Steel vestibule with natural lighting structure
By installing skylight components on the steel corridor walls, the problem of insufficient lighting at elevation differences was solved, enabling efficient introduction of natural light, improving internal lighting conditions, and reducing the need for artificial lighting.
Patent Information
- Application Number
- CN202520315666.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-26
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-02-26
AI Technical Summary
The existing steel corridors in coking plants have door and window designs that fail to meet lighting requirements in areas with significant elevation differences, resulting in insufficient internal lighting.
Skylight components, including front and rear skylights, are installed at intervals on the steel corridor walls and connected by support sleeves and connectors. Combined with purlins and corner sealing structures, the skylights are securely installed, and natural light is used to improve interior lighting.
The design of the skylight components significantly improves the natural lighting effect inside the steel corridor, reduces the reliance on artificial lighting, and provides a bright and transparent working environment.
Smart Images

Figure CN223704009U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the coal transport corridor in the coking industry, concretely relates to a steel corridor with natural lighting structure. BACKGROUND
[0002] The coal in the coking plant is transported by the belt conveyor corridor, which is used for the coal transportation of the whole plant. In addition to the underground concrete corridor part, the above-mentioned belt conveyor corridor also includes the above-ground steel corridor part from the ground coal preparation to the coal preparation silo and coal tower. For the case that the transport position has large height difference, it is required that the above-ground steel corridor part installation must be completed at one time, and the steel corridor color plate closure must be completed in advance. During the closure process of the steel corridor wall plate, it is found that the existing door and window design cannot meet the lighting conditions of the whole steel corridor. Therefore, corresponding measures need to be taken to improve the lighting conditions inside the steel pipe corridor. UTILITY MODEL CONTENT
[0003] The utility model solves the technical problem to provide a steel corridor with natural lighting structure to improve the lighting conditions inside the steel corridor during the day.
[0004] To solve the above technical problem, the utility model adopts the technical scheme that:
[0005] A steel corridor with natural lighting structure, comprising a steel corridor wall, a steel corridor top plate and a steel corridor bottom plate, the steel corridor wall is provided with a lighting belt assembly at intervals, any lighting belt assembly comprises a front lighting belt and a rear lighting belt, a plurality of support sleeves are arranged between the front lighting belt and the rear lighting belt, and the support sleeves are provided with connecting pieces inside to connect the front lighting belt and the rear lighting belt.
[0006] Further, a purlin is arranged on the steel corridor wall at the installation position of the lighting belt assembly, and one end of the connecting piece is connected to the purlin in cooperation with a nut.
[0007] Further, the purlins are arranged uniformly on the steel corridor wall from top to bottom.
[0008] Further, the top surface of the front lighting belt and the rear lighting belt is angle sealed with the steel corridor top plate, and the bottom surface of the front lighting belt and the rear lighting belt is angle sealed with the steel corridor bottom plate.
[0009] Further, the two side edges of the front lighting belt and the rear lighting belt are connected with the adjacent wall panel and sealed with flat steel.
[0010] Further, the connecting piece is selected from a long rod self-tapping screw.
[0011] According to the utility model, in the steel corridor closed process, wall sandwich color plate and daylighting band are laid alternately, natural light is introduced into the interior space of the ground steel corridor efficiently by the daylighting band, thereby the dependence on artificial lighting is greatly reduced. In daytime, the interior of the steel corridor becomes bright and transparent due to sufficient natural daylighting, which provides ideal visual conditions for personnel passing, material transportation and other operations. BRIEF DESCRIPTION OF DRAWINGS
[0012] The drawings used herein provide further explanation of the utility model, form part of the present application, the illustrative embodiment of the utility model and its explanation are used to explain the utility model, and do not constitute improper limitation to the utility model.
[0013] Figure 1 It is the installation position drawing of the daylighting band assembly of the ground steel corridor, wherein, Figure 1 (a) is the plane part of the steel corridor, Figure 1 (b) is the inclined plane part of the steel corridor.
[0014] Figure 2 It is the front view schematic diagram of the daylighting band assembly installation structure;
[0015] Figure 3 It is the side view schematic diagram of the daylighting band assembly installation structure.
[0016] In the drawing, 1 is daylighting band, 2 is support sleeve, 3 is connecting piece, 4 is purline, 5 is corner sealing structure, 6 is flat steel sealing structure, 7 is wall color plate. DETAILED DESCRIPTION
[0017] In order to make the person skilled in the art better understand the utility model, the utility model is further clearly and completely explained below by combining with the drawings and combining with the embodiment. It should be noted that the features in the embodiment and the embodiment in the present application can be combined with each other without conflict.
