Cantilever scaffold structure with carrying structure
By designing a handling mechanism with a combination of rectangular annular conveying rope and conveying wheel on the cantilever scaffold, the problem of the lack of a handling structure of the existing cantilever scaffold is solved, and the rapid transmission of construction materials and tools is achieved, and the work efficiency and safety are improved.
Patent Information
- Application Number
- CN202421386378.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-17
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-06-17
AI Technical Summary
The existing cantilever scaffolding lacks a handling structure, which leads to the need for manual or other equipment for handling construction materials and tools, which consumes time and effort, and increases work difficulty and cost.
A cantilever scaffolding with a transport structure is designed, and a transport mechanism combining a rectangular annular conveying rope and a conveying wheel is used to realize the rapid transmission of construction materials and tools through the longitudinal conveying rope of the rectangular annular conveying rope and the left and right directions of the conveying wheel.
It realizes the rapid transmission of construction materials and tools, saves time and effort, reduces work difficulty, improves work efficiency, and is suitable for large-scale promotion and application.
Smart Images

Figure CN223018126U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building construction, in particular to the technical field of cantilever scaffold construction, and specifically refers to a cantilever scaffold structure with a handling structure. Background Technique
[0002] Building construction refers to the production activities in the implementation stage of project construction, which is the construction process of various buildings. It can also be said to be the process of turning the various lines on the design drawings into physical objects at the designated location. It includes foundation engineering construction, main structure construction, roofing engineering construction, decoration engineering construction, etc.
[0003] During the building construction process, cantilever scaffold construction is often involved. A cantilever scaffold is a support structure for high-altitude construction. It can be cantilevered outside the building to provide a safe and stable working platform for workers. It can not only support the weight of the working platform and workers, but also prevent workers from falling from a height and provide additional safety guarantees. This can ensure the safety during the construction process, improve work efficiency, and reduce the occurrence of accidents.
[0004] However, the existing cantilever scaffolds lack a handling structure. When operators need to handle construction materials and construction tools in the cantilever scaffold structure, they need to manually handle or use other equipment to transport the construction materials or construction tools, which will consume time and human resources, increase the difficulty and cost of work.
[0005] Therefore, it is hoped to provide a cantilever scaffold structure with a handling structure, which can quickly convey construction materials or construction tools, save time and effort, reduce the work difficulty, and improve work efficiency. Content of the Utility Model
[0006] In order to overcome the above-mentioned shortcomings in the prior art, an object of the utility model is to provide a cantilever scaffold structure with a handling structure, which can quickly convey construction materials or construction tools, save time and effort, reduce the work difficulty, and improve work efficiency, and is suitable for large-scale popularization and application.
[0007] Another object of the utility model is to provide a cantilever scaffold structure with a handling structure, which is ingeniously designed, has a simple structure, is easy to manufacture, has a low manufacturing cost, and is suitable for large-scale popularization and application.
[0008] To achieve the above object, the utility model provides a cantilevered scaffolding structure with a handling structure, including a cantilevered scaffolding. The cantilevered scaffolding includes a front cantilever rod, a rear cantilever rod, a front right vertical rod, and a rear right vertical rod. The front cantilever rod and the rear cantilever rod are both arranged in the left-right direction and are spaced apart from each other front and rear. The left ends of the front cantilever rod and the rear cantilever rod are both used to be fixed on the first floor slab of the building main body, and the right ends of the front cantilever rod and the rear cantilever rod are both used to cantilever on the right side of the first floor slab. The front right vertical rod and the rear right vertical rod are spaced apart from each other front and rear and are respectively arranged on the right ends of the front cantilever rod and the rear cantilever rod. The feature is that the cantilevered scaffolding structure with a handling structure further includes a handling mechanism, wherein:
[0009] The handling mechanism includes a front upper fixing block, a front lower fixing block, a rear upper fixing block, a rear lower fixing block, a front upper conveyor wheel, a front lower conveyor wheel, a rear upper conveyor wheel, a rear lower conveyor wheel, and a rectangular annular conveyor rope. The front upper fixing block and the front lower fixing block, as well as the rear upper fixing block and the rear lower fixing block, are vertically spaced apart from each other. The front upper fixing block and the rear upper fixing block, as well as the front lower fixing block and the rear lower fixing block, are spaced apart from each other front and rear. The front upper fixing block and the front lower fixing block are both located on the left side of the front right vertical rod and are both connected to the front right vertical rod. The rear upper fixing block and the rear lower fixing block are both located on the left side of the rear right vertical rod and are both connected to the rear right vertical rod. The front upper conveyor wheel, the front lower conveyor wheel, the rear upper conveyor wheel, and the rear lower conveyor wheel are all vertically arranged and are all arranged in the front-rear direction and are respectively rotatably arranged around the left-right direction on the front upper fixing block, the front lower fixing block, the rear upper fixing block, and the rear lower fixing block. The rectangular annular conveyor rope is vertically arranged and is arranged in the front-rear direction and is respectively sleeved on the front upper conveyor wheel, the front lower conveyor wheel, the rear upper conveyor wheel, and the rear lower conveyor wheel.
