An aluminum alloy scaffold that is easy to climb up and down
By designing an aluminum alloy scaffold with driving components and moving parts, the problem of existing scaffolds being unable to lift and move materials has been solved, realizing automatic lifting and moving of materials, which facilitates construction operations.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHONGQING SENHENG METAL PRODUCTS CO LTD
- Filing Date
- 2025-07-02
- Publication Date
- 2026-05-26
AI Technical Summary
The existing scaffolding cannot lift and lower building materials, making the transfer of building materials inconvenient, time-consuming, and labor-intensive.
An aluminum alloy scaffolding that is easy to access is designed, comprising a base, mounting components, and a moving component. The lifting plate is raised and lowered by using a driving component (lifting screw and drive motor) to drive a sliding block to slide on a sliding guide rail. The moving component's casters and limit screw cylinders enable the movement and fixation of the overall structure.
It enables automatic lifting and lowering of building materials, making it easier for workers to operate, improving construction efficiency, and reducing the time and labor intensity of manual handling.
Smart Images

Figure CN224281918U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of scaffolding technology, and in particular to an aluminum alloy scaffolding that is easy to ascend and descend. Background Technology
[0002] Scaffolding refers to a temporary structural platform used on construction sites to support construction workers, materials, and equipment in areas where construction work is difficult, such as exterior walls, interior decoration, or areas with high ceilings where direct construction is not possible.
[0003] Scaffolding is primarily used for construction workers to move up and down, but it is also widely used in advertising, municipal engineering, transportation and bridge construction, mining, and other sectors. Through long-term use and diverse application scenarios, traditional scaffolding has evolved into a variety of product structures, characterized by easy assembly and disassembly, good load-bearing capacity, and safe and reliable operation, leading to its rapid development.
[0004] In existing scaffolding projects, one construction worker works on the scaffolding while another assistant worker passes the building materials needed by the worker, such as bricks and cement, to the scaffolding, making it convenient for the construction worker to use these materials. However, existing scaffolding cannot lift or lower building materials during use, and manually passing building materials is not only inconvenient but also time-consuming and labor-intensive, making it unsuitable for use. Utility Model Content
[0005] The purpose of this utility model is to provide an aluminum alloy scaffold that is easy to move up and down, solving the problem of not being able to lift and lower building materials.
[0006] To achieve the above objectives, this utility model provides an aluminum alloy scaffold that facilitates ascent and descent, comprising a base, an installation assembly, and a moving assembly. The installation assembly includes an installation frame, a standing plate, a protective frame, a connecting frame, a sliding guide rail, a sliding block, a lifting plate, a baffle, a driving component, and an ascent and descent component. The installation frame is fixedly connected to the base and located on one side of the base. The standing plate is fixedly connected to the installation frame and located on one side of the installation frame. The protective frame is fixedly connected to the installation frame and located on one side of the installation frame. The connecting frame is fixedly connected to the base and also to the installation frame. The sliding guide rail is fixedly connected to the connecting frame and located on one side of the connecting frame. The sliding block is slidably connected to the sliding guide rail and located on one side of the sliding guide rail. The lifting plate is fixedly connected to the sliding block and located on one side of the sliding block. The baffle is fixedly connected to the lifting plate and located on one side of the lifting plate. The driving component is connected to the connecting frame, and the ascent and descent component is connected to the installation frame.
[0007] The driving component includes a lifting screw and a driving motor. The lifting screw is rotatably connected to the connecting frame and threadedly connected to the sliding block. The driving motor is fixedly connected to the connecting frame, and the output end of the driving motor is connected to the lifting screw.
[0008] The upper and lower components include upper and lower frames and a foot pedal. The upper and lower frames are fixedly connected to the mounting frame and to the base. The foot pedal is fixedly connected to the upper and lower frames and is located on one side of the upper and lower frames.
[0009] The movable component includes a caster wheel, a limiting threaded cylinder, and an abutment member. The caster wheel is fixedly connected to the base and located on one side of the base. The limiting threaded cylinder is fixedly connected to the base and located on one side of the base. The abutment member is connected to the limiting threaded cylinder.
[0010] The abutting component includes a limiting screw, a rotating knob, and an abutting block. The limiting screw is threadedly connected to the limiting threaded cylinder and is located inside the limiting threaded cylinder. The rotating knob is fixedly connected to the limiting screw and is located at one end of the limiting screw. The abutting block is fixedly connected to the rotating knob and is located on one side of the rotating knob.
