Multi-layer screen suspended ceiling structure

By designing a multi-layer mesh ceiling structure, damping rods and damping springs are used for buffering and shock absorption, and a protective layer is combined to achieve moisture protection and sound absorption, thus solving the problem of shock absorption and protection of the ceiling during impact and improving the overall performance of the ceiling.

CN223706837UActive Publication Date: 2025-12-23GUANGZHOU GOLD KINGS BUILDING MATERIAL CO LTD
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Patent Information

Application Number
CN202423007999.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-12-23
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

Existing ceiling structures cannot shift slightly to reduce impact force when subjected to an impact, and cannot achieve multiple effects such as moisture-proofing, sound insulation, and protection.

Method used

The ceiling adopts a multi-layer mesh panel structure, including a metal mesh structure, a protective structure, and hanging components. It uses damping rods and damping springs for buffering and shock absorption, and achieves moisture-proofing, sound absorption, and protection through rock wool layer, noise reduction layer, anti-corrosion layer and non-woven fabric layer in the protective structure.

Benefits of technology

When subjected to impact, it can reduce the impact force of the metal mesh structure, allowing for small-scale movement, while also providing moisture-proof, sound-insulating, and decorative effects, thus improving the practicality of the ceiling.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223706837U_ABST
Patent Text Reader

Abstract

The utility model discloses a multi-layer net plate suspended ceiling structure which comprises a fixing frame and a plurality of net plates. The metal net structure is arranged on the inner wall of the fixed frame; the hanging assembly is used for hanging and fixing the metal net structure and arranged on the upper end face of the metal net structure, and the hanging assembly is of a protective damping structure; by arranging the hanging assemblies, the metal net structure can be buffered and damped through multiple sets of damping rods and damping springs, so that the metal net structure can be moved slightly when being impacted, and the impact force borne by the metal net structure is reduced; by arranging the protection structure, the indoor space and the upper end of the metal net structure are subjected to silencing, noise reduction and protection, the practical effect of the protection structure is improved, the multiple effects of moisture prevention, sound insulation, protection and decoration are achieved for the indoor suspended ceiling, and the indoor suspended ceiling is very practical.
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Description

TECHNICAL FIELD

[0001] The utility model relates to building decoration technical field, concretely is a kind of multilayer net board ceiling structure. BACKGROUND

[0002] Ceiling refers to the decoration of the top of house, and is one of important parts of indoor decoration and expansion ceiling function, the existing ceiling structure cannot be displaced in small amplitude under the condition of being impacted after installation and use, to reduce impact force, simultaneously when using, cannot realize the effect that moisture-proof, sound insulation, protection are compatible, reduce the practicality of ceiling installation and use, therefore, we propose a kind of multilayer net board ceiling structure to solve the above-mentioned problems. UTILITY MODEL CONTENT

[0003] The utility model is to provide a kind of multilayer net board ceiling structure, to solve the problem proposed in the above background.

[0004] To achieve the above object, the utility model provides the following technical scheme:

[0005] A kind of multilayer net board ceiling structure, comprising:

[0006] Fixed frame;

[0007] Metal net structure, which is arranged on the inner wall of fixed frame;

[0008] Hanging assembly, which is used for hanging and fixing metal net structure, and is arranged on the upper end surface of metal net structure, and the hanging assembly is a kind of protection, shock absorption structure.

[0009] As a further scheme of the utility model: the hanging assembly includes protection structure, the protection structure is arranged on the upper end surface of metal net structure, and is arranged on the inner wall of fixed frame, both sides of the upper end surface of the protection structure are provided with a group of connecting plates, a group of hanging pieces are arranged on both groups of connecting plates, a group of fixed rods are arranged on the upper end surface of multiple groups of hanging pieces, a group of damping rods are arranged on the upper end surface of multiple groups of fixed rods, a group of damping springs are arranged on the outer side of multiple groups of damping rods, multiple groups of damping springs are respectively sleeved on the outer side of multiple groups of damping rods, multiple groups of installation frames are arranged on the upper end of multiple groups of damping rods and damping springs, multiple groups of installation frames are respectively slidably arranged on the outer side wall of multiple groups of fixed rods, two groups of first square tubes are arranged on the upper end surface of multiple groups of installation frames, two groups of connecting rods are arranged on the upper end surface of two groups of first square tubes, and two groups of second square tubes are arranged on the upper end surface of multiple groups of connecting rods.

[0010] As a further scheme of the utility model: the protection structure includes rock wool layer, noise reduction layer, anticorrosive layer, moisture-proof layer, non-woven fabric layer, the rock wool layer is provided with a group, the noise reduction layer, anticorrosive layer, moisture-proof layer, non-woven fabric layer all are provided with two groups.

[0011] As a further scheme of the utility model: two groups the noise reduction layer, anticorrosive layer, moisture-proof layer, non-woven fabric layer are set up respectively in the upper and lower sides of rock wool layer.

