Ceiling construction joint for landscape green wall

By improving the connection method of the light strips and ceiling structure at the landscape green wall, and adopting a flame-retardant frame and irregular keel design, the stability and maintenance convenience issues of the existing construction nodes were solved, achieving a stable, beautiful and safe construction effect.

CN224495552UActive Publication Date: 2026-07-14CHINA CONSTR FIRST BUREAU GRP SOUTHEAST CONSTR CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHINA CONSTR FIRST BUREAU GRP SOUTHEAST CONSTR CO LTD
Filing Date
2025-08-13
Publication Date
2026-07-14

AI Technical Summary

Technical Problem

The existing ceiling construction nodes of landscape green walls have obvious defects in terms of structural stability, functional integration, construction and maintenance convenience and safety performance. In particular, in high-rise buildings or densely populated areas, problems such as loose connections, light strip displacement and frame deformation are prone to occur. In addition, the traditional ceiling is cumbersome to dismantle and is prone to damage to the surrounding structure.

Method used

The structure employs a light strip structure with threaded connections between the hanger rod and the angled hanger, an H-shaped design for the flame-retardant frame, C-slot keel connections with C-slot hangers on the hanger rod, and honeycomb perforated aluminum panels with overlapping connections between J-slot keels and Z-shaped hook keels, ensuring structural stability and facilitating installation and disassembly.

Benefits of technology

It improves the stability of the lighting effects and the strength of the overall structure, enhances the stability and aesthetics of construction nodes, simplifies the maintenance and replacement process, and improves safety and performance.

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Abstract

This utility model relates to the field of decoration and construction technology, specifically disclosing a ceiling construction node for a landscape green wall. It includes a light strip structure and a ceiling structure located on one side above the landscape green wall. The light strip structure includes a first hanging rod, a corner hanger, a flame-retardant frame, and an LED wall washer light strip. The corner hanger has an L-shaped structure, including a horizontal and a vertical section. The flame-retardant frame has an H-shaped cross-section and includes two composite panels (first type) fixed to opposite sides of the vertical sections of the two corner hangers, and a second composite panel (second type) fixed between the two composite panels (first type). The ceiling structure includes the second hanging rod, a C-groove keel, and a honeycomb perforated aluminum plate fixed to the bottom of the C-groove keel, located on opposite sides of the two composite panels (first type) and the bottom side of the second composite panel (second type). The LED wall washer light strip is located below the second composite panel (second type), facilitating installation and disassembly, and aiding in later maintenance and replacement. All components of the construction node are tightly integrated, resulting in a stable structure and improved overall aesthetics and performance.
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Description

Technical Field

[0001] This utility model relates to the field of decoration and construction technology, and in particular to a ceiling construction node for a landscape green wall. Background Technology

[0002] With the continuous development of urban construction, landscape green walls, with their dual advantages of ecological protection and aesthetic integration, are increasingly widely used in the field of architectural decoration. They not only effectively purify the air and regulate the microclimate, but also inject natural vitality into architectural spaces through rich plant layers and colors, becoming an important element in modern architecture that embodies the harmonious coexistence of humanity and nature. The ceiling construction at landscape green walls, as a key decorative element echoing the green walls, directly affects the visual continuity, structural safety, and functional practicality of the overall space due to the rationality of its construction nodes. Regarding structural stability, traditional ceiling joists are often connected to the main building structure using simple hangers and bolts, lacking targeted stress optimization design. This is because landscape green wall areas are often accompanied by high air humidity and local microenvironmental changes caused by plant transpiration. Long-term use can easily lead to corrosion and loosening of connection nodes, especially in high-rise buildings or areas with high traffic, which may cause ceiling panel settlement, deformation, and even safety hazards. The installation structure here needs to have extremely strong stability and be easy to disassemble and maintain. At the same time, the existing light strip structure is mostly installed on simple brackets, which are prone to problems such as light strip displacement and frame deformation under temperature changes or slight vibrations, affecting the durability of the overall structure. In addition, traditional ceiling aluminum panels are mostly fixed by welding or dense bolts. When it is necessary to replace damaged panels or repair internal pipelines, large-scale disassembly is required. The process is cumbersome, difficult to disassemble, and prone to secondary damage to the surrounding structure. In summary, the existing ceiling construction nodes of landscape green walls have obvious defects in terms of structural stability, functional integration, construction and maintenance convenience, and safety performance, and need to be optimized and improved. Utility Model Content

[0003] The purpose of this utility model is to provide a ceiling construction node for a landscape green wall, in order to solve the technical problems mentioned in the background art.