[0011] This utility model discloses an aluminum alloy scaffold that facilitates easy access, comprising a base, an installation assembly, and a moving assembly. The installation assembly includes a mounting frame, a standing board, a protective frame, a connecting frame, a sliding guide rail, a sliding block, a lifting plate, a baffle, a driving component, and an access component. The driving component includes a lifting screw and a drive motor. The access component includes an access frame and a footboard. The moving assembly includes casters, a limiting threaded cylinder, and a contact component. The contact component includes a limiting screw, a rotating knob, and a contact block. The mounting frame is fixedly connected to the base and located on one side of the base. The standing board is fixedly connected to the mounting frame and located on one side of the mounting frame. The protective frame is fixedly connected to the mounting frame and located on one side of the mounting frame. The connecting frame is fixedly connected to the base and also to the mounting frame. The sliding guide rail is fixedly connected to the connecting frame and located on one side of the connecting frame. The sliding block is slidably connected to the sliding guide rail and located on one side of the sliding guide rail. The lifting plate is fixedly connected to the sliding block and located on one side of the sliding block. The baffle is fixedly connected to the lifting plate and located on one side of the lifting plate. The driving component is connected to the connecting frame, and the upper and lower components are connected to the mounting frame. In use, by pushing the mounting frame, the moving component drives the entire structure to move. After moving to a suitable position, the moving component fixes the entire structure in place. Construction workers can move up and down using the upper and lower components. Construction workers can stand on the standing plate to work. The protective frame prevents construction workers from falling. The auxiliary worker places the required building materials on the lifting plate, and then the driving component is activated. The driving component drives the sliding block to slide on the sliding guide rail. The sliding block drives the lifting plate to rise and fall. The lifting plate lifts the building materials, making it easier for construction workers to pick up the building materials. The baffle prevents the building materials from falling, thus solving the problem of not being able to lift and lower the building materials. Attached Figure Description
[0012] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0013] Figure 1 This is a schematic diagram of the overall structure of the aluminum alloy scaffolding that is easy to access in the first embodiment of this utility model.
[0014] Figure 2 This is a schematic diagram of the connection between the threaded rod and the sliding block of the aluminum alloy scaffolding that facilitates climbing up and down, according to the first embodiment of this utility model.
[0015] Figure 3 This is a schematic diagram of the connection between the limiting screw and the limiting threaded cylinder of the aluminum alloy scaffolding that facilitates climbing up and down, according to the second embodiment of this utility model.
[0016] In the diagram: 101-base, 102-mounting bracket, 103-standing plate, 104-protective frame, 105-connecting frame, 106-sliding guide rail, 107-sliding block, 108-lifting plate, 109-baffle, 110-lifting screw, 111-drive motor, 112-upper and lower frames, 113-pedal, 114-caster wheel, 115-limiting threaded cylinder, 116-limiting screw, 117-rotating knob, 118-abutment block. Detailed Implementation
[0017] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0018] The first embodiment of this application is as follows:
[0019] Please see Figures 1-3 , Figure 1 This is a schematic diagram of the overall structure of the aluminum alloy scaffolding for easy access in the first embodiment of this utility model. Figure 2 This is a schematic diagram of the connection between the threaded rod and the sliding block of the aluminum alloy scaffolding for easy access in the first embodiment of this utility model. Figure 3 This is a schematic diagram of the connection between the limiting screw and the limiting threaded cylinder of the second embodiment of the aluminum alloy scaffolding for easy access. The aluminum alloy scaffolding for easy access includes a base 101, an installation component, and a moving component. The installation component includes an installation frame 102, a standing plate 103, a protective frame 104, a connecting frame 105, a sliding guide rail 106, a sliding block 107, a lifting plate 108, a baffle 109, a driving component, and an up-and-down component. The driving component includes a lifting screw 110 and a drive motor 111. The up-and-down component includes an up-and-down frame 112 and a footboard 113. The moving component includes casters 114, a limiting threaded cylinder 115, and an abutment component. The abutment component includes a limiting screw 116, a rotating knob 117, and an abutment block 118. The aforementioned solution solves the problem of not being able to lift building materials and the problem of inconvenient movement.
[0020] In this specific embodiment, during use, pushing the mounting frame 102 causes the moving component to move the entire structure. After moving to a suitable position, the moving component fixes the entire structure in place. Construction workers can move up and down using the lifting components. Construction workers can stand on the standing plate 103 to work. The protective frame 104 prevents construction workers from falling. The assistance worker places the required building materials on the lifting plate 108. Then, the driving component is activated, which drives the sliding block 107 to slide on the sliding guide rail 106. The sliding block 107 drives the lifting plate 108 to rise and fall. The lifting plate 108 lifts the building materials, making it easier for construction workers to pick up the building materials. The baffle 109 prevents the building materials from falling, thus solving the problem of not being able to lift and lower the building materials.
