Steel structure scaffold for constructional engineering

By designing a steel scaffolding for construction projects that includes splicing, load-bearing and fixing mechanisms, the problems of traditional scaffolding in splicing, load-bearing, drainage, fixing and protection are solved, and more efficient and safer construction is achieved.

CN222976343UActive Publication Date: 2025-06-13ZIBO ANTAI ENG PROJECT MANAGEMENT CO LTD
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Patent Information

Application Number
CN202422198660.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-09
Publication Date
2025-06-13
Estimated Expiration
2034-09-09

AI Technical Summary

Technical Problem

During the use of traditional construction projects, scaffolding for complex splicing, unstable load bearing, lack of drainage measures, unstable fixing and lack of protection, resulting in low construction efficiency, poor safety and low quality.

Method used

A steel scaffolding for construction engineering is designed, including splicing mechanism, load bearing mechanism and fixing mechanism. The splicing mechanism achieves rapid splicing and height adjustment through the combination of carrier plate components and plug-in components; the bearing mechanism ensures stability and drainage performance through the design of carrier plates, friction plates and drainage tanks; the fixing mechanism ensures a stable connection of each component through threaded connection.

Benefits of technology

It improves the splicing flexibility, load bearing stability, drainage performance, fixing firmness and protection performance of the scaffolding, and improves the safety, efficiency and convenience of construction projects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a steel structure scaffold for constructional engineering, which relates to the technical field of constructional engineering and comprises a splicing mechanism, a bearing mechanism is arranged on the splicing mechanism, a plurality of fixing mechanisms are arranged on the bearing mechanism, and the splicing mechanism comprises a carrier plate assembly and four inserting assemblies. And the carrier plate assembly is arranged among the four plugging assemblies. A connecting rod and a splicing plate of the splicing mechanism are integrally formed and firmly connected, flexible splicing and height increasing can be achieved according to the operation height requirement, a carrier plate assembly is matched with an inserting assembly, the stability of a bearing mechanism is guaranteed, a bearing plate of the bearing mechanism is matched with a friction plate, the friction force is increased while operators are stably borne, and a drainage groove can avoid water accumulation; the fixing mechanism ensures stable connection of all components through threaded connection, the baffles can protect operators and prevent the operators from falling off, and the safety, efficiency and convenience of building engineering construction are integrally improved through the scaffold.
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Description

Technical Field

[0001] The utility model relates to the technical field of construction engineering, and particularly relates to a steel structure scaffold for construction engineering. Background Technique

[0002] In the field of construction engineering, a scaffold is an essential construction equipment. Traditional scaffolds often have some problems during use. For example, the splicing method is complex, and it is difficult to quickly adjust and splice according to different working heights, resulting in low construction efficiency; the stability and friction of the bearing mechanism are insufficient, which easily causes the operators to shake during work, affecting work safety and quality; there is a lack of effective drainage measures, and it is easy to accumulate water on rainy days, affecting the construction progress and work safety; the fixing mechanism is not firm enough and is prone to looseness, increasing the construction risk; there is no effective protection measure, and the operators are prone to falling accidents. To solve these problems, the present invention proposes a steel structure scaffold for construction engineering, which improves the splicing flexibility, bearing stability, drainage performance, fixing firmness, protection performance and mobility of the scaffold, and provides a safer, more efficient and more convenient construction equipment for construction engineering. Content of the Utility Model

[0003] The purpose of the utility model is to provide a steel structure scaffold for construction engineering to solve at least any one of the problems mentioned in the above background technique.

[0004] To achieve the above purpose, the utility model provides the following technical solution: A steel structure scaffold for construction engineering, including a splicing mechanism, a bearing mechanism is arranged on the splicing mechanism, and a plurality of fixing mechanisms are arranged on the bearing mechanism;

[0005] The splicing mechanism includes a carrier plate assembly and four plug-in components, and the carrier plate assembly is arranged between the four plug-in components;

[0006] All four plug-in components include a first splicing cylinder, a connecting rod, a second splicing cylinder, two splicing grooves and a plurality of splicing plates. The first splicing cylinder is detachably connected to the top of the connecting rod, and the plurality of splicing plates are evenly distributed on the connecting rod. The plurality of splicing plates are fixedly connected to the connecting rod. The two splicing grooves are respectively opened on the first splicing cylinder and the second splicing cylinder, and the plurality of splicing plates are all inserted into the plug-in grooves of the second splicing cylinder.

