Intelligent building construction bearing platform

By using scissor lifting mechanism and lifting components on the construction load-bearing platform, the function of quickly replenishing materials is achieved, solving the problem of long-term replenishing materials in the existing technology, and improving construction efficiency and safety.

CN222924084UActive Publication Date: 2025-05-30CHONGQING HEGUAN TECH CO LTD
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Patent Information

Application Number
CN202421952176.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-13
Publication Date
2025-05-30
Estimated Expiration
2034-08-13

AI Technical Summary

Technical Problem

The existing intelligent building construction load-bearing platform has cumbersome steps when replenishing materials, which makes it take a long time to replenish materials.

Method used

An intelligent building construction load-bearing platform is designed, using scissor lifting mechanism and lifting components to transport materials to the top seat through the lifting components, avoiding material shaking during the lifting of the top seat, and quickly replenishing materials without moving the top seat up and down.

Benefits of technology

Through this design, the time required to replenish materials is significantly reduced, construction efficiency is improved, and safety hazards caused by material shaking are avoided.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an intelligent building construction bearing platform which comprises a machine frame, the machine frame comprises a base, a top seat and a shear fork type lifting mechanism, the base and the top seat are arranged in an up-down spaced mode, and the shear fork type lifting mechanism is located between the base and the top seat; the hoisting assembly comprises a telescopic part, a rotating part, a connecting cylinder, a hoisting arm, a hoisting rope, a driving motor and a rope winding roller, the telescopic part is vertically arranged on the top seat, the rotating part is located at the top of the telescopic part, the connecting cylinder is rotationally arranged at the top of the telescopic part, the rotating part is located in the connecting cylinder, and one end of the hoisting arm is connected with the connecting cylinder; by arranging the hoisting assembly, the materials can be conveyed to the top base after the top base is lifted, and then the materials can be prevented from shaking on the top base in the lifting process of the top base; after the materials on the top base are used, new materials can be conveyed to the top base through the hoisting assembly, the top base does not need to be moved up and down in the process, and therefore the time needed for supplementing the materials can be shortened.
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Description

Technical Field

[0001] The utility model relates to the technical field of building construction, in particular to a building construction load-bearing platform. Background Art

[0002] Construction refers to the production activities in the implementation stage of engineering construction, which is the construction process of various buildings. In the process of construction, for some places where the building height is too high to be directly constructed, intelligent load-bearing platforms are often used to help workers to carry out construction. Intelligent load-bearing platforms can also be used to place materials used in construction.

[0003] In the prior art, there is an intelligent construction load-bearing platform with a publication number of CN220377882U, which includes: a base, a top plate, a hydraulic lift and multiple groups of clamping modules, a hydraulic lift is arranged between the base and the top plate, each group of clamping modules is arranged above the top plate, and every two groups of clamping modules are arranged symmetrically; the clamping module includes a fixed plate, a supporting spring, a limit plate and a guide arc plate, the fixed plate is fixedly connected to the top plate and is located above the top plate, the two ends of the supporting spring are respectively connected to the fixed plate and the limit plate, the guide arc plate is fixedly connected to the limit plate and is located above the limit plate; through the above structure, it is achieved to avoid the material from shaking on the top plate during the lifting process, causing the material to fall and cause personal injury.

[0004] However, in the above scheme, during the construction process, when the materials on the load-bearing platform are used up, the top plate needs to be lowered, and the top plate needs to be raised again after the materials are replenished. The steps in this process are relatively cumbersome, resulting in a long time required for replenishing the materials. Utility Model Content

[0005] The utility model aims to provide an intelligent construction load-bearing platform, which can reduce the time required for replenishing materials.

