Automatic lifting platform for wall masonry

By designing an automatic lifting platform, the problems of cumbersome scaffolding construction and safety hazards in traditional wall masonry have been solved, enabling efficient and safe wall masonry operations, and making it suitable for high-altitude wall masonry projects.

CN224078621UActive Publication Date: 2026-04-03ZHONGSHAN MINZHU CONSTR ENG CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

In traditional wall construction, the erection and dismantling of scaffolding is cumbersome, posing risks of falling objects and workers falling, thus affecting construction efficiency and safety.

Method used

Design an automatic lifting platform for wall construction, including a base, a support platform and a drive mechanism. The support platform is divided into three work platforms, which are synchronously lifted and lowered through a gantry frame assembly and a chain assembly. It is equipped with guardrails and reinforcement structures to provide a stable and flexible working environment.

Benefits of technology

It improves masonry efficiency and quality, reduces the risk of material falling and worker falls, lowers labor intensity, ensures construction safety, and is suitable for rapid operations in high-altitude wall construction.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224078621U_ABST
    Figure CN224078621U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of wall masonry operation platforms, in particular to an automatic lifting platform for wall masonry, which comprises a base, a bearing table arranged on the upper side of the base and a driving mechanism for driving the bearing table to move up and down. The bearing table comprises a first working table located on one side of the bearing table, a second working table located on the other side of the bearing table and a third working table located between the first working table and the second working table, the third working table is connected with the first working table and the second working table, and the driving mechanism moves up and down relative to the base. And the first working table, the second working table and the third working table can ascend or descend at the same time. According to the automatic lifting platform, a plurality of workers can be arranged to work cooperatively at different positions at the same time, the bearing platform can bear materials and move the workers, the risk that the materials fall is reduced, the risk that the workers fall from high positions is also reduced, and the working quality and efficiency of wall building are improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the technical field of wall masonry operation platforms, specifically an automatic lifting platform for wall masonry. Background Technology

[0002] Wall construction refers to the process of building load-bearing walls, partition walls, and exterior walls using bricks, stones, and other block materials. It is one of the main load-bearing structures of a building, therefore its strength, stability, and durability must be guaranteed. Traditional wall construction mainly relies on manual labor. Workers take one brick at a time, apply a suitable amount of mortar to one end, press the mortar-coated side against the previous brick, and gently tap it to secure it. When the wall height is high, temporary scaffolding needs to be erected. However, the process of erecting and dismantling scaffolding is quite cumbersome, and there is a risk of objects falling or workers accidentally falling while working on scaffolding.

[0003] Therefore, it is necessary to develop a working platform that can improve masonry efficiency and quality while reducing the risk of objects falling and ensuring the safety of workers. Utility Model Content

[0004] The technical problem mentioned above is that the process of erecting and dismantling scaffolding is quite cumbersome, and there is a risk of objects falling or workers accidentally falling while working on scaffolding. The technical solution adopted by this utility model to solve this problem is:

[0005] An automatic lifting platform for wall construction includes a base, a support platform on the upper side of the base, and a drive mechanism for driving the support platform to move up and down. The support platform includes a first work platform on one side, a second work platform on the other side, and a third work platform between the first work platform and the second work platform. The third work platform is connected to the first work platform and the second work platform respectively. The drive mechanism moves up and down relative to the base so that the first work platform, the second work platform, and the third work platform rise or fall simultaneously.

[0006] Furthermore, in some embodiments of this utility model, the driving mechanism includes a gantry frame assembly, the support platform is provided with a first clearance opening and a second clearance opening, the gantry frame assembly passes through the first clearance opening and the second clearance opening respectively and is connected to the base, and the first work platform, the second work platform and the third work platform are all provided with guardrails.

[0007] Furthermore, in some embodiments of this utility model, the driving mechanism further includes a lifting mechanism connected between the base and the gantry frame assembly, and a chain assembly connected to the gantry frame assembly and the support platform. One end of the lifting mechanism is fixed on the base, and the other end of the lifting mechanism is used to drive the gantry frame assembly to move.

[0008] Furthermore, in some embodiments of this utility model, the first workbench is provided with a first connecting end and a first reinforcing end, the first clearance opening is located between the first workbench and the third workbench, the second workbench is provided with a second connecting end and a second reinforcing end, the third workbench is provided with a first mating end that mates with the first connecting end and a second mating end that mates with the second connecting end, the second clearance opening is located between the second workbench and the third workbench, and the first reinforcing end and the second reinforcing end are arranged in a figure-eight shape.

[0009] Furthermore, in some embodiments of this utility model, the gantry frame assembly includes a fixed frame disposed near both ends of the third work platform, a movable frame assembly disposed inside the fixed frame and movable relative to the fixed frame, the lifting mechanism includes a lifting housing connected to the base, a push rod connected between the lifting housing and the movable frame assembly, and the chain assembly includes a meshing part connected to the movable frame assembly, and a chain part connected to the meshing part and respectively connected to the movable frame assembly and the support platform.

