Standardized corridor operation platform

By designing a standardized operating platform for corridors and assembling symmetrical scaffolding and galvanized square pipes, the problem of lack of support and protection at the stairs is solved, and construction efficiency is improved and safety hazards are reduced.

CN223088868UActive Publication Date: 2025-07-11CHINA RAILWAY CONSTRUCTION ENGINEERING GROUP +1
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Patent Information

Application Number
CN202421970956.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-14
Publication Date
2025-07-11
Estimated Expiration
2034-08-14

AI Technical Summary

Technical Problem

During the construction of the existing tower, there is a lack of support and protective measures at the staircase entrance, which leads to difficulty in turning over aluminum mold materials and safety hazards, affecting the construction progress.

Method used

A standardized operating platform for corridors is designed, using two rows of symmetrical scaffolding, including vertical vertical poles, longitudinal horizontal poles and platform. The platform is equipped with flip-type pedals and hollow steel mesh for construction material transfer and safety protection, and a stable platform is formed by assembling galvanized square pipes.

Benefits of technology

Improve construction efficiency, reduce safety hazards, simplify the time and employment of safety measures, and achieve stable material transmission and safety protection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a standard operating platform for a corridor. The standard operating platform comprises two rows of scaffolds which have the same structure and are symmetrically arranged, each row of scaffolds comprises vertical upright rods, longitudinal horizontal rods and two layers of platforms, a plurality of vertical upright rods are uniformly arranged in the extension direction of the prefabricated staircase, a plurality of longitudinal horizontal rods are arranged in the vertical direction, and the vertical upright rods and the longitudinal horizontal rods are vertically intersected and fixed together; the two layers of platforms are respectively an upper platform and a lower platform, and the upper platform comprises an upper pedal and a flip type pedal; the lower platform comprises a lower pedal, and the two ends of the lower pedal are installed on the lower-layer longitudinal horizontal rods of the adjacent rows of scaffolds respectively. The scaffold further comprises a plurality of transverse horizontal rods, and the two ends of the transverse horizontal rods are fixed together with the same row of vertical stand rods of the adjacent scaffolds respectively. The device is easy to install, labor and materials can be saved, the whole platform of the device can be used as a protective barrier of a stair channel, the construction efficiency is improved, and meanwhile potential safety hazards are reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of construction safety protection, in particular to a standardized operation platform for a corridor. Background Art

[0002] The main structure of the tower of the existing industrial park infrastructure adopts an assembled structure, and precast stairs are used at the stairs. The main building formwork is constructed with aluminum formwork. At present, no corresponding support and protection measures are set at the stairway opening. A large amount of aluminum formwork materials are difficult to turnover at the stairway opening. It will be very difficult to assemble the aluminum formwork here. At the same time, there are many potential safety hazards, and safety accidents are extremely likely to occur, which has a great impact on the construction progress. Content of the Utility Model

[0003] The purpose of the utility model is to overcome the above-mentioned deficiencies of the prior art and provide a standardized operation platform for a corridor.

[0004] The utility model is realized by the following technical solutions: A standardized operation platform for a corridor includes two rows of scaffolds with the same structure and symmetrically arranged; each row of the scaffolds includes vertical upright posts, longitudinal horizontal bars and two layers of platforms. A plurality of the vertical upright posts are uniformly arranged along the extending direction of the precast stairs. A plurality of the longitudinal horizontal bars are arranged vertically. The vertical upright posts and the longitudinal horizontal bars are perpendicularly and fixedly joined together; the two layers of platforms are respectively an upper platform and a lower platform. The upper platform includes an upper pedal and a flip-up pedal. Two ends of the upper pedal are respectively installed on the upper-layer longitudinal horizontal bars of adjacent rows of scaffolds. There are two sections of the upper pedal. The flip-up pedal is hinged to the upper-layer longitudinal horizontal bar between the two sections of the upper pedal. After the flip-up pedal is lifted, a material opening for construction material transfer is formed; the lower platform includes a lower pedal. Two ends of the lower pedal are respectively installed on the lower-layer longitudinal horizontal bars of adjacent rows of scaffolds; it also includes a plurality of transverse horizontal bars. Two ends of the transverse horizontal bars are respectively fixedly joined to the same row of vertical upright posts of adjacent scaffolds.

