An integrated construction platform device
The modularly designed integrated construction platform device, using plug-in and bolt-connected components, solves the problem of time-consuming and labor-intensive installation of steel pipe scaffolding, and achieves efficient and stable construction platform installation.
Patent Information
- Application Number
- CN202521351447.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-30
- Publication Date
- 2026-07-03
- Estimated Expiration
- 2035-06-30
Smart Images

Figure CN224452195U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of construction technology, and more particularly to an integrated construction platform device. Background Technology
[0002] Building construction is the process of transforming architectural design blueprints into actual building products. Building construction involves multiple stages and collaborations among various trades. Starting with site leveling and foundation treatment, the vertical growth of the building is gradually completed through pouring foundations and building the main structure, such as a reinforced concrete frame. Integrated construction platforms can be used during the construction process. These platforms are comprehensive construction equipment that integrates multiple functions, providing a stable and efficient working environment for building construction.
[0003] Currently, construction platforms are an indispensable and important facility in the construction process, mainly used for construction workers to work and for material storage. Their safety, stability, and ease of installation are of paramount importance.
[0004] In existing construction, steel pipe scaffolding is usually used as a construction platform. During the installation of the construction platform, a large number of bolts and other connectors and external special tools are usually required. The installation and dismantling are time-consuming and labor-intensive, which affects the construction efficiency. Utility Model Content
[0005] To overcome the problem that existing construction projects typically use steel pipe scaffolding as a construction platform, which requires a large number of bolts and other connectors as well as external special tools during installation, making installation and dismantling time-consuming and labor-intensive, thus affecting construction efficiency.
[0006] The technical solution of this utility model is as follows: an integrated construction platform device, including a first crossbeam, two sets of first crossbeams with connecting seats fixed at both ends, a base fixed at the bottom of each connecting seat, two second crossbeams fixed on the side wall of each connecting seat, a first connecting rod fixed in the middle of the side wall of each second crossbeam, a column fixed at the top of each connecting seat, two more sets of first crossbeams fixed at the top of each column, two sets of first steps fixed in the middle of each first crossbeam, two sets of second steps fixed at the top of each first step, a staircase fixed in the middle of each first crossbeam near the second steps, a second connecting rod fixed in the middle of the side wall of each first crossbeam, and a guardrail fixed in the side wall of each column.
[0007] Furthermore, the first crossbeam is fixedly connected to the two connecting seats to form an integrated structure. The bottom end of each connecting seat is fixedly provided with a first plug, and the middle of each base is provided with a first slot for the first plug to be inserted, which improves the convenience of base installation and positioning.
[0008] Furthermore, the four connectors are symmetrically distributed, each with a second slot at its top and a second plug at its bottom. The second plugs are inserted into the middle of the second slots in sequence, which improves the convenience of column installation and positioning.
[0009] Furthermore, each column has a third slot at its top for the first plug to be inserted. The external dimensions of the first plug are compatible with the internal dimensions of the third slot, which improves the convenience of vertically stacking the first crossbeam.
[0010] Furthermore, the connecting seat is fixed with buckles at both ends near the second crossbeam, and the second crossbeam is fixed with blocks at both ends. The blocks are respectively engaged in the middle of the buckles, which improves the stability of the second crossbeam installation.
[0011] Furthermore, a first positioning post is fixed to the inner bottom of each of the first crossbeams, and a first hole or groove is opened on the surface of each of the first pedals for the first positioning post to be inserted, thereby improving the accuracy of the installation and positioning of the first pedal.
[0012] Furthermore, two grooves are provided at the bottom of each of the second pedals, and the internal dimensions of the grooves are adapted to the external dimensions of the first pedal, thereby improving the convenience of installing and positioning the second pedal.
[0013] Furthermore, connecting plates are fixed at both ends of the staircase, and second slots are opened on the surface of the connecting plates. Second positioning posts are fixed at the inner bottom of the first crossbeam near the first positioning post, and the second slots are sequentially fitted onto the outer surface of the second positioning posts.
[0014] Furthermore, a cantilever bracket is fixed to the bottom of the base, which is fixed to the side wall of the concrete beam. Windproof cables are tied to the outer surfaces of both the cantilever bracket and the base, which improves the stability of the cantilever installation of the device.