[0004] To achieve the above objectives, the present invention adopts the following technical solution:

[0005] A ceiling construction node for a landscape green wall includes a landscape green wall, a building structure above the landscape green wall, and a light strip structure and ceiling structure located on one side above the landscape green wall. The light strip structure includes two rows of suspension rods fixed to the bottom of the building structure, angled hangers at the bottom of the suspension rods, a flame-retardant frame fixed to the angled hangers, and LED wall washer light strips within the flame-retardant frame. The angled hangers are L-shaped, with the angled hangers at the bottom of the two rows of suspension rods arranged opposite each other. Each angled hanger includes a horizontal part and a vertical part. The flame-retardant frame has an H-shaped cross-section. The flame-retardant frame includes two composite panels 1 fixedly installed on opposite sides of the vertical sections of two angled hangers, and a composite panel 2 fixedly connected between the two composite panels 1. An LED wall washer light strip is installed below the composite panel 2. The ceiling structure includes a hanger 2 fixed to the bottom of the building structure, a C-groove keel horizontally fixed to the bottom end of the hanger 2, and a honeycomb perforated aluminum plate fixed to the bottom of the C-groove keel, located on opposite sides of the two composite panels 1 and the bottom side of the composite panel 2. A light groove is provided on the honeycomb perforated aluminum plate on the bottom side of the composite panel 2, and the LED wall washer light strip is embedded in the light groove.

[0006] Furthermore, a C-slot hanger is provided between the C-slot keel and the second hanger rod. The C-slot hanger is an irregularly shaped component, including a connecting horizontal part and a hook part with a hook-shaped structure at one end of the connecting horizontal part. The connecting horizontal part is fixed to the bottom end of the second hanger rod. The hook part has a hook-like structure and a hook groove. The belly of the C-slot keel is limited within the hook groove of the hook part.

[0007] Furthermore, a hook-and-loop keel hanger is fixedly provided on the C-slot keel, and a Z-shaped hook-and-loop keel is provided below the C-slot keel. The Z-shaped hook-and-loop keel has a Z-shaped cross-section, and the top side of the Z-shaped hook-and-loop keel is inserted into the limiting groove of the hook-and-loop keel hanger.

[0008] Furthermore, the back side of the honeycomb perforated aluminum plate is fixed with a J-slot keel. The cross-section of the J-slot keel is a J-shaped structure that is almost flat. The J-slot keel includes a hook and a handle. The hook of the J-slot keel overlaps with the bottom edge of the Z-shaped hook keel, and the handle of the J-slot keel is fixed to the back side of the honeycomb perforated aluminum plate.

[0009] Furthermore, the hook portion and the C-groove keel are provided with tie bolts to fasten the hook portion to the C-groove keel, and the tie bolts pull the two vertical sides of the hook portion together.

[0010] Furthermore, the bottom end of the boom is threaded, and the horizontal part is provided with a through hole. The horizontal part is fixed to the bottom end of the boom by a nut.

[0011] Compared with the prior art, this utility model has the following features and beneficial effects:

[0012] This utility model utilizes a light strip structure and a ceiling structure located on one side above a landscape green wall. The light strip structure is connected to the first hanging rod and the angled hanging bracket via threaded connections, and the H-shaped structure design of the flame-retardant frame ensures the stability of the LED wall washer light strip installation and the strength of the structure, guaranteeing the lighting effect. In the ceiling structure, the C-groove keel and the second hanging rod are connected by C-groove hanging brackets, ensuring a firm connection and good stability, effectively supporting the weight of the honeycomb perforated aluminum panel. The honeycomb perforated aluminum panel is installed using the overlapping method of the J-groove keel and the Z-shaped hook keel, facilitating installation and disassembly, and benefiting later maintenance and replacement. All components of the entire construction node are closely coordinated, resulting in a stable structure, improving the overall aesthetics and performance. It features safety and applicability, has good promotion and practical value, and its widespread application will generate good economic benefits. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0014] Attached reference numerals: 1. Landscape green wall; 2. Hanger 1; 3. Angular hanger; 4. Flame-retardant frame; 5. LED wall washer light strip; 6. Hanger 2; 7. C-slot keel; 8. Honeycomb perforated aluminum plate; 9. C-slot hanging bracket; 10. Hook-on keel hanger; 11. Z-type hook-on keel; 12. J-slot keel; 13. Tie bolt. Detailed Implementation

[0015] To make the technical means, innovative features, objectives and effects of this utility model easier to understand, the utility model will be further described below.

