Green building intelligent construction platform

By designing the matching structure of the first intercepting assembly and the second intercepting assembly on the green building intelligent construction platform, the baffle flip and support plate fit into the wall are achieved by using bevel gear meshing and hydraulic rod drive, the safety threat of items falling during construction is solved, and construction safety and device stability are improved.

CN120465671APending Publication Date: 2025-08-12TAIZHOU VOCATIONAL & TECHN COLLEGE

Patent Information

Application Number
CN202510587879.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-08
Publication Date
2025-08-12

AI Technical Summary

Technical Problem

The existing green building intelligent construction platform lacks active protection during the construction of small buildings, resulting in the possible drop of tools and materials, posing a safety threat.

Method used

The first interceptor assembly and the second interceptor assembly are adopted to achieve flip and inclined barriers through bevel gear meshing and hydraulic rod driving, and the support plate is combined with the wall to fit the gaps, and enhance stability and protective effects.

Benefits of technology

Effectively prevent items from falling from high altitude, reduce damage to people and objects below, improve construction safety, and enhance the stability and practicality of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of building construction, and discloses a green building intelligent construction platform which comprises a construction platform body and further comprises first intercepting assemblies symmetrically arranged on the two sides of the construction platform body; the second intercepting assembly is movably connected to one side of the construction platform; through cooperation of structures such as a first intercepting assembly and a second intercepting assembly, objects are prevented from falling off from the high altitude, when a U-shaped plate moves, the objects can slide along the track of an arc groove, so that a first rotating shaft drives a first baffle to overturn in the direction away from the construction platform, and through meshing connection of a second bevel gear and a first bevel gear, the objects can be intercepted from the high altitude. Therefore, the two first baffles and the second rotating shaft form an inclined blocking face on the periphery of the device, and therefore the situation that articles directly fall to the ground from the high altitude, and people and objects below are injured can be effectively avoided.
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Description

Technical Field

[0001] The present invention belongs to the technical field of building construction, and in particular relates to a green building intelligent construction platform. Background Art

[0002] The green building intelligent construction platform integrates green building technology with intelligent technologies such as the Internet of Things, big data, and BIM. It can achieve energy saving, material saving, and environmental protection throughout the entire construction cycle. At the same time, it can intelligently monitor and optimize the construction progress, quality, safety, and cost, ultimately realizing a comprehensive platform for efficient and high-quality construction of green buildings.

[0003] For example, the invention with publication number CN119122238A belongs to the technical field of construction platforms, specifically a green building intelligent construction platform, comprising a mobile seat and a work platform, the work platform and the mobile seat are connected by a scissor-type telescopic frame, guardrails are fixed to the edges of the four sides of the top surface of the work platform, an installation cavity connected to the outside is opened inside the work platform, and an adsorption component is arranged in the installation cavity; the adsorption component comprises a suction cup and a first air pump, the suction cup is arranged inside the installation cavity, the suction cup is connected to the inner wall of the installation cavity through an electric push rod, the first air pump is fixed on the inner wall of the installation cavity, and the suction end of the first air pump is fixedly connected to the suction cup through a hose; the present invention inflates the inside of the airbag, so that the airbag can more flexibly adapt to the irregular shape of the tile surface, and the extrusion force of the contact surface with the wall is more uniform, and the inflated airbag can better fill the unevenness of the tile pattern surface, thereby achieving more comprehensive contact and sealing, and improving the contact effect;

[0004] Although the above-mentioned device can better fit the wall surface by setting up airbags when in use, the device still has obvious shortcomings in actual use. Because in the process of small-scale building construction, tools, materials and other items on the construction platform may fall due to various reasons, thereby posing a serious safety threat to the people below. The above-mentioned device only relies on the passive interception method of fixed guardrails, but lacks effective active protection measures for the construction platform itself, and cannot prevent items from falling from the source. Therefore, a green building intelligent construction platform is proposed to solve the problems raised in the background technology. Summary of the Invention

[0005] In order to solve the problems raised in the above background technology, the present invention provides a green building intelligent construction platform.