[0015] The beneficial effects of this utility model are:
[0016] Compared to traditional integrated construction platform devices, this device facilitates the formation of a rectangular frame through the cooperation of the first crossbeam, connecting seat, and second crossbeam. The cooperation of the connecting seat and base enhances support stability. The cooperation of the connecting seat, column, and first crossbeam improves the convenience of vertical stacking of the construction platform. The cooperation of the first connecting rod, first crossbeam, and guardrail enhances the overall stability of the construction platform. The modular design, including the first crossbeam, connecting seat, base, second crossbeam, first step, second step, column, buckle, stairs, first connecting rod, second connecting rod, and guardrail, improves the efficiency of platform assembly and construction. Furthermore, the cooperation of the first plug, first slot, second plug, and third slot improves the accuracy and efficiency of the installation and positioning of the first crossbeam, base, and column. Attached Figure Description
[0017] Figure 1The diagram shown is a schematic representation of the overall structure of the integrated construction platform device of this utility model. Figure 1 ;
[0018] Figure 2 The diagram shown is a schematic representation of the overall structure of this utility model. Figure 2 ;
[0019] Figure 3 The diagram shown is a schematic representation of the first crossbeam structure of this utility model.
[0020] Figure 4 The diagram shown is a schematic representation of the second pedal structure of this utility model;
[0021] Figure 5 The diagram shown is a schematic representation of the staircase structure of this utility model.
[0022] Figure 6 The diagram shown is a schematic representation of the cantilever support structure of this utility model.
[0023] Explanation of reference numerals in the attached drawings: 1. First crossbeam; 2. Connecting seat; 3. Base; 4. Second crossbeam; 5. First step; 6. Second step; 7. Column; 8. Buckle; 9. Staircase; 10. First connecting rod; 11. Second connecting rod; 12. Guardrail; 13. First plug; 14. First slot; 15. Second slot; 16. Locking block; 17. Second plug; 18. Third slot; 19. First positioning post; 20. Second positioning post; 21. First slot; 22. Slide groove; 23. Connecting plate; 24. Second slot; 25. Cantilever support; 26. Windproof cable. Detailed Implementation
[0024] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0025] Among the currently discovered feasible technologies, the following are described:
[0026] With the construction industry undergoing a major transformation towards industrialization and intelligentization, traditional construction methods such as scaffolding have revealed many drawbacks, such as long erection periods, significant safety hazards, high reliance on manual labor, and serious waste of resources. At the same time, the number of super high-rise buildings and complex irregular-shaped building projects is increasing, which places higher demands on the performance and adaptability of construction equipment.
[0027] The integrated construction platform is mainly based on the modular design concept and automated control technology. The modular design allows the functional units to be freely combined and flexibly configured like "building blocks" to meet the needs of different building structures and construction processes.
[0028] Support System: The support system is the foundation of the integrated construction platform, bearing the weight of the entire platform and the construction load. It is usually composed of high-strength steel columns, beams and other components. Through scientific mechanical calculations and structural design, the stability and load-bearing capacity of the platform under various working conditions are ensured. In the construction of super high-rise buildings, the support system needs to be able to withstand huge vertical loads and horizontal wind loads to ensure construction safety.
[0029] The work platform is the place where construction workers carry out various tasks. It can be divided into multiple functional areas according to construction needs, such as formwork installation area, concrete pouring area, and material storage area. The platform surface is usually covered with non-slip and wear-resistant materials, and protective railings and safety nets are set up around it to provide a safe and comfortable working environment for construction workers. In addition, the work platform can also be adjusted according to the shape of the building to adapt to the construction of complex building structures such as curved surfaces and inclined surfaces.
[0030] The safety system is an important barrier to ensure the safety of construction workers. It includes an outer safety net, safety doors, and fall arrestors. The outer safety net is made of high-strength, flame-retardant materials and can effectively prevent people and materials from falling. The safety doors are set at the entrances and exits between the platform and the building structure and have automatic closing and locking functions to prevent people from falling accidentally. The fall arrestors can brake quickly in the event of an accident on the platform to avoid serious consequences from the platform falling.
[0031] An integrated construction platform can integrate multiple construction processes, reducing the connection time and repetitive labor between processes in traditional construction. Taking bridge abutment and pier construction as an example, the traditional scaffolding erection and dismantling requires a lot of time and manpower, while the integrated construction platform only needs to be installed and debugged once, and can automatically climb as the building rises, greatly shortening the construction cycle. At the same time, the close cooperation between the material transportation system and the work platform enables building materials to be delivered to the construction site quickly and accurately, improving construction efficiency.