[0021] First, the mounting bracket 102 is fixedly connected to the base 101 and located on one side of the base 101. The standing plate 103 is fixedly connected to the mounting bracket 102 and located on one side of the mounting bracket 102. The protective frame 104 is fixedly connected to the mounting bracket 102 and located on one side of the mounting bracket 102. The connecting bracket 105 is fixedly connected to the base 101 and to the mounting bracket 102. The sliding guide rail 106 is fixedly connected to the connecting bracket 105 and located on one side of the connecting bracket 105. The sliding block 107 is slidably connected to the sliding guide rail 106 and located on one side of the sliding guide rail 106. On one side, the lifting plate 108 is fixedly connected to the sliding block 107 and located on one side of the sliding block 107. The baffle 109 is fixedly connected to the lifting plate 108 and located on one side of the lifting plate 108. The driving component is connected to the connecting frame 105. The upper and lower components are connected to the mounting frame 102. The mounting frame 102 is located on the upper side of the base 101. The standing plate 103 is located on the upper side of the mounting frame 102. The protective frame 104 is located on the upper side of the mounting frame 102 and is fixedly connected to the mounting frame 102 and the standing plate 103. The protective frame 104 can prevent construction workers from standing on the standing plate 103. To prevent falling during installation, the connecting frame 105 is located on one side of the mounting frame 102, the sliding guide rail 106 is located inside the connecting frame 105, the sliding block 107 slides on the sliding guide rail 106, the lifting plate 108 is located on the side of the sliding block 107 away from the sliding guide rail 106, and the baffle 109 is located on the upper side of the lifting plate 108. The base 101, the mounting frame 102, the standing plate 103, the protective frame 104, and the upper and lower components are all made of aluminum alloy. In use, by pushing the mounting frame 102, the moving component moves the entire structure. After moving to the appropriate position, the... The moving component fixes the entire structure in place, allowing construction workers to move up and down using the lifting components. Workers can stand on the standing plate 103 to work, and the protective frame 104 prevents them from falling. An assistant worker places the necessary building materials on the lifting plate 108, and then the driving component is activated. The driving component drives the sliding block 107 to slide on the sliding guide rail 106, which in turn moves the lifting plate 108 up and down. The lifting plate 108 then lifts the building materials, making it easier for construction workers to retrieve them. The baffle 109 prevents the building materials from falling, thus solving the problem of not being able to lift and lower the building materials.
[0022] The lifting screw 110 is rotatably connected to the connecting frame 105 and threadedly connected to the sliding block 107. The drive motor 111 is fixedly connected to the connecting frame 105, and the output end of the drive motor 111 is connected to the lifting screw 110. The lifting screw 110 passes through the sliding block 107 and the connecting frame 105. The drive motor 111 is located above the connecting frame 105. When the drive motor 111 is started, it drives the lifting screw 110 to rotate, and the lifting screw 110 drives the sliding block 107 to slide and rise on the sliding guide rail 106.
[0023] Secondly, the upper and lower frame 112 is fixedly connected to the mounting frame 102 and to the base 101; the step 113 is fixedly connected to the upper and lower frame 112 and is located on one side of the upper and lower frame 112. The upper and lower frame 112 is located on the base 101 and inside the mounting frame 102. Construction workers can easily get up and down using the upper and lower frame 112 and the step 113.
[0024] Then, the caster wheel 114 is fixedly connected to the base 101 and located on one side of the base 101; the limiting threaded cylinder 115 is fixedly connected to the base 101 and located on one side of the base 101; the abutting member is connected to the limiting threaded cylinder 115, the caster wheel 114 is located on the lower side of the base 101, and the limiting threaded cylinder 115 is located on the lower side of the base 101. By pushing the mounting bracket 102, the caster wheel 114 is rotated. The caster wheel 114 moves the overall structure. After moving to a suitable position, the abutting member is rotated. The abutting member descends in the limiting threaded cylinder 115, so that the abutting member abuts against the ground, preventing the caster wheel 114 from moving the overall structure.