[0007] Preferably, the carrier plate assembly includes two first connecting plates and two second connecting plates. The two first connecting plates and the two second connecting plates are evenly distributed between the four connecting rods, and the two first connecting plates and the two second connecting plates are respectively detachably connected to the four connecting rods.

[0008] Preferably, the bearing mechanism includes a bearing plate, a plurality of friction plates, a plurality of slots, a plurality of drain grooves, and a plurality of connection blocks. The plurality of drain grooves are all formed in the top of the bearing plate, and the plurality of drain grooves are evenly distributed on the bearing plate. The plurality of connection plates are evenly distributed on the four sides of the bearing plate, and the plurality of connection plates are detachably connected to the bearing plate. The plurality of friction plates are evenly distributed on the bearing plate, and the plurality of friction plates are detachably connected to the bearing plate. The plurality of friction plates are staggered with the plurality of drain grooves in position. The plurality of slots are respectively formed in the plurality of friction plates, and the plurality of slots are evenly distributed on the plurality of friction plates.

[0009] Preferably, the plurality of connection blocks are respectively arranged on the first connection plate and the second connection plate.

[0010] Preferably, the plurality of fixing mechanisms each include a second threaded cylinder, a threaded handle, and a first threaded cylinder. The threaded handle is threadedly connected to the first threaded cylinder, and the threaded handle is threadedly connected to the second threaded cylinder through the first threaded cylinder.

[0011] The plurality of first threaded cylinders are evenly distributed on the tops of the plurality of connection blocks. The plurality of second threaded cylinders are evenly distributed on the bottoms of the first connection plate and the second connection plate. The plurality of threaded handles respectively communicate with the plurality of connection blocks, and the plurality of threaded handles respectively communicate with the first connection plate and the second connection plate.

[0012] Preferably, the steel structure scaffold for building engineering further includes a plurality of baffles. The plurality of baffles are evenly distributed on the first connection plate and the second connection plate, and the plurality of baffles are respectively detachably connected to the first connection plate and the second connection plate.

[0013] Preferably, the steel structure scaffold for building engineering further includes a bottom plate and four universal wheels. The four universal wheels are evenly distributed on the bottom of the bottom plate, and the four universal wheels are respectively detachably connected to the bottom plate.

[0014] The four second splicing cylinders are evenly distributed on the top of the bottom plate, and the four second splicing cylinders are respectively detachably connected to the bottom plate.

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

[0016] In this utility model, the steel structure scaffolding for building engineering has many remarkable advantages. The connecting rod and the splicing plate of its splicing mechanism are integrally formed, with firm connection. It can be flexibly spliced according to the working height requirements to increase the height. The carrier plate assembly cooperates with the plug-in assembly to ensure the stability of the bearing mechanism. The bearing plate and the friction plate of the bearing mechanism cooperate to stably bear the operators while increasing the friction force. Moreover, the drainage groove can avoid water accumulation. The fixing mechanism ensures the firm connection of each component through threaded connection. The baffle can play a protective role for the operators to prevent them from falling. The bottom plate bears the components, and the universal wheels assist in moving and can be locked. The overall scaffolding improves the safety, efficiency and convenience of building engineering construction. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a three-dimensional structural schematic diagram of the present utility model;

[0018] Figure 2 is a partial structural schematic diagram of the friction plate of the present utility model;

[0019] Figure 3 is a partial structural schematic diagram of the bearing plate of the present utility model;

[0020] Figure 4 is a partial structural schematic diagram of the first splicing cylinder of the present utility model;

[0021] Figure 5 is a partial structural schematic diagram of the connecting block of the present utility model;

[0022] Figure 6 is a partial structural schematic diagram of the first threaded cylinder of the present utility model.

[0023] In the figure: 1. First splicing cylinder; 2. Connecting rod; 3. Second splicing cylinder; 4. Bottom plate; 5. Universal wheel; 6. First connecting plate; 7. Baffle; 8. Friction plate; 9. Groove; 10. Second threaded cylinder; 11. Threaded handle; 12. First threaded cylinder; 13. Bearing plate; 14. Splicing groove; 15. Splicing plate; 16. Drainage groove; 17. Connecting block; 18. Second connecting plate. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0024] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0025] The present utility model provides as Figure 1-6A steel structure scaffolding for construction projects as shown, including a splicing mechanism, a bearing mechanism is arranged on the splicing mechanism, and a plurality of fixing mechanisms are arranged on the bearing mechanism;

[0026] The splicing mechanism includes a carrier plate assembly and four plug-in components, and the carrier plate assembly is arranged between the four plug-in components;

[0027] The four plug-in components each include a first splicing cylinder 1, a connecting rod 2, a second splicing cylinder 3, two splicing grooves 14 and a plurality of splicing plates 15. The first splicing cylinder 1 is detachably connected to the top of the connecting rod 2. The plurality of splicing plates 15 are evenly distributed on the connecting rod 2, and the plurality of splicing plates 15 are fixedly connected to the connecting rod 2. The two splicing grooves 14 are respectively opened on the first splicing cylinder 1 and the second splicing cylinder 3, and the plurality of splicing plates 15 are all inserted into the plug-in grooves of the second splicing cylinder 3.