[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a green building intelligent construction platform, comprising a construction platform, and further comprising:

[0007] a first interception assembly, the first interception assembly being symmetrically arranged on both sides of the construction platform;

[0008] a second interception assembly, the second interception assembly being movably connected to one side of the construction platform and located between the two first interception assemblies;

[0009] A reinforcement structure, wherein the reinforcement structure is provided in a plurality of groups and is respectively located at both ends of one side of the first interception component and the second interception component;

[0010] The first interception assembly includes a first rotating shaft, a first baffle is fixedly connected to the outside of the first rotating shaft, an arc groove is formed on the outer wall of the middle portion of the first rotating shaft, a first bevel gear is fixedly connected to one end of the first rotating shaft close to the second interception assembly, a U-shaped plate is movably connected to the bottom of the inner cavity of the construction platform, and two hydraulic rods are fixedly connected to the interior of the construction platform;

[0011] The second interception assembly includes a second rotating shaft, the exterior of the second rotating shaft is fixedly connected to a second baffle, and both ends of the second rotating shaft are fixedly connected to second bevel gears.

[0012] Preferably, the construction platform is movably connected to an external support plate on one side close to the second rotating shaft, a corrugated rubber gasket is provided on one side of the support plate, and straight grooves are provided at both ends of the other side of the support plate.

[0013] Preferably, a round rod is provided at the top end of the second baffle, and both ends of the round rod are movably engaged in the interior of the two straight grooves;

[0014] The four corners of the support plate close to the straight groove are all provided with protrusions, and the inner wall of the construction platform is provided with limiting grooves matched with the protrusions.

[0015] Preferably, one end of the hydraulic rod is fixedly connected to the U-shaped plate, both ends of the U-shaped plate are fixedly connected to connecting columns, and the connecting columns are movably clamped inside the arc groove.

[0016] Preferably, the arc groove has an arc angle of sixty degrees, and the two arc grooves are in opposite directions. The inner wall of the construction platform is provided with a U-shaped groove for limiting the U-shaped plate in the horizontal direction. When the U-shaped plate moves, the two first rotating shafts are driven to rotate in opposite directions through the two arc grooves.

[0017] Preferably, the first bevel gear is meshed with the second bevel gear, a rubber gasket is provided on one side of the second baffle and the first baffle, and the second baffle and the first baffle are initially stored inside the construction platform.

[0018] Preferably, the reinforcement structure includes connecting rods, and both ends of the second baffle and the first baffle are hinged to a plurality of connecting rods respectively, and the bottom ends of the connecting rods are hinged to square sliders.

[0019] Preferably, the inner wall of the construction platform is provided with a T-shaped groove that matches the square slider, and the connecting rod can drive the square slider to move upward when rotating with the top end as the axis.

[0020] Preferably, a rectangular groove is provided at the top of the second baffle, gaps are left between the upper and lower ends of the second baffle and the first baffle and the inner wall of the construction platform, and an entrance and exit is provided on the side of the construction platform away from the second interception component.

[0021] Preferably, an intelligent monitoring component is provided on the inner wall of the construction platform. The intelligent monitoring component includes a camera, a display screen and a displacement sensor. The intelligent monitoring component is used to monitor the situation of construction workers in the construction platform in real time.

[0022] Compared with the prior art, the present invention has the following beneficial effects:

[0023] The present invention prevents objects from falling from high altitudes through the cooperation between structures such as the first interception component and the second interception component, thereby improving the overall protective effect of the device. When the U-shaped plate moves, it can slide along the trajectory of the arc groove, thereby driving the first rotating shaft to rotate, and then the first rotating shaft drives the first baffle to flip in the direction away from the construction platform. Subsequently, the second bevel gear is engaged with the first bevel gear, so that when the first rotating shaft rotates, it can drive the second rotating shaft to rotate together, and then the two first baffles and the second rotating shaft form an inclined blocking surface around the device, thereby effectively preventing objects from falling directly from high altitudes to the ground and causing harm to people and objects below.