[0010] Furthermore, in some embodiments of this utility model, the movable frame assembly includes a first movable frame disposed inside the fixed frame and movable relative to the fixed frame, and a second movable frame disposed inside the first movable frame and movable relative to the fixed frame. A fixed frame located on one side of the third workbench is provided with a horizontally arranged fixed frame reinforcement. A first movable frame located on one side of the third workbench is provided with a horizontally arranged first reinforcement. A second movable frame located on one side of the third workbench is provided with a horizontally arranged second reinforcement. The first movable frame and the second movable frame are both disposed near the two ends of the third workbench. The first reinforcement includes a first upper reinforcement located above the support platform and a first lower reinforcement located below the support platform. The second reinforcement includes a second upper reinforcement located above the support platform and a second lower reinforcement located below the support platform. The push rod is connected to the first upper reinforcement.

[0011] Furthermore, in some embodiments of this utility model, the meshing part includes a first meshing part located on the first upper reinforcing part and a second meshing part located on the second upper reinforcing part, and the chain part includes a first chain part connected to the first meshing part and connected to the second lower reinforcing part and the fixed frame reinforcing part respectively, and a second chain part connected to the second meshing part and connected to the first lower reinforcing part and the third workbench respectively.

[0012] Furthermore, in some embodiments of this utility model, two parallel first lower support ends are connected between two opposing first lower reinforcing parts, and two parallel second lower support ends are connected between two opposing second lower reinforcing parts. The first lower reinforcing parts and the first lower support ends enclose a first reinforcement area, and the second lower reinforcing parts and the second lower support ends enclose a second reinforcement area. The lifting mechanism is located inside the first reinforcement area and outside the second reinforcement area.

[0013] Furthermore, in some embodiments of this utility model, the base includes a pulley at its bottom, a support frame on its side, and a pull rod on one side. The support frame is provided with support feet that can move up and down, and the support frame has four feet that are detachably connected to the four sides of the base.

[0014] Furthermore, in some embodiments of this utility model, the support platform is provided with a movable accommodating box, the accommodating box is provided with a push-up part and a support plate located on the push-up part, and the inner side of the accommodating box and the support plate enclose a accommodating space.

[0015] The beneficial effects of this utility model are as follows:

[0016] The automatic lifting platform of this utility model can simultaneously arrange multiple workers to work collaboratively in different positions. The support platform can carry materials and move workers, reducing the risk of materials falling and also reducing the risk of workers falling from heights, which is conducive to improving the quality and efficiency of wall construction. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of an automatic lifting platform for wall construction according to the present invention.

[0018] Figure 2 This is a schematic diagram of the working state of an automatic lifting platform for wall construction according to this utility model. Detailed Implementation

[0019] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings. The described embodiments are merely some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without inventive effort are within the scope of protection of this utility model.

[0020] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.

[0021] Furthermore, the use of terms such as "first" and "second" in this utility model is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. Additionally, the technical solutions of the various embodiments can be combined with each other, but only on the basis of being achievable by those skilled in the art. When the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed by this utility model.

[0022] like Figures 1 to 2 An automatic lifting platform for wall construction is shown, including a base 1, a support platform 2 on the upper side of the base 1, and a drive mechanism 3 for driving the support platform 2 to move up and down. The support platform 2 includes a first work platform 21 on one side, a second work platform 22 on the other side, and a third work platform 23 located between the first work platform 21 and the second work platform 22. The third work platform 23 is connected to the first work platform 21 and the second work platform 22 respectively. The drive mechanism 3 moves up and down relative to the base 1 so that the first work platform 21, the second work platform 22, and the third work platform 23 rise or fall simultaneously.

[0023] The automatic lifting platform of this utility model can simultaneously arrange multiple workers to work collaboratively in different positions. The support platform can carry materials and move workers, reducing the risk of materials falling and also reducing the risk of workers falling from heights, which is conducive to improving the quality and efficiency of wall construction.

[0024] This utility model's automatic lifting platform reduces the cumbersome assembly and disassembly process, saves preparation time, and enables the rapid commencement of wall construction projects. The support platform is divided into three workstations, allowing multiple workers to work collaboratively in different positions simultaneously. For example, one worker can be responsible for bricklaying on the first workstation, another for mortar mixing on the second workstation, and yet another for material transfer on the third workstation. This multi-tasking parallel operation improves overall collaboration efficiency.

[0025] Of course, three workers can also lay bricks at the same time to speed up the construction process.

[0026] Compared to scaffolding, the automatic lifting platform of this invention has a stable base, allowing workers to operate on the platform as if on flat ground. This enables more precise operation and better control over the thickness and flatness of the mortar joints between bricks, as well as the verticality of the wall. This improves the overall quality of the wall construction while reducing the risk of workers falling from heights and preventing objects or people from falling and injuring people and equipment below, thus creating a safer environment for the construction site.

[0027] Specifically, the drive mechanism controls the lifting and lowering of the support platform, allowing workers to adjust their working position at any time according to the required wall construction height, no longer limited by the fixed step distance of the scaffolding. Traditionally, workers on scaffolding need to frequently climb and move materials, resulting in high labor intensity. This new type of support platform has a larger area, capable of holding a large quantity of bricks, mortar, and other materials, reducing the distance workers need to move them. Simultaneously, workers no longer need to climb scaffolding, significantly reducing physical exertion and allowing them to work on the support platform for extended periods, thus improving work quality and efficiency.