[0010] Preferably, the handling mechanism further includes a front upper right disk, a front lower right disk, a rear upper right disk, a rear lower right disk, a front upper left disk, a front lower left disk, a rear upper left disk, and a rear lower left disk. The front upper right disk, the front lower right disk, the rear upper right disk, and the rear lower right disk are all vertically arranged and all arranged along the front-rear direction. The front upper right disk, the front lower right disk, the rear upper right disk, and the rear lower right disk are respectively located on the right sides of the front upper conveyor wheel, the front lower conveyor wheel, the rear upper conveyor wheel, and the rear lower conveyor wheel and are respectively connected to the front upper conveyor wheel, the front lower conveyor wheel, the rear upper conveyor wheel, and the rear lower conveyor wheel. The front upper left disk, the front lower left disk, the rear upper left disk, and the rear lower left disk are all vertically arranged and all arranged along the front-rear direction. The front upper left disk, the front lower left disk, the rear upper left disk, and the rear lower left disk are respectively located on the left sides of the front upper conveyor wheel, the front lower conveyor wheel, the rear upper conveyor wheel, and the rear lower conveyor wheel and are respectively connected to the front upper conveyor wheel, the front lower conveyor wheel, the rear upper conveyor wheel, and the rear lower conveyor wheel.
[0011] More preferably, the front upper left disk, the front lower left disk, the rear upper left disk, and the rear lower left disk are respectively sleeved on and threadedly engaged with the front upper conveyor wheel, the front lower conveyor wheel, the rear upper conveyor wheel, and the rear lower conveyor wheel.
[0012] Preferably, the handling mechanism further includes a front upper U-shaped groove, a front lower U-shaped groove, a rear upper U-shaped groove, and a rear lower U-shaped groove. The front upper U-shaped groove, the front lower U-shaped groove, the rear upper U-shaped groove, and the rear lower U-shaped groove are all horizontally arranged and all arranged along the front-rear direction and are respectively arranged on the front upper fixing block, the front lower fixing block, the rear upper fixing block, and the rear lower fixing block. The openings of the front upper U-shaped groove, the front lower U-shaped groove, the rear upper U-shaped groove, and the rear lower U-shaped groove all face upward. The front upper conveyor wheel, the front lower conveyor wheel, the rear upper conveyor wheel, and the rear lower conveyor wheel are respectively located in the front upper U-shaped groove, the front lower U-shaped groove, the rear upper U-shaped groove, and the rear lower U-shaped groove and are respectively rotatably connected to the left and right side walls of the front upper U-shaped groove, the left and right side walls of the front lower U-shaped groove, the left and right side walls of the rear upper U-shaped groove, and the left and right side walls of the rear lower U-shaped groove about the left-right direction. The rectangular annular conveyor rope is movably threaded through the front lower U-shaped groove and the rear lower U-shaped groove along the front-rear direction.
[0013] Preferably, the conveying mechanism further includes a front upper rotating shaft, a front lower rotating shaft, a rear upper rotating shaft, and a rear lower rotating shaft. The front upper rotating shaft, the front lower rotating shaft, the rear upper rotating shaft, and the rear lower rotating shaft are all arranged along the left-right direction and are respectively located in the front upper U-shaped groove, the front lower U-shaped groove, the rear upper U-shaped groove, and the rear lower U-shaped groove, and are respectively rotatably connected to the left side wall and the right side wall of the front upper U-shaped groove, the left side wall and the right side wall of the front lower U-shaped groove, the left side wall and the right side wall of the rear upper U-shaped groove, and the left side wall and the right side wall of the rear lower U-shaped groove around the left-right direction. The front upper conveyor wheel, the front lower conveyor wheel, the rear upper conveyor wheel, and the rear lower conveyor wheel are respectively sleeved on the front upper rotating shaft, the front lower rotating shaft, the rear upper rotating shaft, and the rear lower rotating shaft.
[0014] Preferably, the cantilever scaffold further includes a right upper cross bar and a right lower cross bar. The right upper cross bar and the right lower cross bar are both arranged along the front-rear direction and are spaced apart from each other vertically. The right upper cross bar and the right lower cross bar are both located between the front right vertical pole and the rear right vertical pole and are respectively connected to the front right vertical pole and the rear right vertical pole.
[0015] Preferably, the cantilever scaffold further includes a front left vertical pole, a rear left vertical pole, a front upper cross bar, a front lower cross bar, a rear upper cross bar, and a rear lower cross bar. The front left vertical pole and the rear left vertical pole are spaced apart from each other front and rear. The front left vertical pole and the rear left vertical pole are respectively located on the left side of the front right vertical pole and the rear right vertical pole and are respectively arranged on the right ends of the front cantilever rod and the rear cantilever rod. The front upper cross bar and the front lower cross bar are spaced apart from each other vertically and are both located between the front left vertical pole and the front right vertical pole and are respectively connected to the front left vertical pole and the front right vertical pole. The rear upper cross bar and the rear lower cross bar are spaced apart from each other vertically and are both located between the rear left vertical pole and the rear right vertical pole and are respectively connected to the rear left vertical pole and the rear right vertical pole.
[0016] Preferably, the cantilever scaffold further includes a front U-shaped hoop and a rear U-shaped hoop. The front U-shaped hoop and the rear U-shaped hoop are both arranged vertically and along the front-rear direction. The front U-shaped hoop is sleeved on the left end of the front cantilever rod and is used to be sleeved on the first floor slab. The rear U-shaped hoop is sleeved on the left end of the rear cantilever rod and is used to be sleeved on the first floor slab.