[0006] To achieve the above-mentioned purpose, an intelligent construction load-bearing platform is provided, which includes: a frame, the frame includes a base, a top seat and a scissor-type lifting mechanism, the base and the top seat are arranged at an interval up and down, and the scissor-type lifting mechanism is located between the base and the top seat; a lifting assembly, the lifting assembly includes a telescopic part, a rotating part, a connecting cylinder, a lifting arm, a lifting rope, a driving motor and a rope-collecting roller, the telescopic part is vertically arranged on the top seat, the rotating part is located at the top of the telescopic part, the connecting cylinder is rotatably arranged on the top of the telescopic part, the rotating part is located in the connecting cylinder, one end of the lifting arm is connected to the connecting cylinder, the other end of the lifting arm is provided with a roller, a support plate is provided on the outside of the connecting cylinder, the driving motor is located on the support plate, the rope-collecting roller is rotatably connected to the support plate through the connecting seat, one end of the rope-collecting roller is transmission-connected to the output end of the driving motor, one end of the lifting rope is wound around the rope-collecting roller, and the other end of the lifting rope is wound around the roller.

[0007] Working principle and effect of the above solution: The scissor lift mechanism is a prior art and will not be described in detail here. The scissor lift mechanism can drive the top seat to move up and down. When using this load-bearing platform, place the load-bearing platform on the ground, have the worker get onto the top seat, start the scissor lift mechanism, and the scissor lift mechanism drives the top seat to move upward until the top seat reaches the working area. When the lifting assembly is working, start the telescopic member, the telescopic member extends, causing components such as the connecting cylinder to move upward. Start the driving motor, and the driving motor drives the rope winding roller to rotate, so that the movable end of the lifting rope extends to the ground. A hook is provided at the movable end of the lifting rope, and the hook can hang the material. Start the driving motor again, and the driving motor drives the rope winding roller to rotate in the reverse direction. The lifting rope is wound around the rope winding roller, and the movable end of the lifting rope shortens, thereby lifting the material to the roller. After lifting the material, start the rotating member to rotate the material above the top seat. Further extend the movable end of the lifting rope and place the material on the top seat. After use, reset the lifting assembly.

[0008] By setting the lifting assembly, the material can be transported to the top seat after the top seat rises, thereby avoiding the material from shaking on the top seat during the lifting and lowering process of the top seat. When the material on the top seat is used up, a new material can be transported to the top seat through the lifting assembly. During this process, there is no need to move the top seat up and down, thus reducing the time required to replenish the material.

[0009] According to the described intelligent building construction load-bearing platform, the telescopic member includes a telescopic rod, a telescopic cylinder, and a support cylinder. The telescopic rod is vertically arranged on the top seat, the telescopic cylinder is sleeved on the telescopic rod, an oil cylinder is provided at the top of the telescopic rod, and the movable end of the oil cylinder is connected to the telescopic cylinder. The support cylinder is vertically arranged on the top seat, the support cylinder is sleeved on the telescopic cylinder, and a support rod is inclinedly arranged on the outside of the support cylinder.

[0010] When the telescopic member is working, start the oil cylinder, and the oil cylinder pushes the telescopic cylinder to move upward, thereby enabling components such as the connecting cylinder to move upward. By setting the support cylinder, the support cylinder can play a supporting role during the up and down movement of the connecting cylinder.

[0011] According to the described intelligent building construction load-bearing platform, a hemispherical mating block is provided at the top of the telescopic cylinder, and a connecting column is provided at the top of the mating block.

[0012] The mating block and the connecting column at the top of the telescopic cylinder are both located inside the connecting cylinder. When the mating block rotates inside the connecting cylinder, the hemispherical mating block can reduce the friction when the mating block rotates, thereby facilitating its rotation.

[0013] According to the described intelligent building construction load-bearing platform, a mating groove for accommodating the mating block and the connecting column is opened at the bottom of the connecting cylinder, and a rotating chamber is provided at the top of the mating groove.

[0014] By providing a mating groove inside the connecting cylinder, when the connecting cylinder rotates, the mating block rotates within the mating groove.

[0015] According to the described intelligent building construction load-bearing platform, the rotating member is located inside the rotating chamber. The rotating member includes a rotating motor and an external gear. The rotating motor is located at the top of the connecting column, and the external gear is located above the rotating motor and is drivingly connected to the rotating motor through a rotating shaft. An internal gear meshing with the external gear is provided inside the rotating chamber.

[0016] The rotating chamber provides a working space for the transmission member. When the rotating member works, the rotating motor is started. The rotating motor drives the rotating shaft to rotate, and further drives the external gear to rotate. When the external gear rotates, it meshes with the external gear, and further drives the connecting cylinder to rotate.