[0028] like Figures 1 to 2 The diagram shows an automatic lifting platform for wall construction. The drive mechanism 3 includes a gantry frame assembly 4. The support platform 2 is provided with a first clearance opening 24 and a second clearance opening 25. The gantry frame assembly 4 passes through the first clearance opening 24 and the second clearance opening 25 respectively and is connected to the base 1. The first work platform 21, the second work platform 22, and the third work platform 23 are all provided with guardrails 5.

[0029] Furthermore, as a preferred embodiment of this utility model and not a limitation, the gantry frame assembly passes through the first and second clearance openings of the support platform and connects to the base, forming a stable mechanical support structure. This makes the support platform more evenly stressed during lifting and lowering, effectively reducing the risk of swaying and deviation. Even when carrying multiple workers and a large amount of materials, it can still ensure stable operation.

[0030] Specifically, the first and second clearance openings not only meet the installation requirements of the drive mechanism but also do not excessively occupy the effective working area of ​​the support platform. When workers are working on the platform, they will not feel cramped due to the presence of the gantry frame, and the three platforms can fully cooperate to improve overall construction efficiency.

[0031] In addition, the first, second, and third work platforms are all equipped with guardrails, which can effectively prevent workers from falling due to accidental collisions or slips, whether they are working at rest or during the lifting and lowering of the support platform. At the same time, they can prevent small tools from slipping and ensure the safety of personnel and equipment at the construction site.

[0032] like Figures 1 to 2 The automatic lifting platform for wall construction shown includes a driving mechanism 3 that further includes a lifting mechanism 6 connected between the base 1 and the gantry frame assembly 4, and a chain assembly 7 connected to the gantry frame assembly 4 and the support platform 2. One end of the lifting mechanism 6 is fixed to the base 1, and the other end of the lifting mechanism 6 is used to drive the gantry frame assembly 4 to move.

[0033] Furthermore, as a preferred embodiment of this utility model and not a limitation, the lifting mechanism works in conjunction with the chain assembly to provide lifting power for the support platform. One end of the lifting mechanism is firmly fixed to the base, while the other end generates a stable lifting force, driving the gantry frame components to move, thereby raising or lowering the support platform. Compared to the traditional method of adjusting height by manually erecting scaffolding, this lifting mode is faster and can adjust the work platform to the required height in a short time, greatly improving construction efficiency. It is especially suitable for the needs of frequent changes in working height in large-scale wall masonry projects. When bearing heavy objects, the lifting mechanism can evenly distribute the weight of the support platform and the workers and materials on it, transferring the pressure to the base and avoiding damage to the platform due to excessive local pressure.

[0034] like Figures 1 to 2 The diagram shows an automatic lifting platform for wall construction. The first work platform 21 is provided with a first connecting end 211 and a first reinforcing end 212. The first clearance opening 24 is located between the first work platform 21 and the third work platform 23. The second work platform 22 is provided with a second connecting end 221 and a second reinforcing end 222. The third work platform 23 is provided with a first mating end 231 that mates with the first connecting end 211 and a second mating end 232 that mates with the second connecting end 221. The second clearance opening 25 is located between the second work platform 22 and the third work platform 23. The first reinforcing end 212 and the second reinforcing end 222 are arranged in a figure-eight shape.

[0035] Furthermore, as a preferred embodiment of this utility model and not a limitation thereof, the first reinforcing end of the first work platform and the second reinforcing end of the second work platform are arranged in a figure-eight shape, forming a stable mechanical support structure. This structure can effectively distribute the pressure borne by the support platform. When carrying heavy materials or when multiple workers are working together, the downward pressure can be evenly transmitted to the base, enhancing the structural stability of the entire platform and ensuring that there will be no tilting or shaking due to uneven force during lifting and operation.

[0036] Furthermore, the mating of the first connecting end with the first mating end, the second connecting end with the second mating end, and the splicing of the first and second workbenches with the third workbenches enable rapid modular assembly of each workbench. This also facilitates disassembly and transport during transportation, improving production assembly efficiency and reducing transportation costs.

[0037] Optionally, in some embodiments, the first connecting end and the first mating end, and the second connecting end and the second mating end are connected and mated by welding.

[0038] Furthermore, the first clearance opening is located between the first and third workbenches, and the second clearance opening is located between the second and third workbenches. This layout of the first and second clearance openings satisfies the installation requirements of the drive mechanism while avoiding excessive occupation of the effective working area of ​​the workbenches. Workers have more spacious operating space, reducing operational inconveniences caused by limited space and improving construction efficiency.

