Construction operation platform and installation method thereof

By using a modularly designed construction platform and combining supporting and connecting components, the problem of non-standardized platform production in existing technologies has been solved. This enables flexible configuration and rapid assembly of the platform, improving construction efficiency and safety, and creating significant economic benefits.

CN121611049APending Publication Date: 2026-03-06SHANGHAI ROAD & BRIDGE (GRP) CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202512046831.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-31
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

The non-standardized production of existing construction operation platforms leads to difficulties in unifying manufacturing standards, low production efficiency, and difficulty in quality control, and also poses safety hazards.

Method used

The modular construction platform can be flexibly configured and quickly assembled according to different construction conditions through the combination of support components and connectors. The support components are assembled into a support structure through connectors, which reduces material waste and welding safety hazards, and enhances the stability and safety of the platform.

Benefits of technology

The platform enables flexible configuration and rapid assembly, improves material utilization and construction efficiency, eliminates welding safety hazards, and ensures the safety and economic benefits of high-altitude operations.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN121611049A_ABST
    Figure CN121611049A_ABST
Patent Text Reader

Abstract

The invention discloses a construction operation platform and an installation method thereof.The construction operation platform comprises a table top body and a supporting structure, the supporting structure is connected with the table top body, the supporting structure is used for bearing the table top body and comprises a plurality of supporting pieces and connecting pieces, the supporting pieces are connected with the table top body, and the connecting pieces are connected with the table top body. The multiple supporting pieces are detachably arranged in the connecting piece in a penetrating mode, and the connecting piece is used for assembling and connecting the supporting pieces. Through cooperation of the supporting pieces and the connecting pieces, the platform can be flexibly configured and assembled according to different construction conditions, the supporting pieces are assembled and built into a supporting structure through the connecting pieces, compared with a traditional welding type construction platform, the fabricated building scheme is adopted, material loss and secondary machining are reduced, and the construction efficiency is improved. And the construction safety is improved, meanwhile, remarkable economic benefits are achieved, and collaborative optimization of safety and economy is achieved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of building construction, and in particular to a construction operation platform and its installation method. Background Technology

[0002] In the construction of prefabricated bridges, the cast-in-place construction of the crossbeams between precast beams is a crucial step in ensuring the structural integrity. During this stage, a safe and reliable suspended platform must be installed to provide necessary working space for construction workers and bear various construction loads. However, the platforms commonly used in the industry are mostly rigidly connected fixed structures, which have significant design limitations: the overall dimensions of the platform, especially in the width direction, cannot be flexibly adjusted according to the varying beam spacing in actual projects. This model necessitates additional design and manufacturing resources for custom-designed platforms for each new construction scenario. This non-standardized production method not only increases project costs and timelines but also fundamentally leads to difficulties in unifying manufacturing standards and weak quality control. The direct consequence is that platforms from different projects, and even different sections of the same project, exhibit significant differences in structural integrity, connection reliability, and load-bearing safety, ultimately creating potential quality hazards on the construction site and leaving the overall safety risks of high-altitude operations uncontrollable. Summary of the Invention

[0003] The technical problem to be solved by the present invention is to overcome the defects of non-standardized production of construction operation platforms in the prior art, such as difficulty in unifying manufacturing standards, low production efficiency and difficulty in quality control, and to provide a construction operation platform and its installation method.

[0004] The present invention solves the above-mentioned technical problems through the following technical solution:

[0005] A construction work platform includes a platform body and a support structure. The support structure is connected to the platform body and is used to support the platform body. The support structure includes support members and connectors. There are multiple support members, and the multiple support members are detachably inserted into the connectors. The connectors are used to assemble and connect the support members.

[0006] In this solution, the platform can be flexibly configured and assembled according to different construction conditions through the cooperation of support components and connectors. The support components are assembled into a support structure via connectors. Compared to traditional welded construction platforms, the advantage of this solution lies in its modular design. Through the flexible cooperation of standardized support components and connectors, the platform can be freely configured and quickly assembled according to different construction conditions. This prefabricated construction method not only reduces material waste and secondary processing but also fundamentally eliminates the safety hazards associated with welding. Furthermore, the platform is reusable, greatly improving material utilization and construction efficiency. Ultimately, while ensuring the safety of high-altitude operations, it creates significant economic benefits, successfully achieving a synergistic optimization and unity of safety and economy.