[0018] A typical embodiment of the utility model provides a steel corridor with natural daylighting structure, which comprises the general structure of the steel corridor, i.e. the steel corridor wall, the steel corridor top plate and the steel corridor bottom plate, as shown in Figure 1 and Figure 2 The steel corridor is usually composed of a plane part and an inclined plane part.
[0019] On this basis, the embodiment is provided with daylighting band assemblies on the steel corridor wall at intervals, installs daylighting band every interval, introduces natural light into the steel corridor by the daylighting band, and further greatly reduces the demand for artificial lighting. Compared with the traditional window design, the daylighting band not only has a larger daylighting area and can realize uniform distribution of light in the corridor, but also has significant energy-saving effect and excellent heat insulation performance.
[0020] The main component of any one light band assembly is a light band 1, which is a double-layer structure, including a front light band and a rear light band. Since the installation position of the steel corridor light band 1 is often high, the wind force has a greater impact on the high altitude. If there is no internal support structure between the front and rear light bands, the light band is not firmly fixed, and its service life will be greatly shortened. Based on this, the present embodiment sets a plurality of support sleeves 2 between the front and rear light bands, and the support sleeves 2 are internally provided with connecting pieces 3 to connect the front and rear light bands. The support sleeve 2 is used as a support part between the front and rear light bands, which ensures that the inside of the light band is full and is not easy to collapse, and is more stable and firm in a high wind environment.
[0021] In the above embodiment, the connecting piece 3 is preferably a long rod self-tapping screw. The support sleeve 2 can be a plastic sleeve.
[0022] For the installation structure of the light band assembly, the steel corridor wall body at the installation position of the light band assembly is provided with a purlin 4, and one end of the connecting piece 3 is connected to the purlin 4 in cooperation with a nut. The purlin 4 is arranged uniformly from top to bottom on the steel corridor wall body.
[0023] For the reinforcing measures of the light band assembly, the steel pipe corridor forms an angle sealing structure 5 on the top surface and the bottom surface of the light band. The top surface of the front light band and the rear light band is angle sealed with the top plate of the steel corridor, and the bottom surface of the front light band and the rear light band is angle sealed with the bottom plate of the steel corridor. The two sides of the front light band and the rear light band are connected with the adjacent wall panel and form a flat steel sealing structure 6 by flat steel sealing.
[0024] The following provides a relatively specific construction method of the steel corridor with a natural lighting structure according to the present application.
[0025] (1) Light band internal support method:
[0026] During the installation of the steel corridor light band, the front and rear light bands are respectively attached to the inner and outer surfaces of the adjacent wall surface color plate 7. A self-tapping screw is sleeved in a plastic support sleeve as a support part, and the self-tapping screw is directly screwed into the purlin 4 through the light band.
[0027] (2) Light band reinforcing measures:
[0028] After the light band 1 is installed and fixed, the top surface of the light band 1 is angle treated with the roof top plate of the steel corridor, and the bottom surface of the light band 1 is sealed with the bottom plate. The inner sides of the two sides of the light band 1 are evenly brushed with sealant and attached to the adjacent wall surface color plate. After the glue is completely bonded, flat steel is used to fix the two side end surfaces of the light band 1, and the flat steel is fixed by screwing into the two side wall surface color plates 7.
[0029] The scope of protection of the utility model is not limited to the above specific embodiments, for those skilled in the art, the utility model can have multiple variations and alterations, any modification, improvement and equivalent replacement made within the concept and principle of the utility model should be included in the protection scope of the utility model.
Claims
1. A steel gallery having a natural lighting structure, comprising a steel gallery wall, a steel gallery roof and a steel gallery floor, characterized in that: The steel corridor wall body is provided with light band assemblies at intervals, and each light band assembly comprises a front light band and a rear light band.
2. Steel veranda with natural lighting structure according to claim 1, characterized in that: A purlin is arranged on the steel corridor wall body at the installation position of the light band assembly, and one end of the connecting piece is connected to the purlin in cooperation with a nut.
3. Steel veranda with natural lighting structure according to claim 2, characterized in that: The purlins are arranged uniformly on the steel corridor wall body from top to bottom.
4. Steel gallery with natural lighting structure according to claim 1, 2 or 3, characterized in that: The top surfaces of the front light band and the rear light band are corner-sealed with a steel corridor top plate, and the bottom surfaces of the front light band and the rear light band are corner-sealed with a steel corridor bottom plate.
5. The steel gallery with natural lighting structure according to claim 4, characterized in that: The two side edges of the front light band and the rear light band are connected to adjacent wall panels and sealed with flat steel.
6. Steel veranda with natural lighting structure according to claim 1 or 5, characterized in that: The connecting piece is a long rod self-tapping screw.