[0017] Preferably, the cantilever scaffold further includes a front anti-pulling rope and a rear anti-pulling rope. Both the front anti-pulling rope and the rear anti-pulling rope are inclined along the left-right direction and are spaced apart from each other front and rear. The left end of the front anti-pulling rope is higher than the right end of the front anti-pulling rope and is used to connect to the second floor slab of the building body that is higher than the first floor slab. The right end of the front anti-pulling rope is connected to the right end of the front cantilever rod. The left end of the rear anti-pulling rope is higher than the right end of the rear anti-pulling rope and is used to connect to the second floor slab. The right end of the rear anti-pulling rope is connected to the right end of the rear cantilever rod.
[0018] More preferably, both the front anti-pulling rope and the rear anti-pulling rope are steel wires.
[0019] The beneficial effects of the present utility model mainly lie in:
[0020] 1. When the cantilever scaffold structure with a handling structure of the present utility model is in use, the left ends of the front cantilever rod and the rear cantilever rod of the cantilever scaffold are both fixed on the first floor slab of the building body. The right ends of the front cantilever rod and the rear cantilever rod are both cantilevered outside the first floor slab. The left end of the front anti-pulling rope is connected to the second floor slab of the building body that is higher than the first floor slab, and the left end of the rear anti-pulling rope is connected to the second floor slab. When it is necessary to convey construction materials or construction tools, quickly place the required construction materials or construction tools into a container, and hang the container on the upper transmission rope of the rectangular annular transmission rope. By pulling the rectangular annular transmission rope at the receiving end, the rectangular annular transmission rope rotates around the left-right direction through the front upper transmission wheel, the front lower transmission wheel, the rear upper transmission wheel and the rear lower transmission wheel, driving the container to move in the front-rear direction, so as to quickly convey construction materials or construction tools in the front-rear direction, achieving the effect of quickly transporting material tools within the same floor. Therefore, it can quickly convey construction materials or construction tools, saving time and effort, reducing the work difficulty, and improving the work efficiency, and is suitable for large-scale popularization and application.
[0021] 2. When the cantilever scaffold structure with a handling structure of the present utility model is in use, the left ends of the front cantilever rods and the left ends of the rear cantilever rods of the cantilever scaffold are both fixed on the first floor slab of the building main body. The right ends of the front cantilever rods and the right ends of the rear cantilever rods are both cantilevered outside the first floor slab. The left end of the front anti-pulling rope is connected to the second floor slab of the building main body that is higher than the first floor slab, and the left end of the rear anti-pulling rope is connected to the second floor slab. When it is necessary to convey construction materials or construction tools, quickly place the required construction materials or construction tools into a container, and hang the container on the upper transmission rope of the rectangular annular transmission rope. By pulling the rectangular annular transmission rope at the receiving end, the rectangular annular transmission rope rotates around the left-right direction through the front upper transmission wheel, the front lower transmission wheel, the rear upper transmission wheel and the rear lower transmission wheel, driving the container to move in the front-rear direction, so as to quickly convey construction materials or construction tools in the front-rear direction, achieving the effect of quickly transporting material tools within the same floor. Therefore, its design is ingenious, the structure is simple, the manufacturing is simple, the manufacturing cost is low, and it is suitable for large-scale popularization and application.
[0022] These and other objects, features and advantages of the present utility model are fully embodied by the following detailed description and the accompanying drawings, and can be realized by the means, devices and their combinations specifically pointed out in the utility model content. Brief Description of the Drawings
[0023] Figure 1 It is a partial front view schematic diagram of a specific embodiment of the cantilever scaffold structure with a handling structure of the present utility model installed on the building main body.
[0024] Figure 2 is Figure 1 A partial enlarged schematic diagram of the structure shown.
[0025] Figure 3 is Figure 1 A rear view schematic diagram of the specific embodiment shown installed on the building main body.
[0026] Figure 4 is Figure 3 A partial enlarged schematic diagram of the structure shown.
[0027] Figure 5 is Figure 1 A partial left view schematic diagram of the specific embodiment shown.
[0028] Figure 6 is Figure 1 A partial front view enlarged schematic diagram of the rectangular annular transmission rope of the specific embodiment shown clamped between the front upper left disc and the front upper right disc.
[0029] (Symbol Explanation)
[0030] 1 Cantilever scaffold; 101 Front cantilever rod; 102 Rear cantilever rod; 103 Front right vertical rod; 104 Rear right vertical rod; 105 Upper right cross bar; 106 Lower right cross bar; 107 Front left vertical rod; 108 Rear left vertical rod; 109 Front upper cross bar; 110 Front lower cross bar; 111 Rear upper cross bar; 112 Rear lower cross bar; 113 Front U-shaped hoop; 114 Rear U-shaped hoop; 115 Front anti-pulling rope; 116 Rear anti-pulling rope;
[0031] 2 Handling mechanism; 201 Front upper fixing block; 202 Front lower fixing block; 203 Rear upper fixing block; 204 Rear lower fixing block; 205 Front upper conveying wheel; 206 Front lower conveying wheel; 207 Rear upper conveying wheel; 208 Rear lower conveying wheel; 209 Rectangular annular conveying rope; 210 Front upper right disc; 211 Front lower right disc; 212 Rear upper right disc; 213 Rear lower right disc; 214 Front upper left disc; 215 Front lower left disc; 216 Rear upper left disc; 217 Rear lower left disc; 218 Front upper U-shaped groove; 219 Front lower U-shaped groove; 220 Rear upper U-shaped groove; 221 Rear lower U-shaped groove; 222 Front upper rotating shaft; 223 Front lower rotating shaft; 224 Rear upper rotating shaft; 225 Rear lower rotating shaft;
[0032] 3 First floor slab;
[0033] 4 Second floor slab. Detailed implementation mode
[0034] In order to more clearly understand the technical content of the present utility model, the following embodiments are specifically described in detail.