[0017] According to the described intelligent building construction load-bearing platform, a guardrail is provided on the top seat. The guardrail is provided with an opening, and a ladder is arranged on the side of the top seat at the opening of the guardrail.

[0018] By providing the guardrail, when workers are performing construction operations on the top seat, the guardrail can prevent workers from falling off the edge of the top seat; by providing the ladder, when the top seat has not moved upward, workers can climb onto the top seat through the ladder.

[0019] According to the described intelligent building construction load-bearing platform, walking wheels are provided at the bottom of the base.

[0020] The walking wheels are driven by a hydraulic motor. The hydraulic motor has a braking function. The hydraulic motor can drive the walking wheels to rotate, and further drive the entire frame to move.

[0021] According to the described intelligent building construction load-bearing platform, an installation frame is provided at the bottom of the base, and a counterweight is provided inside the installation frame.

[0022] The bottom of the installation frame is higher than the bottom of the walking wheels. The counterweight is a common structure at the construction site such as bricks and sand. By providing the counterweight, the weight of the frame can be increased; since the counterweight is located at the bottom of the bottom plate, the counterweight can lower the center of gravity of the frame, and further prevent the frame from tipping over due to a high center of gravity.

[0023] Additional aspects and advantages of the present utility model will be given in part in the following description, become apparent in part from the following description, or be understood through the practice of the present utility model. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] The present utility model will be further described below in conjunction with the drawings and embodiments;

[0025] Figure 1 It is a perspective view of an intelligent building construction load-bearing platform.

[0026] Figure 2 It is a cross-sectional view of a telescopic member of an intelligent building construction load-bearing platform.

[0027] Figure 3 It is a partial three-dimensional view of a hoisting assembly of an intelligent building construction load-bearing platform.

[0028] Figure 4 It is a cross-sectional view of a connecting cylinder of an intelligent building construction load-bearing platform.

[0029] Figure 5 It is an exploded view of a frame of an intelligent building construction load-bearing platform.

[0030] Wherein: frame 10, base 11, traveling wheels 111, mounting frame 112, counterweight 113, top seat 12, guardrail 121, ladder 122, scissor lift mechanism 13, hoisting assembly 20, telescopic member 21, telescopic rod 211, telescopic cylinder 212, support cylinder 213, mating block 214, connecting column 215, rotating member 22, rotating motor 221, external gear 222, rotating shaft 223, connecting cylinder 23, support plate 231, connecting seat 232, mating groove 233, rotating chamber 234, boom 24, roller 241, hoisting rope 25, driving motor 26, rope winding roller 27. Specific embodiments

[0031] This part will describe in detail the specific embodiments of the present invention. The preferred embodiments of the present invention are shown in the drawings. The function of the drawings is to supplement the description of the text part of the specification, enabling people to intuitively and vividly understand each technical feature and the overall technical solution of the present invention. However, it should not be construed as a limitation on the protection scope of the present invention.

[0032] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by terms such as up, down, front, back, left, right, etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the present invention.

[0033] In the description of the present invention, terms such as greater than, less than, exceeding, etc. are understood not to include the number itself, and terms such as above, below, within, etc. are understood to include the number. If there is a description of first and second, it is only for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features or the sequence relationship of the indicated technical features.

[0034] In the description of the present utility model, unless otherwise clearly defined, terms such as "arrangement", "installation", and "connection" shall be understood in a broad sense, and those skilled in the relevant technical field can reasonably determine the specific meanings of the above terms in the present utility model in combination with the specific content of the technical solution.

