A river blocking structure for a shopping mall atrium

By using pre-embedded brackets and square tubes for stable installation in the atrium structure of the shopping mall, the light strips are concealed and the light is refracted using reflectors, thus solving the safety hazards caused by exposed light strips. This achieves a combination of safety protection and aesthetic decoration, and enhances the stability and service life of the structure.

CN224591700UActive Publication Date: 2026-08-04JIANGSU TIANMAO CONSTR CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU TIANMAO CONSTR CO LTD
Filing Date
2025-06-27
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

The exposed installation of LED strips in the existing river-blocking structures of shopping malls poses a safety hazard and cannot simultaneously meet the needs of safety protection and aesthetic decoration.

Method used

The square tube is securely installed using pre-embedded brackets and components. The light strip is hidden in the receiving groove and uses a reflector to refract the light. Combined with the visible glass and handrails, it provides safety protection. Plasterboard covers some openings, and columns and hanging rods are added to reinforce the structure.

Benefits of technology

This effectively avoids the safety hazards caused by exposed light strips, combines safety protection with aesthetic decoration, and improves the stability and service life of the river-blocking structure.

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Abstract

This application relates to a barrier structure for a shopping mall atrium, belonging to the field of building decoration and protection technology. It includes columns and a viewing glass panel. Embedded brackets are installed at the edges of the floor slab walls, and a first square tube is mounted on each of the embedded brackets. The viewing glass panel is installed on the upper end of the first square tube, and the columns are installed on the upper part of the floor slab inside the viewing glass panel. Handrails for protection are installed on several columns. A second square tube is installed on an embedded component below the first square tube, and a receiving groove is formed at the lower end of the second square tube. A light strip and a reflector are installed in the receiving groove, and the reflector is used to refract the light emitted by the light strip. This application effectively avoids safety hazards caused by exposed light strip installation.
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Description

Technical Field

[0001] This application relates to the field of building decoration and protection technology, and in particular to a river-blocking structure for a shopping mall atrium. Background Technology

[0002] In shopping malls, a "bridge" refers to a building component typically used to connect different floors or areas, providing both safety and aesthetic appeal. Bridges in shopping malls primarily serve to connect different floors and areas, providing passage and security.

[0003] The river-blocking structure is usually made of precast glass fiber reinforced gypsum board (GRG), which is characterized by high strength, light weight, resistance to deformation and cracking, as well as fire resistance, moisture resistance, and long service life.

[0004] Existing river-blocking structures are usually equipped with light strip structures. These light strip structures can provide basic lighting to guide the space and also serve as visual marketing tools. However, the light strips are currently usually installed exposed, which can easily lead to safety hazards due to the light strips falling off. Utility Model Content

[0005] To avoid safety hazards caused by exposed LED strip installation, this application provides a barrier structure for shopping mall atriums.

[0006] The technical solution for a river-blocking structure in a shopping mall atrium provided in this application is as follows: A barrier structure for a shopping mall atrium includes columns and a viewing glass panel. Embedded brackets are installed along the edges of the floor slab walls, and a first square tube is mounted on each bracket. The viewing glass panel is installed on the upper end of the first square tube, and the columns are installed on the upper part of the floor slab inside the viewing glass panel. Handrails for protection are installed on several columns. A second square tube is installed on an embedded component below the first square tube, and a receiving groove is formed at the lower end of the second square tube. A light strip and a reflector are installed in the receiving groove, and the reflector is used to refract the light emitted by the light strip.

[0007] By adopting the above technical solutions, the pre-embedded brackets and components can be used to securely install the first and second square tubes, making the barrier structure more stable; the visible glass and handrails can provide safety protection and passage functions for the shopping mall atrium; by installing the light strip in the receiving groove at the lower end of the second square tube and using a reflector to refract the light, the light strip is not exposed, reducing the safety hazards caused by the light strip falling off, and the light strip can play the role of basic lighting, spatial guidance and visual marketing.

[0008] In one specific implementation scheme, the gypsum board is also included. The gypsum board is installed below the floor slab. One end of the gypsum board is connected to the second square tube. The receiving groove is configured as a U-shaped groove. The end of the gypsum board connected to the second square tube extends to the bottom of the receiving groove and partially obscures the opening of the receiving groove. The light strip is installed on the upper side wall of the gypsum board located in the receiving groove. The reflector is installed on the upper side wall of the second square tube inside the receiving cavity.