[0032] The comprehensive coverage of the protection system and the real-time monitoring of the intelligent control system provide all-round safety protection for construction workers. Compared with traditional scaffolding, the integrated construction platform reduces the risk of working at height and lowers the probability of accidents such as falls and falling objects.
[0033] Please refer to Figures 1-6An integrated construction platform device includes a first crossbeam 1. Connecting seats 2 are fixed to both ends of two sets of first crossbeams 1. Bases 3 are fixed to the bottom ends of connecting seats 2. Two second crossbeams 4 are fixed to the side walls of the connecting seats 2. Buckles 8 are fixed to both ends of the connecting seats 2 near the second crossbeams 4. Locking blocks 16 are fixed to both ends of the second crossbeams 4, respectively engaging with the middle of the buckles 8, improving the convenience of installing and positioning the second crossbeams 4. A first connecting rod 10 is fixed to the middle of the side wall of the second crossbeams 4. Both ends of the first connecting rod 10 are fixedly connected to the second crossbeams 4 by bolts, thereby improving the overall stability of the second crossbeams 4. The connecting seats 2... Each of the platforms is fixed with a column 7 at its top. Two additional sets of first crossbeams 1 are fixed at the top of each column 7. Two sets of first steps 5 are fixed in the middle of each first crossbeam 1. Two sets of second steps 6 are fixed at the top of each first step 5. A staircase 9 is fixed in the middle of each first crossbeam 1 near the second steps 6 for operators to go up and down. A second connecting rod 11 is fixed in the middle of the side wall of each first crossbeam 1. A guardrail 12 is fixed in the side wall of each column 7, thus forming a closed construction space. This improves the overall stability of the construction platform installation and positioning and the convenience of protective installation. A revolving door can be installed on the side wall of the bottom guardrail 12 near the bottom of the staircase 9 for construction personnel to enter the construction platform, thereby improving construction efficiency.
[0034] The first crossbeam 1 is fixedly connected to two connecting seats 2 to form an integral structure. The bottom end of each connecting seat 2 is fixedly provided with a first plug 13. The middle of each base 3 is provided with a first slot 14 for the first plug 13 to be inserted. The first plug 13 and the connecting seat 2 are fixed by bolts, which improves the convenience of installation and positioning of the base 3. The four connecting seats 2 are symmetrically distributed. The top end of each connecting seat 2 is provided with a second slot 15. The bottom end of each column 7 is fixedly provided with a second plug 17. The second plug 17 is inserted into the middle of the second slot 15 in sequence. The connecting seat 2 and the column 7 are fixed by bolts, which improves the convenience of installation and positioning of the column 7. The top end of each column 7 is provided with a third slot 18 for the first plug 13 to be inserted. The external dimensions of the first plug 13 are adapted to the internal dimensions of the third slot 18. The first plug 13 and the column 7 are fixed by bolts, which improves the convenience of vertical stacking installation of the first crossbeam 1.
[0035] The inner bottom of the first crossbeam 1 is fixed with a first positioning post 19. The surface of the first tread 5 is provided with a first slot 21 for the first positioning post 19 to be inserted, which improves the convenience of the installation and positioning of the first tread 5. The bottom end of the second tread 6 is provided with two sliding grooves 22. The internal dimensions of the sliding grooves 22 are adapted to the external dimensions of the first tread 5, which improves the convenience of the installation and positioning of the second tread 6. Both ends of the stair 9 are fixed with connecting plates 23. The surface of the connecting plates 23 is provided with a second slot 24. The inner bottom of the first crossbeam 1 near the first positioning post 19 is fixed with a second positioning post 20. The second slot 24 is sequentially fitted onto the outer surface of the second positioning post 20, which improves the convenience of the installation and positioning of the stair 9.
[0036] A cantilever bracket 25 is fixed to the bottom of the base 3. The cantilever bracket 25 is triangular and is fixed to the side wall of the pre-embedded steel plate of the concrete beam by bolts. Windproof cables 26 are tied to the outer surfaces of both the cantilever bracket 25 and the base 3. One end of the cable 26 can be tied to the existing frame column. The cable 26 can be made of Φ6 steel wire rope, forming a two-way fixing system of "platform-main structure", which significantly improves the wind load resistance and enhances the stability of the cantilever installation of the device.