[0035] Referring to Figures 1 - 5 , an intelligent building construction load-bearing platform of the present utility model includes: a frame 10, the frame 10 includes a base 11, a top seat 12 and a scissor lift mechanism 13, the base 11 and the top seat 12 are arranged at intervals up and down, and the scissor lift mechanism 13 is located between the base 11 and the top seat 12; a hoisting assembly 20, the hoisting assembly 20 includes a telescopic member 21, a rotating member 22, a connecting cylinder 23, a boom 24, a hoisting rope 25, a driving motor 26 and a rope winding roller 27, the telescopic member 21 is vertically arranged on the top seat 12, the rotating member 22 is located at the top of the telescopic member 21, the connecting cylinder 23 is rotatably arranged on the top of the telescopic member 21, the rotating member 22 is located inside the connecting cylinder 23, one end of the boom 24 is connected to the connecting cylinder 23, the other end of the boom 24 is provided with a roller 241, a support plate 231 is arranged outside the connecting cylinder 23, the driving motor 26 is located on the support plate 231, the rope winding roller 27 is rotatably connected to the support plate 231 through a connecting seat 232, one end of the rope winding roller 27 is in transmission connection with the output end of the driving motor 26, one end of the hoisting rope 25 is wound around the rope winding roller 27, and the other end of the hoisting rope 25 is wound around the roller 241.

[0036] Specifically, the scissor lift mechanism 13 is a prior art and will not be described in detail here. The scissor lift mechanism 13 can drive the top seat 12 to move up and down. When using this load-bearing platform, place the load-bearing platform on the ground, let the worker get onto the top seat 12, start the scissor lift mechanism 13, and the scissor lift mechanism 13 drives the top seat 12 to move upward until the top seat 12 reaches the working area. When the hoisting assembly 20 works, start the telescopic member 21, and the telescopic member 21 extends, so that components such as the connecting cylinder 23 move upward. Start the driving motor 26, and the driving motor 26 drives the rope winding roller 27 to rotate, so that the movable end of the hoisting rope 25 extends to the ground. A hook is arranged at the movable end of the hoisting rope 25, and the hook can hang the material. Start the driving motor 26 again, and the driving motor 26 drives the rope winding roller 27 to rotate in the reverse direction. The hoisting rope 25 is wound around the rope winding roller 27, and the movable end of the hoisting rope 25 shortens, so as to lift the material to the roller 241. After lifting the material, start the rotating member 22 to rotate the material above the top seat 12. Further extend the movable end of the hoisting rope 25 and place the material on the top seat 12. After use, reset the hoisting assembly 20.

[0037] Optionally, the telescopic member 21 includes a telescopic rod 211, a telescopic cylinder 212 and a support cylinder 213. The telescopic rod 211 is vertically arranged on the top seat 12, the telescopic cylinder 212 is sleeved on the telescopic rod 211, an oil cylinder is arranged on the top of the telescopic rod 211, and a movable end of the oil cylinder is connected to the telescopic cylinder 212. The support cylinder 213 is vertically arranged on the top seat 12, the support cylinder 213 is sleeved on the telescopic cylinder 212, and a support rod is obliquely arranged on the outside of the support cylinder 213.

[0038] Optionally, a hemispherical matching block 214 is disposed on the top of the telescopic cylinder 212 , and a connecting column 215 is disposed on the top of the matching block 214 .

[0039] Optionally, a matching groove 233 for accommodating the matching block 214 and the connecting column 215 is formed at the bottom of the connecting cylinder 23 , and a rotating chamber 234 is provided at the top of the matching groove 233 .

[0040] Optionally, the rotating member 22 is located in the rotating chamber 234, and the rotating member 22 includes a rotating motor 221 and an external gear 222. The rotating motor 221 is located at the top of the connecting column 215, the external gear 222 is located above the rotating motor 221 and is transmission-connected to the rotating motor 221 through a rotating shaft 223, and an internal gear meshing with the external gear 222 is provided in the rotating chamber 234.

[0041] Optionally, a guardrail 121 is provided on the top seat 12 , and an opening is formed in the guardrail 121 . A ladder 122 is arranged on the side of the top seat 12 at the opening of the guardrail 121 .

[0042] Optionally, walking wheels 111 are provided at the bottom of the base 11 .

[0043] Optionally, a mounting frame 112 is disposed at the bottom of the base 11 , and a counterweight block 113 is disposed in the mounting frame 112 .