[0035] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model 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 to the present utility model.
[0036] Please refer to Figures 1 to 5 As shown in the figure, in a specific embodiment of the present utility model, the cantilever scaffold structure with a handling structure of the present utility model includes a cantilever scaffold 1 and a handling mechanism 2, wherein:
[0037] The cantilever scaffolding 1 comprises a front cantilever rod 101, a rear cantilever rod 102, a front right vertical rod 103 and a rear right vertical rod 104, wherein the front cantilever rod 101 and the rear cantilever rod 102 are both arranged in the left-right direction and spaced apart from each other in the front and back directions, the left end of the front cantilever rod 101 and the left end of the rear cantilever rod 102 are both used to be fixed on the first floor slab 3 of the building main body, the right end of the front cantilever rod 101 and the right end of the rear cantilever rod 102 are both used to cantilever on the right side of the first floor slab 3, the front right vertical rod 103 and the rear right vertical rod 104 are spaced apart from each other in the front and back directions and are respectively arranged on the right end of the front cantilever rod 101 and the right end of the rear cantilever rod 102;
[0038] The conveying mechanism 2 includes a front upper fixed block 201, a front lower fixed block 202, a rear upper fixed block 203, a rear lower fixed block 204, a front upper transmission wheel 205, a front lower transmission wheel 206, a rear upper transmission wheel 207, a rear lower transmission wheel 208 and a rectangular ring transmission rope 209, the front upper fixed block 201 and the front lower fixed block 202 and the rear upper fixed block 203 and the rear lower fixed block 204 are all arranged vertically spaced apart from each other, the front upper fixed block 201 and the rear upper fixed block 203 and the front lower fixed block 202 and the rear lower fixed block 204 are all arranged front to back spaced apart from each other, the front upper fixed block 201 and the front lower fixed block 202 are both located on the left side of the front right upright pole 103 and are both connected to the front right upright pole 1 03, the rear upper fixed block 203 and the rear lower fixed block 204 are both located on the left side of the rear right upright pole 104 and are both connected to the rear right upright pole 104, the front upper transmission wheel 205, the front lower transmission wheel 206, the rear upper transmission wheel 207 and the rear lower transmission wheel 208 are all vertically arranged and arranged along the front-to-back direction and are respectively rotatably arranged on the front upper fixed block 201, the front lower fixed block 202, the rear upper fixed block 203 and the rear lower fixed block 204 around the left and right directions, the rectangular ring transmission rope 209 is vertically arranged and arranged along the front-to-back direction and are respectively sleeved on the front upper transmission wheel 205, the front lower transmission wheel 206, the rear upper transmission wheel 207 and the rear lower transmission wheel 208.
[0039] The transport mechanism 2 may also include any other suitable components. Figure 2 , Figure 4 and Figure 5As shown in the figure, in a specific embodiment of the present utility model, the handling mechanism 2 further includes a front upper right disk 210, a front lower right disk 211, a rear upper right disk 212, a rear lower right disk 213, a front upper left disk 214, a front lower left disk 215, a rear upper left disk 216, and a rear lower left disk 217. The front upper right disk 210, the front lower right disk 211, the rear upper right disk 212, and the rear lower right disk 213 are all vertically arranged and all arranged along the front-rear direction. The front upper right disk 210, the front lower right disk 211, the rear upper right disk 212, and the rear lower right disk 213 are respectively located on the right side of the front upper conveyor wheel 205, the front lower conveyor wheel 206, the rear upper conveyor wheel 207, and the rear lower conveyor wheel 208, and are respectively connected to the front upper conveyor wheel 205, the front lower conveyor wheel 206, the rear upper conveyor wheel 207, and the rear lower conveyor wheel 208. The front upper left disk 214, the front lower left disk 215, the rear upper left disk 216, and the rear lower left disk 217 are all vertically arranged and all arranged along the front-rear direction. The front upper left disk 214, the front lower left disk 215, the rear upper left disk 216, and the rear lower left disk 217 are respectively located on the left side of the front upper conveyor wheel 205, the front lower conveyor wheel 206, the rear upper conveyor wheel 207, and the rear lower conveyor wheel 208, and are respectively connected to the front upper conveyor wheel 205, the front lower conveyor wheel 206, the rear upper conveyor wheel 207, and the rear lower conveyor wheel 208. With the above arrangement, the front upper left disk 214 and the front upper right disk 210, the front lower left disk 215 and the front lower right disk 211, the rear upper left disk 216 and the rear upper right disk 212, and the rear lower left disk 217 and the rear lower right disk 213 respectively limit the rectangular annular conveyor rope 209 on the left and right sides of the rectangular annular conveyor rope 209, preventing the rectangular annular conveyor rope 209 from slipping off the front upper conveyor wheel 205, the front lower conveyor wheel 206, the rear upper conveyor wheel 207, and the rear lower conveyor wheel 208, and improving the structural stability.