[0028] The first connecting rod 2 and the splicing plate 15 are integrally formed, with firm connection. By inserting the plurality of splicing plates 15 into the splicing grooves 14 of the second splicing cylinder 3, a stable connection can be achieved. Users can insert several connecting rods 2 into several first splicing cylinders 1 according to the height requirements of the operation to achieve splicing and continuously increase the splicing height, which brings convenience to users.

[0029] The carrier plate assembly includes two first connecting plates 6 and two second connecting plates 18. The two first connecting plates 6 and the two second connecting plates 18 are evenly distributed between the four connecting rods 2, and the two first connecting plates 6 and the two second connecting plates 18 are respectively detachably connected to the four connecting rods 2.

[0030] The first connecting plate 6 and the second connecting plate 18 are parts that cooperate with the plug-in components and are connected to the bearing mechanism, ensuring the stability of the bearing mechanism while achieving splicing.

[0031] The bearing mechanism includes a bearing plate 13, a plurality of friction plates 8, a plurality of slots 9, a plurality of drainage grooves 16 and a plurality of connecting blocks 17. The plurality of drainage grooves 16 are all opened on the top of the bearing plate 13, and the plurality of drainage grooves 16 are evenly distributed on the bearing plate 13. The plurality of connecting plates are evenly distributed on the four sides of the bearing plate 13, and the plurality of connecting plates are respectively detachably connected to the bearing plate 13. The plurality of friction plates 8 are evenly distributed on the bearing plate 13, and the plurality of friction plates 8 are respectively detachably connected to the bearing plate 13. The plurality of friction plates 8 are staggered with the plurality of drainage grooves 16. The plurality of slots 9 are respectively opened on the plurality of friction plates 8, and the plurality of slots 9 are evenly distributed on the plurality of friction plates 8.

[0032] The bearing plate 13 cooperates with the friction plate 8 to ensure stable bearing of the operator, while increasing the friction between the operator and the bearing mechanism, improving the operating stability of the operator. When it rains, rainwater will flow into the drainage groove 16 through the slotted groove 9 and flow out of the bearing plate 13 from the drainage groove 16, avoiding water accumulation in the bearing mechanism and bringing convenience to the user.

[0033] Multiple connecting blocks 17 are respectively arranged on the first connecting plate 6 and the second connecting plate 18.

[0034] Multiple fixing mechanisms each include a second threaded cylinder 10, a threaded handle 11 and a first threaded cylinder 12. The threaded handle 11 is threadedly connected to the first threaded cylinder 12, and the threaded handle 11 is threadedly connected to the second threaded cylinder 10 through the first threaded cylinder 12;

[0035] Multiple first threaded cylinders 12 are evenly distributed on the tops of multiple connecting blocks 17, multiple second threaded cylinders 10 are evenly distributed on the bottoms of the first connecting plate 6 and the second connecting plate 18, multiple threaded handles 11 respectively communicate with multiple connecting blocks 17, and multiple threaded handles 11 respectively communicate with the first connecting plate 6 and the second connecting plate 18.

[0036] Through the cooperation of multiple groups of first threaded cylinders 12 and second threaded cylinders 10 with threaded handles 11, the connecting blocks 17, the first connecting plate 6 and the second connecting plate 18 are firmly connected.

[0037] The steel structure scaffolding for construction projects further includes multiple baffles 7. Multiple baffles 7 are evenly distributed on the first connecting plate 6 and the second connecting plate 18, and multiple baffles 7 are respectively detachably connected to the first connecting plate 6 and the second connecting plate 18.

[0038] The user can install the baffle 7 on the other three sides that do not affect the user's operation, that is, the directions that the user does not face, to protect the operator and avoid falling, bringing convenience to the user.