[0024] The present invention can fill the gap between the second baffle and the building wall through the cooperation between the second baffle, the support plate and the straight groove. The cooperation between the round rod at the top of the second baffle and the straight groove can push the support plate to move toward the building wall when the second baffle is flipped. Since the protrusions at the four corners of the support plate are all limited by the limiting grooves, the support plate can only move horizontally and linearly. When the second baffle is also tilted to a predetermined angle, the corrugated surface of the support plate also abuts against the wall, thereby filling the gap between the second baffle and the wall, thereby effectively blocking small particles of dust and debris during the construction process, thereby improving the practicality of the device.

[0025] The present invention improves the overall stability of the device through the coordination between structures such as the connecting rod, the square slider and the T-slot. The second baffle and the first baffle are both hinged with connecting rods at both ends, so that when they are flipped, they can drive the connecting rods to rotate together, and then the connecting rod drives the square slider to move upward in a straight line inside the T-slot. After the connecting rod rotates, a stable structural system similar to a triangle is formed between the connecting rod, the second baffle or the first baffle and the construction platform, thereby enhancing the ability of the overall structure to resist deformation and external force interference, thereby improving the overall stability of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0027] Figure 2 It is a schematic diagram of the side sectional structure of the present invention;

[0028] Figure 3 for Figure 2 Schematic diagram at point A in the middle;

[0029] Figure 4 for Figure 2 Schematic diagram at point B in the middle;

[0030] Figure 5 It is a structural schematic diagram of the first interception component, the second interception component and the reinforcement structure of the present invention;

[0031] Figure 6 It is a partial enlarged view of the structure of the first interception component of the present invention;

[0032] Figure 7 It is a partial enlarged view of the structure of the second interception component of the present invention;

[0033] Figure 8 It is a schematic diagram of the overall structure of the first interception component and the second interception component after being flipped over in the present invention.

[0034] In the figure: 1. Construction platform; 2. First interception assembly; 21. First rotating shaft; 22. First baffle; 23. Arc groove; 24. First bevel gear; 25. U-shaped plate; 26. Hydraulic rod; 27. U-shaped groove; 3. Second interception assembly; 31. Second rotating shaft; 32. Second baffle; 33. Second bevel gear; 34. Support plate; 35. Straight groove; 4. Reinforcement structure; 41. Connecting rod; 42. Square slider; 43. T-shaped groove; 5. Intelligent monitoring assembly. DETAILED DESCRIPTION

[0035] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0036] like Figures 1 to 8 As shown, the present invention provides a green building intelligent construction platform, including a construction platform 1, and also including:

[0037] The first interception assembly 2 is symmetrically arranged on both sides of the construction platform 1;

[0038] A second interception assembly 3, which is movably connected to one side of the construction platform 1 and is located between the two first interception assemblies 2;

[0039] The reinforcement structure 4 is provided with a plurality of groups and is respectively located at both ends of one side of the first interception component 2 and the second interception component 3;

[0040] The first interception assembly 2 includes a first rotating shaft 21, a first baffle 22 is fixedly connected to the outside of the first rotating shaft 21, an arc groove 23 is formed on the outer wall of the middle portion of the first rotating shaft 21, a first bevel gear 24 is fixedly connected to the end of the first rotating shaft 21 close to the second interception assembly 3, a U-shaped plate 25 is movably connected to the bottom of the inner cavity of the construction platform 1, and two hydraulic rods 26 are fixedly connected to the interior of the construction platform 1;

[0041] The second intercepting assembly 3 includes a second rotating shaft 31 . The exterior of the second rotating shaft 31 is fixedly connected to a second baffle 32 . Both ends of the second rotating shaft 31 are fixedly connected to second bevel gears 33 .

[0042] The above-mentioned solution is adopted: when the U-shaped plate 25 moves, it can slide along the trajectory of the arc groove 23, thereby driving the first rotating shaft 21 to rotate, and then the first rotating shaft 21 drives the first baffle 22 to flip in the direction away from the construction platform 1. Subsequently, the second bevel gear 33 is engaged with the first bevel gear 24, so that when the first rotating shaft 21 rotates, it can drive the second rotating shaft 31 to rotate together, and then the two first baffles 22 and the second rotating shaft 31 form an inclined blocking surface around the device, thereby effectively preventing objects from falling directly from a high altitude to the ground and causing damage to people and objects below.