[0040] The front upper left disk 214, the front lower left disk 215, the rear upper left disk 216, and the rear lower left disk 217 are respectively connected to the front upper conveyor wheel 205, the front lower conveyor wheel 206, the rear upper conveyor wheel 207, and the rear lower conveyor wheel 208, and any suitable structure can be adopted. In a specific embodiment of the present utility model, the front upper left disk 214, the front lower left disk 215, the rear upper left disk 216, and the rear lower left disk 217 are respectively sleeved and threadedly engaged with the front upper conveyor wheel 205, the front lower conveyor wheel 206, the rear upper conveyor wheel 207, and the rear lower conveyor wheel 208.
[0041] The front upper conveyor wheel 205, the front lower conveyor wheel 206, the rear upper conveyor wheel 207 and the rear lower conveyor wheel 208 are respectively rotatably arranged about the left - right direction on the front upper fixing block 201, the front lower fixing block 202, the rear upper fixing block 203 and the rear lower fixing block 204, and any suitable structure can be adopted. Please refer to Figure 2 , Figure 4 and Figure 5 As shown, in a specific embodiment of the present invention, the handling mechanism 2 further includes a front upper U - shaped groove 218, a front lower U - shaped groove 219, a rear upper U - shaped groove 220 and a rear lower U - shaped groove 221. The front upper U - shaped groove 218, the front lower U - shaped groove 219, the rear upper U - shaped groove 220 and the rear lower U - shaped groove 221 are all horizontally arranged and all arranged along the front - rear direction, and are respectively arranged on the front upper fixing block 201, the front lower fixing block 202, the rear upper fixing block 203 and the rear lower fixing block 204. The openings of the front upper U - shaped groove 218, the front lower U - shaped groove 219, the rear upper U - shaped groove 220 and the rear lower U - shaped groove 221 all face upward. The front upper conveyor wheel 205, the front lower conveyor wheel 206, the rear upper conveyor wheel 207 and the rear lower conveyor wheel 208 are respectively located in the front upper U - shaped groove 218, the front lower U - shaped groove 219, the rear upper U - shaped groove 220 and the rear lower U - shaped groove 221, and are respectively rotatably connected to the left and right side walls of the front upper U - shaped groove 218, the left and right side walls of the front lower U - shaped groove 219, the left and right side walls of the rear upper U - shaped groove 220 and the left and right side walls of the rear lower U - shaped groove 221 about the left - right direction. The rectangular annular conveyor rope 209 is movably threaded through the front lower U - shaped groove 219 and the rear lower U - shaped groove 221 along the front - rear direction.
[0042] The front upper conveyor wheel 205, the front lower conveyor wheel 206, the rear upper conveyor wheel 207 and the rear lower conveyor wheel 208 are respectively located in the front upper U - shaped groove 218, the front lower U - shaped groove 219, the rear upper U - shaped groove 220 and the rear lower U - shaped groove 221, and are respectively rotatably connected to the left and right side walls of the front upper U - shaped groove 218, the left and right side walls of the front lower U - shaped groove 219, the left and right side walls of the rear upper U - shaped groove 220 and the left and right side walls of the rear lower U - shaped groove 221 about the left - right direction, and any suitable structure can be adopted. Please refer to Figure 2 , Figure 4 and Figure 5As shown, in a specific embodiment of the present utility model, the handling mechanism 2 further includes a front upper rotating shaft 222, a front lower rotating shaft 223, a rear upper rotating shaft 224, and a rear lower rotating shaft 225. The front upper rotating shaft 222, the front lower rotating shaft 223, the rear upper rotating shaft 224, and the rear lower rotating shaft 225 are all arranged along the left-right direction and are respectively located in the front upper U-shaped groove 218, the front lower U-shaped groove 219, the rear upper U-shaped groove 220, and the rear lower U-shaped groove 221, and are respectively rotatably connected to the left side wall and the right side wall of the front upper U-shaped groove 218, the left side wall and the right side wall of the front lower U-shaped groove 219, the left side wall and the right side wall of the rear upper U-shaped groove 220, and the left side wall and the right side wall of the rear lower U-shaped groove 221 around the left-right direction. The front upper conveyor wheel 205, the front lower conveyor wheel 206, the rear upper conveyor wheel 207, and the rear lower conveyor wheel 208 are respectively sleeved on the front upper rotating shaft 222, the front lower rotating shaft 223, the rear upper rotating shaft 224, and the rear lower rotating shaft 225.
[0043] The suspended scaffold 1 may further include any other suitable components. Please refer to Figure 5 As shown, in a specific embodiment of the present utility model, the suspended scaffold 1 further includes a right upper cross bar 105 and a right lower cross bar 106. The right upper cross bar 105 and the right lower cross bar 106 are both arranged along the front-rear direction and are spaced apart from each other up and down. The right upper cross bar 105 and the right lower cross bar 106 are both located between the front right vertical rod 103 and the rear right vertical rod 104 and are respectively connected to the front right vertical rod 103 and the rear right vertical rod 104.
[0044] The suspended scaffold 1 may further include any other suitable components. Please refer to Figure 1 and Figure 3As shown, in a specific embodiment of the present utility model, the cantilever scaffold 1 further includes a front left vertical rod 107, a rear left vertical rod 108, a front upper cross bar 109, a front lower cross bar 110, a rear upper cross bar 111 and a rear lower cross bar 112. The front left vertical rod 107 and the rear left vertical rod 108 are arranged at intervals in the front and rear directions. The front left vertical rod 107 and the rear left vertical rod 108 are respectively located on the left sides of the front right vertical rod 103 and the rear right vertical rod 104 and are respectively arranged on the right ends of the front cantilever rod 101 and the rear cantilever rod 102. The front upper cross bar 109 and the front lower cross bar 110 are arranged at intervals in the up and down directions and are both located between the front left vertical rod 107 and the front right vertical rod 103 and respectively connect the front left vertical rod 107 and the front right vertical rod 103. The rear upper cross bar 111 and the rear lower cross bar 112 are arranged at intervals in the up and down directions and are both located between the rear left vertical rod 108 and the rear right vertical rod 104 and respectively connect the rear left vertical rod 108 and the rear right vertical rod 104.