[0044] Specifically, when using this load-bearing platform, the driving wheels 111 are rotated to move the frame 10 to the ground of the working area by the driving wheels 111. Counterweight blocks 113 are placed in the mounting frame 112 to increase the weight of the frame 10. Workers climb up to the top seat 12 through the ladder 122 and start the scissor lift mechanism 13. The scissor lift mechanism 13 drives the top seat 12 to move upward until the top seat 12 reaches the working area. When the hoisting assembly 20 works, the cylinder and the driving motor 26 are started successively, so that the movable end of the hoisting rope 25 extends to the ground. A hook is provided at the movable end of the hoisting rope 25, and the hook can hang the material. The driving motor 26 is started again to shorten the movable end of the hoisting rope 25, and then the material can be lifted to the roller 241. After the material is lifted, the rotating motor 221 is started, and the rotating motor 221 drives the rotating shaft 223 to rotate, and further drives the connecting cylinder 23 to rotate, so that the material rotates above the top seat 12. Further, the movable end of the hoisting rope 25 is extended, and the material is placed on the top seat 12. After use, the hoisting assembly 20 is reset.

[0045] The above has described the embodiments of the present invention in detail with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments, and various changes can be made without departing from the gist of the present invention within the scope of knowledge possessed by those of ordinary skill in the art.

Claims

1. An intelligent construction load-bearing platform, characterized in that: include: A frame, the frame comprising a base, a top seat and a scissor-type lifting mechanism, the base and the top seat are arranged in an upper and lower interval, and the scissor-type lifting mechanism is located between the base and the top seat; A lifting assembly, the lifting assembly includes a telescopic part, a rotating part, a connecting cylinder, a lifting arm, a lifting rope, a driving motor and a rope collection roller, the telescopic part is vertically arranged on a top seat, the rotating part is located at the top of the telescopic part, the connecting cylinder is rotatably arranged on the top of the telescopic part, the rotating part is located in the connecting cylinder, one end of the lifting arm is connected to the connecting cylinder, the other end of the lifting arm is provided with a roller, a support plate is provided on the outside of the connecting cylinder, the driving motor is located on the support plate, the rope collection roller is rotatably connected to the support plate through a connecting seat, one end of the rope collection roller is transmission-connected to the output end of the driving motor, one end of the lifting rope is wound around the rope collection roller, and the other end of the lifting rope is wound around the roller.

2. The intelligent construction load-bearing platform according to claim 1, characterized in that: The telescopic part includes a telescopic rod, a telescopic cylinder and a support cylinder. The telescopic rod is vertically arranged on the top seat, the telescopic cylinder is sleeved on the telescopic rod, an oil cylinder is arranged on the top of the telescopic rod, and the movable end of the oil cylinder is connected to the telescopic cylinder. The support cylinder is vertically arranged on the top seat, the support cylinder is sleeved on the telescopic cylinder, and a support rod is obliquely arranged on the outside of the support cylinder.

3. The intelligent construction load-bearing platform according to claim 2, characterized in that: A hemispherical matching block is arranged on the top of the telescopic cylinder, and a connecting column is arranged on the top of the matching block.

4. The intelligent construction load-bearing platform according to claim 3, characterized in that: The bottom of the connecting cylinder is provided with a matching groove for accommodating the matching block and the connecting column, and the top of the matching groove is provided with a rotating chamber.

5. The intelligent construction load-bearing platform according to claim 4, characterized in that: The rotating member is located in the rotating chamber, and the rotating member includes a rotating motor and an external gear. The rotating motor is located at the top of the connecting column, the external gear is located above the rotating motor and is transmission-connected to the rotating motor through a rotating shaft, and an internal gear meshing with the external gear is arranged in the rotating chamber.

6. The intelligent construction load-bearing platform according to claim 1, characterized in that: The top seat is provided with a guardrail, the guardrail is provided with an opening, and a ladder is arranged at the side of the top seat at the guardrail opening.

7. The intelligent construction load-bearing platform according to claim 1, characterized in that: The bottom of the base is provided with walking wheels.

8. The intelligent construction load-bearing platform according to claim 1, characterized in that: A mounting frame is arranged at the bottom of the base, and a counterweight block is arranged in the mounting frame.

Citation Information

Patent Citations

  • Intelligent building construction bearing platform

    CN220377882U