[0039] The steel structure scaffolding for construction projects further includes a bottom plate 4 and four universal wheels 5. The four universal wheels 5 are evenly distributed at the bottom of the bottom plate 4, and the four universal wheels 5 are respectively detachably connected to the bottom plate 4;

[0040] Four second splicing cylinders 3 are evenly distributed on the top of the bottom plate 4, and the four second splicing cylinders 3 are respectively detachably connected to the bottom plate 4.

[0041] The bottom plate 4 bears the components on it. The universal wheel 5 has a locking function, which can assist the device to move to the desired position and will not shake after being locked, bringing convenience to the user.

[0042] Finally, it should be noted that the above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A steel scaffold for construction engineering, characterized in that: It comprises a splicing mechanism, on which a bearing mechanism is arranged, and on which a plurality of fixing mechanisms are arranged; The splicing mechanism comprises a carrier plate assembly and four plug-in assemblies, wherein the carrier plate assembly is arranged between the four plug-in assemblies; The four plug-in assemblies each comprise a first splicing tube (1), a connecting rod (2), a second splicing tube (3), two splicing grooves (14) and a plurality of splicing plates (15); the first splicing tube (1) is detachably connected to the top end of the connecting rod (2); the plurality of splicing plates (15) are evenly distributed on the connecting rod (2); the plurality of splicing plates (15) are all fixedly connected to the connecting rod (2); the two splicing grooves (14) are respectively provided on the first splicing tube (1) and the second splicing tube (3); the plurality of splicing plates (15) are all plugged into the splicing grooves of the second splicing tube (3).

2. A steel structure scaffold for construction engineering according to claim 1, characterized in that: The carrier plate assembly comprises two first connecting plates (6) and two second connecting plates (18), the two first connecting plates (6) and the two second connecting plates (18) being evenly distributed between the four connecting rods (2), and the two first connecting plates (6) and the two second connecting plates (18) being detachably connected to the four connecting rods (2) respectively.

3. A steel scaffold for construction engineering according to claim 2, characterized in that: The bearing mechanism comprises a bearing plate (13), a plurality of friction plates (8), a plurality of slots (9), a plurality of drainage grooves (16) and a plurality of connecting blocks (17); the plurality of drainage grooves (16) are all arranged on the top of the bearing plate (13); the plurality of drainage grooves (16) are evenly distributed on the bearing plate (13); the plurality of connecting plates are evenly distributed on four sides of the bearing plate (13); the plurality of connecting plates are detachably connected to the bearing plate (13); the plurality of friction plates (8) are evenly distributed on the bearing plate (13); the plurality of bearing plates (13) are detachably connected to the bearing plate (13); the plurality of friction plates (8) are staggered with the plurality of drainage grooves (16); the plurality of slots (9) are respectively arranged on the plurality of friction plates (8); and the plurality of slots (9) are evenly distributed on the plurality of friction plates (8).

4. A steel scaffold for construction engineering according to claim 3, characterized in that: The plurality of connection blocks (17) are respectively arranged on the first connection plate (6) and the second connection plate (18).

5. A steel scaffold for construction engineering according to claim 4, characterized in that: The plurality of fixing mechanisms each comprise a second threaded barrel (10), a threaded handle (11) and a first threaded barrel (12); the threaded handle (11) is threadedly connected to the first threaded barrel (12); the threaded handle (11) is connected to the first threaded barrel (12) and is threadedly connected to the second threaded barrel (10); The plurality of first threaded barrels (12) are evenly distributed on the tops of the plurality of connection blocks (17), the plurality of second threaded barrels (10) are evenly distributed on the bottoms of the first connection plate (6) and the second connection plate (18), the plurality of threaded handles (11) are respectively connected to the plurality of connection blocks (17), and the plurality of threaded handles (11) are respectively connected to the first connection plate (6) and the second connection plate (18).

6. A steel structure scaffold for construction engineering according to claim 5, characterized in that: The steel structure scaffold for construction engineering further comprises a plurality of baffles (7), wherein the plurality of baffles (7) are evenly distributed on the first connecting plate (6) and the second connecting plate (18), and the plurality of baffles (7) are respectively detachably connected to the first connecting plate (6) and the second connecting plate (18).

7. A steel scaffold for construction engineering according to claim 1, characterized in that: The steel structure scaffold for construction engineering further comprises a base plate (4) and four universal wheels (5), wherein the four universal wheels (5) are evenly distributed at the bottom of the base plate (4), and the four universal wheels (5) are detachably connected to the base plate (4); The four second splicing tubes (3) are evenly distributed on the top of the bottom plate (4), and the four second splicing tubes (3) are all detachably connected to the bottom plate (4).