[0045] The cantilever scaffold 1 may further include any other suitable components. Please refer to Figure 1 and Figure 3 As shown, in a specific embodiment of the present utility model, the cantilever scaffold 1 further includes a front U-shaped hoop 113 and a rear U-shaped hoop 114. The front U-shaped hoop 113 and the rear U-shaped hoop 114 are both vertically arranged and arranged along the front and rear directions. The front U-shaped hoop 113 is sleeved on the left end of the front cantilever rod 101 and is used to be sleeved on the first floor slab 3. The rear U-shaped hoop 114 is sleeved on the left end of the rear cantilever rod 102 and is used to be sleeved on the first floor slab 3. With the above arrangement, the left end of the front cantilever rod 101 is sleeved on the first floor slab 3 through the front U-shaped hoop 113, and the left end of the rear cantilever rod 102 is sleeved on the first floor slab 3 through the rear U-shaped hoop 114.
[0046] The cantilever scaffold 1 may further include any other suitable components. Please refer to Figure 1 and Figure 3 As shown, in a specific embodiment of the present utility model, the cantilever scaffold 1 further includes a front anti-pulling rope 115 and a rear anti-pulling rope 116. The front anti-pulling rope 115 and the rear anti-pulling rope 116 are both inclined in the left and right directions and arranged at intervals in the front and rear directions. The left end of the front anti-pulling rope 115 is higher than the right end of the front anti-pulling rope 115 and is used to connect the second floor slab 4 of the building body higher than the first floor slab 3. The right end of the front anti-pulling rope 115 is connected to the right end of the front cantilever rod 101. The left end of the rear anti-pulling rope 116 is higher than the right end of the rear anti-pulling rope 116 and is used to connect the second floor slab 4. The right end of the rear anti-pulling rope 116 is connected to the right end of the rear cantilever rod 102.
[0047] The front anti-pulling rope 115 and the rear anti-pulling rope 116 can be ropes made of any suitable material. In a specific embodiment of the present utility model, both the front anti-pulling rope 115 and the rear anti-pulling rope 116 are steel ropes.
[0048] During use, the left end of the front cantilever rod 101 and the left end of the rear cantilever rod 102 of the cantilever scaffold 1 are both fixed on the first floor slab 3 of the building main body. The right end of the front cantilever rod 101 and the right end of the rear cantilever rod 102 are both cantilevered on the right side of the first floor slab 3. The left end of the front anti-pulling rope 115 is connected to the second floor slab 4 of the building main body that is higher than the first floor slab 3, and the left end of the rear anti-pulling rope 116 is connected to the second floor slab 4. Other components are installed and arranged as described above.
[0049] When it is necessary to convey construction materials or construction tools, quickly place the required construction materials or construction tools into a container, and hang the container on the upper conveying rope of the rectangular annular conveying rope 209. By pulling the rectangular annular conveying rope 209 at the receiving end, the rectangular annular conveying rope 209 rotates around the left-right direction through the front upper conveying wheel 205, the front lower conveying wheel 206, the rear upper conveying wheel 207, and the rear lower conveying wheel 208, driving the container to move in the front-rear direction, so as to quickly convey construction materials or construction tools in the front-rear direction, achieving the function of quickly conveying material tools within the same floor.
[0050] When the front upper left disc 214, the front lower left disc 215, the rear upper left disc 216, and the rear lower left disc 217 are respectively sleeved and threadedly engaged with the front upper conveying wheel 205, the front lower conveying wheel 206, the rear upper conveying wheel 207, and the rear lower conveying wheel 208, when the weight of the conveyed material tool is relatively heavy, by respectively rotating the front upper left disc 214, the front lower left disc 215, the rear upper left disc 216, and the rear lower left disc 217 around the left-right direction, the front upper left disc 214, the front lower left disc 215, the rear upper left disc 216, and the rear lower left disc 217 respectively move towards the front upper right disc 210, the front lower right disc 211, the rear upper right disc 212, and the rear lower right disc 213, that is, move to the right, and clamp the rectangular annular conveying rope 209 between the front upper left disc 214 and the front upper right disc 210, the front lower left disc 215 and the front lower right disc 211, the rear upper left disc 216 and the rear upper right disc 212, and the rear lower left disc 217 and the rear lower right disc 213. Figure 6It is shown that the rectangular annular conveyor rope 209 is clamped between the front upper left disk 214 and the front upper right disk 210, so as to carry out the conveying operation more stably. When it is necessary to fix the rectangular annular conveyor rope 209, the front upper left disk 214, the front lower left disk 215, the rear upper left disk 216 and the rear lower left disk 217 are further moved to the right, and the rectangular annular conveyor rope 209 is clamped between the front upper left disk 214 and the front upper right disk 210, the front lower left disk 215 and the front lower right disk 211, the rear upper left disk 216 and the rear upper right disk 212, and the rear lower left disk 217 and the rear lower right disk 213, so as to play a fixing role.