[0007] Preferably, the connector includes a mounting through hole that extends through the connector, and the outer diameter of the support corresponds to the inner diameter of the mounting through hole.

[0008] Preferably, the support member includes a first support member and a second support member that intersect each other on a plane; the mounting through hole includes a first mounting through hole and a second mounting through hole, the first mounting through hole corresponding to the first support member, the second mounting through hole corresponding to the second support member, and the first mounting through hole and the second mounting through hole are arranged vertically on the connector.

[0009] In this scheme, by intersecting the first and second support members and correspondingly setting the first and second mounting through holes that match the first and second support members, a grid structure with multiple nodes is formed. The load can be evenly transferred and distributed through this grid, avoiding stress concentration and significantly enhancing the overall rigidity and load-bearing capacity of the platform. The intersecting support structure forms a truss-like stable system, which can effectively resist horizontal forces or lateral swaying that may occur during construction, ensuring the stability and safety of the platform during high-altitude operations.

[0010] Preferably, the connector is a square tube extending in a vertical direction, and the tabletop body is fixed to the top end of the square tube.

[0011] In this design, the connectors are vertically extending square tubes that simultaneously fix and connect the first and second supports, as well as the platform body. All connections are concentrated in the core area of ​​the nodes. This design ensures that the nodes can effectively transmit forces and moments from all directions, significantly improving the overall stiffness and stability of the platform structure and effectively resisting swaying and deformation during use. Furthermore, the square tube, as the core force transmission hub, ensures a very short, direct, and clear force transmission path, avoiding localized stress concentration caused by chaotic force transmission paths, thereby improving the structure's load-bearing capacity and safety. Moreover, the concentration of all connection functions on this standard core component, the square tube, greatly facilitates design, production, inventory management, and on-site assembly, and avoids unnecessary spatial interference between supports, making the platform structure simpler and lighter.

[0012] Preferably, the support structure further includes a support leg assembly, with the ends of the support member corresponding to the two ends of the structure to be assembled connected to the support leg assembly.

[0013] Preferably, the support leg assembly includes a support leg and a fixing member, the connection length between the support leg and the support member is telescopically adjustable, and the fixing member passes through the connection portion between the support leg and the support member to fix the support leg and the support member.

[0014] In this solution, by setting the connection length between the support legs and the support components to be telescopically adjustable, the length of the construction platform in the direction of the support leg connection can be adjusted according to the needs of construction operations, thereby widely adapting to the structural assembly requirements of different spans. In this way, there is no need to adjust or customize the length of the support components, which not only greatly improves the versatility and production efficiency of modular components, but also effectively avoids the additional cost expenditure and quality control problems brought about by customization.

[0015] Preferably, the end of the support leg that is not connected to the support member abuts against the structure to be assembled, so as to assist in the positioning of the construction platform.

[0016] In this solution, the support legs abut against the structure to be assembled, assisting in the positioning of the construction platform and providing a stable and reliable positioning benchmark. This not only enables rapid and accurate positioning of the platform, significantly improving hoisting efficiency, but also provides additional lateral support throughout the construction process, effectively enhancing the overall stability of the platform and thus significantly ensuring operational safety.

[0017] Preferably, the construction platform further includes a retaining structure, which is located on the periphery of the construction platform where it does not come into contact with the construction work object.

[0018] Preferably, the enclosure structure is connected to the support member.

[0019] In this solution, by setting up a protective structure around the construction platform that does not come into contact with the construction work object, it is possible to effectively prevent personnel, small tools or materials from accidentally falling from the edge of the platform, thereby improving the safety of the construction work process.

[0020] Preferably, the connector further includes a limiting member, which is used to limit the position of the support member passing through the connector, and the limiting member is disposed on the connector.

[0021] In this solution, by setting a limiting component on the connector to limit the relative position of the support and the connector, the connection between the support and the connector is made more stable and secure. During high-altitude operations, the accidental detachment or displacement of the support may lead to serious accidents. The limiting component, as an additional physical safety measure, greatly improves the safety redundancy of the system and prevents catastrophic failures.