[0009] By adopting the above technical solution, the atrium structure of the shopping mall includes columns, viewing glass, embedded brackets, a first square tube, columns, handrails, a second square tube, a receiving groove, light strips, reflectors, and plasterboard. The embedded brackets can be used to securely install the first square tube. The viewing glass, columns, and handrails provide passage and protection. The light strips and reflectors installed in the U-shaped receiving groove can refract light to provide lighting and marketing functions. The plasterboard is installed under the floor slab and one end is connected to the second square tube. It extends to the bottom of the receiving groove and covers part of the opening. The light strips are installed on the upper side wall of the plasterboard inside the receiving groove, which can prevent the light strips from being exposed and reduce the safety hazards caused by the light strips falling off.

[0010] In one specific implementation scheme, a light strip cover is installed at the edge of the end where the gypsum board connects to the second square tube, and the light strip cover is connected to the upper side wall of the second square tube in the receiving groove.

[0011] By adopting the above technical solution, a light strip cover that is connected to the upper side wall of the second square tube in the receiving groove is installed at the edge of the connection between the gypsum board and the second square tube. This can more effectively protect the light strip, prevent it from being affected by external factors, and improve the safety and stability of the light strip.

[0012] In one specific implementation scheme, a first suspension rod is also included, one end of which is fixedly connected to the lower end face of the floor slab, and the other end of which is fixedly connected to the upper end face of the floor slab.

[0013] By adopting the above technical solution, a first suspension rod is added to the barricade structure in the atrium of the shopping mall, and its two ends are fixedly connected to the lower end face of the floor slab and the upper end face of the floor slab, respectively. This can further enhance the connection stability between the barricade structure and the floor slab, and improve the overall strength and safety of the barricade structure.

[0014] In one specific implementation scheme, a flower trough is also included, wherein a gap is provided in the horizontal direction between the lower end of the first square tube and the upper end of the second square tube, and the flower trough is installed in the gap between the first square tube and the second square tube and supported on the pre-embedded component.

[0015] By adopting the above technical solution, flower troughs are set in the gap between the first and second square tubes of the barricade structure in the atrium of the shopping mall and supported on the embedded components. This beautifies the environment of the atrium, increases the aesthetics and visual appeal of the space, and makes full use of the spatial layout of the barricade structure, making the structure more reasonable.

[0016] In one specific implementation, at least two sets of fasteners are provided on the viewing glass in the height direction, and the viewing glass is connected to the column through the fasteners.

[0017] By adopting the above technical solution, at least two sets of fasteners are installed along the height direction of the viewing glass and connected to the column through them, which can enhance the stability and firmness of the connection between the viewing glass and the column, making the river-blocking structure more stable.

[0018] In one specific implementation scheme, several columns are provided, and the columns are installed on the upper surface of the floor slab along the length of the visible glass, and are installed evenly.

[0019] By adopting the above technical solution, several columns are evenly installed along the length of the upper part of the floor slab inside the visible glass, so that the columns can provide stable support for the handrails used for protection, thereby enhancing the overall stability and safety of the river-blocking structure and providing more reliable protection for passers-by.

[0020] In one specific implementation scheme, a second suspension rod is also included, one end of which is fixedly connected to the lower end face of the floor slab, and the other end is fixedly connected to the upper end face of the second square tube above the receiving groove.

[0021] By adopting the above technical solution, with one end of the second suspension rod fixedly connected to the lower end face of the floor slab and the other end fixedly connected to the upper end face of the second square tube above the receiving groove, the installation of the second square tube can be further reinforced, thereby improving the stability and safety of the river-blocking structure.

[0022] In summary, this application includes at least one of the following beneficial technical effects: 1. The river-blocking structure can connect different floors or areas, providing passageways and serving a safety protection function to prevent people from falling; 2. The dam is made of special materials, which have the characteristics of high strength, light weight, and resistance to deformation and cracking. It can also effectively prevent fire and moisture, ensuring the service life of the dam. 3. Installing the light strip inside the receiving slot avoids exposing the light strip to the outside, reducing the safety hazard of the light strip falling off and injuring pedestrians. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the structure of an embodiment of this application.

[0024] Explanation of reference numerals in the attached drawings: 1. Column; 11a. Handrail; 2. Visible glass; 3. Embedded bracket; 4. First square tube; 5. Second square tube; 51. Receiving groove; 6. Light strip; 7. Reflector; 8. Plasterboard; 9. Light strip cover; 10. First suspension rod; 11. Second suspension rod; 12. Flower trough; 13. Fastener. Detailed Implementation

[0025] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "set" and "connection" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two elements or the interaction between two elements. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0026] This application discloses a barrier structure for a shopping mall atrium.