[0051] By adopting the utility model, by arranging a handling mechanism on the cantilevered scaffolding and using a rectangular annular conveyor rope for rapid transmission of construction materials or construction tools, the following benefits can be brought:
[0052] Improve work efficiency: The rectangular annular conveyor rope can rapidly longitudinally convey construction tools or construction materials, enabling the operators to quickly obtain the required materials or tools, reducing the waiting and searching time, and thus improving the construction efficiency.
[0053] Reduce labor input: The rectangular annular conveyor rope can replace manual handling and transmission of materials or tools, reducing the need for labor input and saving human resources and labor costs.
[0054] Ensure safety: The rectangular annular conveyor rope can firmly fix the materials or tools on the rectangular annular conveyor rope, avoiding the dropping and damage of the materials or tools during the transmission process, and ensuring the safety of the construction site.
[0055] Convenient operation: The design of the rectangular annular conveyor rope makes the transmission of materials or tools simple and convenient. The operator only needs to pull the rectangular annular conveyor rope at the receiving end to quickly transmit the materials or tools to the required position, and the operation is simple and easy to master.
[0056] Wide application range: The rectangular annular conveyor rope can be applied to different types of construction sites and construction scenes, and can be used to convey various materials or tools with different weights and sizes, having a large applicability.
[0057] Generally speaking, by using the rectangular annular conveyor rope to rapidly transmit construction materials or construction tools on the cantilevered scaffolding, the construction efficiency can be improved, the labor input can be reduced, the safety can be ensured, the operation is convenient, and the application range is wide. This has a positive impact on improving the efficiency and quality of engineering construction, saving time and cost.
[0058] In summary, the cantilevered scaffolding structure with a handling structure of the utility model can rapidly transmit construction materials or construction tools, saving time and effort, reducing the work difficulty, improving the work efficiency, with a clever design, a simple structure, being easy to manufacture, having a low manufacturing cost, and being suitable for large-scale popularization and application.
[0059] Thus, the objectives of the present utility model have been fully and effectively achieved. The functions and structural principles of the present utility model have been demonstrated and described in the embodiments. Without departing from the said principles, the implementation modes can be modified arbitrarily. Therefore, the present utility model includes all modified implementation modes based on the spirit and scope of the claims.
Claims
1. A cantilever scaffold structure with a carrying structure, comprising a cantilever scaffold, the cantilever scaffold comprising a front cantilever rod, a rear cantilever rod, a front right upright rod and a rear right upright rod, the front cantilever rod and the rear cantilever rod are both arranged in the left-right direction and spaced apart from each other front and back, the left end of the front cantilever rod and the left end of the rear cantilever rod are both used to be fixed on the first floor slab of the building main body, the right end of the front cantilever rod and the right end of the rear cantilever rod are both used to cantilever on the right side of the first floor slab, the front right upright rod and the rear right upright rod are spaced apart from each other front and back and are respectively arranged on the right end of the front cantilever rod and the right end of the rear cantilever rod, characterized in that: The cantilever scaffolding structure with a handling structure also includes a handling mechanism, wherein: The conveying mechanism comprises a front upper fixing block, a front lower fixing block, a rear upper fixing block, a rear lower fixing block, a front upper conveying wheel, a front lower conveying wheel, a rear upper conveying wheel, a rear lower conveying wheel and a rectangular ring conveying rope, the front upper fixing block and the front lower fixing block as well as the rear upper fixing block and the rear lower fixing block are all vertically spaced apart from each other, the front upper fixing block and the rear upper fixing block as well as the front lower fixing block and the rear lower fixing block are all spaced apart from each other front to back, the front upper fixing block and the front lower fixing block are both located on the left side of the front right upright pole and are both connected to the front right upright pole, the rear upper The fixed block and the rear lower fixed block are both located on the left side of the rear right upright pole and are both connected to the rear right upright pole, the front upper conveying wheel, the front lower conveying wheel, the rear upper conveying wheel and the rear lower conveying wheel are all vertically arranged and arranged along the front-to-back direction and are respectively rotatably arranged on the front upper fixed block, the front lower fixed block, the rear upper fixed block and the rear lower fixed block around the left and right directions, and the rectangular ring conveying rope is vertically arranged and arranged along the front-to-back direction and is respectively sleeved on the front upper conveying wheel, the front lower conveying wheel, the rear upper conveying wheel and the rear lower conveying wheel.
2. The cantilever scaffolding structure with a handling structure as claimed in claim 1, characterized in that: The conveying mechanism also includes a front upper right tray, a front lower right tray, a rear upper right tray, a rear lower right tray, a front upper left tray, a front lower left tray, a rear upper left tray and a rear lower left tray, the front upper right tray, the front lower right tray, the rear upper right tray and the rear lower right tray are all arranged vertically and along the front-to-back direction, the front upper right tray, the front lower right tray, the rear upper right tray and the rear lower right tray are respectively located on the right sides of the front upper conveying wheel, the front lower conveying wheel, the rear upper conveying wheel and the rear lower conveying wheel and are respectively connected to the front upper conveying wheel , the front lower transfer wheel, the rear upper transfer wheel and the rear lower transfer wheel, the front upper left disk, the front lower left disk, the rear upper left disk and the rear lower left disk are all arranged vertically and along the front-to-back direction, the front upper left disk, the front lower left disk, the rear upper left disk and the rear lower left disk are respectively located on the left sides of the front upper transfer wheel, the front lower transfer wheel, the rear upper transfer wheel and the rear lower transfer wheel and are respectively connected to the front upper transfer wheel, the front lower transfer wheel, the rear upper transfer wheel and the rear lower transfer wheel.