[0005] After the flip-up pedal is lifted, a material opening for construction material transfer is formed, which can facilitate the transfer of construction materials such as aluminum formwork. After the flip-up pedal is laid flat, the material opening can be sealed to form a stable construction platform. This device can provide safety protection. The entire platform can be used as a protective railing for the stair passage, reducing potential safety hazards while improving construction efficiency.

[0006] The upper pedal is a hollow steel mesh.

[0007] The lower pedal is a hollow steel mesh.

[0008] The vertical vertical poles, longitudinal horizontal bars, and transverse horizontal bars are all assembled by several sections of pipe fittings. The vertical poles and horizontal bars are both formed by assembling pipe fittings, which is convenient for construction safety tool standardization, easy to assemble, saves materials, saves time for safety measures and labor.

[0009] The pipe fittings are made of galvanized square pipes.

[0010] The cross-sectional diameter of the galvanized square pipe is 60mm * 60mm, and its wall thickness is 2.5mm.

[0011] Scissor braces are provided on the outer facade of each row of the scaffolding, and the scissor braces are respectively fixed to the vertical vertical poles and longitudinal horizontal bars.

[0012] Each row of the scaffolding is provided with a guardrail handrail. The setting of the guardrail handrail can improve the protection ability and reduce potential safety hazards.

[0013] The flip-up pedal is a pair of split pedals, and the two outer ends of the pedal are respectively hinged to the longitudinal horizontal bars on both sides.

[0014] The flip-up pedal is located in the middle of the upper platform.

[0015] Compared with the prior art, the advantages of the present utility model are as follows: The device has a simple structure and is easy to install, which can save time for safety measures and labor, save materials, standardize the use and management of safety tools through the implementation of safety tool standardization, thereby reducing the occurrence of safety accidents. The entire platform of this device can be used as a protective railing for the staircase passage, reducing potential safety hazards while improving construction efficiency; the operation platform is provided with a flip-up material opening, which is convenient for material transfer during construction such as aluminum formwork materials. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic structural diagram of an embodiment of the present utility model.

[0017] The meanings of the reference numerals in the drawings: 1. Vertical vertical pole; 2. Longitudinal horizontal bar; 3. Upper pedal; 4. Flip-up pedal; 5. Lower pedal; 6. Transverse horizontal bar; 7. Scissor brace; 8. Guardrail handrail. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0018] The following further describes the content of the present utility model in detail with reference to the drawings and specific embodiments.

[0019] Embodiment

[0020] Refer to Figure 1, it is a standardized operation platform for corridors, including two rows of scaffolds with the same structure and symmetrically arranged; each row of scaffolds includes vertical poles 1, longitudinal horizontal bars 2 and two layers of platforms. A number of vertical poles 1 are evenly arranged along the extending direction of the precast stairs, and a number of longitudinal horizontal bars 2 are arranged vertically. The vertical poles 1 and the longitudinal horizontal bars 2 are perpendicularly and fixedly joined together; the two layers of platforms are the upper platform and the lower platform respectively. The upper platform includes an upper pedal 3 and a flip-up pedal 4. Both ends of the upper pedal 3 are respectively installed on the upper longitudinal horizontal bars 2 of adjacent rows of scaffolds. The upper pedal 3 has two sections, and a flip-up pedal 4 is hinged to the upper longitudinal horizontal bar 2 between the two sections of the upper pedal 3. After the flip-up pedal 4 is lifted, a material opening for construction material transfer is formed; the lower platform includes a lower pedal 5, and both ends of the lower pedal 5 are respectively installed on the lower longitudinal horizontal bars 2 of adjacent rows of scaffolds; it also includes a number of transverse horizontal bars 6, and both ends of the transverse horizontal bars 6 are respectively fixedly joined to the same row of vertical poles 1 of adjacent scaffolds.

[0021] After the flip-up pedal 4 is lifted, a material opening for construction material transfer is formed, which can facilitate the transfer of construction materials such as aluminum formwork. After the flip-up pedal 4 is laid flat, the material opening can be sealed to form a stable construction platform. This device can provide safety protection. The entire platform can serve as a protective railing for the stair passage, improving construction efficiency while reducing potential safety hazards.

[0022] The upper pedal 3 is a hollow steel mesh.

[0023] The lower pedal 5 is a hollow steel mesh.