[0025] Finally, the limiting screw 116 is threadedly connected to the limiting threaded sleeve 115 and is located inside the limiting threaded sleeve 115; the rotating knob 117 is fixedly connected to the limiting screw 116 and is located at one end of the limiting screw 116; the abutting block 118 is fixedly connected to the rotating knob 117 and is located on one side of the rotating knob 117. The limiting screw 116 is located inside the limiting sleeve, the rotating knob 117 is located at the lower end of the limiting screw 116, and the abutting block 118 is located below the rotating knob 117. By pushing... The mounting bracket 102 causes the casters 114 to rotate. After the casters 114 move the overall structure to a suitable position, the rotating knob 117 is rotated. The rotating knob 117 drives the limiting screw 116 to rotate, causing the limiting screw 116 to descend in the limiting threaded cylinder 115. The limiting screw 116 drives the rotating knob 117 and the abutment block 118 to descend. The abutment block 118 abuts against the ground, limiting the overall structure and preventing the casters 114 from moving the overall structure.
[0026] When using the easy-to-access aluminum alloy scaffolding of this embodiment, pushing the mounting bracket 102 causes the casters 114 to rotate. The casters 114 move the overall structure to a suitable position. Then, rotating the knob 117 causes the limiting screw 116 to rotate, causing it to descend within the limiting threaded cylinder 115. The limiting screw 116 then causes the knob 117 and the abutment block 118 to descend, bringing them into contact with the ground and limiting the overall structure, preventing further movement of the casters 114. Construction workers can then access the scaffolding via the mounting bracket 112 and the footboard 113. For ease of movement, construction workers can stand on the standing platform 103 to work. The protective frame 104 prevents construction workers from falling. The assistant worker places the required building materials on the lifting platform 108, and then starts the drive motor 111. The drive motor 111 drives the lifting screw 110 to rotate. The lifting screw 110 drives the sliding block 107 to slide and rise on the sliding guide rail 106. The sliding block 107 drives the lifting platform 108 to rise and fall. The lifting platform 108 lifts the building materials, making it easier for construction workers to pick up the building materials. The baffle 109 prevents the building materials from falling, thus solving the problem of not being able to lift and lower the building materials.
[0027] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. An aluminum alloy scaffolding that is easy to access, comprising a base and a moving assembly, characterized in that: It also includes installation components; The installation assembly includes a mounting frame, a standing plate, a protective frame, a connecting frame, a sliding guide rail, a sliding block, a lifting plate, a baffle, a driving component, and upper and lower components. The mounting frame is fixedly connected to the base and located on one side of the base. The standing plate is fixedly connected to the mounting frame and located on one side of the mounting frame. The protective frame is fixedly connected to the mounting frame and located on one side of the mounting frame. The connecting frame is fixedly connected to the base and also fixedly connected to the mounting frame. The sliding guide rail is fixedly connected to the connecting frame and located on one side of the connecting frame. The sliding block is slidably connected to the sliding guide rail and located on one side of the sliding guide rail. The lifting plate is fixedly connected to the sliding block and located on one side of the sliding block. The baffle is fixedly connected to the lifting plate and located on one side of the lifting plate. The driving component is connected to the connecting frame, and the upper and lower components are connected to the mounting frame.
2. The aluminum alloy scaffolding for easy access as described in claim 1, characterized in that: The driving component includes a lifting screw and a drive motor. The lifting screw is rotatably connected to the connecting frame and threadedly connected to the sliding block. The drive motor is fixedly connected to the connecting frame, and the output end of the drive motor is connected to the lifting screw.
3. The aluminum alloy scaffolding for easy access as described in claim 1, characterized in that: The upper and lower components include upper and lower frames and a foot pedal. The upper and lower frames are fixedly connected to the mounting frame and to the base. The foot pedal is fixedly connected to the upper and lower frames and is located on one side of the upper and lower frames.
4. The aluminum alloy scaffolding for easy access as described in claim 1, characterized in that: The movable component includes a caster wheel, a limiting threaded cylinder, and an abutment member. The caster wheel is fixedly connected to the base and located on one side of the base. The limiting threaded cylinder is fixedly connected to the base and located on one side of the base. The abutment member is connected to the limiting threaded cylinder.
5. The aluminum alloy scaffolding for easy access as described in claim 4, characterized in that: The abutting component includes a limiting screw, a rotating knob, and an abutting block. The limiting screw is threadedly connected to the limiting threaded cylinder and is located inside the limiting threaded cylinder. The rotating knob is fixedly connected to the limiting screw and is located at one end of the limiting screw. The abutting block is fixedly connected to the rotating knob and is located on one side of the rotating knob.