 3, bearing plate; 4, ground insertion cone; 5, shock absorbing frame; 6, reinforcing frame; 7, inclined support rod; 8, fixed seat; 9, additional plate; 10, bolt; 11, welding block; 12, connecting frame; 13, shaft ring; 14, fitting plate; 15, butt joint plate; 16, support rod; 17, limiting block; 18, through pin; 19, friction plate. DETAILED DESCRIPTION
[0026] The technical scheme in the embodiments of the utility model will be described clearly and completely in combination with the drawings in the embodiments of the utility model. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0027] Please refer to Figures 1 to 4The utility model embodiment provides multi -functional BIM concrete cavity support stable equipment, this multi -functional BIM concrete cavity support stable equipment is applied to the scene of construction engineering, and the utility model discloses the structure of concrete cavity support stable equipment is improved in this embodiment, so that it has the advantage of stability.
[0028] Embodiment one:
[0029] Please refer to Figures 1 to 4 The utility model provides a technical scheme: multi -functional BIM concrete cavity support stable equipment, including support column 1, the inside of support column 1 is equipped with reinforcing frame 2, support column 1's outer wall is fixedly installed with reinforcing frame 6, support column 1's top is welded with additional plate 9, additional plate 9's inside screw thread is connected with bolt 10, and the bottom of bolt 10 is connected with the top of bearing plate 3 with screw thread, and the both sides of reinforcing frame 2 are equipped with welding block 11, and the both sides of welding block 11 are connected with the inner side wall of support column 1 with screw thread, and the both sides of reinforcing frame 6 are welded with docking plate 15, and the bottom of reinforcing frame 6 is fixedly installed with support rod 16, and the bottom of support rod 16 is connected with the top of additional plate 9 with screw thread, therefore, when the equipment is manufactured, reinforcing frame 2 is placed in the inside of support column 1, and the both sides of reinforcing frame 2 are connected with the inner side wall of support column 1 with screw thread, and this connection mode makes reinforcing frame 2 firmly fixed in the inside of support column 1, provides internal support for support column 1, when bearing larger vertical pressure in the concrete pouring process, reinforcing frame 2 can bear part of pressure, prevents support column 1 from deforming due to excessive pressure, enhances the compression resistance of support column 1, and reinforcing frame 6 is fixedly installed on the outer wall of support column 1, and the docking plate 15 on the both sides thereof increases the connecting area of reinforcing frame 6 and other structures, improves the stability of reinforcing frame 6, and the support rod 16 at the bottom of reinforcing frame 6 is connected with the top of additional plate 9 with screw thread, and part of vertical load is transferred from support column 1 to additional plate 9, further disperses the pressure borne by support column 1, and simultaneously, the screw thread connection of support rod 16 and additional plate 9 makes the transfer more stable, guarantees the stability of support column 1 in the vertical direction, and additional plate 9 is connected with the top of bearing plate 3 with screw thread inside bolt 10, and bolt 10 not only plays a connecting role, but also can adjust the fastening degree according to actual stress condition, makes additional plate 9 and bearing plate 3 closely connected, enhances the bearing capacity of the whole equipment in the vertical direction, when support column 1 is subjected to vertical downward pressure, this connection mode can prevent additional plate 9 and bearing plate 3 from loosening, guarantees the structural integrity of the whole equipment, ensures that the concrete structure above can be stably supported in the construction process.
[0030] Embodiment two:
[0031] In order to realize the stable connection and shock absorption function of the equipment and the ground, the device bearing plate 3, the ground insertion cone 4 and the shock absorption frame 5 are arranged.