[0022] A method for installing a construction work platform, the method being used to assemble the construction work platform as described above, the method comprising:

[0023] S1: Insert a plurality of first support members into the first mounting through holes of the connector and adjust them to a predetermined position; insert a plurality of second support members into the second mounting through holes of the connector and adjust them to a predetermined position.

[0024] S2: The limiting member is snapped onto the first support member and contacts both ends of the first mounting through hole; the limiting member is snapped onto the second support member and contacts both ends of the second mounting through hole.

[0025] S3: Insert the first connecting end of the support leg into both ends of the first support member located on both sides of the support structure, and make the first positioning hole and the second positioning hole overlap vertically, and insert the fixing member into the first positioning hole and the second positioning hole;

[0026] S4: Weld the second connecting end to the second support member so that the second connecting end is perpendicular to the second support member, and the connection port of the second connecting end corresponding to the enclosure structure is set upward. Insert the bottom end of the enclosure structure into the connection port of the second connecting end.

[0027] S5: Place the tabletop body on the support structure and connect it to the connector on the bottom surface.

[0028] Based on common knowledge in the field, the above-mentioned preferred conditions can be combined arbitrarily to obtain various preferred embodiments of the present invention.

[0029] The positive and progressive effects of this invention are as follows:

[0030] The platform's modular design, achieved through the coordinated use of support components and connectors, allows for flexible configuration and assembly to suit various construction conditions. The support components, assembled with connectors, form a support structure. Compared to traditional welded construction platforms, this solution's advantage lies in its modular design. The standardized support components and connectors allow for flexible configuration and rapid assembly to suit different construction requirements. This prefabricated construction method not only reduces material waste and secondary processing but also fundamentally eliminates the safety hazards associated with welding. Furthermore, the platform is reusable, significantly improving material utilization and construction efficiency. Ultimately, while ensuring safety during high-altitude operations, it also generates substantial economic benefits, successfully achieving a synergistic optimization and unification of safety and economy. Attached Figure Description

[0031] Figure 1 This is a schematic diagram of the construction operation platform according to a preferred embodiment of the present invention.

[0032] Figure 2 This is a schematic diagram of the support structure according to a preferred embodiment of the present invention.

[0033] Figure 3 This is a schematic diagram of the support leg assembly according to a preferred embodiment of the present invention.

[0034] Figure 4 This is a partial structural schematic diagram of the first support member according to a preferred embodiment of the present invention.

[0035] Figure 5 This is a schematic diagram (a) of the connecting member and the limiting member according to a preferred embodiment of the present invention.

[0036] Figure 6 This is a schematic diagram (II) of the structure of the connector and limiting member according to a preferred embodiment of the present invention.

[0037] Figure 7 This is a schematic diagram (a) illustrating the application of a construction operation platform according to a preferred embodiment of the present invention.

[0038] Figure 8 This is a schematic diagram (II) illustrating the application of a construction operation platform according to a preferred embodiment of the present invention.

[0039] Explanation of reference numerals in the attached figures

[0040] Construction work platform 001

[0041] Support structure 1

[0042] Support component 11

[0043] First support component 111

[0044] Second support component 112

[0045] Second connection terminal 113

[0046] Connector 12

[0047] Mounting through hole 121

[0048] First mounting through hole 122

[0049] Second mounting through hole 123

[0050] Limiting component 124

[0051] Support Leg Assembly 13

[0052] 131 feet support

[0053] Free end 1311

[0054] First connection end 1312

[0055] Fastener 132

[0056] First positioning hole 133

[0057] Second positioning hole 134

[0058] Countertop Body 2

[0059] Envelope 3

[0060] Structure to be assembled 002 Detailed Implementation

[0061] The present invention is further illustrated below by way of embodiments, but the invention is not limited to the scope of the embodiments described herein. Experimental methods in the following embodiments that do not specify specific conditions were performed according to conventional methods and conditions, or as selected according to the product instructions.