[0024] The vertical poles 1, longitudinal horizontal bars 2, and transverse horizontal bars 6 are all formed by assembling several sections of pipe fittings. The vertical poles and horizontal bars are both formed by assembling pipe fittings. Through the standardization of construction safety tools, the assembly is convenient, materials are saved, and the time for safety measures and labor are saved.

[0025] The pipe fittings are galvanized square pipes.

[0026] The cross-sectional diameter of the galvanized square pipe is 60mm * 60mm, and its wall thickness is 2.5mm.

[0027] On the outer facade of each row of scaffolds, a cross brace 7 is provided, and the cross brace 7 is respectively fixedly joined to the vertical poles 1 and longitudinal horizontal bars 2.

[0028] Each row of scaffolds is provided with a guardrail handrail 8. The setting of the guardrail handrail 8 can improve the protection ability and reduce potential safety hazards.

[0029] The flip-up pedal 4 is a pair of split pedals, and both outer ends of the pedals are respectively hinged to the longitudinal horizontal bars 2 on both sides.

[0030] The flip-up pedal 4 is located in the middle of the upper platform.

[0031] In this embodiment, a quantitative protection device in the shape of a right trapezoid is assembled with galvanized square pipes. The length of the upper platform is 4.8 m, and the length of the longest vertical pole 1 is 5.4 m. The bottom of the device is placed on a precast staircase. The upper and lower platforms are covered with perforated steel nets. A flip-up pedal 4 is made in the middle of the upper platform, and scissors braces 7 are arranged on both sides of the operation platform for fixation.

[0032] The above detailed description is a specific description of the feasible embodiments of the present invention. These embodiments are not intended to limit the patent scope of the present invention. Any equivalent implementation or modification without departing from the present invention shall be included in the patent scope of this case.

Claims

1. A standardized operation platform for a corridor, characterized in that: It includes two rows of scaffolds with the same structure and symmetrically arranged; each row of the scaffolds includes vertical uprights, longitudinal horizontal bars and two layers of platforms. A number of the vertical uprights are evenly arranged along the extending direction of the precast stairs. A number of the longitudinal horizontal bars are arranged vertically. The vertical uprights and the longitudinal horizontal bars are perpendicularly and fixedly joined together. The two layers of platforms are the upper platform and the lower platform respectively. The upper platform includes an upper pedal and a flip-up pedal. Two ends of the upper pedal are respectively installed on the upper-layer longitudinal horizontal bars of adjacent rows of scaffolds. The upper pedal has two sections. The flip-up pedal is hinged to the upper-layer longitudinal horizontal bar between the two sections of the upper pedal. After the flip-up pedal is lifted, a material opening for construction material transfer is formed. The lower platform includes a lower pedal. Two ends of the lower pedal are respectively installed on the lower-layer longitudinal horizontal bars of adjacent rows of scaffolds. It also includes a number of transverse horizontal bars. Two ends of the transverse horizontal bars are respectively fixedly joined to the same row of vertical uprights of adjacent scaffolds.

2. The standardized operation platform for the corridor according to claim 1, characterized in that: The upper pedal is a hollow steel mesh.

3. The standardized operation platform for the corridor according to claim 1, wherein: The lower pedal is a hollow steel mesh.

4. The standardized operation platform for the corridor according to claim 1, characterized in that: The vertical uprights, longitudinal horizontal bars and transverse horizontal bars are all formed by assembling a number of pipe fittings.

5. The standardized operation platform for the corridor according to claim 4, characterized in that: The pipe fittings are galvanized square pipes.

6. The standardized operation platform for the corridor according to claim 5, characterized in that: The cross-sectional diameter of the galvanized square pipe is 60mm*60mm, and its wall thickness is 2.5mm.

7. The standardized operation platform for the corridor according to claim 1, wherein: Scissor braces are arranged on the outer facade of each row of the scaffolds. The scissor braces are respectively fixedly joined to the vertical uprights and longitudinal horizontal bars.

8. The standardized operation platform for the corridor according to claim 1, characterized in that: Each row of the scaffolds is provided with guardrail handrails.

9. The standardized operation platform for the corridor according to claim 1, characterized in that: The flip-up pedal is a pair of split pedals. Two outer ends of the pedals are respectively hinged to the longitudinal horizontal bars on both sides.

10. The standardized operation platform for the corridor according to claim 1, characterized in that: The flip-up pedal is located in the middle of the upper platform.