[0043] like Figure 2 、 Figure 3 、 Figure 7 and Figure 8 As shown, the construction platform 1 is movably connected to the outside of the second rotating shaft 31 with a support plate 34, a corrugated rubber gasket is provided on one side of the support plate 34, and straight grooves 35 are provided at both ends of the other side of the support plate 34. A round rod is provided at the top of the second baffle 32, and the two ends of the round rod are movably connected to the inside of the two straight grooves 35 respectively. The four corners of the support plate 34 close to the straight groove 35 are provided with protrusions, and the inner wall of the construction platform 1 is provided with limiting grooves that cooperate with the protrusions.

[0044] The above solution is adopted: through the cooperation between the round rod at the top of the second baffle 32 and the straight groove 35, the second baffle 32 can push the support plate 34 to move toward the building wall when it is flipped. Since the protrusions at the four corners of the support plate 34 are limited by the limiting grooves, the support plate 34 can only move horizontally and linearly. When the second baffle 32 is also tilted to a predetermined angle, the corrugated surface of the support plate 34 also abuts against the wall, thereby filling the gap between the second baffle 32 and the wall, thereby effectively blocking small particles of dust and debris during the construction process, thereby improving the practicality of the device.

[0045] like Figures 4 to 6 As shown, one end of the hydraulic rod 26 is fixedly connected to the U-shaped plate 25, and both ends of the U-shaped plate 25 are fixedly connected with connecting columns, which are movably clamped in the inside of the arc groove 23. The curvature of the arc groove 23 is sixty degrees, and the two arc grooves 23 are in opposite directions. The inner wall of the construction platform 1 is provided with a U-shaped groove 27 for limiting the U-shaped plate 25 in the horizontal direction. When the U-shaped plate 25 moves, it drives the two first rotating shafts 21 to rotate in opposite directions through the two arc grooves 23. The first bevel gear 24 is meshed with the second bevel gear 33. Rubber gaskets are provided on one side of the second baffle 32 and the first baffle 22. The second baffle 32 and the first baffle 22 are initially stored in the interior of the construction platform 1.

[0046] The above solution is adopted: rubber gaskets are provided on one side of the second baffle 32 and the first baffle 22. Their function is that, since the rubber material has good elasticity, when a falling object hits the second baffle 32 or the first baffle 22, the rubber gasket can absorb the impact energy through its own deformation, thereby reducing the collision force between the falling object and the two, thereby reducing the risk of damage to the items, and at the same time reducing the impact force on the second baffle 32 or the first baffle 22, thereby protecting the blocking structure and extending the overall service life of the device.

[0047] like Figure 3 、 Figure 7 and Figure 8 As shown, the reinforcement structure 4 includes a connecting rod 41, and the two ends of the second baffle 32 and the first baffle 22 are hinged to a number of connecting rods 41 respectively. The bottom end of the connecting rod 41 is hinged with a square slider 42, and the inner wall of the construction platform 1 is provided with a T-shaped slot 43 that matches the square slider 42. When the connecting rod 41 rotates with the top end as the axis, it can drive the square slider 42 to move upward.

[0048] The above scheme is adopted: through the cooperation between the T-slot 43 and the square slider 42, its function is that the T-slot 43 is used to limit the square slider 42 in the vertical direction. Therefore, when the angle of the square slider 42 changes, since the square slider 42 is circumferentially limited by the T-slot 43, the connecting rod 41 can only drive the square slider 42 to move upward in a straight line when it rotates, and then the bottom end of the connecting rod 41 is driven to move upward through the square slider 42, thereby compensating for the length difference between the second baffle 32 or the first baffle 22 and the square slider 42 after rotation, thereby ensuring the stability of the device operation.