[0012] As a further scheme of the utility model: two groups the noise reduction layer are set up respectively on the upper and lower sides of rock wool layer, two groups the anticorrosive layer are set up respectively on the side wall of two groups noise reduction layer, two groups the moisture-proof layer are set up respectively on the side wall of two groups anticorrosive layer, two groups the non-woven fabric layer are set up respectively on the side wall of two groups moisture-proof layer.

[0013] As a further scheme of the utility model: the metal net structure is grid-shaped, and is woven by horizontal metal strips and longitudinal metal strips.

[0014] As a further scheme of the utility model: the thickness of the metal net structure is 2.3mm, and the thickness of the protection structure is 1.5mm.

[0015] Compared with the prior art, the utility model has the advantages that:

[0016] The multilayer net plate suspended ceiling structure is provided with the hanging assembly, can play the buffering and shock absorption effect on the whole structure of the suspended ceiling under the impact through the groups of damping rods and damping springs, can make the metal net structure move a small amplitude when being impacted, reduces the impact force on the metal net structure, and the protection structure is provided to play the soundproofing and noise reduction protection effect on the top space and the upper end of the metal net structure, the anticorrosive layer, the moisture-proof layer and the non-woven fabric layer can play the anticorrosive and moisture-proof effect on the rock wool layer and the noise reduction layer, the practical effect of the protection structure is improved, the indoor suspended ceiling can realize the moisture-proof, soundproofing, protection and decoration multiple effects, and is very practical. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is the structural schematic diagram of the utility model.

[0018] Figure 2 It is the structural schematic diagram of the metal net structure in the utility model.

[0019] Figure 3 It is the structural schematic diagram of the damping spring in the utility model.

[0020] Figure 4 It is the structural schematic diagram of the rock wool layer in the utility model.

[0021] Wherein: 1, fixed frame; 2, metal mesh structure; 3, protective structure; 4, connecting plate; 5, hanging component; 6, fixed rod; 7, damping rod; 8, damping spring; 9, mounting frame; 10, first square tube; 11, connecting rod; 12, second square tube; 13, rock wool layer; 14, noise reduction layer; 15, corrosion prevention layer; 16, moisture-proof layer; 17, non-woven fabric layer. DETAILED DESCRIPTION

[0022] In one embodiment, as shown in Figures 1-4 A multi-layer net plate suspended ceiling structure, comprising:

[0023] The fixed frame 1;

[0024] The metal mesh structure 2 is arranged on the inner wall of the fixed frame 1; the metal mesh structure 2 is grid-shaped and is woven by transverse metal strips and longitudinal metal strips; the thickness of the metal mesh structure 2 is 2.3mm;

[0025] The hanging assembly is used for hanging and fixing the metal mesh structure 2, and is arranged on the upper end surface of the metal mesh structure 2; the hanging assembly is a structure with protection and shock absorption functions;

[0026] The hanging assembly includes the protective structure 3; the thickness of the protective structure 3 is 1.5mm; the protective structure 3 is arranged on the upper end surface of the metal mesh structure 2 and on the inner wall of the fixed frame 1; both sides of the upper end surface of the protective structure 3 are provided with a group of connecting plates 4; both groups of connecting plates 4 are provided with a group of hanging components 5; the upper end surfaces of the groups of hanging components 5 are provided with a group of fixed rods 6; the upper end surfaces of the groups of fixed rods 6 are provided with a group of damping rods 7; the outer sides of the groups of damping rods 7 are provided with a group of damping springs 8; the groups of damping springs 8 are respectively sleeved on the outer sides of the groups of damping rods 7; the upper ends of the groups of damping rods 7 and the damping springs 8 are provided with a group of mounting frames 9; the groups of mounting frames 9 are respectively slidingly arranged on the outer sidewalls of the groups of fixed rods 6; the upper end surfaces of the groups of mounting frames 9 are provided with two groups of first square tubes 10; the upper end surfaces of the two groups of first square tubes 10 are provided with two groups of connecting rods 11; the upper end surfaces of the groups of connecting rods 11 are provided with two groups of second square tubes 12;

[0027] Specifically, during use, the metal mesh structure 2 can be hung and fixed by two sets of second square tubes 12. At the same time, the fixing rods 6, damping rods 7, damping springs 8, and mounting frame 9 can buffer and absorb shock for the hanging parts 5, thereby buffering and absorbing shock for the metal mesh structure 2. This allows the metal mesh structure 2 to move slightly when impacted, reducing the impact force on the metal mesh structure 2. At the same time, the protective structure 3 can provide sound absorption and noise reduction protection for the upper part of the metal mesh structure 2. By setting up the hanging components, multiple sets of damping rods 7 and damping springs 8 can buffer and absorb shock for the metal mesh structure 2, allowing the metal mesh structure 2 to move slightly when impacted, reducing the impact force on the metal mesh structure 2. The protective structure 3 can provide sound absorption and noise reduction protection for the indoor space and the upper part of the metal mesh structure 2.