[0016] The embodiments described herein are specific implementations of this utility model, used to illustrate the concept of this utility model. They are all illustrative and exemplary, and should not be construed as limiting the implementation methods or scope of this utility model. In addition to the embodiments described herein, those skilled in the art can employ other obvious technical solutions based on the content disclosed in the claims and specification of this application. These technical solutions include those that make any obvious substitutions and modifications to the embodiments described herein.

[0017] This utility model discloses a ceiling construction node for a landscape green wall, such as Figure 1As shown, the structure includes a green wall 1, an architectural structure above the green wall 1, and a light strip structure and ceiling structure located on one side above the green wall 1. The light strip structure includes two rows of hanging rods 2 fixed to the bottom of the architectural structure, angled hanging members 3 at the bottom of the hanging rods 2, a flame-retardant frame 4 fixed to the angled hanging members 3, and LED wall washer light strips 5 located within the flame-retardant frame 4. The angled hanging members 3 are L-shaped, with the angled hanging members 3 at the bottom of the two rows of hanging rods 2 arranged opposite each other. The angled hanging members 3 include a horizontal part and a vertical part, with the horizontal part being narrower than the vertical part. The bottom end of the hanging rods 2 is threaded, and the horizontal part has a through hole. The horizontal part is fixed to the bottom end of the hanging rods 2 by a nut. The flame-retardant frame 4 has an H-shaped cross-section and includes two angled hanging members fixed to the bottom of the two hanging rods 2. The vertical part of component 3 consists of two composite panels on opposite sides, and a composite panel two fixedly connected between the two composite panels. Both composite panels are flame-retardant composite panels. LED wall washer light strips 5 are located below composite panel two. The H-shaped structure of the flame-retardant frame 4 enhances the overall strength and stability, and the use of flame-retardant composite panels meets fire safety requirements. The ceiling structure includes a second suspension rod 6 fixed to the bottom of the building structure, a C-groove keel 7 horizontally fixed to the bottom of the second suspension rod 6, and a honeycomb perforated aluminum plate 8 fixed to the bottom of the C-groove keel 7, located on opposite sides of the two composite panels and on the bottom side of composite panel two. The honeycomb perforated aluminum plate 8 on the bottom side of composite panel two has a light groove, and the LED wall washer light strip 5 is embedded in the light groove, which ensures both uniformity of lighting effect and The C-slot keel 7 provides guidance and protection for the light strip, resulting in a neater and more aesthetically pleasing installation. A C-slot hanger 9 is installed between the C-slot keel 7 and the second hanger 6. The C-slot hanger 9 is a non-standard component formed by bending a strip of steel plate at multiple right angles in the same direction. It includes a connecting horizontal part and a hook-shaped part at one end of the connecting horizontal part. The connecting horizontal part is fixed to the bottom of the second hanger 6. The hook-shaped part has a hook groove. The belly of the C-slot keel 7 is limited within the hook groove. Tie bolts 13 are installed on the hook part and above the C-slot keel 7 to fasten the hook part to the C-slot keel 7. The tie bolts 13 pull the two vertical sides of the hook part together, ensuring the horizontality and stability of the C-slot keel 7 and effectively supporting the load below. The component weight is determined by the fact that hook-and-loop keel hangers 10 are fixedly installed on the C-slot keel 7. Hook-and-loop keel hangers 10 are existing technology. Below the C-slot keel 7, there is a Z-shaped hook-and-loop keel 11. The Z-shaped hook-and-loop keel 11 has a Z-shaped cross-section. The top side of the Z-shaped hook-and-loop keel 11 is inserted into the limiting groove of the hook-and-loop keel hanger 10. The back side of the honeycomb perforated aluminum plate 8 is fixedly provided with a J-slot keel 12. The J-slot keel 12 has a J-shaped cross-section. The J-slot keel 12 includes a hook and a handle. The hook of the J-slot keel 12 overlaps with the bottom edge of the Z-shaped hook-and-loop keel 11. The handle of the J-slot keel 12 is fixed to the back side of the honeycomb perforated aluminum plate 8. This hook-and-loop connection method facilitates the installation and disassembly of the honeycomb perforated aluminum plate 8, while ensuring the flatness and overall aesthetics of the ceiling surface.