[0032] The bottom of the support column 1 is fixedly installed with a bearing plate 3, the inside of the bearing plate 3 is inserted with a ground insertion cone 4, both sides of the bearing plate 3 are provided with a shock absorption frame 5, the top of the ground insertion cone 4 is welded with a connecting frame 12, the outer wall of the ground insertion cone 4 is threadedly connected with a shaft ring 13, the middle part of the shock absorption frame 5 is welded with a fitting plate 14, and the outer wall of the fitting plate 14 is fixedly installed with the middle part of the bearing plate 3. Therefore, the bearing plate 3 is fixedly installed at the bottom of the support column 1 as the bearing base of the entire device, the ground insertion cone 4 inserted in the inside of the bearing plate 3 provides a firm connection with the ground for the device, the connecting frame 12 welded at the top of the ground insertion cone 4 helps to improve the structural strength of the ground insertion cone 4, and the shaft ring 13 threadedly connected with the outer wall of the ground insertion cone 4 can further fix the ground insertion cone 4 in the ground, thereby enhancing the firmness of the ground insertion cone 4 inserted in the ground. When the device is subjected to pressure from above, the ground insertion cone 4 effectively transmits the pressure on the bearing plate 3 to the ground, preventing the device from sinking or moving sideways. The shock absorption frame 5 is located on both sides of the bearing plate 3, and the fitting plate 14 in the middle part is fixedly installed with the middle part of the bearing plate 3, so that the shock absorption frame 5 is closely combined with the bearing plate 3. During the construction process, such as the operation of generating vibration during concrete vibration, the shock absorption frame 5 can absorb and buffer the vibration from the ground and the surrounding environment. Through the structural characteristics of the shock absorption frame 5, the vibration energy is converted into other forms of energy such as heat energy, reducing the amount of vibration transmitted to the concrete structure, avoiding the influence of vibration on the concrete cavity under construction, ensuring the pouring quality of the concrete, and preventing quality problems such as concrete segregation and cracks caused by vibration.
[0033] Example three:
[0034] In order to improve the lateral stability of the device, the device is provided with a diagonal bracing rod 7 and a fixed seat 8.
[0035] Both sides of the support column 1 are provided with the inclined bracing rod 7, the bottom of the inclined bracing rod 7 is screw-connected with the fixed seat 8, one side of the inclined bracing rod 7 is screw-connected with the limiting block 17, one side of the limiting block 17 is screw-connected with the outer wall of the support column 1, the top of the fixed seat 8 is screw-connected with the through pin 18, and the bottom of the fixed seat 8 is fixedly installed with the friction plate 19, therefore, the inclined bracing rod 7 is arranged on both sides of the support column 1, the fixed seat 8 at the bottom is in contact with the ground through the screw-connected through pin 18 and the bottom friction plate 19, the friction plate 19 increases the friction force between the fixed seat 8 and the ground, so that the fixed seat 8 is placed more stably on the ground, and sliding of the fixed seat 8 when subjected to horizontal external force is prevented, when horizontal external force such as wind force, collision of construction machinery and the like is encountered, the inclined bracing rod 7 disperses the horizontal force to the ground through the fixed seat 8, so that lateral deviation of the equipment is prevented, the limiting block 17 at one side of the inclined bracing rod 7 is screw-connected with the outer wall of the support column 1, the limiting block 17 can limit the relative position of the inclined bracing rod 7 and the support column 1, so that the connection reliability of the inclined bracing rod 7 on the support column 1 is ensured, when the inclined bracing rod 7 bears horizontal external force, the limiting block 17 prevents displacement of the inclined bracing rod 7 relative to the support column 1, so that the inclined bracing rod 7 can effectively transmit the horizontal force to the fixed seat 8, stable lateral support is provided for the support column 1, tilting or deformation of the support column 1 due to lateral force is avoided, and the stability of the equipment under complex working conditions is improved.