[0062] like Figures 1-8 As shown, this embodiment provides a construction operation platform 001, which includes a platform body 2 and a support structure 1. The support structure 1 is connected to the platform body 2 and is used to support the platform body 2. The support structure 1 includes support members 11 and connectors 12. There are multiple support members 11, and the multiple support members 11 are detachably inserted into the connectors 12. The connectors 12 are used to assemble and connect the support members 11.

[0063] In this embodiment, the platform can be flexibly configured and assembled according to different construction conditions through the cooperation of the support component 11 and the connector 12. The support component 11 is assembled into the support structure 1 through the connector 12. Compared with the traditional welded construction platform, the advantage of this solution lies in its modular design. That is, through the flexible cooperation of the standardized support component 11 and the connector 12, the platform can be freely configured and quickly assembled according to different construction conditions. This prefabricated construction solution not only reduces material waste and secondary processing, but also fundamentally eliminates the safety hazards caused by welding. Moreover, the platform can be reused, which greatly improves material utilization and construction efficiency. Ultimately, while ensuring the safety of high-altitude operations, it creates significant economic benefits, successfully achieving the synergistic optimization and unity of safety and economy.

[0064] like Figures 1-6 As shown, the connector 12 includes a mounting through hole 121, which penetrates the connector 12. The outer diameter of the support member 11 corresponds to the inner diameter of the mounting through hole 121. Specifically, the support member 11 includes a first support member 111 and a second support member 112 that intersect each other on a plane. In this embodiment, there is at least one first support member 111 and one second support member 112. The first support member 111 and the second support member 112 are perpendicular to each other on a plane. The mounting through hole 121 includes a first mounting through hole 122 and a second mounting through hole 123. The first mounting through hole 122 corresponds to the first support member 111, and the second mounting through hole 123 corresponds to the second support member 112. The first mounting through hole 122 and the second mounting through hole 123 are arranged vertically on the connector 12. The first support member 111 and the second support member 112 are metal tubes with the same radial cross-sectional dimensions. The first mounting through hole 122 and the second mounting through hole 123 have the same dimensions and are perpendicular to each other. Furthermore, the connector 12 is a square tube extending in the vertical direction, and the tabletop body 2 is fixed to the top of the square tube. After all the support parts 11 and connector 12 are assembled, the tabletop body 2 is placed on the top of the connector 12 and fixed to the top of the connector 12 by steel wire binding.

[0065] In other embodiments, the connector 12 may also be a round tube or other types of pipe fittings. The platform body 2 may also be connected to the top of the connector 12 by means of threaded connection or snap-fit ​​connection, which is convenient for disassembly and assembly and ensures the stability of the platform after assembly. This will not be elaborated further here.

[0066] In addition, such as Figures 5-6As shown, the connector 12 also includes a limiting member 124, which limits the position of the support member 11 passing through the connector 12. The limiting member 124 is disposed on the connector 12, and its outer diameter is larger than the diameter of the mounting through hole 121. Specifically, in this embodiment, the limiting member 124 is a retaining ring, and two retaining rings are fitted to each mounting through hole 121. After the support member 11 passes through the mounting through hole 121 and reaches the predetermined position, the two retaining rings are respectively locked onto the support member 11 at both ends of the mounting through hole 121 to complete the fixing of the support member 11. By setting the limiting member 124 on the connector 12 to limit the relative position of the support member 11 and the connector 12, the combination of the two can be made more stable and firm. In high-altitude operation scenarios, the accidental detachment or displacement of the support member 11 can easily cause serious accidents, and the limiting member 124, as an additional physical guarantee, effectively prevents the occurrence of catastrophic failures.