[0039] like Figures 1 to 2 The automatic lifting platform for wall construction shown includes a gantry frame assembly 4 comprising a fixed frame 41 located near both ends of the third work platform 23, and a movable frame assembly 40 located inside the fixed frame 41 and movable relative to the fixed frame 41. The lifting mechanism 6 includes a lifting housing 61 connected to the base 1 and a push rod 62 connected between the lifting housing 61 and the movable frame assembly 40. The chain assembly 7 includes an engagement part 71 connected to the movable frame assembly 40 and a chain part 72 connected to the engagement part 71 and respectively connected to the movable frame assembly 40 and the support platform 2.

[0040] Furthermore, as a preferred embodiment of this utility model and not a limitation, the movable frame component in the gantry frame assembly can move relative to the fixed frame. The fixed frame, as an integral frame, improves the overall strength and stability in the vertical direction. The movable frame component is used to slide up and down in conjunction with the push rod. Moreover, the movable frame component is located inside the fixed frame, allowing the support platform to move up and down using the chain section without occupying space. The movable characteristic of the movable frame component, combined with the lifting mechanism and chain assembly, forms multiple safety guarantees. If an abnormality occurs in a localized area, such as uneven stacking of materials in the wall construction, the movable frame component can adaptively adjust to distribute the pressure. Simultaneously, the chain assembly prevents the support platform from rapidly falling in sudden situations, working with the lifting mechanism to maintain the basic support of the platform, ensuring worker safety and reducing the risk of accidents. Additionally, the multi-section design increases the lifting height of the support platform, meeting operational requirements.

[0041] Specifically, the push rod of the lifting mechanism connects the lifting housing and the movable frame assembly, allowing the lifting force to be applied directly to the movable frame assembly. Through the engagement part and chain part located on the movable frame assembly, the support platform can rise or fall quickly and smoothly, helping to maintain the overall stability of the platform. In wall construction scenarios where frequent adjustments to the working height are required, this significantly saves time and improves construction efficiency.

[0042] In addition, the meshing part of the chain assembly cooperates with the chain part, which on the one hand ensures a reliable connection between the movable frame assembly and the support platform, and prevents problems such as loosening or slippage during the lifting process; on the other hand, the chain drive has a certain degree of flexibility, which can buffer the vibration caused by the platform starting, stopping or running, protect the entire transmission system and support platform structure, extend the service life of the equipment, reduce the frequency of maintenance, and ensure the continuity of the wall masonry project.

[0043] Furthermore, the gantry frame components are equipped with fixed frames at both ends near the third work platform, which makes reasonable use of the platform space. This not only does not affect the normal operation of workers on each work platform, but also provides a compact and stable installation position for the drive mechanism. This makes the space around the work platform neat and the material transportation channel smooth, which facilitates efficient operation by workers and avoids operational errors and material handling obstacles caused by a messy equipment layout.

[0044] like Figures 1 to 2The illustrated automatic lifting platform for wall construction includes a movable frame assembly 40 comprising a first movable frame 42 disposed inside the fixed frame 41 and movable relative to the fixed frame 41, and a second movable frame 43 disposed inside the first movable frame 42 and movable relative to the fixed frame 41. The fixed frame 41, located on one side of the third work platform 23, has a horizontally arranged fixed frame reinforcement 411. The first movable frame 42, located on one side of the third work platform 23, has a horizontally arranged first reinforcement 421. The second movable frame 43, located on one side of the third work platform 23... The third worktable 23 is provided with a second reinforcing part 431 arranged horizontally. The first movable frame 42 and the second movable frame 43 are both located at both ends near the third worktable 23. The first reinforcing part 421 includes a first upper reinforcing part 4211 located on the upper side of the support platform 2 and a first lower reinforcing part 4212 located on the lower side of the support platform 2. The second reinforcing part 431 includes a second upper reinforcing part 4311 located on the upper side of the support platform 2 and a second lower reinforcing part 4312 located on the lower side of the support platform 2. The push rod 62 is connected to the first upper reinforcing part 4211.

[0045] Furthermore, as a preferred embodiment of the present invention and not a limitation thereof, the movable frame assembly consists of a first movable frame and a second movable frame that can move relative to each other, forming a nested connection. Additionally, the first movable frame is located inside the fixed frame, and the second movable frame is located inside the first movable frame, which saves space and allows the first and second movable frames to move simultaneously relative to the fixed frame.

[0046] Furthermore, the fixed frame reinforcement, the first reinforcement, and the second reinforcement strengthen the gantry frame assembly from multiple dimensions. The laterally arranged reinforcements effectively resist the lateral shear forces generated during platform lifting and carrying heavy loads, preventing structural deformation. The first upper and first lower reinforcements of the first reinforcement, as well as the second upper and second lower reinforcements of the second reinforcement, provide stable support to both the upper and lower sides of the platform, maintaining its level and stability even when carrying large amounts of materials or having multiple workers concentrated on one side.

[0047] Optionally, in some embodiments, the fixed frame reinforcement, the first reinforcement, and the second reinforcement can be connected to the fixed frame, the first movable frame, and the second movable frame respectively by welding.