3. The cantilever scaffolding structure with a handling structure as claimed in claim 2, characterized in that: The front upper left disc, the front lower left disc, the rear upper left disc and the rear lower left disc are respectively sleeved and threadedly engaged with the front upper transmission wheel, the front lower transmission wheel, the rear upper transmission wheel and the rear lower transmission wheel.
4. The cantilever scaffolding structure with a handling structure as claimed in claim 1, characterized in that: The conveying mechanism also includes a front upper U-shaped groove, a front lower U-shaped groove, a rear upper U-shaped groove and a rear lower U-shaped groove, the front upper U-shaped groove, the front lower U-shaped groove, the rear upper U-shaped groove and the rear lower U-shaped groove are all arranged horizontally and along the front-to-back direction and are respectively arranged on the front upper fixing block, the front lower fixing block, the rear upper fixing block and the rear lower fixing block, the notches of the front upper U-shaped groove, the notches of the front lower U-shaped groove, the notches of the rear upper U-shaped groove and the rear lower U-shaped groove are all arranged upwards, the front upper conveying wheel, The front lower conveying wheel, the rear upper conveying wheel and the rear lower conveying wheel are respectively located in the front upper U-shaped groove, the front lower U-shaped groove, the rear upper U-shaped groove and the rear lower U-shaped groove and are respectively rotatably connected to the left and right walls of the front upper U-shaped groove, the left and right walls of the front lower U-shaped groove, the left and right walls of the rear upper U-shaped groove and the left and right walls of the rear lower U-shaped groove around the left and right directions, and the rectangular ring conveying rope is movably passed through the front lower U-shaped groove and the rear lower U-shaped groove along the front-to-back direction.
5. The cantilever scaffolding structure with a handling structure as claimed in claim 4, characterized in that: The conveying mechanism also includes an upper front shaft, a lower front shaft, an upper rear shaft and a lower rear shaft, wherein the upper front shaft, the lower front shaft, the upper rear shaft and the lower rear shaft are all arranged along the left and right directions and are respectively located in the upper front U-shaped groove, the lower front U-shaped groove, the upper rear U-shaped groove and the lower rear U-shaped groove and are respectively rotatable around the left and right directions to connect the left side wall of the upper front U-shaped groove and the right side wall of the upper front U-shaped groove, the left side wall of the lower front U-shaped groove and the right side wall of the lower front U-shaped groove, the left side wall of the upper rear U-shaped groove and the right side wall of the lower rear U-shaped groove, and the left side wall of the lower rear U-shaped groove and the right side wall of the lower rear U-shaped groove, and the upper front conveying wheel, the lower front conveying wheel, the upper rear conveying wheel and the lower rear conveying wheel are respectively sleeved on the upper front shaft, the lower front shaft, the upper rear shaft and the lower rear shaft.
6. The cantilever scaffolding structure with a handling structure as claimed in claim 1, characterized in that: The cantilever scaffolding also includes a right upper cross bar and a right lower cross bar, which are both arranged along the front and back and spaced apart from each other up and down, and are both located between the front right upright bar and the rear right upright bar and are respectively connected to the front right upright bar and the rear right upright bar.
7. The cantilever scaffolding structure with a handling structure as claimed in claim 1, characterized in that: The cantilever scaffolding also includes a front left upright, a rear left upright, a front upper cross bar, a front lower cross bar, a rear upper cross bar and a rear lower cross bar, the front left upright and the rear left upright are spaced apart from each other front to back, the front left upright and the rear left upright are respectively located on the left sides of the front right upright and the rear right upright and are respectively arranged on the right end of the front cantilever rod and the right end of the rear cantilever rod, the front upper cross bar and the front lower cross bar are spaced apart from each other up and down and are both located between the front left upright and the front right upright and are respectively connected to the front left upright and the front right upright, the rear upper cross bar and the rear lower cross bar are spaced apart from each other up and down and are both located between the rear left upright and the rear right upright and are respectively connected to the rear left upright and the rear right upright.
8. The cantilever scaffolding structure with a handling structure as claimed in claim 1, characterized in that: The cantilever scaffolding also includes a front U-shaped hoop and a rear U-shaped hoop, both of which are vertically arranged and arranged along the front-to-back direction. The front U-shaped hoop is arranged on the left end of the front cantilever rod and is used to be hooped on the first floor slab, and the rear U-shaped hoop is arranged on the left end of the rear cantilever rod and is used to be hooped on the first floor slab.
9. The cantilever scaffolding structure with a handling structure as claimed in claim 1, characterized in that: The cantilever scaffolding also includes a front reverse pull rope and a rear reverse pull rope, which are both arranged obliquely along the left and right directions and spaced apart from each other front to back, the left end of the front reverse pull rope is higher than the right end of the front reverse pull rope and is used to connect the second floor of the building main body that is higher than the first floor, the right end of the front reverse pull rope is connected to the right end of the front cantilever rod, the left end of the rear reverse pull rope is higher than the right end of the rear reverse pull rope and is used to connect the second floor, and the right end of the rear reverse pull rope is connected to the right end of the rear cantilever rod.
10. The cantilever scaffolding structure with a handling structure according to claim 9, characterized in that: The front reverse pull rope and the rear reverse pull rope are both steel wire ropes.