[0067] like Figures 1-4As shown, in this embodiment, the support structure 1 further includes a support leg 131 assembly 13. The two ends of the support member 11 corresponding to the structure to be assembled 002 are connected to the support leg 131 assembly 13. The support leg 131 assembly 13 includes support legs 131 and fixing members 132. There are four support legs 131. The connection length between the support legs 131 and the support member 11 is adjustable. The fixing members 132 pass through the connection part between the support legs 131 and the support member 11 to fix the support legs 131 and the support member 11. Specifically, the two ends of the first support member 111 located on both sides of the construction platform 001 are extended to ensure redundancy for connection with the support legs 131. The two ends of the aforementioned first support member 111 are also provided with a plurality of first positioning holes 133. The first positioning holes 133 penetrate the first support member 111. The support leg 131 includes a first connecting end 1312. The outer diameter of the first connecting end 1312 is the same as that of the first support member 111. The inner diameter of 1 is matched. The first connecting end 1312 is provided with a plurality of second positioning holes 134. The second positioning holes 134 penetrate the first connecting end 1312. The size of the first positioning hole 133 and the second positioning hole 134 are the same. When the first connecting end 1312 is inserted into the first support member 111, the first positioning hole 133 and the second positioning hole 134 overlap. In this embodiment, the total length of the construction operation platform 001 along the extension direction of the first support member 111 can be adjusted by adjusting the length of the first connecting end 1312 inserted into the first support member 111 to adapt to the structural assembly requirements of different spans. Thus, there is no need to adjust or customize the length of the support member 11. The multiple first positioning holes 133 and the multiple second positioning holes 134 can meet the fixed requirements of different connection lengths during the length adjustment process. During the adjustment of the connection length, there are always at least two first positioning holes 133 and two positioning holes 134 that can overlap. In addition, the support leg 131 assembly 13 also includes a fastener 132, which passes through the connection between the support leg 131 and the support member 11 to fix the support leg 131 and the support member 11. Specifically, the fastener 132 is a ring buckle. The dimensions of the first positioning hole 133 and the second positioning hole 134 are the same and are matched with the dimensions of the insertion part of the fastener 132. After the ring buckle overlaps with the first positioning hole 133 and the second positioning hole 134, it passes through the first positioning hole 133 and the second positioning hole 134 and closes. The number of ring buckles provided on each first connecting end 1312 is 2, and the total number of ring buckles is 8 to ensure the strength and firmness of the limit.

[0068] like Figures 1-8As shown, the end of the support leg 131 that is not connected to the support member 11 abuts against the structure to be assembled 002 to assist in the positioning of the construction platform 001. Specifically, in this embodiment, the end of the support leg 131 that is not connected to the support member 11 is the free end 1311. The end of the free end 1311 is a square plate. The plane of the square plate faces the bottom of the structure to be assembled 002 and fits against the bottom of the structure to be assembled 002 after hoisting to stabilize the construction platform 001.

[0069] In other embodiments, the free end 1311 of the support leg 131 can also contact the structure 002 to be assembled in the form of disk adsorption, and maintain a stable connection with the structure 002 to be assembled in a detachable manner, which will not be described in detail here.

[0070] like Figures 1-8 As shown, in this embodiment, the construction platform 001 further includes a retaining structure 3. The retaining structure 3 is located on the periphery of the construction platform 001 where it does not contact the construction work object. The retaining structure 3 is connected to the support member 11. Specifically, the retaining structure 3 is connected to the second support member 112. Specifically, a second connecting end 113 is provided at both ends of each second support member 112. The second connecting end 113 is a metal pipe extending vertically. The second connecting end 113 is welded to the second support member 112. This welding process ensures a high-strength, integrated connection node between the retaining structure 3 and the second support member 112, effectively improving the overall stability and safety performance of the retaining structure 3 and meeting the stringent requirements of structural design for connection strength. The end of the second connecting end 113 that is not welded to the second support member 112 is inserted into the retaining structure. The connecting end of the retaining structure 3 corresponds to the second connecting end 113.

[0071] In other embodiments, while ensuring the connection strength of the enclosure structure 3, the connection method between the second connection end 113 and the second support member 112 can be a threaded connection or a snap-fit ​​connection, etc., which will not be described in detail here.

[0072] This embodiment also provides an installation method for a construction work platform 001. The installation method for the construction work platform 001 is used to assemble the construction work platform 001 as described above. The installation method includes:

[0073] S1: Insert a plurality of first support members 111 through the first mounting through holes 122 of the connector 12 and adjust them to a predetermined position; insert a plurality of second support members 112 through the second mounting through holes 123 of the connector 12 and adjust them to a predetermined position.