[0018] This utility model utilizes a light strip structure and a ceiling structure located on one side above a landscape green wall. The light strip structure is connected to the first hanging rod and the angled hanging component via threaded connections, and the H-shaped structure design of the flame-retardant frame ensures the stability of the LED wall washer light strip installation and the strength of the structure, guaranteeing the lighting effect. In the ceiling structure, the C-groove keel and the second hanging rod are connected by C-groove hanging brackets, ensuring a firm connection and good stability, effectively supporting the weight of the honeycomb perforated aluminum panel. The honeycomb perforated aluminum panel is installed using the overlapping method of the J-groove keel and the Z-shaped hook keel, facilitating installation and disassembly, and aiding in later maintenance and replacement. All components of the entire construction node are closely coordinated, resulting in a stable structure and improving the overall aesthetics and performance.

[0019] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It will be apparent to those skilled in the art that this utility model is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or basic characteristics of this utility model. Therefore, the embodiments should be considered exemplary and non-limiting in all respects. The scope of this utility model is defined by the appended claims rather than the foregoing description, and thus all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this utility model. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0020] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A ceiling construction node for a landscape green wall, comprising a light strip structure and a ceiling structure located above the landscape green wall (1), characterized in that: The light strip structure includes two rows of suspension rods (2), a corner hanger (3) at the bottom of the suspension rods (2), a flame-retardant frame (4) fixed on the corner hanger (3), and an LED wall washer light strip (5) inside the flame-retardant frame (4). The corner hanger (3) is an L-shaped structure, and the corner hangers (3) at the bottom of the two rows of suspension rods (2) are arranged opposite to each other. The corner hanger (3) includes a horizontal part and a vertical part. The flame-retardant frame (4) has an H-shaped cross section. The flame-retardant frame (4) includes vertical parts respectively fixed on the two corner hangers (3). The ceiling structure includes two composite panels on opposite sides and a composite panel two fixedly connected between the two composite panels. An LED wall washer light strip (5) is located below the composite panel two. The ceiling structure includes a second hanging rod (6), a C-groove keel (7) horizontally fixed at the bottom of the second hanging rod (6), and a honeycomb perforated aluminum plate (8) fixed at the bottom of the C-groove keel (7), located on opposite sides of the two composite panels and on the bottom side of the composite panel two. A light groove is provided on the honeycomb perforated aluminum plate (8) on the bottom side of the composite panel two, and the LED wall washer light strip (5) is embedded in the light groove.

2. The ceiling construction node for a landscape green wall according to claim 1, characterized in that: A C-slot hanger (9) is provided between the C-slot keel (7) and the second hanger (6). The C-slot hanger (9) is an irregularly shaped component, including a connecting horizontal part and a hook part with a hook-shaped structure at one end of the connecting horizontal part. The connecting horizontal part is fixed to the bottom end of the second hanger (6). The hook part has a hook-like structure and a hook groove. The belly of the C-slot keel (7) is limited in the hook groove of the hook part.

3. The ceiling construction node for a landscape green wall according to claim 2, characterized in that: The C-slot keel (7) is fixedly provided with a hook keel hanger (10), and a Z-shaped hook keel (11) is provided below the C-slot keel (7). The Z-shaped hook keel (11) has a Z-shaped cross section, and the top side of the Z-shaped hook keel (11) is stuck in the limiting groove of the hook keel hanger (10).

4. The ceiling construction node for a landscape green wall according to claim 3, characterized in that: The back side of the perforated aluminum plate (8) is fixed with a J-slot keel (12). The cross section of the J-slot keel (12) is a J-shaped structure that is laid flat. The J-slot keel (12) includes a hook and a handle. The hook of the J-slot keel (12) overlaps with the bottom edge of the Z-shaped hook keel (11). The handle of the J-slot keel (12) is fixed to the back side of the perforated aluminum plate (8).

5. The ceiling construction node for a landscape green wall according to claim 2, characterized in that: The hook part and the C-groove keel (7) are provided with tie bolts (13) to fasten the hook part to the C-groove keel (7). The tie bolts (13) pull the two vertical sides of the hook part together and tighten them.

6. A ceiling construction node for a landscape green wall according to any one of claims 1 to 5, characterized in that: The bottom end of the first (2) of the suspension rod is threaded, and the horizontal part is provided with a through hole. The horizontal part is fixed to the bottom end of the first (2) of the suspension rod by a nut.