[0048] Furthermore, the push rod connects to the first upper reinforcement, acting directly on the critical stress area of ​​the support platform, minimizing force transmission loss and ensuring that the lifting force generated by the lifting mechanism is efficiently converted into the lifting power of the support platform. In wall construction scenarios requiring frequent adjustments to the working height, such as building the exterior walls of high-rise buildings, the support platform can be quickly and smoothly lifted to the designated height, saving time and ensuring the stability of the platform during lifting, thus improving construction efficiency.

[0049] In addition, the first and second movable frames are both located at the two ends near the third work platform, making reasonable use of the platform edge space. This not only does not hinder the operation of workers on each work platform, but also leaves sufficient space for the layout of the drive mechanism.

[0050] like Figures 1 to 2 The illustrated automatic lifting platform for wall construction includes a meshing part 71 comprising a first meshing part 711 located on the first upper reinforcing part 4211 and a second meshing part 712 located on the second upper reinforcing part 4311. The chain part 72 comprises a first chain part 721 connected to the first meshing part 711 and connected to the second lower reinforcing part 4312 and the fixed frame reinforcing part 411, and a second chain part 722 connected to the second meshing part 712 and connected to the first lower reinforcing part 4212 and the third work platform 23.

[0051] Furthermore, as a preferred embodiment of this utility model and not a limitation thereof, the first meshing portion of the first upper reinforcing portion and the second meshing portion of the second upper reinforcing portion ensure that the starting point of the chain drive is located in the force optimization area of ​​the support platform. During the lifting and lowering of the support platform, the force can be transmitted evenly and stably through these key meshing portions, avoiding chain jumping and jamming caused by uneven force at a single point, and ensuring the smooth operation of the entire transmission system.

[0052] Specifically, the first chain section connects the first meshing section, the second lower reinforcing section, and the fixed frame reinforcing section, forming a stable force transmission structure. This allows the force to be effectively distributed to the key support parts of the fixed frame and the load-bearing platform when the work platform is carrying heavy objects or encountering lateral impacts, preventing localized overload. Similarly, the second chain section connects the second meshing section, the first lower reinforcing section, and the third work platform, further strengthening the force balance in the area below the platform. This ensures that the load-bearing platform maintains uniform force regardless of whether it is stationary or dynamically lifting, improving the overall structural stability.

[0053] Specifically, the fixing frame reinforcement section has an opening for fixing the first chain section, and the second lower reinforcement section and the first lower reinforcement section also have openings for fixing the first chain section and the second chain section, respectively. Further, the first upper reinforcement section has a fixing connector for fixing the first engaging section, and the second upper reinforcement section has a fixing connector for fixing the second engaging section. Additionally, the third worktable has dedicated fixing holes for connecting and fixing the second chain section.

[0054] To improve the stability of the support platform, two sets of meshing parts and chain parts are provided on each side of the third work platform.

[0055] like Figures 1 to 2 The illustrated automatic lifting platform for wall construction includes two parallel first lower support ends 4213 connected between two opposing first lower reinforcing parts 4212, and two parallel second lower support ends 4313 connected between two opposing second lower reinforcing parts 4312. The first lower reinforcing parts 4212 and the first lower support ends 4213 enclose a first reinforcement area 4214, and the second lower reinforcing parts 4312 and the second lower support ends 4313 enclose a second reinforcement area 4314. The lifting mechanism 6 is located inside the first reinforcement area 4214 and outside the second reinforcement area 4314.

[0056] Furthermore, as a preferred embodiment of this utility model and not a limitation, two parallel first lower support ends are connected between opposing first lower reinforcing parts, and a second lower support end is connected between second lower reinforcing parts, constructing a robust bottom support frame. The first and second reinforcement zones formed by these support ends and the lower reinforcing parts enhance the rigidity of key components beneath the support platform. When bearing a large amount of wall construction materials, tools, and multiple workers, it can effectively resist downward pressure, preventing problems such as dents and deformation of the support platform, and ensuring the structural stability of the entire platform.

[0057] Furthermore, the layout of the lifting mechanism, located inside the first reinforcement zone and outside the second reinforcement zone, not only makes full use of the space but also provides excellent protection for the lifting mechanism. The first and second reinforcement zones can absorb lateral impacts and vibrations from outside the platform, preventing these external forces from acting directly on the lifting mechanism, reducing the risk of damage to the lifting mechanism, ensuring its stable operation, extending the service life of the equipment, and thus ensuring the continuity of the wall construction work.

[0058] Specifically, the existence of the first and second reinforcement zones promotes a more balanced stress distribution under the support platform. When there is a slight overload of material on one side of the platform, or when workers concentrate on one side, resulting in uneven stress distribution, the support structure in the reinforcement zone can automatically adjust the stress distribution, evenly transmitting the pressure to the base, avoiding local overload that could lead to safety hazards, comprehensively ensuring the stability of the platform during construction, and reducing the risk of accidents caused by structural imbalance.

[0059] like Figures 1 to 2 The diagram shows an automatic lifting platform for wall construction. The base 1 includes a pulley 8 at its bottom, a support frame 9 on its side, and a pull rod 100 on one side. The support frame 9 is provided with support feet 91 that can move up and down. The support frame 9 has four feet that are detachably connected to the four sides of the base 1.