[0049] like Figure 1 and Figure 7 As shown, a rectangular groove is provided at the top of the second baffle 32, and gaps are left between the upper and lower ends of the second baffle 32 and the first baffle 22 and the inner wall of the construction platform 1. An entrance and exit are provided on the side of the construction platform 1 away from the second interception component 3, and an intelligent monitoring component 5 is provided on the inner wall of the construction platform 1. The intelligent monitoring component 5 includes a camera, a display screen and a displacement sensor. The intelligent monitoring component 5 is used to monitor the real-time situation of the construction personnel in the construction platform 1.

[0050] The above solution is adopted: through the design of the intelligent monitoring component 5, its function is to use the cameras, sensors and other equipment in the intelligent monitoring component 5 to collect construction site images in real time, and transmit them to the central server quickly and stably with the help of the transmission network. After analysis and processing by intelligent algorithms, safety hazards are discovered in time, such as workers not wearing safety protective equipment, abnormal operation of equipment, etc., and early warnings are issued to prevent safety accidents. The above contents are all existing mature technologies and will not be described in detail.

[0051] The working principle and use process of the present invention are as follows: first, the operator issues an operation instruction to the hydraulic rod 26 through the remote control system, thereby causing the hydraulic rod 26 to drive the U-shaped plate 25 to move linearly toward the direction of the second interception assembly 3. Since the connecting columns at both ends of the U-shaped plate 25 are movably engaged with the inside of the two arc grooves 23, and the two arc grooves 23 are in opposite directions, when the U-shaped plate 25 moves, the connecting columns will follow the trajectory of the arc grooves 23, driving the two first rotating shafts 21 to rotate in opposite directions. When the first rotating shaft 21 rotates, it will drive the first baffle 22 fixedly connected to its outside to synchronously flip toward the outside of the construction platform 1, so that after the first baffle 22 flips, it is inclined to the outer wall of the construction platform 1;

[0052] When the first rotating shaft 21 rotates, the first bevel gear 24 is meshed with the second bevel gear 33, thereby driving the second rotating shaft 31 to rotate toward the outside of the construction platform 1, and then the second rotating shaft 31 drives the second baffle 32 to flip together. When the second baffle 32 and the first baffle 22 are both tilted, an inclined blocking surface is formed around the outer wall of the construction platform 1, thereby effectively preventing objects from falling directly from a high altitude to the ground and causing damage to people and objects below, thereby improving the overall protection capability of the device;

[0053] When the second baffle 32 is turned over, the round rod at its top is movably engaged with the inside of the straight groove 35, so that it slides downward inside the straight groove 35, and at the same time, it pushes the support plate 34 toward the building wall through the straight groove 35. Since the protrusions at the four corners of the support plate 34 are horizontally limited by the limiting grooves on the inner wall of the construction platform 1, the second baffle 32 can only push the support plate 34 to move horizontally and linearly toward the building wall when it is tilted, thereby causing the corrugated surface on one side of the support plate 34 to abut against the building wall, thereby filling the gap between the second baffle 32 and the building wall, thereby effectively blocking small particles of dust and debris during the construction process, thereby preventing particles and debris from leaking through the gap, thereby avoiding dust intrusion on people below, and reducing the risk of falling objects from high altitude;

[0054] When the first baffle 22 and the second baffle 32 are flipped, they will also drive the connecting rod 41 hinged at both ends to move together, thereby causing the connecting rod 41 to tilt. When the angle of the connecting rod 41 changes, it will be hinged with the square slider 42, so that the square slider 42 is limited in the vertical direction of the T-shaped slot 43, and the bottom end of the connecting rod 41 is driven to slide upward through the square slider 42, thereby compensating for the length difference between the connecting rod 41 and the construction platform 1 after the tilting. Subsequently, a stable triangular structure is formed between the tilted connecting rod 41 and the second baffle 32, the first baffle 22 and the outer wall of the construction platform 1, thereby improving the stability of the second baffle 32 and the first baffle 22 after flipping, thereby enhancing the ability of the overall structure to resist deformation and external force interference, thereby causing objects to fall onto the second baffle 32 or the first baffle 22, both of which can provide more stable support for the objects.