[0036] In the utility model, the working steps of the device are as follows:
[0037] Firstly, the ground insertion cone 4 is inserted into the ground, and the ground insertion cone 4 is further fixed through the shaft ring 13 to ensure that the ground insertion cone 4 is firmly rooted in the ground, the load bearing plate 3 is installed at the bottom of the support column 1, the load bearing plate 3 is matched with the ground insertion cone 4 to form a stable bottom support structure, the abutting plate 14 of the shock absorbing frame 5 is fixedly installed at the middle part of the load bearing plate 3, the assembly of the bottom of the equipment is completed, the steel reinforcement frame 2 is placed in the inside of the support column 1, the steel reinforcement frame 2 is threadedly connected with the inner side wall of the support column 1 by using the welding block 11, the internal reinforcement of the support column 1 is completed, at the same time, the reinforcing frame 6 is fixedly installed on the outer wall of the support column 1, the butt plate 15 is welded on both sides of the reinforcing frame 6, the bottom of the support rod 16 is threadedly connected with the top of the additional plate 9, finally, the additional plate 9 and the load bearing plate 3 are connected by using the bolt 10, the assembly of the support column 1 and the related components is completed, the inclined bracing rod 7 is installed on both sides of the support column 1, the fixing seat 8 at the bottom of the inclined bracing rod 7 is placed at a suitable position, is fixed on the ground through the penetrating pin 18 and the friction plate 19, and the limiting block 17 is threadedly connected with the outer wall of the support column 1, so that the stable support of the inclined bracing rod 7 is guaranteed, according to the actual situation of the construction site and the design requirements of the concrete cavity, the angle and length of the inclined bracing rod 7 are adjusted, the supporting effect of the inclined bracing rod 7 is optimized by adjusting the position of the limiting block 17 on the support column 1 and the fastening degree of the penetrating pin 18, so that the equipment reaches the best supporting state, at the same time, the fastening degree of the bolt 10 is checked to ensure that the connection between the additional plate 9, the support column 1 and the load bearing plate 3 is firm, in the process of pouring concrete, the state of the equipment is continuously monitored, the shock absorbing frame 5 plays a role in shock absorption, and absorbs and buffers the vibration generated in the construction process, so that the pouring quality of the concrete is ensured, whether the reinforcing frame 6 and the steel reinforcement frame 2 bear larger pressure is observed, if local deformation or stress concentration phenomenon occurs, the connection of the related components can be maintained by being strengthened or auxiliary supporting components are added, whether the inclined bracing rod 7 and the fixing seat 8 are stable is checked, the friction force between the friction plate 19 and the ground is ensured to be sufficient, if the fixing seat 8 slides, the penetrating pin 18 can be further reinforced or the area of the friction plate 19 can be increased, so that the stability of the equipment in the horizontal direction is guaranteed, when the concrete reaches sufficient strength and the construction task is completed, firstly, the inclined bracing rod 7 is removed, the limiting block 17 is unscrewed from the support column 1, the fixing seat 8 is removed, then the reinforcing frame 6 and the additional plate 9 on the support column 1 are removed, the bolt 10 is loosened, finally, the support column 1 is taken off from the ground insertion cone 4, and the disassembly of the equipment is completed.
[0038] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. Multifunctional BIM concrete cavity support stabilizing device, comprising a support column (1), characterized in that: The inside of the support column (1) is provided with a steel frame (2), the bottom of the support column (1) is fixedly installed with a bearing plate (3), the inside of the bearing plate (3) is inserted with a ground insertion cone (4), both sides of the bearing plate (3) are provided with a damping frame (5), the outer wall of the support column (1) is fixedly installed with a reinforcing frame (6), both sides of the support column (1) are provided with an inclined bracing rod (7), the bottom of the inclined bracing rod (7) is threadedly connected with a fixing seat (8).
2. The multi-functional BIM concrete void support stabilizing apparatus of claim 1, wherein: The top of the support column (1) is welded with an additional plate (9), the inside of the additional plate (9) is threadedly connected with a bolt (10), the bottom of the bolt (10) is threadedly connected with the top of the bearing plate (3).
3. The multi-functional BIM concrete void support stabilization apparatus of claim 1, wherein: Both sides of the steel frame (2) are provided with a welding block (11), one side of the welding block (11) is threadedly connected with the inner side wall of the support column (1).
4. The multi-functional BIM concrete void support stabilization apparatus of claim 1, wherein: The top of the ground insertion cone (4) is welded with a connecting frame (12), the outer wall of the ground insertion cone (4) is threadedly connected with a shaft ring (13).
5. The multi-functional BIM concrete void support stabilization apparatus of claim 1, wherein: The middle of the damping frame (5) is welded with a fitting plate (14), the outer wall of the fitting plate (14) is fixedly installed with the middle of the bearing plate (3).
6. The multi-functional BIM concrete void support stabilization apparatus of claim 1, wherein: Both sides of the reinforcing frame (6) are welded with a butt plate (15), the bottom of the reinforcing frame (6) is fixedly installed with a support rod (16), the bottom of the support rod (16) is threadedly connected with the top of the additional plate (9).
7. The multi-functional BIM concrete void support stabilization apparatus of claim 1, wherein: One side of the inclined bracing rod (7) is threadedly connected with a limiting block (17), one side of the limiting block (17) is threadedly connected with the outer wall of the support column (1).
8. The multi-functional BIM concrete void support stabilization apparatus of claim 1, wherein: The top of the fixing seat (8) is threadedly connected with a penetrating pin (18), the bottom of the fixing seat (8) is fixedly installed with a friction plate (19).