[0060] Furthermore, as a preferred embodiment of this utility model and not a limitation thereof, by setting pulleys, workers can easily push the platform to different work areas on the construction site, without having to spend a lot of manpower to move heavy equipment, which greatly saves time and energy in moving equipment.

[0061] In addition, the side support frame is equipped with vertically movable support legs. When the platform is moved to the designated position, the height of the support legs can be adjusted to adapt to different flatness levels of the ground, ensuring that the base is in a horizontal and stable state, and effectively preventing the platform from tilting or shaking due to uneven ground.

[0062] Specifically, the support frame is designed to be detachably connected to the four sides of the base, enhancing the platform's adaptability to different construction scenarios. When working in narrow passageways, doorways, or other locations, parts of the support frame can be disassembled as needed, allowing the platform to pass smoothly. Once at the work site, it can be reassembled, thus reducing the obstacles to construction caused by site limitations.

[0063] Furthermore, the pull rod on one side facilitates the movement of the platform for workers. Workers do not need to bend over or go around to the back of the equipment to apply force; simply standing in a suitable position and holding the pull rod allows them to easily control the platform's direction and speed. This makes the operating posture more natural and comfortable, reduces fatigue during prolonged operation, and further improves the efficiency of human-machine collaboration during construction.

[0064] like Figures 1 to 2 The diagram shows an automatic lifting platform for wall construction. The support platform 2 is equipped with a movable accommodating box 10. The accommodating box 10 is equipped with a push-up part 101 and a support plate 102 located on the push-up part 101. The inner side of the accommodating box 10 and the support plate 102 enclose a accommodating space 103.

[0065] Furthermore, as a preferred embodiment of this utility model and not a limitation, the accommodating box provides a dedicated space for storing materials during the masonry operation. Construction workers can place commonly used materials such as bricks and mortar within the accommodating space, avoiding haphazard stacking of materials on the platform, thus helping to maintain a clean and orderly work area and improving construction management efficiency. When materials need to be lifted, the jacking unit is simply driven by a controller or pneumatic method to push the materials located on the support plate, allowing workers to easily retrieve the required materials without bending over.

[0066] Of course, the container has sliding parts and support and fixing parts to facilitate the adjustment of its position by the staff.

[0067] Furthermore, the movable storage box, along with its top support plate and jacking mechanism, makes it more convenient for workers to retrieve materials. When materials are needed, the storage box is moved using the jacking mechanism, bringing the support plate closer to the worker's operating position for quick and easy material retrieval. This reduces the time workers spend walking around the platform to retrieve materials, further improving work efficiency. Given the limited space on the platform, the storage box's rational design makes full use of the space above or to the sides of the platform without occupying excessive space, achieving efficient space utilization. This design meets the needs of material storage without affecting the normal operation of other parts of the platform. Workers no longer need to frequently carry materials from the ground to the platform; they can simply retrieve them from the storage box. This significantly reduces the number of work interruptions caused by material retrieval, enhances the continuity of masonry work, and helps improve construction quality and efficiency.

[0068] Example 1

[0069] like Figures 1 to 2 An automatic lifting platform for wall construction is shown, including a base 1, a support platform 2 on the upper side of the base 1, and a drive mechanism 3 for driving the support platform 2 to move up and down. The support platform 2 includes a first work platform 21 on one side, a second work platform 22 on the other side, and a third work platform 23 located between the first work platform 21 and the second work platform 22. The third work platform 23 is connected to the first work platform 21 and the second work platform 22 respectively. The drive mechanism 3 moves up and down relative to the base 1 so that the first work platform 21, the second work platform 22, and the third work platform 23 rise or fall simultaneously.

[0070] The automatic lifting platform of this utility model can simultaneously arrange multiple workers to work collaboratively in different positions. The support platform 2 can carry materials and move workers, reducing the risk of materials falling and also reducing the risk of workers falling from heights, which is conducive to improving the work quality and efficiency of wall construction.

[0071] This utility model's automatic lifting platform reduces cumbersome assembly and disassembly processes, saves preparation time, and enables rapid commencement of wall construction projects. The support platform 2 is divided into three workstations, allowing multiple workers to work collaboratively in different positions simultaneously. For example, one worker can be responsible for bricklaying on the first workstation 21, another for mortar mixing on the second workstation 22, and yet another for material transfer on the third workstation 23. This multi-tasking parallel operation improves overall collaboration efficiency.

[0072] Of course, three workers can also lay bricks at the same time to speed up the construction process.

[0073] The drive mechanism 3 includes a gantry frame assembly 4. The support platform 2 is provided with a first clearance opening 24 and a second clearance opening 25. The gantry frame assembly 4 passes through the first clearance opening 24 and the second clearance opening 25 respectively and is connected to the base 1. The first work platform 21, the second work platform 22 and the third work platform 23 are all provided with guardrails 5.

[0074] The drive mechanism 3 also includes a lifting mechanism 6 connected between the base 1 and the gantry frame assembly 4, and a chain assembly 7 connected to the gantry frame assembly 4 and the support platform 2. One end of the lifting mechanism 6 is fixed to the base 1, and the other end of the lifting mechanism 6 is used to drive the gantry frame assembly 4 to move.