[0027] like Figure 1 As shown, the atrium structure of the shopping mall includes columns 1, visible glass 2, embedded brackets 3, first square tubes 4, handrails 11a, second square tubes 5, light strips 6, and reflectors 7. Embedded brackets 3 are installed at the edges of the floor slab walls. The first square tubes 4 are installed on the embedded brackets 3. The visible glass 2 is installed on the upper end of the first square tubes 4. Columns 1 are installed on the upper part of the floor slab inside the visible glass 2. Handrails 11a are installed on several columns 1 for protection. The second square tubes 5 are installed on the embedded components below the first square tubes 4. A receiving groove 51 is opened at the lower end of the second square tubes 5. The light strips 6 and reflectors 7 are installed in the receiving groove 51. The reflectors 7 refract the light emitted by the light strips 6, thus avoiding the safety hazards of exposed light strips 6 and achieving lighting by refracting light using the reflectors 7.

[0028] Specifically, the embedded bracket 3 is used to securely connect the entire dam structure to the floor slab wall. It can be made of metal, such as stainless steel or carbon steel, as these two materials have high strength and can withstand the weight of the dam structure and external impacts. During installation, it is fixed to the edge of the floor slab wall using expansion bolts or other connectors; welding is also an option. As for alternatives, concrete embedded parts can be used instead of metal brackets, as long as they achieve a secure installation at the edge of the floor slab wall.

[0029] The first square tube 4 serves to support the viewing glass 2. It is typically a square hollow steel tube, and the steel material can be ordinary carbon steel, which is low in cost and meets the strength requirements. During installation, it is welded or bolted to the pre-embedded hanger 3 for a secure connection. Alternatively, aluminum alloy square tubes can be used instead, as aluminum alloy is lightweight and has good corrosion resistance.

[0030] The second square tube 5 is installed on the embedded component below the first square tube 4, and its lower end receiving groove 51 provides installation space for the light strip 6 and reflector 7. The second square tube 5 can also be a square tube made of ordinary carbon steel. The receiving groove 51 is set as a U-shaped groove to facilitate the installation and maintenance of the internal light strip 6 and reflector 7.

[0031] The reflector 7 is mounted on the upper side wall of the second square tube 5 inside the receiving cavity to refract the light emitted by the light strip 6. It is generally a plane mirror made of glass with a reflective coating on the surface. During installation, it is fixed to the second square tube 5 with glue or screws. A convex mirror can also be used instead, as it can expand the illumination range of the light.

[0032] The dam structure also includes gypsum board 8, which is installed under the floor slab and connected at one end to the second square tube 5. The gypsum board 8 can be precast glass fiber reinforced gypsum board (GRG), a material that is high-strength, lightweight, resistant to deformation and cracking, and fire and moisture resistant. During installation, it is connected to the second square tube 5 using angle steel or other connectors.

[0033] One end of the plasterboard 8 connected to the second square tube 5 extends below the receiving groove 51 and partially blocks the opening of the receiving groove 51, thus further protecting the light strip 6 and reducing its impact from external factors. The light strip 6 is installed on the upper side wall of the plasterboard 8 inside the receiving groove 51, and the reflector 7 is installed on the upper side wall of the second square tube 5 inside the receiving cavity. The two work together to achieve light refraction and illumination.

[0034] A light strip cover 6 is installed at the edge of the connection between the plasterboard 8 and the second square tube 5. The light strip cover 6 can be made of plastic, which is lightweight and has a certain degree of flexibility. It is connected to the upper side wall of the second square tube 5 inside the receiving groove 51 and is fixed by clips or glue. The function of the light strip cover 6 is to further protect the light strip 6, prevent dust and other debris from entering, and also to play a certain decorative role.

[0035] The dam structure also includes a first suspension rod 10, one end of which is fixedly connected to the lower surface of the floor slab, and the other end is fixedly connected to the upper surface of the floor slab. The first suspension rod 10 can be made of steel reinforcement, which has high strength. It is connected to the floor slab by welding or nuts, etc., and serves to reinforce the entire dam structure. Alternatively, steel wire rope can be used instead. Steel wire rope has good flexibility, but the appropriate strength specification needs to be selected based on the specific circumstances.

[0036] It also includes a second suspension rod 11, one end of which is fixedly connected to the lower end face of the floor slab, and the other end is fixedly connected to the upper end face of the second square tube 5 above the receiving groove 51. The second suspension rod 11 can also be made of steel bars, which serves to reinforce the second square tube 5 and make the river-blocking structure more stable. Alternatively, channel steel or other structural steel can be used to replace it, thereby enhancing the load-bearing capacity of the structure.