[0028] like Figure 4 As shown, the protective structure 3 includes a rock wool layer 13, a noise reduction layer 14, an anti-corrosion layer 15, a moisture-proof layer 16, and a non-woven fabric layer 17. One set of rock wool layer 13 is provided, while two sets of each of the noise reduction layer 14, anti-corrosion layer 15, moisture-proof layer 16, and non-woven fabric layer 17 are provided. The two sets of noise reduction layers 14, anti-corrosion layers 15, moisture-proof layers 16, and non-woven fabric layers 17 are respectively located on the upper and lower sides of the rock wool layer 13. The two sets of noise reduction layers 14 are respectively located on the upper and lower side walls of the rock wool layer 13, the two sets of anti-corrosion layers 15 are respectively located on the side walls of the two sets of noise reduction layers 14, the two sets of moisture-proof layers 16 are respectively located on the side walls of the two sets of anti-corrosion layers 15, and the two sets of non-woven fabric layers 17 are respectively located on the side walls of the two sets of moisture-proof layers 16. The anti-corrosion layer 15, moisture-proof layer 16, and non-woven fabric layer 17 provide anti-corrosion, moisture-proof, and protective functions for the rock wool layer 13 and the noise reduction layer 14, improving the practical effect of the protective structure.

[0029] The above embodiment discloses a multi-layer mesh ceiling structure. In use, the metal mesh structure 2 can be hung and fixed by two sets of second square tubes 12. At the same time, the fixing rod 6, damping rod 7, damping spring 8 and mounting frame 9 can buffer and reduce the shock of the hanging parts 5, thereby buffering and reducing the shock of the metal mesh structure 2. When the metal mesh structure 2 is impacted, it can move slightly, reducing the impact force on the metal mesh structure 2. At the same time, by setting up a protective structure, it can protect the top space and the upper part of the metal mesh structure from noise. Meanwhile, the anti-corrosion layer, moisture-proof layer and non-woven fabric layer can protect the rock wool layer and noise reduction layer from corrosion and moisture, improving the practical effect of the protective structure. This allows the indoor ceiling to achieve multiple effects of moisture-proof, sound insulation, protection and decoration, which is very practical.

[0030] The above merely describes a preferred embodiment of the present application, and the protection scope of the present application is not limited thereto, and any skilled person in the art, according to the technical scheme and the inventive concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.

Claims

1. A multi-layer mesh ceiling structure, characterized in that, include: Fixed frame (1); A metal mesh structure (2) is set on the inner wall of the fixed frame (1); The hanging assembly is used to hang and fix the metal mesh structure (2) and is set on the upper surface of the metal mesh structure (2). The hanging assembly is a protective and shock-absorbing structure. The mounting assembly includes a protective structure (3), which is located on the upper surface of the metal mesh structure (2) and on the inner wall of the fixed frame (1). A set of connecting plates (4) is provided on both sides of the upper surface of the protective structure (3). A set of mounting parts (5) is provided on each of the two sets of connecting plates (4). A set of fixing rods (6) is provided on the upper surface of each of the multiple sets of mounting parts (5). A set of damping rods (7) is provided on the upper surface of each of the multiple sets of fixing rods (6). A set of damping springs is provided on the outer side of each of the multiple sets of damping rods (7). Multiple sets of damping springs (8) are respectively sleeved on the outside of multiple sets of damping rods (7). Multiple sets of mounting frames (9) are provided on the upper ends of multiple sets of damping rods (7) and damping springs (8). Multiple sets of mounting frames (9) are respectively slidably set on the outer side wall of multiple sets of fixing rods (6). Two sets of first square tubes (10) are provided on the upper end surface of multiple sets of mounting frames (9). Two sets of connecting rods (11) are provided on the upper end surface of each of the two sets of first square tubes (10). Two sets of second square tubes (12) are provided on the upper end surface of multiple sets of connecting rods (11). The protective structure (3) includes a rock wool layer (13), a noise reduction layer (14), an anti-corrosion layer (15), a moisture-proof layer (16), and a non-woven fabric layer (17). The rock wool layer (13) is provided in one set, and the noise reduction layer (14), the anti-corrosion layer (15), the moisture-proof layer (16), and the non-woven fabric layer (17) are each provided in two sets. The two sets of the noise reduction layer (14), the anti-corrosion layer (15), the moisture-proof layer (16), and the non-woven fabric layer (17) are respectively provided on the upper and lower sides of the rock wool layer (13). The two sets of the noise reduction layer (14) are respectively provided on the upper and lower side walls of the rock wool layer (13), the two sets of the anti-corrosion layer (15) are respectively provided on the side walls of the two sets of the noise reduction layer (14), the two sets of the moisture-proof layer (16) are respectively provided on the side walls of the two sets of the anti-corrosion layer (15), and the two sets of the non-woven fabric layer (17) are respectively provided on the side walls of the two sets of the moisture-proof layer (16).

2. The multi-layer mesh ceiling structure according to claim 1, characterized in that, The metal mesh structure (2) is mesh-like and is woven from horizontal and vertical metal strips.

3. The multi-layer mesh ceiling structure according to claim 1, characterized in that, The thickness of the metal mesh structure (2) is 2.3 mm, and the thickness of the protective structure (3) is 1.5 mm.