[0075] The first workbench 21 is provided with a first connecting end 211 and a first reinforcing end 212. The first clearance opening 24 is located between the first workbench 21 and the third workbench 23. The second workbench 22 is provided with a second connecting end 221 and a second reinforcing end 222. The third workbench 23 is provided with a first mating end 231 that mates with the first connecting end 211 and a second mating end 232 that mates with the second connecting end 221. The second clearance opening 25 is located between the second workbench 22 and the third workbench 23. The first reinforcing end 212 and the second reinforcing end 222 are arranged in a figure-eight shape.

[0076] The first connecting end 211 and the first mating end 231, and the second connecting end 221 and the second mating end 232 are respectively connected and mated by welding.

[0077] The gantry frame assembly 4 includes a fixed frame 41 located near both ends of the third work platform 23, and a movable frame assembly 40 located inside the fixed frame 41 and movable relative to the fixed frame 41. The lifting mechanism 6 includes a lifting housing 61 connected to the base 1 and a push rod 62 connected between the lifting housing 61 and the movable frame assembly 40. The chain assembly 7 includes a meshing part 71 connected to the movable frame assembly 40 and a chain part 72 connected to the meshing part 71 and connected to the movable frame assembly 40 and the support platform 2, respectively.

[0078] The movable frame assembly 40 includes a first movable frame 42 disposed inside the fixed frame 41 and movable relative to the fixed frame 41, and a second movable frame 43 disposed inside the first movable frame 42 and movable relative to the fixed frame 41. The fixed frame 41 located on one side of the third worktable 23 is provided with a horizontally arranged fixed frame reinforcement 411. The first movable frame 42 located on one side of the third worktable 23 is provided with a horizontally arranged first reinforcement 421. The second movable frame 43 located on one side of the third worktable 23 is provided with a horizontally arranged second reinforcement 431. The first movable frame 42 and the second movable frame 43 are both located near the two ends of the third worktable 23. The first reinforcement 421 includes a first upper reinforcement 4211 located on the upper side of the support platform 2 and a first lower reinforcement 4212 located on the lower side of the support platform 2. The second reinforcement 431 includes a second upper reinforcement 4311 located on the upper side of the support platform 2 and a second lower reinforcement 4312 located on the lower side of the support platform 2. The push rod 62 is connected to the first upper reinforcement 4211.

[0079] The meshing portion 71 includes a first meshing portion 711 located on the first upper reinforcing portion 4211 and a second meshing portion 712 located on the second upper reinforcing portion 4311. The chain portion 72 includes a first chain portion 721 connected to the first meshing portion 711 and connected to the second lower reinforcing portion 4312 and the fixing frame reinforcing portion 411 respectively, and a second chain portion 722 connected to the second meshing portion 712 and connected to the first lower reinforcing portion 4212 and the third workbench 23 respectively.

[0080] Example 2

[0081] Based on Example 1, Example 2 also has the following implementation method:

[0082] Two parallel first lower support ends 4213 are connected between two opposing first lower reinforcing parts 4212, and two parallel second lower support ends 4313 are connected between two opposing second lower reinforcing parts 4312. The first lower reinforcing parts 4212 and the first lower support ends 4213 enclose to form a first reinforcement area 4214, and the second lower reinforcing parts 4312 and the second lower support ends 4313 enclose to form a second reinforcement area 4314. The lifting mechanism 6 is located inside the first reinforcement area 4214 and outside the second reinforcement area 4314.

[0083] Example 3

[0084] Based on Example 1, Example 3 also has the following implementation method: The base 1 includes a pulley 8 at its bottom, a support frame 9 on its side, and a pull rod 100 on one side. The support frame 9 is provided with support feet 91 that can move up and down. There are four support frames 9 and they are detachably connected to the four sides of the base 1.

[0085] Example 4

[0086] Based on Example 1, Implementation 4 also has the following implementation methods:

[0087] The support platform 2 is provided with a movable accommodating box 10. The accommodating box 10 is provided with a push part 101 and a support plate 102 located on the push part 101. The inner side of the accommodating box 10 and the support plate 102 enclose a accommodating space 103.

[0088] The above examples are merely illustrative of the technical content of this utility model to facilitate reader understanding, but do not imply that the implementation of this utility model is limited to these embodiments. Any technical extensions or re-creations made based on this utility model are protected by this utility model. The scope of protection of this utility model is defined by the claims.