[0074] S2: The limiting member 124 is snapped onto the first support member 111 and contacts both ends of the first mounting through hole 122; the limiting member 124 is snapped onto the second support member 112 and contacts both ends of the second mounting through hole 123.

[0075] S3: Insert the first connecting end 1312 of the support leg 131 into both ends of the first support member 111 located on both sides of the support structure 1, and make the first positioning hole 133 and the second positioning hole 134 overlap vertically, and insert the fixing member 132 into the first positioning hole 133 and the second positioning hole 134.

[0076] S4: Weld the second connecting end 113 to the second support member 112 so that the second connecting end 113 is perpendicular to the second support member 112, and the connection port of the second connecting end 113 corresponding to the enclosure structure 3 is set upward. Insert the bottom end of the enclosure structure 3 into the connection port of the second connecting end 113.

[0077] S5: Place the tabletop body 2 on the support structure 1 and connect it to the connector 12 on the bottom surface.

[0078] While specific embodiments of the present invention have been described above, those skilled in the art should understand that these are merely illustrative examples, and the scope of protection of the present invention is defined by the appended claims. Those skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of the present invention, but all such changes and modifications fall within the scope of protection of the present invention.

Claims

1. A work platform comprising a deck body and a support structure connected to the deck body, the support structure for carrying the deck body, characterised in that, The support structure comprises supports and connecting members, the supports are detachably arranged in the connecting members, and the connecting members are used for assembling and connecting the supports.

2. The application platform of claim 1, wherein, The connecting member comprises mounting through holes, the mounting through holes are arranged through the connecting member, and the outer diameter of the support corresponds to the inner diameter of the mounting through hole.

3. The application platform of claim 2, wherein, The support comprises first and second supports which are arranged in a plane and cross each other, the mounting through hole comprises first and second mounting through holes, the first mounting through hole corresponds to the first support, the second mounting through hole corresponds to the second support, and the first and second mounting through holes are arranged on the connecting member in a vertical direction.

4. The service platform of claim 2, wherein, The connecting member is a square tube extending in a vertical direction, and the table body is fixed to the top end of the square tube.

5. The service platform of claim 1, wherein, The support structure further comprises a support leg assembly, and two ends of the support leg assembly correspond to the two ends of the support of the structure to be assembled.

6. The application platform of claim 5, wherein, The support leg assembly comprises a support leg and a fixing member, the length of the support leg connected with the support can be adjusted, and the fixing member is arranged in the connecting part of the support leg and the support to fix the support leg and the support.

7. The service platform of claim 5, wherein, The end of the support leg not connected with the support abuts against the structure to be assembled to assist the positioning of the construction operation platform.

8. The service platform of claim 1, wherein, The construction operation platform further comprises a surrounding structure arranged on the side of the construction operation platform not in contact with the construction operation object. Preferably, the surrounding structure is connected with the support.

9. The service platform of claim 1, wherein, The connecting member further comprises a limiting member used for limiting the position of the support arranged in the connecting member, and the limiting member is arranged on the connecting member.

10. A method of installing a work platform, characterised by, The installation method of the construction operation platform is used for assembling the construction operation platform according to any one of claims 1-9, and the installation method comprises the following steps: S1: arranging a plurality of first supports in the first mounting through holes of the connecting member and adjusting the first supports to predetermined positions, and arranging a plurality of second supports in the second mounting through holes of the connecting member and adjusting the second supports to predetermined positions; S2: clamping the limiting member on the first supports and making the limiting member contact two ends of the first mounting through hole, and clamping the limiting member on the second supports and making the limiting member contact two ends of the second mounting through hole; S3: inserting the first connecting end of the support leg into the two ends of the first supports arranged on both sides of the support structure, and making the first and second positioning holes overlap each other in a vertical direction, and inserting the fixing member into the first and second positioning holes; S4: welding the second connecting end with the second support, making the second connecting end perpendicular to the second support, and making the connecting port of the second connecting end corresponding to the surrounding structure arranged upward, and inserting the bottom end of the surrounding structure into the connecting port of the second connecting end; S5: placing the table body on the support structure and connecting the table body with the connecting member on the bottom surface.