[0037] It also includes a flower trough 12. A horizontal gap is provided between the lower end of the first square tube 4 and the upper end of the second square tube 5. The flower trough 12 is installed in this gap and supported on a pre-embedded component. The flower trough 12 can be made of plastic, which is lightweight and inexpensive. A ceramic flower trough 12 can also be used, which is more aesthetically pleasing but heavier. Green plants can be planted inside the flower trough 12 to beautify the atrium environment of the shopping mall.

[0038] At least two sets of fasteners 13 are provided on the viewing glass 2 along its height, and the viewing glass 2 is connected to the column 1 through the fasteners 13. The fasteners 13 can be stainless steel bolts, which are high in strength and corrosion-resistant. By tightening the bolts, the viewing glass 2 is tightly connected to the column 1, ensuring the stability of the viewing glass 2. Alternatively, a clamp specifically designed for laminated glass can be used instead. The clamp is easy to install and can better adapt to the characteristics of the glass.

[0039] Several columns 1 are installed along the length of the visible glass 2 on the upper surface of the floor slab, and are evenly distributed. This ensures that the handrail 11a is subjected to uniform force, improving its protective effect.

[0040] The implementation principle of a barricade structure for a shopping mall atrium according to an embodiment of this application is as follows: This barricade structure for a shopping mall atrium achieves multiple functions—safety protection, lighting, and aesthetic decoration—through a reasonable combination and layout of components. The various components cooperate with each other, ensuring the stability and reliability of the barricade structure as a whole. The use of a receiving groove 51 to install the light strip 6 and a reflector 7 avoids the safety hazards caused by exposed light strips 6, while the reflector 7 improves the lighting effect by refracting light. Furthermore, the addition of flower troughs 12 and plasterboard 8 not only beautifies the shopping mall environment but also further enhances the functionality and practicality of the barricade structure. The above are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made to the structure, shape, and principle of this application should be covered within the scope of protection of this application.

Claims

1. A damming structure for a shopping mall atrium, characterized by: The system includes a column (1) and a viewing glass (2). An embedded bracket (3) is installed at the edge of the floor wall. A first square tube (4) is installed on the embedded bracket (3). The viewing glass (2) is installed on the upper end of the first square tube (4). The column (1) is installed on the upper end of the floor slab inside the viewing glass (2). A handrail (11a) for protection is installed on several columns (1). A second square tube (5) is installed on the embedded component below the first square tube (4). A receiving groove (51) is opened at the lower end of the second square tube (5). A light strip (6) and a reflector (7) are installed in the receiving groove (51). The reflector (7) is used to refract the light emitted by the light strip (6).

2. The river blocking structure for a mall atrium according to claim 1, characterized by: It also includes a gypsum board (8), which is installed below the floor slab. One end of the gypsum board (8) is connected to the second square tube (5). The receiving groove (51) is set as a U-shaped groove. The end of the gypsum board (8) connected to the second square tube (5) extends to the bottom of the receiving groove (51) and the opening of the receiving groove (51) is partially blocked. The light strip (6) is installed on the upper side wall of the gypsum board (8) located in the receiving groove (51). The reflector (7) is installed on the upper side wall of the second square tube (5) in the receiving cavity.

3. The river blocking structure for a mall atrium according to claim 2, characterized by: A light strip (6) cover is installed at one edge of the gypsum board (8) and the second square tube (5), and the light strip (6) cover is connected to the upper side wall of the second square tube (5) in the receiving groove (51).

4. The dam structure for a mall atrium according to claim 2, characterized by: It also includes a first suspension rod (10), one end of which is fixedly connected to the lower end face of the floor slab, and the other end is fixedly connected to the upper end face of the floor slab.

5. The river blocking structure for a mall atrium according to claim 1, characterized by: It also includes a flower trough (12), with a gap in the horizontal direction between the lower end of the first square tube (4) and the upper end of the second square tube (5). The flower trough (12) is installed in the gap between the first square tube (4) and the second square tube (5) and is supported on the pre-embedded component.

6. The river blocking structure for a mall atrium according to claim 1, characterized by: At least two sets of fasteners (13) are provided on the viewing glass (2) in the height direction, and the viewing glass (2) is connected to the column (1) through the fasteners (13).

7. The river blocking structure for a mall atrium according to claim 1, characterized by: The column (1) is provided in several parts, and the column (1) is installed on the upper surface of the floor slab along the length direction of the visible glass (2) and is installed evenly.

8. The river blocking structure for a mall atrium according to claim 1, characterized by: It also includes a second suspension rod (11), one end of which is fixedly connected to the lower end face of the floor slab, and the other end is fixedly connected to the upper end face of the second square tube (5) above the receiving groove (51).