Claims

1. A wall building automatic lifting platform comprising a base (1), characterized in that: The base (1) is provided with a bearing table (2) and a driving mechanism (3) for driving the bearing table (2) to move up and down, the bearing table (2) comprises a first workbench (21) on one side thereof, a second workbench (22) on the other side thereof, and a third workbench (23) between the first workbench (21) and the second workbench (22), the third workbench (23) is connected with the first workbench (21) and the second workbench (22) respectively, and the driving mechanism (3) moves up and down relative to the base (1) so that the first workbench (21), the second workbench (22) and the third workbench (23) rise or fall simultaneously. The driving mechanism (3) comprises a gantry assembly (4), the bearing table (2) is provided with a first avoiding opening (24) and a second avoiding opening (25), and the gantry assembly (4) passes through the first avoiding opening (24) and the second avoiding opening (25) and is connected with the base (1). The driving mechanism (3) further comprises a jacking mechanism (6) connected between the base (1) and the gantry assembly (4), and a chain assembly (7) connected with the gantry assembly (4) and the bearing table (2), one end of the jacking mechanism (6) is fixed on the base (1), and the other end of the jacking mechanism (6) is used for driving the gantry assembly (4) to move. The gantry assembly (4) comprises a fixed frame (41) arranged near both ends of the third workbench (23), and a movable frame assembly (40) arranged inside the fixed frame (41) and movable relative to the fixed frame (41), the jacking mechanism (6) comprises a jacking housing (61) connected to the base (1), and a push rod (62) connected between the jacking housing (61) and the movable frame assembly (40), and the chain assembly (7) comprises an engaging portion (71) connected to the movable frame assembly (40), and a chain portion (72) connected to the engaging portion (71) and connected with the movable frame assembly (40) and the bearing table (2) respectively.

2. A wall building automated lifting platform according to claim 1, characterized in that: The first workbench (21), the second workbench (22) and the third workbench (23) are all provided with guardrails (5).

3. A wall building automated lift platform according to claim 1, characterized in that: The first workbench (21) is provided with a first connecting end (211) and a first reinforcing end (212), the first avoiding opening (24) is located between the first workbench (21) and the third workbench (23), the second workbench (22) is provided with a second connecting end (221) and a second reinforcing end (222), the third workbench (23) is provided with a first matching end (231) matched with the first connecting end (211) and a second matching end (232) matched with the second connecting end (221), the second avoiding opening (25) is located between the second workbench (22) and the third workbench (23), and the first reinforcing end (212) and the second reinforcing end (222) are arranged in an eight-character shape.

4. A wall building automated lift platform according to claim 1, characterized in that: The movable frame assembly (40) comprises a first movable frame (42) arranged inside the fixed frame (41) and movable relative to the fixed frame (41), a second movable frame (43) arranged inside the first movable frame (42) and movable relative to the fixed frame (41), a fixed frame reinforcing portion (411) arranged transversely on the fixed frame (41) on one side of the third workbench (23), a first reinforcing portion (421) arranged transversely on the first movable frame (42) on one side of the third workbench (23), and a second reinforcing portion (431) arranged transversely on the second movable frame (43) on one side of the third workbench (23), wherein the first movable frame (42) and the second movable frame (43) are arranged at both ends close to the third workbench (23), the first reinforcing portion (421) comprises a first upper reinforcing portion (4211) arranged on the upper side of the bearing table (2) and a first lower reinforcing portion (4212) arranged on the lower side of the bearing table (2), the second reinforcing portion (431) comprises a second upper reinforcing portion (4311) arranged on the upper side of the bearing table (2) and a second lower reinforcing portion (4312) arranged on the lower side of the bearing table (2), and the push rod (62) is connected to the first upper reinforcing portion (4211).

5. A wall construction automated lifting platform according to claim 4, characterized in that: The engaging portion (71) comprises a first engaging portion (711) arranged on the first upper reinforcing portion (4211) and a second engaging portion (712) arranged on the second upper reinforcing portion (4311), and the chain portion (72) comprises a first chain portion (721) connected to the first engaging portion (711) and connected to the second lower reinforcing portion (4312) and the fixed frame reinforcing portion (411) respectively, and a second chain portion (722) connected to the second engaging portion (712) and connected to the first lower reinforcing portion (4212) and the third workbench (23) respectively.

6. A wall building automated lift platform according to claim 4, wherein: Two first lower supporting ends (4213) are arranged in parallel between two opposite first lower reinforcing portions (4212), two second lower supporting ends (4313) are arranged in parallel between two opposite second lower reinforcing portions (4312), the first lower reinforcing portion (4212) and the first lower supporting end (4213) form a first reinforcing area (4214), the second lower reinforcing portion (4312) and the second lower supporting end (4313) form a second reinforcing area (4314), and the jacking mechanism (6) is arranged inside the first reinforcing area (4214) and outside the second reinforcing area (4314).

7. A wall building automated lifting platform according to any one of claims 1-6, characterized in that: The base (1) comprises a pulley (8) arranged at the bottom thereof, a supporting frame (9) arranged at the side thereof, and a pulling rod (100) arranged at one side thereof, the supporting frame (9) is provided with a supporting leg (91) movable up and down, and the supporting frame (9) is provided with four supporting legs (91) and detachably connected to four sides of the base (1).

8. A wall building automated lifting platform according to any one of claims 1-6, characterized in that: The bearing table (2) is provided with a movable containing box (10), the containing box (10) is provided with a pushing part (101), a bearing plate (102) on the pushing part (101), and a containing space (103) is formed between the inner side of the containing box (10) and the bearing plate (102).