[0037] When using this integrated construction platform device, the operator first moves the device to the designated bottom end, then places the two first crossbeams 1 on both sides of the construction area of the column or pier, then puts the base 3 on the bottom end of the first plug 13 and connects it with bolts, then puts the locking blocks 16 at both ends of the second crossbeam 4 on the middle of the buckle 8 and connects them with bolts, so that the first crossbeam 1 and the second crossbeam 4 form a closed rectangle on the outer surface of the construction area, then inserts the column 7 into the top of the connecting seat 2, and connects the connecting seat 2 and the second plug 17 with bolts, then fixes the other two sets of first crossbeams 1 to the top of the column 7 with bolts, thus forming a closed construction space, then fixes the first step 5 in the middle of the two first crossbeams 1, and fixes the second step 6 to the top of the first step 5 for the operator to stand on, then fixes the staircase 9 between the first and second first crossbeams 1 for the construction personnel to go up and down, and then installs them in sequence upwards, with the installation method as above, thereby improving the efficiency of the construction platform installation and positioning.
[0038] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. An integrated construction platform apparatus, characterized by, It includes a first crossbeam (1): both ends of the two sets of first crossbeams (1) are fixed with connecting seats (2), the bottom end of the connecting seats (2) is fixed with a base (3), two second crossbeams (4) are fixed on the side wall of the connecting seats (2), a first connecting rod (10) is fixed in the middle of the side wall of the second crossbeam (4), a column (7) is fixed at the top of the connecting seats (2), two other sets of first crossbeams (1) are fixed at the top of the column (7), two sets of first steps (5) are fixed in the middle of the first crossbeams (1), two sets of second steps (6) are fixed at the top of the first steps (5), a staircase (9) is fixed in the middle of the first crossbeams (1) near the second steps (6), a second connecting rod (11) is fixed in the middle of the side wall of the first crossbeams (1), and a guardrail (12) is fixed on the side wall of the column (7).
2. An integrated construction platform assembly according to claim 1, wherein: The first crossbeam (1) is fixedly connected to the two connecting seats (2) to form an integral structure. The bottom end of each connecting seat (2) is fixedly provided with a first plug (13), and the middle of each base (3) is provided with a first slot (14) for the first plug (13) to be inserted.
3. An integrated construction platform assembly according to claim 1, wherein: The four connectors (2) are symmetrically distributed. The top of each connector (2) is provided with a second slot (15). The bottom of each column (7) is fixed with a second plug (17). The second plug (17) is inserted into the middle of the second slot (15) in sequence.
4. The integrated construction platform assembly of claim 1, wherein: The top of each column (7) is provided with a third slot (18) for the first plug (13) to be inserted. The external dimensions of the first plug (13) are adapted to the internal dimensions of the third slot (18).
5. The integrated construction platform assembly of claim 1, wherein: Both ends of the connecting seat (2) near the second crossbeam (4) are fixed with buckles (8), and both ends of the second crossbeam (4) are fixed with blocks (16), which are respectively engaged in the middle of the buckles (8).
6. An integrated construction platform assembly according to claim 1, wherein: The bottom of the first crossbeam (1) is fixed with a first positioning post (19), and the surface of the first pedal (5) is provided with a first slot (21) for the first positioning post (19) to be inserted.
7. An integrated construction platform assembly according to claim 6, wherein: The bottom of the second pedal (6) has two grooves (22), and the internal dimensions of the grooves (22) are adapted to the external dimensions of the first pedal (5).
8. The integrated construction platform assembly of claim 1, wherein: Both ends of the staircase (9) are fixed with connecting plates (23), and the surfaces of the connecting plates (23) are provided with second slots (24). The bottom of the first crossbeam (1) near the first positioning post (19) is fixed with second positioning posts (20), and the second slots (24) are sequentially fitted onto the outer surfaces of the second positioning posts (20).
9. An integrated construction platform assembly according to claim 1, wherein: The bottom end of the base (3) is fixed with a cantilever bracket (25), which is fixed on the side wall of the concrete beam. Both the cantilever bracket (25) and the outer surface of the base (3) are tied with windproof cables (26).