[0055] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0056] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A green building intelligent construction platform, comprising a construction platform (1), characterized in that: Also included are: A first interception assembly (2), the first interception assembly (2) being symmetrically arranged on both sides of the construction platform (1); A second interception assembly (3), the second interception assembly (3) is movably connected to one side of the construction platform (1), and the second interception assembly (3) is located between the two first interception assemblies (2); A reinforcement structure (4), wherein the reinforcement structure (4) is provided with a plurality of groups and is respectively located at two ends of one side of the first interception component (2) and the second interception component (3); The first interception assembly (2) includes a first rotating shaft (21), the outside of the first rotating shaft (21) is fixedly connected to a first baffle (22), an arc groove (23) is provided on the outer wall of the middle portion of the first rotating shaft (21), an end of the first rotating shaft (21) close to the second interception assembly (3) is fixedly connected to a first bevel gear (24), the bottom of the inner cavity of the construction platform (1) is movably connected to a U-shaped plate (25), and the interior of the construction platform (1) is fixedly connected to two hydraulic rods (26); The second interception assembly (3) comprises a second rotating shaft (31), the exterior of the second rotating shaft (31) is fixedly connected to a second baffle (32), and both ends of the second rotating shaft (31) are fixedly connected to second bevel gears (33).

2. The green building intelligent construction platform according to claim 1, characterized in that: The construction platform (1) is movably connected to a support plate (34) on the outside of one side close to the second rotating shaft (31), a corrugated rubber gasket is provided on one side of the support plate (34), and straight grooves (35) are provided at both ends of the other side of the support plate (34).

3. The green building intelligent construction platform according to claim 2, characterized in that: A round rod is provided at the top end of the second baffle (32), and both ends of the round rod are movably engaged in the interior of the two straight grooves (35); The four corners of the support plate (34) close to the straight groove (35) are all provided with protrusions, and the inner wall of the construction platform (1) is provided with limiting grooves matched with the protrusions.

4. The green building intelligent construction platform according to claim 1, characterized in that: One end of the hydraulic rod (26) is fixedly connected to the U-shaped plate (25), and both ends of the U-shaped plate (25) are fixedly connected to connecting columns, and the connecting columns are movably clamped in the interior of the arc groove (23).

5. The green building intelligent construction platform according to claim 1 is characterized by: The arc groove (23) has an arc angle of sixty degrees, and the two arc grooves (23) are oriented in opposite directions. The inner wall of the construction platform (1) is provided with a U-shaped groove (27) for limiting the U-shaped plate (25) in the horizontal direction. When the U-shaped plate (25) moves, the two first rotating shafts (21) are driven to rotate in opposite directions through the two arc grooves (23).

6. The green building intelligent construction platform according to claim 1, characterized in that: The first bevel gear (24) is meshedly connected with the second bevel gear (33); a rubber gasket is provided on one side of the second baffle (32) and the first baffle (22); and the second baffle (32) and the first baffle (22) are initially stored inside the construction platform (1).

7. The green building intelligent construction platform according to claim 1, characterized in that: The reinforcement structure (4) includes connecting rods (41), the two ends of the second baffle (32) and the first baffle (22) are respectively hinged to a plurality of connecting rods (41), and the bottom ends of the connecting rods (41) are hinged to square sliders (42).

8. The green building intelligent construction platform according to claim 7, characterized in that: The inner wall of the construction platform (1) is provided with a T-shaped groove (43) that matches the square slider (42). When the connecting rod (41) rotates with the top end as the axis, it can drive the square slider (42) to move upward.

9. The green building intelligent construction platform according to claim 1, characterized in that: A rectangular groove is provided at the top of the second baffle (32), and gaps are left between the upper and lower ends of the second baffle (32) and the first baffle (22) and the inner wall of the construction platform (1). An entrance and exit are provided on the side of the construction platform (1) away from the second interception assembly (3).

10. The green building intelligent construction platform according to claim 1, characterized in that: An intelligent monitoring component (5) is provided on the inner wall of the construction platform (1), wherein the intelligent monitoring component (5) comprises a camera, a display screen, and a displacement sensor, and the intelligent monitoring component (5) is used to monitor the conditions of construction personnel in the construction platform (1) in real time.

Citation Information

Patent Citations

  • Green building intelligent construction platform

    CN119122238A

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